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Nickel-plated carbon fiber products

Intro Nickel-plated carbon fiber is a product obtained by metalizing carbon fiber as a substrate.
Feature1 Dense and stable coating;
Feature2 Excellent conductivity;
Feature3 Good thermal conductivity and high temperature resistance;
Feature4 Maintain high strength mechanical properties;
Feature5 Easy to integrate various material interfaces.
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Detail

Product Features:

- Dense and stable coating;

- Excellent conductivity;

- Good thermal conductivity and high temperature resistance;

- Maintain high strength mechanical properties;

- Easy to integrate various material interfaces.


Detailed description:

Nickel-plated carbon fiber is a product obtained by metalizing carbon fiber as a substrate. It not only has excellent rigidity and strength, but also has a small coefficient of thermal expansion and specific gravity, as well as metallic properties. By utilizing the small, lightweight, soft, and conductive properties of nickel-plated carbon fiber, the developed cable can significantly reduce weight while ensuring electrical performance. At the same time, nickel-plating on the surface of carbon fiber blocks the contact between carbon fiber and air, greatly improving the durability of carbon fiber under high-temperature working conditions. By utilizing the high temperature resistance characteristics, high-temperature resistant components such as nose cones and wing leading edges of space shutters are filled with nickel-plated carbon fibers. The shielding material produced by injection molding with nickel-plated carbon fibers has excellent shielding effect and can be used as an absorbing material for aircraft, such as skeleton and skin. In addition to military and aerospace applications, nickel-plated carbon fiber has a wide range of uses in small bulk-capacity capacitors, magnetic films, electromagnetic shielding of electronic devices, and manufacturing of various functional components.

Using shielding materials to shield electromagnetic waves is an effective way to prevent electromagnetic radiation hazards. The design concept is to metalize carbon fibers to improve conductivity or magnetism, and then construct a tight conductive network through fiber weaving and arrangement to form electromagnetic shielding properties, successfully solving the problem of the inability to balance mechanical and conductive properties in traditional electromagnetic shielding composite materials.


3K nickel-plated carbon fiber shielded cable sheath


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Nickel-plated carbon fiber unidirectional prepreg fabric for cable shielding


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Electromagnetic shielding cover


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