Product Details
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Features: |
Wear-resistant |
Produce Capacity: |
100000p/month |
Color: |
Black |
Coefficient Of Thermal Expansion: |
3.2 X 10^-6/°C |
Density: |
3.2 G/cm3 |
Electrical Resistivity: |
10^14 Ω·cm |
Thermal Conductivity: |
30 W/mK |
Size Range: |
0.5mm-100mm |
Advantage: |
Thermal Shock Resistance |
Elastic Modulus: |
290 GPa |
Thermal Shock Resistance: |
800 °C |
Blade Material: |
Silicon Nitride Ceramic |
Style: |
Multi-functional |
Relative Density: |
99% |
Insulation Resistance: |
1012-1014 Ω.cm |
Features: |
Wear-resistant |
Produce Capacity: |
100000p/month |
Color: |
Black |
Coefficient Of Thermal Expansion: |
3.2 X 10^-6/°C |
Density: |
3.2 G/cm3 |
Electrical Resistivity: |
10^14 Ω·cm |
Thermal Conductivity: |
30 W/mK |
Size Range: |
0.5mm-100mm |
Advantage: |
Thermal Shock Resistance |
Elastic Modulus: |
290 GPa |
Thermal Shock Resistance: |
800 °C |
Blade Material: |
Silicon Nitride Ceramic |
Style: |
Multi-functional |
Relative Density: |
99% |
Insulation Resistance: |
1012-1014 Ω.cm |
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.