Provide professional ceramic structural design and customized development services based on the client's application scenarios, performance requirements, and manufacturability considerations.
Considering actual operating conditions, recommend the most suitable advanced ceramic materials and the corresponding forming and processing solutions.
With extensive experience in milling, grinding, and polishing high-precision technical ceramics, capable of delivering complex structures and stringent tolerances.
Ensure on-time delivery of samples and bulk orders through efficient production management and a robust supply chain system.

CERAMPRO | A Professional Factory Crafting High-End Industrial-Grade Advanced Ceramics

CERAMPRO is a technology-driven manufacturer specializing in precision manufacturing and advanced ceramic materials. Founded in 2018 and located in Dongguan, China, we provide high-performance ceramic components and custom solutions for demanding industrial applications worldwide.We operate a 5,000-square-meter intelligent manufacturing facility with full in-house capabilities covering material preparation, precision forming, sintering, secondary machining, and inspection. By integrating high-precision molding, injection molding, CNC machining, laser cutting, ceramic metallization, metal-to-ceramic bonding, and ceramic composite technologies, CERAMPRO delivers high-accuracy engineering and precision ceramic components designed to meet the most stringent requirements.

Our product portfolio includes ceramics such as alumina, zirconia, silicon carbide, aluminum nitride and silicon nitride., as well as precision ceramic structural parts, industrial ceramic components, ceramic metering and plunger pumps, ceramic vacuum chucks, and semiconductor ceramic spare parts. These products are widely used in semiconductor, automation, electronics, precision machinery, energy, wearable devices, and medical industries. Equipped with advanced automated inspection and quality control systems, CERAMPRO ensures fast and accurate verification of dimensional accuracy, performance, and consistency.
We are ISO 9001 certified, offering full-process manufacturing with machining accuracy up to0.001 mm and surface finish down to Ra 0.01m, ensuring reliable quality and delivery.As a professional custom industrial ceramic manufacturer,CERAMPRO supports drawing- and sample-based customization, creating long-term value for global customers through stable manufacturing, strict quality control, and strong engineering support.

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Custom Advanced Ceramic Manufacturing Services

We specialize in the custom manufacturing of advanced ceramic components based on your drawings, samples, or application requirements. From material selection to final precision machining, we providetailored ceramic solutionsdesigned to meet your technical, performance, and quality expectations.

Our experienced engineering and production team offers the following services:

