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Pan Graphite Felt

Pan Graphite Felt

Pan Graphite Felt

Pan graphite felt is a kind of graphite felt material prepared by a series of complex processes such as high-temperature carbonization with polyacrylonitrile as the precursor. It inherits some of the excellent characteristics of graphite. And because of the unique preparation process formed its own structural characteristics. With high strength, good flexibility and good electrical conductivity, etc., in many fields to show broad application prospects. It is a functional material with excellent performance, copes with a variety of complex conditions of use and process requirements.

Pan graphite felt is usually in a felt-like form and has many significant advantages.

Good thermal stability

It can maintain structural stability in high temperature environment, can withstand temperature changes from normal temperature to thousands of degrees Celsius. It is suitable for high temperature operation scenarios such as high temperature heat treatment, metallurgy, etc.

Forte stabilità chimica

It has a certain tolerance to most acids and bases and other chemical substances. You can normally use it in a harsh chemical environment without being easily corroded.

High specific surface area

This makes it have potential advantages in adsorption, catalysis, etc., and can provide more active sites for chemical reactions.

Good flexibility

It can easily cut, fold and bend processing operations, to adapt to different shapes and sizes of equipment or device needs.

Certain pore structure

This helps the penetration and diffusion of gases and liquids. And it can play a unique role in applications involving fluid handling or material transport. Further improving its application value and scope of application.

Although its electrical conductivity is slightly inferior to that of some high-purity materiali in grafite, it can still meet many applications that require electrical conductivity. And can achieve effective charge transmission.

Uses of pan graphite felt

New energy field:

In lithium-ion batteries, you can use it as an additive or conductive skeleton for electrode materials. With its good conductivity and porous structure, it can improve the electron conduction rate and ion diffusion efficiency of the electrode. Thereby improving the charge and discharge performance and cycle life of the battery. Providing more efficient and stable energy storage solutions for new energy vehicles, portable electronic devices, etc. Promote the development and application of clean energy.

In the field of environmental protection:

In sewage treatment, you can use it as an electrode material for electrochemical REDOX reaction. Its large specific surface area and good electrical conductivity can promote the decomposition and transformation of pollutants in water. And achieve sewage purification treatment;

At the same time, in the control of air pollution, you can also use it to absorb some harmful gases. With its pore structure and chemical stability, it can effectively remove pollutants in the air, contribute to improving environmental quality. And help achieve the sustainable development goals.

Industrial manufacturing field:

In the metallurgical industry such as steel and non-ferrous metals, you can use it as the lining or thermal insulation material of high temperature forno. Using its high temperature resistance and thermal insulation properties to reduce heat loss, improve energy efficiency. While protecting the furnace structure and extending the service life of equipment;

In chemical production, you can use it as a catalyst carrier. With its rich active sites and chemical stability, improve the activity and selectivity of the catalyst. Optimize the chemical reaction process, reduce production costs, improve product quality and production efficiency. And enhance industrial competitiveness.

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