The Alumina Oxide Ceramic is an electrical insulator with an Insulation Resistance of 1012 Ω·cm, making it suitable for electronic and electrical applications where high-temperature resistance and electrical insulation are required. This advanced ceramic material is also highly resistant to chemical attack, making it ideal for use in harsh chemical environments.
The Al2O3 Ceramic is widely used in various industries, including aerospace, medical, automotive, and electronics. In aerospace, it is used in the production of turbine blades, heat exchangers, and rocket nozzles. In the medical industry, it is used to manufacture dental implants and prosthetics. In the automotive industry, it is commonly used in brake pads and engine components. In the electronics industry, it is used to produce substrates for microelectronics and electronic packaging.
Overall, the Alumina Oxide Ceramic, also known as Al2O3 Ceramic, is a highly versatile and durable material that offers excellent mechanical, electrical, and chemical properties. Its unique combination of properties makes it an ideal choice for a wide range of applications in various industries. Invest in the Al2O3 Ceramic today for a reliable and long-lasting solution to your engineering needs.
Material: | Aluminium Oxide Ceramics |
Youg's Modulus: | 320 GPa |
Compressive Strength: | 3000 MPa |
Dielectric Strength: | 14 KV/mm |
Dielectric Constant: | 9.6 |
Insulation Resistance: | 1012 Ω·cm |
Volume Resistivity: | 1014 Ω·cm |
Tensile Strength: | 300 MPa |
Flexural Strength: | 400 MPa |
Breakdown Voltage: | 20 KV/mm |
One of the most significant advantages of Alumina Oxide Ceramics is its compressive strength, which can reach up to 3000 MPa. This makes it an ideal material for manufacturing wear-resistant components and parts that are exposed to high pressure and stress. For example, Al2O3 ceramic bearings, pistons, and valves are commonly used in the automotive, aerospace, and manufacturing industries.
In addition to its mechanical properties, Alumina Oxide Ceramics also has excellent dielectric strength and breakdown voltage. These properties make it a preferred material for electrical and electronic applications. Al2O3 ceramic insulators, circuit boards, and electrical components are widely used in the telecommunications, computer, and medical equipment industries.
Furthermore, Alumina Oxide Ceramics has a high thermal conductivity of 25 W/(m·K). This makes it a suitable material for high-temperature applications. Al2O3 ceramic heat sinks, furnace tubes, and thermal barrier coatings are commonly used in the aerospace, energy, and chemical industries.
In summary, Alumina Oxide Ceramics, or Al2O3 ceramic, is a versatile material that can be used in various industrial and scientific applications. Its excellent mechanical, electrical, and thermal properties make it an ideal material for manufacturing wear-resistant, electrical, and high-temperature components and parts. Wuxi Special Ceramic, a China-based manufacturer, is a reliable supplier of Al2O3 ceramic products that meet the highest industry standards.
Our product customization services for Al2O3 Ceramic, also known as Aluminium Oxide Ceramics, are provided by Wuxi Special Ceramic - a trusted brand from China. Our Al2O3 Ceramic product has excellent insulation resistance of 1012 Ω·cm, a high Young's Modulus of 320 GPa, and a strong tensile strength of 300 MPa. Additionally, it has a high compressive strength of 3000 MPa and a density range of 3.8-3.9 G/cm3.
Our Al2O3 Ceramic product comes with comprehensive technical support and services to ensure optimal performance and customer satisfaction. Our team of experts is available to provide assistance with installation, operation, and maintenance of the product. We also offer training sessions to help customers understand the product and its capabilities. In addition, we provide repair and replacement services to ensure minimal downtime in case of any issues. Our technical support and services are designed to meet the needs of our customers and provide them with a seamless experience.