 
✓ In-depth analysis of application requirements and working conditions

✓ Material selection support and design optimization for advanced ceramics

✓ Professional technical consultation throughout the OEM ODM process

✓ Transparent communication and project progress updates

✓ Precision manufacturing with strict quality control

✓ Reliable after-sales support and long-term technical assistance

Ceramic pump Components

Precision Ceramic Components

Semiconductor ceramic parts

Structural Ceramic Parts

Application ceramics

Ceramic Pistons

Valve Ceramic Parts

Material IntroductionThis valve core and sleeve is made from high-performance zirconia ceramic (ZrO₂), a material valued for its hardness, wear resistance, corrosion resistance, and stable performance in clean fluid environments. It is well suited for pharmaceutical liquids, solvents, and precision fluid control applications. Functional Features     Precision-polished sealing surface for more stable sealing performance     Controlled tolerances to support accurate matching between the valve core and sleeve     Good wear and corrosion resistance for long-term pump operation      Custom holes, grooves, chamfers, and special structures available based on drawingsThis component is commonly used as part of ceramic pump components and ceramic valve components for dosing, filling, and precision liquid control systems. Application Industries    Pharmaceutical metering pumps    Dosing and filling systems    Medical fluid control equipment    Biotechnology equipment    Fine chemical processing systems    Laboratory liquid handling equipment Delivery Time    Standard specifications: about 15–25 days    Customized specifications: about 20–35 days    Complex or high-precision parts: evaluated according to drawingsFor custom zirconia ceramic valve core and sleeve manufacturing, please contact CERAMPRO with your drawings, tolerance requirements, surface finish requirements, application details, and estimated order quantity.
Material IntroductionMain Material: Zirconia Ceramic (ZrO₂)Optional Material: Alumina Ceramic (Al₂O₃) upon request.Zirconia ceramic is commonly used for precision pump sleeves and piston components where wear resistance,corrosion resistance, and stable dimensional accuracy are important. In metering pump applications, it helpsreduce friction, support smooth movement, and maintain stable operation over time Functional FeaturesWear Resistance:Helps reduce wear during repeated piston movement and pump operation.Corrosion Resistance:Suitable for clean, chemical, and mildly corrosive fluid environments.Precision Bore Control:Inner and outer diameters can be ground according to drawing requirements.Smooth Surface:Polished surfaces help reduce friction and support stable movement.Dimensional Stability:Maintains stable dimensions after sintering and precision grinding.Custom Manufacturing:Available based on customer drawings, samples, or assembly requirements.Application IndustriesMetering Pumps · Dosing Systems · Filling EquipmentFluid Control Systems · Chemical Pump Components · Clean Processing EquipmentLead TimeSample: 15–20 daysCustom Production: 20–35 days, depending on drawing complexity and order quantityService: OEM/ODM manufacturing based on drawings or samples
Product Name: Precision Zirconia Ceramic Equipment Piston (High-Toughness Plunger) Product Material: Yttria-stabilized Zirconia ($Y-PSZ/Y-TZP$), Optional: Magnesia-stabilized Zirconia ($Mg-PSZ$) for high-temperature stability, Ceramic-to-Metal bonded assemblies Material Characteristics: Extreme fracture toughness (Non-brittle compared to Alumina), High mechanical strength, Diamond-grade surface hardness (HRA 90+), Near-metal thermal expansion coefficient (Excellent matching with steel housings), Self-lubricating mirror finish (Ra < 0.05μm), Superior wear and corrosion resistance Application Fields: Precision filling equipment, High-pressure homogenizers, Lithium battery slurry pumps, Medical dosing pumps, Chemical metering systems, High-end ceramic valves, Aerospace fuel control systems Application Industries: Biomedical (Pharmaceutical filling), Advanced Machinery (Heavy-duty precision equipment), New Energy (Battery manufacturing), Fluid Control (Micro-fluidics), Electronic Engineering (Chemical delivery), Aerospace (Actuator components), Petrochemical (Corrosive media handling), Broad Semiconductor (CMP slurry pumping) Processing Difficulties: Achieving sub-micron dimensional tolerances (±0.001mm), Mastering the precision polishing of Zirconia to achieve a defect-free mirror surface, Managing the phase transformation toughening during high-speed grinding, Controlling the concentricity of composite ceramic-metal designs Processing Flow: Nano-grade Zirconia powder preparation → Cold Isostatic Pressing (CIP) → High-temperature sintering (1500°C+) → Precision diamond cylindrical grinding → Step-by-step mirror polishing → Ultrasonic flaw detection → CMM 3D dimensional inspection → Dynamic balance testing (if required) → Secure packaging Delivery Period: Standard specifications: 25-35 days,
Material IntroductionThis silicon carbide ceramic sleeve is made from high-performance silicon carbide ceramic (SiC), with material options such as SSiC, RBSiC / SiSiC, and NSiC. It is suitable for applications that require wear resistance, corrosion resistance, and stable performance under abrasive or high-temperature conditions. Functional Features High hardness and wear resistance for abrasive media Good corrosion resistance for chemical and slurry applications High thermal conductivity and good thermal stability Precision-ground ID and OD for pump sleeves, bushings, and bearing parts Custom size, grooves, chamfers, holes, and sealing surfaces based on drawings For tight tolerance or special surface requirements, CERAMPRO provides precision ceramic machining, grinding, polishing, and inspection support. Application Industries Mechanical seals and seal rings Magnetic pump bearings and sleeves Slurry pump bushings and wear sleeves Sand mill liners and grinding equipment Chemical processing and corrosive fluid handling New energy, semiconductor, and high-temperature equipment Delivery Time Standard silicon carbide ceramic sleeves: about 20–35 days Large or complex custom sleeves: about 40–60 days High-precision parts: evaluated according to drawings Please share your drawings, tolerance requirements, surface finish, working media, and estimated order quantity for a custom SiC ceramic sleeve quotation.
Material Introduction This high-pressure pump ceramic piston and plunger is mainly made from zirconia ceramic, alumina ceramic or ZTA ceramic, depending on the pressure level, fluid medium and working conditions. Zirconia ceramic is often preferred for high-pressure pump applications because it offers good toughness, wear resistance and stable performance during repeated plunger movement. Functional Features Good wear resistance for high-pressure pump operation Corrosion resistance in fluid and chemical environments Precision-ground and polished surface for smoother movement Stable dimensions for piston and plunger assembly Custom diameter, length, tolerance and surface finish available Suitable for OEM ceramic pump and fluid control components Application Industries This ceramic piston and plunger is commonly used in ceramic pump components, high-pressure pumps, metering pumps, chemical pumps, industrial cleaning pumps, water treatment systems, fluid control equipment and precision machinery. Delivery Time Sample production usually takes 15–25 working days after drawings, material and tolerance requirements are confirmed. Bulk order lead time is usually 25–40 working days, depending on quantity, material selection, machining difficulty and inspection requirements.
Product Name:Alumina Ceramic Metering Pump Core Components Product Material:High-Purity Alumina Ceramic (Al₂O₃ ≥99.6%). For pump liners and valve seats, monolithic alumina structures are used; for reciprocating plungers/piston rods or diaphragms承受高冲击, Zirconia Toughened Alumina (ZTA) can be employed to enhance toughness. Material Characteristics:Extremely high hardness (Mohs hardness 9) and superior wear resistance, Excellent chemical corrosion resistance (resists strong acids, alkalis, organic solvents, and salts), Superior electrical insulation and dielectric strength, Good biocompatibility and low adsorption, High rigidity and low coefficient of thermal expansion for excellent dimensional stability, Surfaces can achieve ultra-low roughness (Ra < 0.05 µm) to reduce flow resistance and wear, Material is pure and non-contaminating, does not leach metal ions. Application Fields:Ceramic plungers/pistons, pump cylinders/sleeves, check valve balls and seats, diaphragms for high-precision, low-pulsation metering pumps; Quantitative transfer of slurries and high-purity chemicals in semiconductor wet processes (e.g., CMP); Precise addition and filling of culture media, buffer solutions, and protein solutions in biopharmaceuticals; Precise metering of corrosive chemicals and additives in the petrochemical industry; Dosing of flocculants and pH adjusters in environmental water treatment. Application Industries:Fluid Control, Biomedical (Pharmaceuticals, In-vitro Diagnostics), Semiconductor Manufacturing, Petrochemical, New Energy (Electrolyte preparation), Advanced Mechanical Equipment (Precision Spraying, Dispensing). Processing Difficulties:Manufacturing ceramic plungers with ultra-high length-to-diameter ratios, straightness, and roundness (straightness can reach
Place of Origin: Guangdong, China Materials:Made from high-performance zirconia ceramic, mainly Y-TZP zirconia, offering high toughness, wear resistance, corrosion resistance, and a smooth sealing surface for demanding fluid control applications. Key Features:This zirconia ceramic diverter valve core and seat are designed for precise sealing, low friction, long service life, and stable performance in high-purity, corrosive, or abrasive media. As part of our ceramic valve components range, it can be customized based on drawings, samples, flow channels, and sealing requirements. Applications:Suitable for semiconductor wet process equipment, biopharmaceutical systems, food and beverage fluid control, petrochemical valves, analytical instruments, and precision mechanical fluid control systems. Lead Time:Lead time is evaluated based on drawing complexity, material grade, machining difficulty, sealing tolerance, surface finish, and order quantity. CERAMPRO supports precision ceramic machining for custom valve cores and seats.
Material Introduction Made from high-purity alumina ceramic, this ceramic shaft plug and sleeve set is designed for wear-resistant and corrosion-resistant pump, valve and fluid control applications. Custom ID, OD, length, clearance fit and surface finish can be manufactured based on customer drawings. Functional Features High hardness for long-term wear resistance Good corrosion resistance in fluid and chemical environments Precision-ground ID and OD for stable assembly fit Smooth surface finish to help reduce friction and leakage risk Suitable for ceramic shaft sleeves, plug sleeves and matched ceramic assemblies Custom dimensions, tolerances and polishing options available Application Industries This alumina ceramic shaft plug and sleeve set is commonly used in ceramic pump components, valve assemblies, metering pumps, chemical pumps, fluid control systems, rotating shaft protection, automation equipment and precision machinery. It is suitable for working conditions where metal sleeves may face wear, corrosion, sticking or dimensional instability during long-term operation. Delivery Time Sample production usually takes 15–25 working days after drawings, material and tolerance requirements are confirmed. Bulk order lead time is usually 25–40 working days, depending on quantity, machining difficulty, polishing requirements and inspection standards.
Product Name:Alumina Ceramic Metering Pump Precision Fluid Control Unit Product Material:High-Purity Alumina Ceramic (Al₂O₃ 99.5%-99.8%). For key friction pairs or impact-prone components such as valve seats and cores, Zirconia Toughened Alumina (ZTA) composite reinforcement can be employed. Material Characteristics:Ultra-high hardness (Mohs hardness 9) and exceptional wear resistance, Excellent chemical corrosion resistance (resistant to strong acids, alkalis, organic solvents, and oxidizing/reducing atmospheres), Extremely high rigidity and dimensional stability, Good electrical insulation and dielectric strength, Very low tendency for media adsorption and contamination, Surfaces capable of achieving nano-level smoothness (Ra < 0.05 µm), High material purity with no metal ion leaching. Application Fields:Complete fluid control modules for high-precision metering pumps, including integrated ceramic pump heads, multi-function valve blocks, precision manifold plates, as well as core individual components like plunger/cylinder assemblies, check valves, and relief valves. Application Industries:Fluid Control (Precision chemical processing, water treatment, food & beverage), Petrochemical (Catalyst addition, corrosive media transfer), Biomedical (Pharmaceuticals, in-vitro diagnostic reagent handling), New Energy (Precision metering of lithium battery electrolytes), Semiconductor Manufacturing (Ultra-pure chemical distribution). Processing Difficulties:Achieving defect-free integral molding and sintering of integrated pump heads or valve blocks with multi-chamber and multi-flow channel designs; Ensuring high-dimensional accuracy and superior surface quality of complex internal interconnected flow channels; Controlling geometric tolerances and fit clearances among multiple precision mating surfaces (e.g., plunger and cylinder, valve core and seat); Achieving ultra-high flatness and low roughness on large sealing end faces; Ensuring structural integrity of the module under cyclic high pressure. Processing Flow:Application analysis and modular design → High-purity powder batching and homogenization → Precision isostatic pressing or injection molding (for complex modules) → High-temperature sintering in a controlled atmosphere → Precision grinding of datum surfaces → Multi-axis precision CNC machining center for flow channel and cavity processing → Ultra-precision jig grinding of key bore systems and mating surfaces → Surface finishing via ultrasonic and CMP processes → Helium mass spectrometer leak testing and flow/pressure performance testing → Cleanliness inspection and cleanroom packaging Delivery Period:Standard individual functional components: 40-65 daysCustomized integrated fluid control modules: 80-140 days
