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Alumina Ceramic Thermal Shock-Resistance for Turbocharger Rotors and Hot Plugs in High-Temperature Environments

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Thermal Conductivity:
35 W/mK
Thermal Expansion Coefficient:
8.2 X 10^-6 /K
Dielectric Constant:
9.8
Electrical Resistivity:
10^14 Ω·cm
Wear Resistance:
Excellent
Flexural Strength:
300MPA
Material:
Alumina
Mechanical Strength:
High
Application:
High Temperature And High Wear Environments
Color:
White
Shape:
Customizable
Method:
Lsostatic Presure
Materials:
92% Alumina Powder
Density:
3.9 G/cm3
Properties:
Electric Insulation
Thermal Conductivity:
35 W/mK
Thermal Expansion Coefficient:
8.2 X 10^-6 /K
Dielectric Constant:
9.8
Electrical Resistivity:
10^14 Ω·cm
Wear Resistance:
Excellent
Flexural Strength:
300MPA
Material:
Alumina
Mechanical Strength:
High
Application:
High Temperature And High Wear Environments
Color:
White
Shape:
Customizable
Method:
Lsostatic Presure
Materials:
92% Alumina Powder
Density:
3.9 G/cm3
Properties:
Electric Insulation
Alumina Ceramic Thermal Shock-Resistance for Turbocharger Rotors and Hot Plugs in High-Temperature Environments

Alumina Ceramic Thermal Shock-Resistance for Turbocharger Rotors and Hot Plugs in High-Temperature Environments 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.