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Place of Origin : China
MOQ : 10p
Price : 1usd
Payment Terms : L/C, T/T
Supply Ability : 1000000p/month
Delivery Time : 30days
Packaging Details : carton/pallet
Thermal Expansion : 4.3 X 10-6/K
Thermal Shock Resistance : Good
Thermal Conductivity : 160 W/m.K
Density : 3.1g/cm3
Color : Black
Bending Strength : 450 MPa
Modulus of elasticity : 420 Gpa
Maximum Temperature : 1700℃
Our Silicon Carbide Ceramics product is made from a high-density material with a hardness of 2800, ensuring that it can withstand even the most challenging conditions. The material's thermal expansion coefficient is 4.3 X 10-6/K, making it ideal for applications that require dimensional stability over a wide temperature range.
In addition to its excellent thermal properties, our Silicon Carbide Ceramics product is also known for its sleek black color. This makes it a great choice for applications that require aesthetics as well as functionality.
One of our most popular applications for our Silicon Carbide Ceramics product is in the manufacturing of silicon carbide cooling air pipes. These pipes are used extensively in high-temperature applications, where they are exposed to air and other gases that can cause corrosion and degradation. Our SIC ceramic tube is an excellent choice for these applications, as it is highly resistant to corrosion and can withstand temperatures of up to 1600°C.
Our Silicon Carbide Ceramics product is also used in the production of kiln furniture, heat exchangers, and other high-temperature applications. Its excellent thermal properties make it an ideal material for these applications, as it can withstand sudden temperature fluctuations without cracking or breaking.
Overall, our Silicon Carbide Ceramics product is an exceptional choice for any industry that requires high-performance materials that can withstand extreme temperatures and harsh environments. Its exceptional thermal shock resistance, hardness, and dimensional stability make it an ideal choice for a wide range of applications. Order now and experience the exceptional quality and performance of our Silicon Carbide Ceramics product for yourself.
Material | Silicon Carbide Ceramics |
Color | Black |
Density | 3.1g/cm3 |
Thermal Expansion | 4.3 X 10-6/K |
Thermal Conductivity | 160 W/m.K |
Bending Strength | 450 MPa |
Hardness | 2800 |
Modulus of Elasticity | 420 Gpa |
Maximum Temperature | 1700℃ |
Thermal Shock Resistance | Good |
One common use for Silicon Carbide Ceramics is in the manufacturing of silicon carbide spray nozzles. These nozzles are used in a range of applications, including in the steel industry for descaling and cooling, and in the mining industry for dust suppression.
Another application for Silicon Carbide Ceramics is in the production of cooling air pipes. These pipes are used in high-temperature environments where traditional materials would not be able to withstand the heat. Silicon Carbide Ceramics is an excellent choice for these applications due to its thermal shock resistance.
SIC ceramic tubes are another common use for Silicon Carbide Ceramics. These tubes are used in applications where high temperature and pressure are present, such as in chemical processing, power generation, and semiconductor manufacturing.
Overall, Silicon Carbide Ceramics is an excellent material for a range of applications due to its high strength, hardness, and thermal shock resistance. Whether you are in the steel industry, mining industry, or semiconductor manufacturing, our Silicon Carbide Ceramics product is a reliable and durable choice.
Silicon carbide ceramics are known for their durability and resistance to thermal shock. Our silicon carbide pipe and silicon carbide ceramic nozzle are perfect for applications that require high-temperature resistance and excellent thermal conductivity.
Choose a thermal conductivity of 160 W/m.K and a thermal shock resistance of "good" to ensure optimal performance. The thermal expansion is 4.3 X 10-6/K, and the maximum temperature is 1700℃. Select black as the color for a sleek and professional look.
SIC Process Tube For Processes Such As Semiconductor And Photovoltaic Diffusion Annealing Oxidation Process Images |