Material Introduction This high-purity alumina ceramic plunger is made from 95%–99.7% Al₂O₃ ceramic and is mainly used in metering pumps, dosing systems and precision fluid control equipment. It offers good wear resistance, chemical stability and a smooth working surface for long-term pump operation. View more related products in our Ceramic Pump Components category. Functional Features High hardness and good wear resistance Stable performance in chemical and water-based media Polished surface for sealing and sliding contact Custom OD, length, hole position and end structure available For higher-pressure applications, please see our High-Pressure Pump Ceramic Piston / Plunger. Application Industries Chemical metering pumps Water treatment dosing systems Filling and dispensing equipment Pharmaceutical liquid dosing equipment Laboratory fluid control systems Delivery Time Standard samples usually take 20–35 days after drawing confirmation. Customized sizes, polished surfaces or special structures usually take 35–50 days. You can send us your drawing for a quick review and quotation.
Product Name:Zirconia Ceramic Filling Pump Fluid Control Structural Components Product Material:Yttria-Stabilized Tetragonal Zirconia Ceramic (Y-TZP). For areas requiring extreme wear/corrosion resistance or higher thermal conductivity, Zirconia-Silicon Carbide (ZrO₂-SiC) or Zirconia-Aluminum Nitride (ZrO₂-AlN) composite ceramics can be utilized. Material Characteristics:Exceptional fracture toughness (impact resistant, K₁c: 8-12 MPa·m¹ᐟ²), Ultra-high hardness (HV >1200) and extremely low wear rate, Superior chemical corrosion resistance (tolerant to strong acids, alkalis, organic solvents, and Li-ion battery electrolytes), Extremely low metal ion leaching and zero magnetic properties, Good biocompatibility and food safety, Moderate coefficient of thermal expansion (~10×10⁻⁶/K) compatible with various metals, Capable of achieving nano-level ultra-smooth surfaces (Ra < 0.02 µm) to reduce flow resistance and adhesion, High mechanical and flexural strength (>1000 MPa). Application Fields:Pump bodies, chambers, pistons/plungers, valve seats, valve cores, diaphragms, and fluid manifold plates for high-precision filling pumps; Quantitative filling and transfer of lithium battery electrolytes and electrode slurries; Sterile filling of high-value pharmaceuticals and protein preparations in biopharmaceuticals; Precise dispensing of high-purity chemicals in the semiconductor industry; Micro-dosing filling of high-end cosmetics and fragrances. Application Industries:New Energy (Lithium battery manufacturing equipment), Biomedical (Pharmaceuticals, high-end medical devices), Fluid Control (Precision metering and filling), Semiconductor Manufacturing, Advanced Mechanical Equipment. Processing Difficulties:Machining pump bodies and manifolds with complex 3D internal flow channels, high aspect ratio holes, and irregular curved surfaces; Ensuring ultra-high straightness and roundness of pistons/plungers and achieving micron-level dynamic clearance with pump chambers; Achieving nano-level flatness and super-mirror finish on large-area sealing planes (e.g., valve seats); Controlling deformation and stress concentration in thin-walled, multi-cavity structures during sintering and machining; Guaranteeing all flow channels and contact surfaces are free from machining defects to prevent media retention or contamination. Processing Flow:Formulation of high-purity nano-zirconia powder and slurry homogenization → Precision Ceramic Injection Molding (CIM) of complex structural green bodies → Catalytic debinding and staged presintering → High-temperature atmosphere-controlled sintering (HIP optional) for densification → Rough machining and datum establishment using high-rigidity CNC machines → Ultra-precision slow wire cutting/grinding of core flow channels and mating surfaces → Ultrasonic-assisted precision drilling and polishing → Multi-step Chemical Mechanical Polishing (CMP) to achieve ultra-smooth functional surfaces → Full dimensional inspection via Coordinate Measuring Machine (CMM) → Surface cleanliness and ion leaching analysis → Performance simulation testing (flow, pressure) → Vacuum packaging in a class 1000 cleanroom Delivery Period:Standard piston/valve seat components: 55-85 daysComplex integrated pump bodies, manifolds, or multi-component成套 solutions: 90-150 days
Product Name:Custom Machining Service for Alumina Ceramic Metering Pump Critical Components Product Material:High-Purity Alumina Ceramic (Al₂O₃ 96%-99.9%). Depending on the specific stress, impact, and wear resistance requirements of the components, customized solutions using composite materials like Zirconia Toughened Alumina (ZTA) or full-component customization with materials such as high-purity Yttria-Stabilized Zirconia (Y-TZP) are available. Material Characteristics:Exceptional wear resistance and high hardness (Mohs hardness 9), Excellent chemical corrosion resistance (resistant to strong acids, alkalis, solvents, and salts), High rigidity and outstanding dimensional stability, Good electrical insulation and dielectric strength, Extremely low risk of media adsorption and contamination, Surfaces can achieve various finish levels from matte to mirror (Ra < 0.05 µm), High biocompatibility and material purity. Application Fields:Custom machining of metering pump core moving parts (ceramic plungers/pistons, piston rods), precision mating parts (pump cylinders/sleeves, valve balls, valve seats), static structural components (pump bodies, end covers, diaphragms), and special fluid channel components. Application Industries:Fluid Control (Precision chemical processing, water treatment), Biomedical (Pharmaceuticals, in-vitro diagnostic equipment), New Energy (Lithium battery electrolyte preparation and transfer), Petrochemical (Precise dosing of catalysts and additives), Semiconductor Manufacturing (High-purity chemical distribution), Advanced Mechanical Equipment (Precision dispensing, spraying). Processing Difficulties:Reverse engineering and personalized design based on customer's fluid properties, pressure profiles, and life expectancy requirements; Machining plungers/pistons with special length-to-diameter ratios, complex stepped or irregular profiles; Processing high-precision deep holes (pump cylinders) and controlling micron-level dynamic fit tolerances with moving parts; Ensuring cumulative accuracy in multi-component assembly to guarantee overall pump performance; Meeting requirements for special surface treatments (e.g., specific roughness, hydrophilic/hydrophobic coatings). Processing Flow:Customer requirement analysis and technical liaison → Collaborative design (including fluid simulation and stress analysis) → Material selection and powder preparation → Near-net-shape forming (dry pressing, isostatic pressing, injection molding) → Customized sintering process development and implementation → Precision CNC rough machining → Ultra-precision grinding/lapping to design dimensions → Paired machining and selection using dedicated tooling → Customized surface treatment and post-processing → Full dimensional inspection and performance testing (flow, pressure, life simulation) → Cleaning, packaging, and document delivery (including inspection reports, installation guidelines) Delivery Period:Simple custom parts based on existing drawings: 35-60 daysComplex custom projects requiring co-design, mold development, or process validation: 70-120 days (Specific timeline to be determined per technical agreement)
Materials Available in alumina ceramic (Al₂O₃), silicon carbide ceramic (SiC), boron carbide ceramic (B₄C), and zirconia ceramic (ZrO₂), depending on wear resistance, service life, impact resistance and cost requirements. High wear resistance for abrasive blasting and surface treatment Longer service life compared with standard metal nozzlesStable inner bore geometry under high-speed abrasive flowGood corrosion resistance in harsh industrial environmentsReduced downtime and maintenance costs Applications Used in abrasive blasting equipment, sandblasting machines, shot blasting equipment, surface treatment systems, rust removal, coating preparation, industrial cleaning equipment, and powder spraying systems.Our ceramic sandblast nozzles provide superior wear resistance and stable bore geometry for abrasive blasting equipment. As a trusted zirconium oxide ceramic manufacturer, we offer customizable industrial ceramic solutions designed to enhance operational efficiency and reduce maintenance.
Place of Origin: Guangdong, China Material Introduction: Ceramic grinding plates are precision ceramic contact plates made from high-alumina ceramic, zirconia, or other advanced ceramic materials. They are designed for grinding, milling, and powder processing equipment where a hard, stable, and non-metallic working surface is required. Key Features: Stable grinding surface, high hardness, low metal contamination risk, good chemical stability, smooth contact finish, reliable dimensional stability, and custom support for holes, grooves, slots, thickness, flatness, and special shapes based on drawings. Application Industries: Powder processing equipment, laboratory grinding systems, milling machines, pulverizers, ceramic powder production, battery material processing, chemical powder handling, mineral sample preparation, and precision mechanical equipment. Lead Time: Lead time depends on material grade, plate size, thickness, flatness requirement, surface finish, hole or groove design, drawing complexity, and order quantity. For custom ceramic grinding plate requirements, please send us your drawing or application details.
Available in alumina (Al₂O₃), zirconia (ZrO₂), and silicon carbide (SiC). We help select the right material based on your working conditions. Key Features Excellent wear resistance for longer service life Strong corrosion and chemical resistance High temperature stability More reliable than metal nozzles in harsh environments Consistent and precise spraying performance Applications Used in semiconductor industry, spray systems, sandblasting, industrial cleaning, and fluid control in chemical and automation equipment. Lead Time Samples: 7–10 days Mass production: 15–25 days (depending on design complexity and quant Our company offers precision-engineered industrial ceramic components focusing on high wear resistance and durability. As a dedicated zirconium oxide ceramic manufacturer, we deliver tailored custom zirconium oxide ceramic solutions for demanding industrial environments.
Place of Origin:  Guangdong, China Material Introduction: Made from boron nitride ceramic, this nozzle is designed for high-temperature flow control applications where low adhesion, thermal stability, and clean material contact are required. BN ceramic is especially suitable for molten metal contact and precision thermal processing environments. Functional Features: Non-wetting surface, excellent thermal shock resistance, smooth inner bore, low contamination risk, easy release from molten materials, and customizable bore size, outlet shape, and mounting structure. Application Industries: Used in non-ferrous metal casting, molten aluminum handling, metal powder processing, high-temperature spraying systems, thermal processing equipment, laboratory furnaces, and custom ceramic nozzle assemblies. Lead Time: Lead time depends on drawing requirements, quantity, bore accuracy, surface finish, and machining complexity. Please contact us with your drawing or sample details for confirmation.
Place of Origin:Dongguan, Guangdong, China Material Introduction:Custom ceramic guide tubes are manufactured from alumina ceramic, zirconia ceramic, silicon nitride or silicon carbide according to the required guiding accuracy, electrical insulation, friction control and working temperature. Alumina is commonly selected for stable insulation and industrial guiding, while zirconia and silicon nitride are suitable for applications requiring higher toughness, smoother contact surfaces or improved mechanical strength. Key Features:Designed for precision guiding, electrical insulation and smooth passage of wires, fibers, probes, small rods or moving parts. The inner bore can be polished, chamfered or customized to reduce friction, prevent scratching and maintain stable positioning during continuous equipment operation. Application Industries:Used in wire and cable equipment, textile and fiber machinery, winding machines, automation systems, sensor positioning, electrical insulation passages, precision mechanical equipment and high-wear guiding structures. Lead Time:Sample and bulk production are arranged based on drawing complexity, material selection, dimensional tolerance and order quantity. Custom sizes, bore shapes, chamfers and surface finishes can be produced according to customer drawings. For drawing-based ceramic guide tube projects, please contact us for material selection and quotation support.
