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Silicon Carbide Ceramics The Ultimate Material For High-Temperature Performance In Automotive And Gas Turbine Components

Product Details

Place of Origin: Made In China

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high thermal conductivity silicon carbide shaft sleeve

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high thermal conductivity polishing silicon carbide

Free Silicon Content:
≤10%
Sic Content:
≥98%
Thermal Shock Resistance:
Good
Color:
Black
Bending Strength:
400 MPa
Drawing Format:
2D/(PDF/CAD)3D(IGES/STEP)
Micron:
150
Application:
Sintering Parts
Flexural Strength:
350-600 MPa
Compressive Strength:
2000 MPa
Dielectric Constant:
9.66
Mechanical Strength:
High
Maximum Operating Temperature:
1650°C
Material:
Silicon Carbide
Hardness:
9.5 Mohs
Free Silicon Content:
≤10%
Sic Content:
≥98%
Thermal Shock Resistance:
Good
Color:
Black
Bending Strength:
400 MPa
Drawing Format:
2D/(PDF/CAD)3D(IGES/STEP)
Micron:
150
Application:
Sintering Parts
Flexural Strength:
350-600 MPa
Compressive Strength:
2000 MPa
Dielectric Constant:
9.66
Mechanical Strength:
High
Maximum Operating Temperature:
1650°C
Material:
Silicon Carbide
Hardness:
9.5 Mohs
Silicon Carbide Ceramics The Ultimate Material For High-Temperature Performance In Automotive And Gas Turbine Components

Silicon Carbide Ceramic Hollow Flanged Cylinder (Industrial Grade High-Temperature Component)

Product Introduction
This product is manufactured using reaction-bonded silicon carbide ceramic, forming an integrally molded hollow flanged cylinder structure. It features a characteristic dark gray appearance, with a surface precision-ground to an industrial-grade smoothness of Ra ≤ 0.4µm. The unique hollow cylindrical design, combined with the base flange, ensures smooth fluid medium flow while providing a stable mounting and positioning surface. This structure fully leverages the performance advantages of silicon carbide material in extreme working conditions, making it an ideal solution for high-temperature, corrosive, and abrasive environments.

Core Advantages

  • Exceptional Thermal Stability: Maintains structural integrity at temperatures up to 1380°C, with a thermal expansion coefficient of only 4.0×10⁻⁶/°C.

  • Superior Wear Life: Rockwell hardness of HRA 90-93, offering wear resistance more than 7 times that of alumina ceramic.

  • Excellent Corrosion Resistance: Resists most acid and alkali media (except hydrofluoric acid).

  • Outstanding Mechanical Strength: Flexural strength ≥ 380 MPa, capable of withstanding working pressures up to 20 MPa.

  • Lightweight Design: Density of only 3.02 g/cm³, approximately 60% lighter than metal components of the same size.

Primary Applications

  • High-Temperature Bearing Systems: Drive bearings for semiconductor diffusion furnaces, guide bearings for vacuum furnaces.

  • Chemical Sealing Fields: Mechanical seal rings, shaft sleeves for chemical pumps.

  • Electronics Industry: Semiconductor process fixtures, wafer carriers.

  • Environmental Protection Equipment: Guide components for flue gas purification units.

  • New Energy Sector: Accessories for photovoltaic crystal pulling furnaces.

Specifications Table

 
 
Parameter Category Technical Indicator
Primary Material Reaction-Bonded Silicon Carbide (RBSC)
Structure Hollow Flanged Cylinder
Outer Diameter Range 20-200mm (Customizable)
Height Range 30-300mm (Customizable)
Density 3.02 ± 0.05 g/cm³
Compressive Strength ≥ 1800 MPa
Thermal Conductivity 110 W/(m·K)
Maximum Service Temperature 1380°C (Inert Atmosphere)
Surface Roughness Ra ≤ 0.4µm

Manufacturing Process
Raw Material Formulation → Isostatic Pressing → CNC Green Machining → High-Temperature Sintering → Non-Destructive Testing → Precision Machining → Laser Marking → Quality Inspection → Ultrasonic Cleaning → Vacuum Packaging.

Usage Instructions

  1. Ensure the flange contact surface is clean and flat during installation; use dedicated tools recommended.

  2. A thermal expansion gap of 0.1-0.3mm should be reserved when assembling with metal parts.

  3. Fastening bolts should be tightened progressively in a diagonal pattern, with torque not exceeding 25 N·m.

  4. A stepped preheating process (200°C/h) is recommended before the first high-temperature use.

  5. Avoid direct contact with hydrofluoric acid and molten alkali metals.

After-Sales Service

  • 12-month product quality guarantee.

  • 24/7 technical support team response.

  • Support for custom development based on drawings (Minimum Order Quantity: 50 pieces).

  • Provision of material test reports and qualification certificates.

  • Establishment of exclusive customer product files.

FAQ

  1. Q: What are the advantages compared to alumina ceramic?
    A: 5 times higher thermal conductivity, over 7 times better wear resistance, and 400°C higher thermal shock resistance.

  2. Q: Do you support custom non-standard sizes?
    A: Yes, fully supported. Detailed drawings and technical requirements are needed.

  3. Q: What is the maximum processable size?
    A: Currently, flanged cylinders with a maximum outer diameter of 300mm and height of 500mm can be processed.

  4. Q: What is the delivery lead time?
    A: 15 working days for standard specifications, 30-45 working days for custom products.

Silicon Carbide Ceramics The Ultimate Material For High-Temperature Performance In Automotive And Gas Turbine Components 0