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Thermal Conductivity: |
35 W/mK |
Hardness: |
9 Mohs |
Elastic Modulus: |
380 GPa |
Alumina Content: |
95% |
Dielectric Loss: |
0.0002 |
Properties: |
Electric Insulation |
Type: |
Ceramic Ball |
Compressive Strength: |
3000 MPa |
Wear Resistance: |
Excellent |
Dielectric Constant: |
9.8 |
Density: |
3.9 G/cm3 |
Corrosion Resistance: |
Excellent |
Material: |
Alumina |
Electrical Resistivity: |
10^14 Ω·cm |
Max Operating Temperature: |
1500°C |
Thermal Conductivity: |
35 W/mK |
Hardness: |
9 Mohs |
Elastic Modulus: |
380 GPa |
Alumina Content: |
95% |
Dielectric Loss: |
0.0002 |
Properties: |
Electric Insulation |
Type: |
Ceramic Ball |
Compressive Strength: |
3000 MPa |
Wear Resistance: |
Excellent |
Dielectric Constant: |
9.8 |
Density: |
3.9 G/cm3 |
Corrosion Resistance: |
Excellent |
Material: |
Alumina |
Electrical Resistivity: |
10^14 Ω·cm |
Max Operating Temperature: |
1500°C |
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.