Product Name: Precision Zirconia ($ZrO_2$) Hollow Sleeve / Bushing Product Material: Yttria-Stabilized Tetragonal Zirconia (Y-TZP), Magnesia-Stabilized Zirconia (Mg-PSZ). Material Characteristics: Superior fracture toughness (prevents chipping), Extreme hardness and wear resistance, Thermal expansion matching stainless steel, Low thermal conductivity, Outstanding chemical resistance (acid/alkali), Non-magnetic and non-conductive, Mirror-finish polishing capability. Application Fields: Fiber optic alignment sleeves, Precision plunger pump liners, High-speed motor shaft sleeves, Liquid dispensing valves, Homogenizer chamber inserts, Thermal insulating spacers, High-pressure fluid seals. Application Industries: Biomedical (Surgical and dental tools), Advanced Machinery (Heavy-duty precision components), New Energy (Lithium battery slurry processing), Fluid Control (High-pressure metering), Electronic Engineering (Non-magnetic locating pins), Aerospace (High-strength fasteners), Petrochemical (Downhole sensors), Broad Semiconductor (Wafer handling). Processing Difficulties: Achieving micron-level concentricity between the inner diameter (ID) and outer diameter (OD), Maintaining ultra-tight wall thickness tolerances, Achieving a mirror-polished ID ($Ra < 0.05\mu m$) to reduce internal friction, Controlling phase stability during high-precision diamond grinding. Processing Flow: Nano-powder preparation → Isostatic Pressing (CIP) or Ceramic Injection Molding (CIM) → High-temperature sintering → Diamond internal/external cylindrical grinding → Precision honing of the hollow core → Mirror polishing → 100% dimensional and crack inspection → Secure packaging. Delivery Period: Standard specifications: 15-25 days, Customized ultra-thin or high-precision sleeves: 30-50 days.The Precision Zirconia Hollow Sleeve / Bushing offers advanced durability and dimensional accuracy, engineered by leading zirconia ceramic manufacturers. Ideal for demanding industrial applications requiring high wear resistance and precise fits in industrial ceramic materials.
Place of Origin:  Guangdong, ChinaMaterial Introduction: Made from high-hardness boron carbide ceramic material, this nozzle is designed for abrasive blasting, sandblasting, shot peening, and other high-wear working environments. B4C ceramic offers excellent wear resistance and helps extend nozzle service life under continuous abrasive flow.Functional Features: High wear resistance, stable bore structure, long service life, good erosion resistance, lightweight ceramic body, and customizable inner diameter, length, outlet shape, and mounting design.Application Industries: Used in sandblasting equipment, abrasive blasting systems, surface treatment, metal cleaning, shot peening, mold cleaning, shipbuilding, machinery maintenance, and custom ceramic nozzle Lead Time: Lead time depends on nozzle size, bore design, quantity, machining requirements, and customization complexity. Please contact us with drawings, samples, or application details for confirmation.
Place of Origin:Guangdong, China Material Introduction:Made from high-hardness alumina ceramic, this wear plate offers strong abrasion resistance, good chemical stability and reliable performance in harsh wear environments. Key Features:High hardness, excellent wear resistance, corrosion resistance, heat resistance, long service life and low maintenance. Size, thickness, holes and shapes can be customized according to drawings or working conditions. Application Industries:Suitable for mining, cement, steel, power generation, chemical processing, bulk material handling, conveyor systems, hoppers, chutes, pipelines and equipment wear protection. Lead Time:Lead time depends on material grade, size, quantity and machining requirements. Custom samples and batch production are available. Contact us for a quotation. Send us your drawing, size, quantity or working conditions for a custom quotation.
Place of Origin: Guangdong, China Material Introduction:Made from high-strength silicon nitride ceramic materials (Si3N4), this ceramic locating pin provides excellent mechanical strength, electrical insulation, thermal shock resistance, and wear resistance. It is designed for welding fixtures, resistance welding systems, and automated positioning applications where metal pins may cause shorting, wear, or weld spatter adhesion. Key Features:High mechanical strength and fracture toughnessExcellent electrical insulation for welding fixturesGood thermal shock resistance in high-temperature working conditionsLow weld spatter adhesion compared with metal locating pinsHigh wear resistance for repeated positioning and assemblyCustomizable size, shape, hole structure, and tolerance as part of our precision ceramic components manufacturing capability Applications:Projection welding fixturesResistance welding systemsAutomotive body-in-white welding linesNut and bolt welding positioningRobotic welding cellsAutomated assembly and positioning equipmentEV battery pack welding fixturesHigh-temperature insulated locating and guiding applications for automation ceramic components Lead Time:Lead time depends on part structure, tolerance requirements, material grade, quantity, and inspection standards. For custom silicon nitride ceramic locating pins, please send drawings, samples, or application details for evaluation before quotation.
Place of Origin:  Guangdong, China Material Introduction: Made from high alumina ceramic with strong wear resistance and stable performance in abrasive working conditions. For more material options, please visit our Alumina Ceramics page. Key Features: Compact tile design, easy layout on curved or irregular surfaces, high hardness, good abrasion resistance, corrosion resistance, and flexible customization by size, thickness, and shape. Applications: Suitable for local wear protection in chutes, hoppers, elbows, pipes, transfer points, conveyors, cyclones, and bulk material handling equipment. Lead Time: Lead time depends on tile size, quantity, thickness, layout design, and drawing requirements. For custom projects, please contact us with drawings or application details.
Place of Origin: Guangdong, China Material:Made from high-toughness zirconia ceramics, this ceramic insulating nozzle offers excellent wear resistance, electrical insulation, and chemical stability for precision fluid, spraying, and equipment applications. Key Features:High hardness, good fracture toughness, stable insulation performance, corrosion resistance, smooth bore finish, and strong dimensional stability after precision ceramic machining. Application Industries:Suitable for ceramic nozzle applications in semiconductor equipment, new energy systems, precision spraying, chemical fluid control, laboratory instruments, and automated dispensing equipment. It can also be used in selected semiconductor ceramic parts where insulation and wear resistance are required. Lead Time:Lead time depends on drawing complexity, hole diameter, tolerance requirements, surface finish, material grade, and order quantity. Prototype and batch production support are available.
Place of Origin: Guangdong, ChinaMaterials: Made from alumina ceramic, zirconia, silicon nitride, aluminum nitride, or silicon carbide, depending on the required micro-hole size, wall thickness, insulation, wear resistance, and working environment.Key Features: Designed for fine-hole structures with stable hole position, controlled edge quality, smooth flow path, high dimensional stability, and reliable performance in small-size precision ceramic parts.Applications: Suitable for dispensing nozzles, microfluidic parts, semiconductor handling components, laser equipment, medical instruments, vacuum pick-up parts, and other precision ceramic components.Lead Time: Depends on material grade, hole diameter, hole depth, tolerance requirements, processing difficulty, and order quantity. Contact us for custom evaluation.
Place of Origin:Guangdong, China Material Introduction:This component can be manufactured with advanced ceramic materials such as Aluminum Nitride Ceramic, Boron Nitride Ceramic, and BeO-based ceramic materials, depending on the working environment. These materials are commonly selected for applications that require heat dissipation, electrical insulation, vacuum stability, and reliable performance in high-voltage electrode assemblies. Functional Features:Designed for focusing electrode assemblies and other high-performance electrical systems, the ceramic component offers good thermal conductivity, stable insulation performance, high dielectric strength, low outgassing, and resistance to thermal shock. Precision machining, polishing, metallization, and ceramic-to-metal joining can be customized according to drawings or assembly requirements. Application Industries:Suitable for semiconductor equipment, electron beam systems, ion beam equipment, vacuum electronic devices, scientific instruments, analytical equipment, aerospace electronics, medical imaging systems, X-ray tubes, traveling-wave tubes, and other high-voltage vacuum applications. Delivery Time:Lead time will be confirmed after reviewing the drawings, material requirements, tolerance standards, quantity, and inspection needs. For custom projects, please contact us with your drawings or technical specifications for evaluation.
Product Name: High Thermal Conductivity Ceramic Plates Product Material: Aluminum Nitride (AlN)/Silicon Carbide (SiC)) Material Characteristics: High thermal conductivity, excellent electrical insulation, thermal shock resistance, high temperature stability, low thermal expansion Application Fields: Power electronics cooling, LED heat dissipation, semiconductor packaging, laser equipment, microwave devices Application Industries: Power electronics, semiconductor, telecommunications, automotive electronics, aerospace Processing Challenges: Large-size thin plate flatness control, metallization bonding strength, thermal stress management, surface quality maintenance Processing Flow: Powder preparation → Forming → High-temperature sintering → Precision grinding → Metallization → Inspection → Packaging Delivery Time: 25-35 days, 40-50 days for customized requirements
Place of Origin: Guangdong, China Material Introduction:This product is made from high-purity porous silicon carbide ceramic, designed for stable vacuum adsorption and wafer handling applications. The controlled porous structure helps provide uniform suction, while the SiC material offers good thermal stability, chemical resistance, and long service life in demanding equipment. Functional Features:The porous SiC ceramic sucker provides controlled porosity, good air permeability, high temperature resistance, chemical stability, and reliable mechanical strength. It is suitable for precision vacuum holding, wafer transfer, and clean process environments where flatness, adsorption stability, and surface quality are important. Application Industries:This component is mainly used in semiconductor ceramic parts, wafer handling systems, vacuum adsorption equipment, LED production, solar cell manufacturing, microelectronics assembly, and other precision ceramic components applications. Delivery Time:Typical lead time depends on product size, pore structure, surface finish, tolerance requirements, and order quantity. Custom porous SiC ceramic parts can be evaluated according to drawings, samples, or application requirements before production.
Place of Origin: Guangdong, China Material Introduction:This product is made from high-purity silicon carbide ceramic, designed for wafer adsorption, vacuum holding, and precision positioning in semiconductor handling equipment. Compared with general ceramic suction parts, this SiC vacuum chuck focuses more on surface flatness, dimensional stability, vacuum sealing performance, and clean process compatibility. Functional Features:The silicon carbide ceramic vacuum chuck provides stable wafer holding, good surface flatness, reliable dimensional accuracy, and strong resistance to heat, wear, and chemical corrosion. It is suitable for repeated wafer transfer and positioning processes where low contamination, stable adsorption, and accurate alignment are important. Application Industries:Mainly used in semiconductor ceramic parts, wafer transfer systems, vacuum chuck platforms, cleanroom automation equipment, LED manufacturing, solar cell production, microelectronics assembly, and other precision wafer handling applications. Delivery Time:Typical lead time depends on wafer size, chuck structure, flatness requirement, surface finish, vacuum groove or hole design, assembly method, and order quantity. Custom ceramic vacuum chucks can be evaluated according to drawings, samples, or equipment requirements before production.
Product Name: Silicon Carbide Ceramic Wafer Support Tray Product Material: High-Purity Silicon Carbide Ceramic (SiC ≥99.9%) Material Characteristics:High thermal conductivity, Excellent thermal shock resistance, Outstanding chemical inertness, High mechanical strength, Low thermal expansion, Superior wear resistance Application Fields:Semiconductor wafer processing, High-temperature thermal processing, Chemical vapor deposition systems, Diffusion furnace applications Application Industries:Semiconductor manufacturing, LED production, Solar cell manufacturing, Power device packaging Processing Difficulties:Large-area thin-wall structure fabrication, Warpage control during high-temperature sintering, Precise flatness maintenance, Surface contamination prevention, Micro-crack avoidance in brittle material, Dimensional stability assurance Processing Flow:Powder preparation → Slurry process → Tape casting → Lamination → Sintering → CNC machining → Surface polishing → Quality inspection → Ultrasonic cleaning → Packaging Delivery Period:35-45 daysThe Silicon Carbide Ceramic Wafer Support Tray is engineered for high-temperature semiconductor processes, offering superior thermal stability and chemical inertness. Trusted by silicon carbide ceramic manufacturers for reliable, precision industrial ceramic solutions.
