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Silicon Carbide Ceramics The Ultimate Material for High-Temperature Performance in Automotive

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Highlight:
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
Temperature:
1600℃
Advantage:
Corrosion Resistance
Thermal Expansion Coefficient:
4.0 X 10-6/°C
Thermal Conductivity:
120 W/mK
Chemical Resistance:
High
Surface Finish:
Smooth
Modulus Of Elasticity:
420 Gpa
Chemical Inertness:
High
Content:
99% SIC
Volume Resistivity:
5*10^6Ω.cm
Electrical Resistivity:
10^-3 Ohm-cm
Feature:
High Temperature Resistance
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
Temperature:
1600℃
Advantage:
Corrosion Resistance
Thermal Expansion Coefficient:
4.0 X 10-6/°C
Thermal Conductivity:
120 W/mK
Chemical Resistance:
High
Surface Finish:
Smooth
Modulus Of Elasticity:
420 Gpa
Chemical Inertness:
High
Content:
99% SIC
Volume Resistivity:
5*10^6Ω.cm
Electrical Resistivity:
10^-3 Ohm-cm
Feature:
High Temperature Resistance
Silicon Carbide Ceramics The Ultimate Material for High-Temperature Performance in Automotive

Silicon Carbide Ceramics The Ultimate Material for High-Temperature Performance in Automotive 0

 

 

As an outstanding representative of advanced ceramic materials, silica precision ceramics are redefining material application standards across multiple high-tech fields with their unique optical properties (light transmittance over 95%), ultra-low thermal expansion coefficient (0.5×10⁻⁶/℃), and excellent dielectric properties (dielectric constant 3.9). Whether for demanding optical lenses, semiconductor manufacturing equipment, or aerospace components in high-temperature environments, silica ceramics provide the perfect solution.
In the semiconductor industry, our silica ceramic components offer ultra-high purity (99.99%) and exceptional plasma corrosion resistance, ensuring reliable performance for chip fabrication processes including etching and deposition. For optical applications, silica ceramic lenses provide 30% higher light transmittance than conventional glass while demonstrating superior thermal shock resistance. In aerospace, specially treated silica ceramic thermal protection tiles have been successfully applied in next-generation reusable spacecraft, demonstrating outstanding high-temperature resistance (continuous service temperature up to 1600°C).
We provide comprehensive customization services from powder preparation to finished product processing, including specialized techniques like precision molding and ultra-precision polishing, to meet your most demanding material performance requirements. Choosing silica precision ceramics means selecting future-proof material solutions with superior light transmission, dimensional stability, and dielectric performance!
Pushing material boundaries, enabling technological breakthroughs - Silica Precision Ceramics, your trusted high-performance material partner!