-
High Precision and Complex Ceramics for Alumina Ceramic Structural Components
Ceramic structural parts is a general term of various complicated shapes of ceramic parts. It is formed by dry pressing or cold isostatic pressing, and sintered under high temperature, then precision machined.
Made from high-purity alumina powder, processed by cold isostatic pressing, high temperature sintering and precision finishing, it could reach the dimension tolerance to ±0.001 mm, surface finish Ra 0.1, temperature resistance 400℃~800℃.
-
High Quality and High-Purity Ceramic Parts Precision Ceramics
Ceramic structural parts is a general term of various complicated shapes of ceramic parts. It is formed by dry pressing or cold isostatic pressing, and sintered under high temperature, then precision machined.
Made from high-purity alumina powder, processed by cold isostatic pressing, high temperature sintering and precision finishing, it could reach the dimension tolerance to ±0.001 mm, surface finish Ra 0.1, temperature resistance 400℃~800℃.
-
High-Temperature Resistant Precision Alumina Ceramic Structural Components
Ceramic structural parts is a general term of various complicated shapes of ceramic parts. It is formed by dry pressing or cold isostatic pressing, and sintered under high temperature, then precision machined.
Made from high-purity alumina powder, processed by cold isostatic pressing, high temperature sintering and precision finishing, it could reach the dimension tolerance to ±0.001 mm, surface finish Ra 0.1, temperature resistance 400℃~800℃.
-
Alumina Ceramic Structural Components Structural Parts
Ceramic structural parts is a general term of various complicated shapes of ceramic parts. It is formed by dry pressing or cold isostatic pressing, and sintered under high temperature, then precision machined.
Made from high-purity alumina powder, processed by cold isostatic pressing, high temperature sintering and precision finishing, it could reach the dimension tolerance to ±0.001 mm, surface finish Ra 0.1, temperature resistance 400℃~800℃.
-
Excellent Performance of Alumina Ceramic Mechanical Structural Parts
Ceramic structural parts is a general term of various complicated shapes of ceramic parts. Be made of high-purity ceramic powder, the ceramic parts is formed by dry pressing or cold isostatic pressing, and sintered under high temperature, then precision machined. It is widely used in semiconductor equipment, optical communication, laser, medical equipment, petroleum, metallurgy, electronics industries.
-
ST.CERA Customized Alumina Ceramic Plates Ceramic Parts
Ceramic structural parts is a general term of various complicated shapes of ceramic parts. It is formed by dry pressing or cold isostatic pressing, and sintered under high temperature, then precision machined.
Made from high-purity alumina powder, processed by cold isostatic pressing, high temperature sintering and precision finishing, it could reach the dimension tolerance to ±0.001 mm, surface finish Ra 0.1, temperature resistance 400℃~800℃.
-
Alumina Ceramic Rod Semiconductor Ceramic
Be made of high-purity ceramic powder, the ceramic rod is formed by dry pressing or cold isostatic pressing, and sintered under high temperature, then precision machined. With many advantages like abrasion resistance, corrosion resistance, high hardness, high toughness and low friction coefficient, it is widely used in medical equipment, precision machinery, laser, metrology and inspection equipment. It can work in the conditions of acid and alkali for a long time, and the maximum temperature can up to 1600℃.
-
ST.CERA Alumina Ceramic Tube With Excellent Performance
Be made of high-purity ceramic powder, the ceramic tube is formed by dry pressing or cold isostatic pressing, and sintered under high temperature, then precision machined. With many advantages like abrasion resistance, corrosion resistance, high hardness, high toughness and low friction coefficient, it is widely used in medical equipment, precision machinery, laser, metrology and inspection equipment. It can work in the conditions of acid and alkali for a long time, and the maximum temperature can up to 1600℃.
-
Customized Ceramic Shaft Sleeves for Processing ST.CERA Alumina ceramics
Be made of high-purity ceramic powder, the ceramic tube is formed by dry pressing or cold isostatic pressing, and sintered under high temperature, then precision machined. With many advantages like abrasion resistance, corrosion resistance, high hardness, high toughness and low friction coefficient, it is widely used in medical equipment, precision machinery, laser, metrology and inspection equipment. It can work in the conditions of acid and alkali for a long time, and the maximum temperature can up to 1600℃.
-
Alumina Ceramic Shaft Sleeve Ceramic Plunger
Be made of high-purity ceramic powder, the ceramic rod is formed by dry pressing or cold isostatic pressing, sintered under high temperature, then precision machined. With many advantages like abrasion resistance, corrosion resistance, high hardness, high toughness and low friction coefficient, it is widely used in medical equipment, precision machinery, laser, metrology and inspection equipment. It can work in the conditions of acid and alkali for a long time, and the maximum temperature can up to 1600℃. The ceramic materials we usually use are Zirconia, 95% ~ 99.9% Alumina (Al2O3), Silicon Nitride (Si3N4), Aluminum Nitride (AlN) and so on.
-
Ceramic Tube Insulation Equipment Materials
Be made of high-purity ceramic powder, the ceramic tube is formed by dry pressing or cold isostatic pressing, and sintered under high temperature, then precision machined. With many advantages like abrasion resistance, corrosion resistance, high hardness, high toughness and low friction coefficient, it is widely used in medical equipment, precision machinery, laser, metrology and inspection equipment. It can work in the conditions of acid and alkali for a long time, and the maximum temperature can up to 1600℃.
-
ST.CERA Customized Precision Zirconia Ceramic Tube
Be made of high-purity ceramic powder, the ceramic tube is formed by dry pressing or cold isostatic pressing, and sintered under high temperature, then precision machined. With many advantages like abrasion resistance, corrosion resistance, high hardness, high toughness and low friction coefficient, it is widely used in medical equipment, precision machinery, laser, metrology and inspection equipment. It can work in the conditions of acid and alkali for a long time, and the maximum temperature can up to 1600℃.