Product Name: 0.5mm Small Hole High-Precision Alumina Ceramic Part  Product material: High-purity alumina ceramic (Al₂O₃ 99.6%)  Material properties:  With excellent dielectric strength (>18 kV/mm)  High hardness (HV ≥ 1600)  High-temperature resistant (long-term usage temperature ≥ 1500℃)  Low thermal expansion coefficient (7.2×10⁻⁶/℃)  Resistant to chemical corrosion and with good biocompatibility  Application fields: Semiconductor manufacturing equipment Application industries: Wafer transportation systems, Chip testing platforms, Precision optical equipment  Processing difficulties: Ultra-fine pore size (0.5mm) deep hole processing, with a depth-to-diameter ratio of 10:1  Processing procedure: Powder treatment → Spray granulation → Isostatic pressing → High-temperature sintering → CNC precision machining → Diameter inspection → Ultrasonic cleaning → Vacuum packaging  Delivery period: 30 - 35 days (depending on complexity)
Place of Origin: Guangdong, China Material Introduction: This product is made from high-purity alumina ceramic (Al₂O₃ ≥99.5%), suitable for large-diameter ceramic ring components used in semiconductor equipment, vacuum systems, and precision industrial applications. The material provides excellent electrical insulation, chemical stability, wear resistance, and dimensional stability. Functional Features: High hardness, excellent wear resistance, strong electrical insulation, good chemical corrosion resistance, low porosity, and stable performance under high-temperature or vacuum environments. Large ceramic rings can be precision-machined according to customer drawings, including flatness, concentricity, surface finish, and dimensional tolerance requirements. Application Industries: Semiconductor manufacturing, wafer processing equipment, vacuum chamber systems, plasma processing equipment, high-temperature furnace equipment, precision machinery, aerospace, and advanced industrial equipment. Delivery Time: Delivery time will be evaluated based on part size, material grade, machining difficulty, tolerance requirements, surface finish requirements, and order quantity.
Place of Origin: Guangdong, China Material:High-purity alumina ceramic, with 99.5%, 99.7% and 99.9% Al₂O₃ grades available depending on application requirements. The material can be selected according to electrical insulation, vacuum compatibility, thermal stability, plasma resistance and mechanical strength requirements. Key Features:Excellent electrical insulation, high temperature resistance, chemical resistance, plasma resistance, low particle generation, good dimensional stability and precision-machined surface finish. These features make the parts suitable for ion beam environments, vacuum systems and precision equipment applications. Application Industries:Used in ion implantation equipment, vacuum systems, plasma processing equipment, advanced material modification systems, research instruments and precision vacuum assemblies. It can also be applied to related vacuum ceramic components and selected semiconductor ceramic parts where high insulation and material stability are required. Lead Time:Based on drawings, material grade, quantity, tolerance, surface finish and inspection requirements. Custom production is available for prototypes, small batches and precision ceramic parts used in ion implantation and vacuum equipment.
Material Introduction Made from 99% high-purity alumina ceramic, this multi-bore thermocouple insulator tube is used for high-temperature wire separation and insulation. Functional Features High-purity alumina: stable insulation in demanding furnace environments. Multi-bore design: twin-bore, four-bore and custom multi-hole structures available. Good thermal stability: suitable for long-term high-temperature measurement. Custom size: OD, hole size and length can be adjusted by ceramic machining. Application Industries Type S / R / B thermocouple assemblies High-temperature industrial furnaces Vacuum heating systems Laboratory heating equipment Semiconductor thermal processing furnaces High-temperature electronic ceramic components Delivery Time Standard parts: 7–15 days Custom samples: 15–25 days Batch production: 20–35 days after drawing confirmation Need custom multi-bore alumina thermocouple tubes? Please send drawings through our contact page.The 99% High-Purity Multi-Bore Alumina Thermocouple Insulator Tube delivers stable electrical insulation and thermal resistance for precision sensor assemblies, designed using advanced industrial ceramic materials and customizable specifications.
Product Name: Industrial Alumina (Al_2O_3) Ceramic RodProduct Material: 95% - 99.8% High-Purity Alumina ($Al_2O_3$), optional Ceramic-to-Metal transition components.Material Characteristics: Extreme hardness (Mohs 9), High temperature resistance (up to 1750°C), Exceptional wear and corrosion resistance, Superior electrical insulation at all temperatures, High compressive strength, Excellent chemical stability, Low thermal expansion.Application Fields: Electrical insulation pins, Ceramic standoffs and supports, High-temperature furnace components, Pump plungers and pistons, Laboratory stirring rods, Laser gain medium supports, Precision wear-resistant pins.Application Industries: Biomedical (Surgical tools), Advanced Machinery (Heavy-duty wear parts), New Energy (Lithium battery equipment), Fluid Control (Micro-metering pumps), Electronic Engineering (Insulating hardware), Aerospace (Sensor housings), Petrochemical (Corrosive fluid injection), Broad Semiconductor (Wafer handling components).Processing Difficulties: Achieving micron-level dimensional and geometric tolerances (circularity, straightness), Minimizing surface micro-cracks during high-speed grinding, Controlling sintering shrinkage to ensure uniform density, Maintaining consistent surface finish across large batches.Processing Flow: Raw material preparation → Cold Isostatic Pressing (CIP) or Extrusion → Pre-sintering machining (Green machining) → High-temperature sintering (1600°C - 1800°C) → Precision diamond cylindrical grinding → Step-by-step mirror polishing (if required) → Dimensional and roughness inspection → Secure packaging.Delivery Period: Standard rod sizes: 7-15 days, Customized high-precision or extra-long rods: 25-40 days.
Product Name: High-Precision Zirconia (ZrO_2) Ceramic Rod Product Material: Yttria-Stabilized Tetragonal Zirconia Polycrystal (Y-TZP), Magnesia-Stabilized Zirconia (Mg-PSZ), or Ceria-Stabilized Zirconia (Ce-TZP). Material Characteristics: Highest fracture toughness among structural ceramics, Excellent wear and abrasion resistance, High bending strength, Near-metal thermal expansion coefficient, Superior chemical corrosion resistance, Low thermal conductivity, Non-magnetic and non-conductive. Application Fields: Precision plunger and piston rods, Ceramic pin gauges, Fiber optic ferrules, Biomedical implants, High-speed motor shafts, Valve components, High-pressure fluid control pins, Homogenizer valves. Application Industries: Biomedical (Dental and surgical instruments), Advanced Machinery (Heavy-duty precision components), New Energy (Lithium battery slurry processing), Fluid Control (High-pressure dispensing), Electronic Engineering (Non-conductive locating pins), Aerospace (High-strength fasteners), Petrochemical (Corrosive media handling), Broad Semiconductor (Wafer handling tools). Processing Difficulties: Achieving sub-micron dimensional tolerances (±0.001mm) due to extreme material hardness, Managing surface micro-stress during diamond grinding to prevent phase transformation, Achieving mirror-finish polishing (Ra < 0.02μm), Ensuring high straightness and concentricity for long-aspect-ratio rods. Processing Flow: Nano-grade Zirconia powder preparation → Isostatic pressing or Ceramic Injection Molding (CIM) → High-temperature sintering (1450°C - 1550°C) → Precision diamond cylindrical grinding → Step-by-step mirror polishing → Ultrasonic flaw detection → CMM dimensional inspection → Secure packaging. Delivery Period: Standard rod dimensions: 15-25 days, Customized high-precision or micro-rods: 30-50 days.Our high-precision zirconia ceramic rods provide outstanding toughness and wear resistance for advanced mechanical uses. Offered by leading zirconia ceramic suppliers, ideal for custom zirconia ceramic solutions.
Product Name: High-Purity Hexagonal Boron Nitride (BN) Ceramic Rod Product Material: Hot-Pressed Boron Nitride (HPNB), Boron Nitride Composites (e.g., BN-Alumina, BN-Zirconia for enhanced hardness) Material Characteristics: Excellent thermal shock resistance (survives 1000°C to 25°C rapid cycles), High thermal conductivity, Superior electrical insulation at ultra-high temperatures, Low coefficient of friction (self-lubricating), Non-wetting to most molten metals and glass, Chemically inert, Easily machinable with standard HSS tools Application Fields: High-temperature vacuum furnace insulators, Molten metal sampling and stirring rods, Plasma arc shields, Ion implantation hardware, Glass forming plunger rods, Thermocouple protection cores, PVD/CVD deposition masks, Aerospace heat shield supports Application Industries: Biomedical (Laboratory ceramic tools), Advanced Machinery (Non-ferrous metal casting), New Energy (Crystal growth equipment), Fluid Control (High-temperature gas nozzles), Electronic Engineering (RF/Microwave heat sinks), Aerospace (Plasma thruster components), Petrochemical (High-temp sensors), Broad Semiconductor (MBE and wafer processing) Processing Difficulties: Managing the inherent anisotropy of hot-pressed BN to ensure consistent thermal performance across the rod length, Protecting the finished rods from hygroscopic effects (moisture absorption) in certain grades, Achieving micron-level precision on a naturally soft ceramic without surface tearing, Controlling dust extraction during high-speed dry machining Processing Flow: BN powder synthesis → Vacuum hot-press sintering → Billet quality inspection → CNC precision turning/drilling → High-temperature vacuum bake-out → Dimensional and straightness verification → Moisture-proof vacuum sealing → Packaging Delivery Period: Standard rod dimensions: 10-20 days, Customized complex machined rods: 25-40 days
Product Name: High-Thermal Conductivity Beryllium Oxide (BeO) Tube Product Material: High-Purity Beryllium Oxide (BeO) ceramic, optional metallization (Mo-Mn coating) for brazing Material Characteristics: Exceptional thermal conductivity (280-330 W/m·K at RT), Excellent electrical insulation (Dielectric strength > 15 kV/mm), Low dielectric constant and loss (ideal for RF/Microwave), High melting point (2575°C), Extreme chemical stability, High mechanical strength, High neutron reflection cross-section Application Fields: High-power microwave vacuum tubes, Laser discharge tubes (Ion lasers), Traveling wave tubes (TWT), RF/Microwave wireless base stations, Aerospace heat sinks, High-power transistor packaging, Nuclear reactor components (moderators/reflectors) Application Industries: Biomedical (Medical laser equipment), Advanced Machinery (High-heat dissipation components), New Energy (High-power electronic modules), Fluid Control (Thermal sensors in aggressive media), Electronic Engineering (RF/Microwave communication), Aerospace (Avionics thermal management), Petrochemical (Downhole high-temperature sensors), Broad Semiconductor (Wafer processing heat sinks) Processing Difficulties: Strict environmental and safety protocols required due to BeO powder toxicity, Managing brittleness during high-speed diamond grinding, Achieving high-precision dimensional tolerances on small-diameter thin-wall tubes, Controlling the purity of the metallization layer for vacuum sealing Processing Flow: BeO powder preparation (strict safety containment) → Cold Isostatic Pressing or Dry pressing → High-temperature sintering (controlled atmosphere) → Precision diamond grinding (ID/OD) → Optional surface metallization → Ultrasonic cleaning → Vacuum leak testing → Dimensional inspection → Specialized hazard-label packaging Delivery Period: Standard specifications: 30-45 days, Customized or metallized tubes: 50-70 days
Product Name:Industrial Alumina Ceramic Tube (Corundum Tube) Product Material:95% - 99.8% High-Purity Alumina (Al_2O_3), optional Ceramic-to-Metal transition components Material Characteristics:High temperature resistance (up to 1750°C), Exceptional hardness and wear resistance, Superior electrical insulation at elevated temperatures, Excellent chemical stability against acids and alkalis, High compressive strength, Gas-tight and zero porosity (for 99% + grades) Application Fields:High-temperature vacuum furnace tubes, Thermocouple protection sleeves, Electrical insulation bushings, Corona discharge tubes, Laser tubes, Catalyst supports, Wear-resistant liners for pneumatic conveying, Kiln rollers Application Industries:Biomedical (Laboratory furnace components), Advanced Machinery (Heavy-duty ceramic liners), New Energy (Lithium battery powder calcination), Fluid Control (Corrosive gas delivery), Electronic Engineering (Insulating substrates), Aerospace (Engine sensor protection), Petrochemical (Heat exchanger tubes), Broad Semiconductor (MOCVD/CVD furnace tubes) Processing Difficulties:Controlling the straightness and ovality of long-dimension tubes during high-temperature sintering, Preventing brittle cracking during precision diamond grinding of thin-wall tubes, Achieving uniform wall thickness for high-voltage insulation stability, Managing surface micro-stress for vacuum-tight applications Processing Flow:Raw material preparation → Extrusion, Slip casting, or Isostatic pressing → Drying and green body machining → High-temperature sintering (1600°C - 1800°C) → Diamond precision grinding (OD/ID) → Cutting to length → Ultrasonic cleaning → Air-tightness/insulation testing → Packaging Delivery Period:Standard inventory sizes: 7-15 days, Customized high-precision or extra-large tubes: 25-40 days
