Ceramic Fiber Wool

Ceramic Fiber Wool
Product Introduction:
Ceramic fiber features a low heat capacity, meaning that when the temperature fluctuates, it absorbs or releases less heat, which helps maintain the temperature stability of the system. Its low thermal conductivity makes it an outstanding thermal insulation material, effectively preventing the transfer of heat. The excellent chemical stability ensures that it is less likely to undergo chemical reactions in diverse chemical environments, thus extending its service life.
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Description
Technical Parameters
product-612-392

 

The excellent thermal stability enables it to maintain structural and performance stability in high-temperature environments, without being prone to deformation or damage. It is not easy to powder at high temperatures, ensuring that there is no dust pollution during high-temperature usage and keeping the working environment clean. It contains no binders or corrosive substances, so it does not cause any damage to the equipment and the materials it comes into contact with. Additionally, it has excellent sound absorption properties, which can effectively reduce noise and create a quiet working environment.

 

(1)Ommon Ceramic Fiber

It is formed into fibers through the electrofusion process, utilizing the blowing or spinning methods. It is a kind of loose fiber that has not undergone secondary processing and heat treatment. This production approach retains the original state of the fibers, conferring it with unique performance features.

 

(2)Ceramic Fiber Textile

The standard ceramic fiber spun wool is processed through a special technique. During the processing, the fiber diameter is meticulously controlled to be uniform, greatly enhancing the spinnability. This characteristic renders it an ideal raw material for manufacturing high-quality textile products, fulfilling the stringent requirements of the textile industry for fiber quality.

 

(3)Ceramic Fiber Granular

Based on the standard ceramic fiber spun wool, it is produced through a series of elaborate secondary processing procedures, including slag removal and shearing. These processes effectively eliminate impurities and optimize the fiber morphology, making it an excellent raw material for producing wet-process products and significantly contributing to improving product quality.

 

(4)Ceramic Fiber Friction

It is made from the standard ceramic fiber blown wool after undergoing secondary processing such as shearing and slag removal. Tailored to the specific needs of friction materials, the fibers are processed accordingly to endow them with properties suitable for friction applications. It is an optimal choice for manufacturing high-performance friction materials.

It is extensively used as a raw material for fiber blankets and board products, providing the fundamental thermal insulation and fire resistance properties for these products. In the aspect of raw materials for fiber textile products, it meets the special fiber requirements of the textile industry. It serves as the filling material for the wall lining gaps of high-temperature furnaces and heating devices, effectively filling the gaps and preventing heat loss. As a raw material for wet-process products, it enhances the quality and performance of wet-process products. It plays a crucial role in raw materials for fiber spraying, casting materials, and coating materials, endowing these materials with properties such as thermal insulation and fire resistance. Ceramic fiber can also be used as thermal insulation filling materials for corners and complex spaces, giving full play to its flexible filling advantage.

 

 

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Thermal shock resistance
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