Carbon fiber surface mat is a kind of felt-like material made of carbon fiber bundles by precision weaving or pressing.
Carbon fiber surface felt is usually used for thermal insulation, heat preservation, fire protection and other applications in high temperature environments, and can also be used as a strengthening layer of composite materials.
Its surface is flat and uniform, has good tensile strength and wear resistance, and is suitable for special needs in various industrial fields. In aerospace, automobile manufacturing, ship construction, energy industry and other fields, carbon fiber surface felt is widely used in parts manufacturing, insulation materials, composite material strengthening and so on, playing an important role.
Product features:
1. High strength: excellent tensile strength and wear resistance.
2. Light weight: Light weight is conducive to reducing the overall weight.
3. High temperature resistance: can maintain stability in high temperature environment.
4. Smooth surface: It has a smooth and even surface texture.
5. Wide range of uses: suitable for heat insulation, heat preservation, fire prevention and other application scenarios.
6. Reinforcement material: can be used as a reinforcement layer of composite materials.
Lightweight: Carbon fiber surface mat is exceptionally lightweight, making it ideal for applications where weight reduction is critical, such as in aerospace and automotive industries.
High Strength: It exhibits high tensile strength, making it stronger than many traditional materials like steel while being much lighter.
Stiffness: Carbon fiber surface mat offers exceptional stiffness, providing excellent resistance to deformation under load.
Corrosion Resistance: It is highly resistant to corrosion, making it suitable for use in harsh environments and applications where exposure to moisture or chemicals is a concern.
Thermal Conductivity: Carbon fiber surface mat has excellent thermal conductivity, allowing for efficient heat dissipation in various applications.
Electrical Conductivity: In some cases, carbon fiber surface mat can exhibit electrical conductivity, making it suitable for applications requiring electrical properties.
Aesthetic Appeal: It has a sleek, modern look that is often desirable for high-end consumer products and sports equipment.
Versatility: Carbon fiber surface mat can be molded into various shapes and forms, providing designers and engineers with flexibility in product design.
Aerospace: In the aerospace industry, NQ Carbon fiber surface mat is used for manufacturing lightweight and high-strength components for aircraft, spacecraft, and satellites. It helps in reducing overall weight while maintaining structural integrity.
Automotive: NQ Carbon fiber surface mat is used in the automotive sector to produce lightweight body panels, interior components, and structural reinforcements. It contributes to improving fuel efficiency and performance in vehicles.
Marine: In the marine industry, NQ Carbon fiber surface mat is utilized for building hulls, decks, and other structural parts of boats and yachts. Its high strength and corrosion resistance make it ideal for marine applications.
Sports Equipment: Carbon fiber surface mat is widely used in the production of sports equipment such as tennis rackets, golf clubs, bicycles, and fishing rods. It provides a balance of strength, stiffness, and lightness required for optimal performance.
Wind Energy: NQ Carbon fiber surface mat is employed in wind turbine blades to enhance their strength and durability. It helps in increasing energy efficiency and reliability of wind turbines.
Industrial Applications: Carbon fiber surface mat finds applications in various industrial sectors for manufacturing components that require high strength-to-weight ratio, corrosion resistance, and thermal conductivity.
Civil Engineering: In civil engineering, NQ Carbon fiber surface mat is used for structural reinforcement, seismic retrofitting, and strengthening of bridges, buildings, and infrastructure.
Prepare polyacrylonitrile (PAN) or other suitable polymer as a feedstock for carbon fiber.
The precursor of PAN fiber was prepared by wet and dry spinning process.
PAN fiber precursors are oxidized in oxidation furnace to form oxidized PAN fiber. The oxidized fibers are carbonized at high temperatures, turning them into carbon fibers. It is then impregnated with resin to enhance its properties and stability.
Carbon fiber is made into carbon fiber cloth by textile processing.
The impregnated carbon fiber cloth is heated or chemically cured, so that the resin solidifies into a stable carbon fiber composite material.
The carbon fiber composite material is cut, finished and other processing technology to make the final carbon fiber cloth product.
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