Product Name: High-Purity Hexagonal Boron Nitride (BN) Tube Product Material: Hot-Pressed Boron Nitride (HPNB), PBN (Pyrolytic Boron Nitride) for high-purity coatings or thin-wall tubes. Material Characteristics: Excellent thermal shock resistance, Outstanding electrical insulation even at high temperatures, High thermal conductivity (similar to graphite), Excellent lubricity (self-lubricating), Non-wetting to most molten metals and glass, Chemically inert, Easily machinable to precise tolerances. Application Fields: Insulators for high-temperature vacuum furnaces, Molten metal atomization nozzles, Thermocouple protection tubes for aggressive alloys, Glass forming tools, Crucible liners, Plasma arc insulators, Ion implantation components. Application Industries: Biomedical (High-purity laboratory crucibles), Advanced Machinery (Molten metal processing), New Energy (Crystal growth components), Fluid Control (High-temperature gas nozzles), Electronic Engineering (Heat sinks and insulators), Aerospace (Plasma thruster components), Petrochemical (Catalyst carriers), Broad Semiconductor (Wafer processing and MBE systems). Processing Difficulties: Managing the inherent anisotropy of hot-pressed BN during machining, Preventing moisture absorption (hygroscopicity) in certain grades, Achieving ultra-thin wall thickness without brittle fracture, Controlling precision surface finish on a naturally soft ceramic. Processing Flow: BN powder synthesis → Hot-press sintering (vacuum or inert gas) → Billet inspection → Precision CNC machining (turning, drilling, milling) → High-temperature bake-out (to remove moisture/binders) → 100% dimensional inspection → Vacuum sealed packaging. Delivery Period: Standard specifications: 10-20 days, Customized high-purity or complex geometries: 25-40 days.
Product Name: High-Performance Silicon Nitride ($Si_3N_4$) Tube Product Material: Gas-Pressure Sintered Silicon Nitride (GPSN) or Reaction Sintered Silicon Nitride (RSN). Material Characteristics: Superior thermal shock resistance (can withstand rapid heating/cooling), Low thermal expansion, Excellent non-wetting properties with non-ferrous molten metals (Aluminum, Zinc, Magnesium), High mechanical strength at high temperatures, Outstanding corrosion and wear resistance, High fracture toughness. Application Fields: Thermocouple protection tubes, Heater protection tubes, Degassing rotor shafts, Liquid aluminum riser tubes, Molten metal dosing tubes, Industrial furnace radiant tubes, High-temperature gas sensors. Application Industries: Biomedical (High-temperature sterilization), Advanced Machinery (Molten metal handling), New Energy (Lithium battery calcination), Fluid Control (High-temperature acid delivery), Electronic Engineering (Semiconductor furnace components), Aerospace (Turbine engine sensors), Petrochemical (Heat exchangers), Broad Semiconductor (Wafer processing tubes). Processing Difficulties: Controlling wall thickness uniformity for extra-long tubes, Managing high sintering shrinkage during the GPSN process, Achieving high-precision thread cutting or flange machining on extremely hard ceramic, Ensuring straightness and concentricity over extended lengths. Processing Flow: Silicon Nitride powder mixing → Cold Isostatic Pressing (CIP) or Extrusion → Green body machining → Gas Pressure Sintering (1700°C - 1850°C) → Precision diamond grinding (ID/OD) → Dimensional and straightness testing → Dye penetrant inspection for micro-cracks → Packaging. Delivery Period: Standard protection tubes: 20-35 days, Customized complex large-diameter tubes: 45-65 days.
Product Name:Zirconia Insulating High-Temperature Ceramic Bushing Product Material:Zirconia Ceramic (ZrO₂) Material Characteristics:Excellent electrical insulation, high hardness and wear resistance, high temperature stability up to 1000–1600℃, low thermal conductivity with good thermal shock resistance, chemical inertness, smooth surface resistant to mechanical abrasion Application Fields:High-temperature industrial machinery bearings and bushings, precision electronic equipment insulation support, high-temperature pump bushings and guide components, electric motor and transmission insulation support Application Industries:Precision machinery manufacturing, aerospace equipment, power and energy equipment, semiconductor and electronic engineering, chemical and high-temperature industrial equipment Processing Difficulties:High material hardness with challenging machining, strict dimensional control during high-temperature sintering, precision grinding and polishing difficulty, tight tolerances on inner bore and mating surfaces Processing Flow:High-purity zirconia powder preparation, forming (injection molding or pressing), high-temperature sintering, rough machining, precision grinding and polishing, dimensional, roundness, and performance inspection Delivery Period:Standard specifications: 15–25 days, customized specifications: 20–35 daysThe zirconia insulating high-temperature ceramic bushing offers exceptional temperature resistance up to 1600℃, outstanding electrical insulation, and precise dimensional stability. Ideal for advanced industrial ceramic applications, it combines durability with high-performance in critical environments.
Place of Origin:Guangdong, China Material Introduction:Made from pressureless sintered silicon carbide (SiC), this ceramic rod offers high hardness, excellent wear resistance, thermal stability, low thermal expansion, and strong chemical corrosion resistance. It is suitable for precision structural applications where metal or conventional ceramic materials may fail. Learn more about our Silicon Carbide Ceramics. Functional Features:Ultra-high hardness, excellent wear resistance, high mechanical strength, good thermal conductivity, stable dimensions under high temperature, corrosion resistance, and long service life. Custom diameters, lengths, tolerances, surface finishes, and end structures can be produced according to drawings. Application Industries:Used in advanced machinery, semiconductor equipment, electronics, chemical processing, energy systems, industrial automation, precision fixtures, guide rods, shafts, pins, and wear-resistant structural parts. Related product categories include Precision Ceramic Components and Semiconductor Ceramic Parts. Delivery Time:Delivery time depends on product size, tolerance requirements, machining complexity, inspection standards, and order quantity. Please contact us with your drawing or specifications for a detailed lead time evaluation.
Place of Origin: Guangdong, China Material Introduction: High-purity alumina ceramic with 96%, 99%, 99.5% and 99.8% Al₂O₃ options. This alumina ceramic sintering plate can also be customized with ZTA reinforcement for high-wear or impact-prone areas, depending on the working conditions. Functional Features: Excellent wear resistance, high hardness, high-temperature stability, chemical corrosion resistance, electrical insulation, low contamination risk, and good dimensional stability during repeated firing cycles. Custom sizes, thicknesses, holes, slots, grooves, chamfers, flatness control, grinding and polishing are available according to drawings or samples. Application Industries: Widely used in sintering , powder metallurgy, electronic ceramic production, battery material firing, laboratory furnaces, industrial furnace fixtures, kiln furniture, and high-temperature support applications where thermal stability, wear resistance and low contamination are required. Delivery Time: Lead time depends on material grade, plate size, tolerance requirements, machining complexity, surface finish, and order quantity. For custom alumina ceramic sintering plates or setter plates, the delivery time will be confirmed after drawing review and technical evaluation.
Place of Origin: Guangdong, China Material Introduction:This zirconia ceramic plunger rod is made from yttria-stabilized zirconia ceramic (Y-TZP), a tough technical ceramic known for high strength, wear resistance, and chemical stability. Compared with metal plunger rods, zirconia helps reduce surface wear, corrosion, media contamination, and sealing instability in pump systems. Learn more about our Zirconia Ceramics. Functional Features:Designed for reciprocating motion and precision sealing applications. The rod surface can be precision ground and polished to support smooth movement against seals, sleeves, and guide bushings. It offers good fracture toughness, low friction, corrosion resistance, dimensional stability, and no metal ion contamination during contact with clean or corrosive fluids. Application Industries:Suitable for metering pumps, plunger pumps, dosing pumps, chemical pumps, pharmaceutical filling systems, battery electrolyte injection systems, semiconductor wet process equipment, analytical instruments, and medical fluid control devices. Related product categories include Ceramic Pump Components and Precision Ceramic Components. Delivery Time:Delivery time is evaluated based on rod length, diameter, straightness, roundness, surface roughness, sealing area requirements, end structure, inspection standards, and order quantity. Please provide drawings, samples, or working conditions for a project-based lead time review.
Place of Origin:GuangDong, China Material Introduction This alumina ceramic hot air gun heater core is made from high-purity alumina ceramic with metal connection terminals. As a compact ceramic heating component, it is designed for heat guns, hot air guns, plastic welding tools, hot air stations, and other small heating equipment, providing excellent electrical insulation, heat resistance, and stable heating performance Key Features Good heat resistance for hot air gun and heat gun heating applications Stable ceramic insulation performance during continuous operation Compact cylindrical structure for hot air gun heating element replacement Suitable for heat guns, plastic welding tools, hot air stations, and repair equipment Custom ceramic heater core options are available based on drawings, samples, voltage, power, and terminal design Application Industries This ceramic heater core is commonly used in hot air guns, heat guns, plastic welding guns, hot air soldering stations, heat shrink tools, repair equipment, and small industrial hot air heating devices. It is suitable for users looking for a reliable heat gun heating element or hot air gun heating element replacement. Delivery Time For standard or similar hot air gun ceramic heater core structures, samples can usually be arranged after the size, voltage, power, and terminal details are confirmed. For customized ceramic heating elements, delivery time depends on the drawing, quantity, and processing requirements. To confirm a custom project, please send your details through our contact page.
Product Name:Flexible Plastic Pen Holder with Zirconia Ceramic Nib Tip High Hardness Industrial Ceramic Rods Product Material:High-purity Zirconia Ceramic (ZrO₂ 95%-99%) for nib tips, Durable industrial-grade plastic for pen holder body Material Characteristics:Exceptional hardness (Mohs hardness 8-8.5), Excellent wear resistance, High fracture toughness, Chemical corrosion resistance, High thermal stability, Precise dimensional stability, Smooth surface finish for accurate fluid delivery, Long-term durability under repetitive writing or industrial use Application Fields:Precision writing instruments, Industrial marking pens, Laboratory dosing pens, Technical drawing and design pens, Repetitive fluid dispensing applications Application Industries:Electronics manufacturing, Biomedical laboratories, Chemical processing, Automotive component marking, Aerospace manufacturing, Educational and design tools, New energy battery labeling Processing Difficulties:Achieving defect-free sintering of small-diameter zirconia ceramic rods, Maintaining dimensional tolerance within ±0.02 mm for nib tip accuracy, Surface polishing to nano-level smoothness (Ra < 0.05 µm), Ensuring secure bonding between ceramic nib and plastic pen holder, Avoiding micro-cracks during high-temperature sintering Processing Flow:Material selection → Powder homogenization → Precision molding of zirconia rods → High-temperature sintering → Surface grinding and polishing → Dimensional inspection → Bonding to plastic pen holder → Final quality control and packaging Delivery Period:Standard individual pen nibs: 25–40 daysCustomized pen assemblies: 50–80 days
Place of Origin:GuangDong, China Material Introduction This heating disk is made from Aluminum Nitride Ceramic (AlN), a high thermal conductivity ceramic material for precision heating and thermal control applications. It provides efficient heat transfer while maintaining reliable electrical insulation. Learn more about Aluminum Nitride Ceramic. Key Features High thermal conductivity Reliable electrical insulation Good thermal stability Suitable for vacuum and clean heating systems Custom holes, grooves, thickness, and surface finish available Precision machining based on customer drawings Explore our custom ceramic components. Application Industries Semiconductor equipment Vacuum heating systems Electronic packaging Power electronics LED thermal management Precision thermal control modules Lead Time Lead time depends on size, tolerance, machining details, and quantity. Please send drawings and requirements to contact us for a quotation.
Place of Origin:Guangdong, China Material IntroductionThis igniter is made from silicon carbide ceramic, a heat-resistant ceramic material commonly used in ignition and heating applications. It is suitable for systems that require fast heat-up, stable high-temperature performance, and repeated heating cycles. Functional Features Fast heat-up for hot surface ignition applications Good thermal stability during repeated heating and cooling Suitable for furnace, stove, and burner ignition systems Resistance value, voltage, and power can be designed according to the application Available in rod, plate, U-shape, or customized structures Size, shape, terminal connection, and mounting design can be customized based on drawings Application Industries Gas furnace ignition systems Oil furnace ignition systems Pellet stove and biomass stove ignition Industrial burner ignition Radiant tube heaters Industrial kilns and heating equipment Ceramic heating element applications Lead TimeUsually 30–45 days after drawing and order confirmation. For customized voltage, resistance, shape, or terminal design, the lead time will be confirmed based on the final drawing. For custom silicon carbide igniters, please send us your drawing or sample for evaluation.
