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Silicon Carbide Ceramics The Ultimate Material for High-Temperature Performance in Automotive and Gas Turbine Components

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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 Ceramics The Ultimate Material for High-Temperature Performance in Automotive and Gas Turbine Components 0

Silicon nitride(Si3N4)exceeds many other ceramic materials in thermal shock-resistance.It does not deteriorate at high temperatures;therefore,it is ideal for use in components for automotive engines and gas turbines-including turbocharger rotors,glow plugs for diesel engines,and hot plugs.Further applications of this material are anticipated in a wide range of fields.