Place of Origin: Guangdong, China Material Introduction:This MCH alumina ceramic heating core is made with an alumina ceramic substrate and an integrated heating circuit. It is designed for fast heat-up, stable thermal output, and reliable electrical insulation in compact heating applications. For more related products, you can view our ceramic heating core series. Key Features:Fast heating response, compact size, stable temperature performance, good insulation, low power consumption, and flexible customization for size, shape, voltage, resistance, lead wire position, and connection method. Application Industries:Suitable for beauty devices, hair straighteners, curling irons, household appliances, electronic heating modules, medical heating devices, laboratory equipment, and compact temperature control systems. Delivery Time:Sample and bulk order lead time depends on the drawing, size, voltage, resistance, lead wire design, and order quantity. Please contact us for a project-based evaluation.
Place of Origin:Guangdong, ChinaBrand: CERAMPROMaterial Introduction This ring-shaped heating element is made from Aluminum Nitride (AlN) ceramic, a material known for fast heat transfer, good electrical insulation, and stable thermal performance. Its ring-shaped structure is suitable for circular or localized heating around holes, tubes, shafts, and compact thermal assemblies. Functional Features Aluminum Nitride ceramic for fast and stable heat transfer Ring-shaped design for circular or localized heating Good electrical insulation for compact heater assemblies Suitable for heating around holes, tubes, shafts, and fixtures Custom inner diameter, outer diameter, thickness, and electrode layout Available for drawing-based ceramic heating element customization Application Industries Semiconductor equipment Vacuum heating modules Electronic packaging Sensor and testing equipment Precision thermal control systems Laboratory and industrial heating equipment Delivery Time Sample production usually takes 15–25 working days. Batch lead time depends on the final size, quantity, and electrode design. For custom requirements, please contact CERAMPRO with your drawing or application details.
Product Name:Original Internal Heating Ceramic Soldering Core Product Material:High-purity Alumina ($Al_2O_3$) ceramic matrix, Integrated Tungsten (W) co-fired heating circuit, High-temperature resistant Nickel-chromium leads or Nickel terminals Material Characteristics:Superior thermal conductivity for internal heat transfer, Ultra-fast ramp-up speed, Exceptional insulation resistance ($>100 \text{ M}\Omega$), Resistant to high-temperature oxidation and chemical flux erosion, High mechanical strength, Precision-controlled resistance (TCR stability) Application Fields:Original equipment manufacturer (OEM) soldering irons, High-end soldering stations, Lead-free soldering systems, Micro-soldering tools, Automated robotic soldering arms, Precision rework equipment Application Industries:Biomedical (Medical electronics assembly), Advanced Machinery (Precision instrumentation), New Energy (BMS and EV electronics), Fluid Control (Sensors soldering), Electronic Engineering (SMT/PCB assembly), Aerospace (Avionics repair), Petrochemical (Field tool maintenance), Broad Semiconductor (Package testing tools) Processing Difficulties:Achieving perfect concentricity for internal tip fitment, Controlling the micro-shrinkage during $1600^\circ\text{C}$ co-firing to maintain resistance tolerance, Ensuring high-reliability brazing between internal tungsten and external leads, Preventing micro-cracking during rapid $25^\circ\text{C}$ to $400^\circ\text{C}$ thermal cycling Processing Flow:Ceramic slurry preparation → High-precision tape casting → Internal circuit screen printing → Multi-layer micro-lamination → High-temperature vacuum sintering → Precision diamond grinding (Outer diameter) → Terminal brazing → Power-on aging and stability testing → Insulation leakage detection → Final inspection and original packaging Delivery Period:Standard original series: 15-25 days, Customized high-precision series: 30-50 days
Product Name:High-Performance Alumina Ceramic Igniter / Ignition Electrode Assembly Product Material:High-Purity Alumina Ceramic (95% - 99.7% $Al_2O_3$), Heat-resistant alloy electrodes (Kanthal, Ni-Cr, or Iridium/Platinum) Material Characteristics:Superior electrical insulation (Volume resistivity >$10^{14}$ Ω·cm), High dielectric strength (>18 kV/mm), Excellent thermal shock resistance, High mechanical hardness and flexural strength, Outstanding chemical and oxidation resistance at high temperatures, Precision glazing capability for anti-fouling Application Fields:Gas-fired appliances, Industrial burner systems, Internal combustion engine start-up, Plasma ignition modules, Oil-fired furnace systems, High-temperature furnace monitoring, Gas turbines Application Industries:Heating and Energy (boilers, water heaters), Commercial kitchen equipment, Automotive and Transportation (pre-heaters), Industrial Manufacturing (steel, glass, ceramics), Aerospace (APU ignition), Environmental Protection (incinerators, VOC treatment) Processing Difficulties:Managing Coefficient of Thermal Expansion (CTE) mismatch between ceramic and metal, Achieving high-aspect-ratio deep-hole precision, Minimizing surface micro-cracks to ensure dielectric reliability, Preventing high-voltage leakage at the interface, Ensuring long-term bond integrity under extreme vibration Processing Flow:Raw material preparation → Isostatic or dry pressing → High-temperature sintering (1650°C-1750°C) → Precision OD/ID grinding → Surface glazing → Electrode assembly → High-voltage insulation testing → Spark consistency verification → Thermal cycling fatigue test → Final cleaning → Industrial packaging Delivery Period:Standard geometry components: 20-35 days, Customized/OEM high-precision designs: 45-75 days 
Place of Origin:guangdong, China Material Introduction Made from Silicon Nitride (Si3N4) ceramic, this liquid heating element is designed for water, fluid, and immersion-style heating applications. It offers good electrical insulation, stable heating performance, and strong resistance to thermal shock during repeated heating and cooling. Functional Features Designed for water and liquid heating applications Suitable for immersion-style heater structures Fast heating response with stable performance Good electrical insulation Strong thermal shock resistance Custom sizes and structures available based on application needs Application Industries Water heaters Coffee and beverage machines Steam generators Industrial fluid heating systems Laboratory liquid heating equipment Cleaning and disinfection equipment Delivery Time Lead time depends on size, tolerance, machining details, and quantity. Please contact us with your drawings and requirements for a quotation.
Product Name:High-Performance Metal Ceramic Heating Element (MCH / Ceramic Heater) Product Material:92%-96% High-purity Alumina (Al_2O_3) or Silicon Nitride (Si_3N_4) as ceramic substrate; Internal heating circuit made of refractory metals such as Tungsten (W) or Molybdenum-Manganese (Mo-Mn); Lead wires made of Nickel or silver-plated copper. Material Characteristics:High power density with rapid thermal response, Integrated co-firing structure (Heating circuit protected from oxidation), Exceptional insulation resistance ($>10^{12} \Omega$), Acid and alkali corrosion resistance, High mechanical strength, Small footprint with customizable shapes (Rod, Tube, Plate), Environmentally friendly (Lead and cadmium free). Application Fields:Electronic cigarette atomizers, Instant water heaters, Hair straighteners/curlers, Oxygen sensors, Soldering iron heating cores, Mold heating, Precision laboratory instruments, 3D printer nozzles. Application Industries:Biomedical (Blood analyzers), Advanced Machinery (Miniature heaters), New Energy (Battery pre-heating), Fluid Control (Gas temperature stabilization), Electronic Engineering (Soldering tools), Aerospace (Sensor heating), Petrochemical (Viscosity testers), Broad Semiconductor (Component baking). Processing Difficulties:Ensuring resistance consistency during high-temperature co-firing (Shrinkage control), Achieving high-strength brazing between lead wires and internal electrodes, Preventing ceramic micro-cracks under rapid thermal cycling, Managing multi-layer circuit alignment for complex geometries. Processing Flow:Ceramic powder preparation → Tape casting (Green sheets) → Heating circuit screen printing → Multi-layer lamination → High-temperature co-firing ($1600^\circ\text{C}+$) → Precision grinding and cutting → Lead wire brazing → Insulation and resistance sorting → Power-on aging test → Packaging. Delivery Period:Standard rod/tube elements: 20-35 days, Customized complex geometries: 40-60 days.
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Place of Origin:Guangdong, China Material IntroductionThis ceramic valve disc is made from 95% alumina ceramic. It is mainly used in faucet cartridges, mixer taps, shower valves, and water valve assemblies. The material has good wear resistance, stable hardness, and a smooth working surface for daily water control applications. Functional Features Suitable for faucet cartridge sealing applications Precision-lapped surface for smooth opening and closing Good wear resistance under repeated use Stable performance in common household and commercial water environments Can be used as moving discs or fixed discs in ceramic faucet cartridges Custom diameter, thickness, holes, grooves, and sealing surfaces available based on drawings Application Industries Ceramic valve components Faucet cartridge manufacturing Kitchen and bathroom faucet components Mixer taps and shower valve assemblies Water purifier valve parts Sanitary hardware components Residential and commercial water control systems Lead TimeUsually 15–25 days after drawing and order confirmation. Customized sizes, holes, grooves, or tighter tolerances will be confirmed based on the final drawing.
Material IntroductionMain Material: Zirconia Ceramic (ZrO₂)Optional Material: Alumina Ceramic (Al₂O₃) upon request.Zirconia ceramic is commonly used for precision pump components where wear resistance, corrosion resistance, and dimensional stability are important. For valve cores and sleeves, it helps maintain smooth movement, stable sealing, and reliable performance in food-grade metering pumps and clean fluid control systems. Functional FeaturesWear ResistanceHelps reduce wear during repeated pump operation. Corrosion Resistance Suitable for clean and corrosive fluid environments. Precision Matching Valve core and sleeve can be matched according to drawing requirements. Smooth Surface Polished surface supports better sealing and smoother movement. Stable Accuracy Good dimensional stability after precision grinding.Clean Applications Suitable for food, pharmaceutical, and high-cleanliness fluid systems Application IndustriesFood & Beverage Equipment · Pharmaceutical Equipment · Cosmetic Filling Systems · Ceramic Pump Components · Fluid Control Systems · Clean Processing Equipment Lead TimeSample: 15–20 daysCustom Production: 20–35 days, depending on drawing complexity and order quantityService: OEM / ODM manufacturing based on drawings or samples
Place of Origin:Dongguan, China Material Introduction This insulating ceramic sleeve is made from 99% high-purity alumina ceramic (Al₂O₃). It is designed for applications where stable electrical insulation, heat resistance, and reliable ceramic protection are required. Compared with standard alumina grades, 99% alumina provides better insulation stability and is suitable for precision electrical parts, high-temperature equipment, and clean working environments. Functional Features Stable electrical insulation for high-voltage and electronic applications Good thermal resistance for high-temperature working environments Dense ceramic structure with low porosity for insulation and protection use Good mechanical strength for sleeve, spacer, and protective ceramic parts Resistant to wear, heat, and many chemical working conditions Custom ID, OD, length, wall thickness, chamfer, tolerance, and surface finish are available according to drawings Application Industries This 99% alumina insulating ceramic sleeve is commonly used in electrical equipment, high-voltage insulation systems, heating equipment, vacuum devices, semiconductor-related fixtures, laser equipment, precision instruments, and electronic assemblies. It is a suitable choice when the part needs to provide insulation, protect components, or remain stable in high-temperature and demanding working conditions. Delivery Time Standard sizes usually take 10–20 days. For custom dimensions, tight tolerances, special surface finishes, or complex structures, the delivery time will be confirmed based on your drawings, quantity, and processing requirements. You can also send us your drawing for a quick review.
Product Name: High Precision Zirconia Ceramic Valve Core Product Material: Yttrium-Stabilized Tetragonal Zirconia (Y-TZP) Material Characteristics: Extremely high wear resistance, excellent corrosion resistance, ultra-low friction coefficient, high fracture toughness, outstanding dimensional stability, excellent self-lubrication performance Application Fields: High-end faucet valve cores, industrial precision regulating valves, medical device control valves, chemical corrosion-resistant valves, aerospace fluid control systems Application Industries: Bathroom fixtures, industrial automation, medical equipment, chemical and pharmaceuticals, aerospace Processing Difficulties: Precision control of mating dimensions, guarantee of spherical contour accuracy, high requirements for microscopic surface quality, control of consistency in mass production Processing Flow: Powder processing → Spray granulation → Forming (dry pressing/CIP) → High-temperature sintering → CNC precision processing → Inspection → Ultrasonic cleaning → Packaging Delivery Time: 25-35 days (special customization 40-50 days)

Customized Advanced Ceramics For Different Industries

Broad Semiconductor

Aerospace

Biomedical

Fluid control

Advanced mechanical equipment

New energy

Electronic Engineering

Petrochemical Engineering

Ceramic Fabrication Equipment And Tools

CERAMPRO is equipped with advanced ceramic manufacturing tools and equipment such as:

✓  Cold Isostatic Press (CIP)
✓  Ceramic Injection Molding Machine (CIM)
✓  High-Temperature Sintering Furnace
✓  Hot Isostatic Press (HIP)
✓  5-Axis CNC Machining Center
✓  Precision Grinding Machines
✓  Laser Drilling Cutting System
✓  CMM Inspection Equipment 
✓  Ultra-High Precision Lapping Polishing System

CERAMPRO | A Wide Range of Materials for Superior Ceramic Manufacturing

CERAMPRO offers you an extensive selection of advanced ceramic manufacturing materials! With diverse materials, various purities, flexible sizes, and selectable tolerances, we meet a wide array of processes and applications. Our materials are durable, corrosion-resistant, and high-temperature resistant, covering everything from micro components to large-scale parts. If you need custom ceramic components or assemblies, feel free to contact us—our experts will tailor material solutions and customization services to your needs.

•  Alumina Ceramics
•  Zirconium oxide ceramic
•  Beryllium Oxide Ceramic
•  Aluminium Nitride Ceramics
•  Silicon Nitride Ceramics
•  Boron Nitride Ceramic
•  Silicon Carbide Ceramics
•  Boron Carbide Ceramics
Alumina Ceramics
Zirconium oxide ceramic
Beryllium Oxide Ceramic
Aluminium Nitride Ceramics
Silicon Nitride Ceramics
Boron Nitride Ceramic
Silicon Carbide Ceramics
Boron Carbide Ceramics

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We support customer product development with a wide range of specialized knowledge and manufacturing know-how cultivated through many years of experience.
With decades of engineering and technical expertise, CERAMPRO offers you comprehensive support from design to manufacturing. Our expert team will assist you in selecting the most suitable materials and molding solutions, and by leveraging a wide range of material libraries, equipment resources, and professional knowledge, they will integrate multiple advanced manufacturing processes to tailor precise ceramic solutions that meet your specific requirements.
• Coordinate Measuring Machine (CMM)
• Surface Roughness Tester
• Roundness/Cylindricity Measuring Instrument
• Height Gauge/Projector
• Material Property Testing
• Sintering Shrinkage Control
We Commit:100% inspection of all critical dimensions, with every product traceable back to each batch of raw material used.

What Our Customer Say

We’re really happy with their service! They resolve any issues immediately, demonstrating professionalism and efficiency. Big thanks to CERAMPRO!
Emma Johansson

Emma Johansson

Lyon, France
From input to finish, the production cadence is stable, on-time delivery is the norm, and the quality remains outstanding,the collaboration is very pleasant.
Nadia Sato

Nadia Sato

Tokyo, Japan
We’re highly satisfied with their responsiveness and problem-solving abilities, with professionalism and efficiency going hand in hand. Kudos to CERAMPRO!
Sophie Wagner

Sophie Wagner

Berlin, Germany
Very satisfied with their service, they always address issues promptly with professionalism and efficiency. Sincere thanks to CERAMPRO !
James Carter

James Carter

New York, USA
16 June, 2026
Advantages:Excellent electrical insulation, good wear resistance, cost-effective performance Applications:Ceramic plates, ceramic sleeves, ceramic rods, insulators, support parts
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02 June, 2026
The 40th China International Ceramics Industry Exhibition will open in Guangzhou on June 24, 2026. This article highlights key sourcing trends in advanced industrial ceramics, including alumina parts, zirconia components, insulating ceramic washers and wear-resistant ceramic parts for semiconductor, new energy, automation, mining and industrial applications.
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09 February, 2026
In the pursuit of ultimate reliability and performance within high-end industrial and medical sectors, traditional monolithic materials often hit their limits. Whether it's an industrial valve core battling high temperature, wear, and electrical insulation simultaneously, or a medical plunger demanding ultra-long lifespan, precise sealing, and biocompatibility, the market is calling for a more innovative material solution.
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