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Twill Carbon Fiber Woven Fabric

 
Twill carbon fiber woven fabric is a medium to high-end carbon fiber base material designed for the forming requirements of complex curved surfaces. It adopts a two-on-one or three-on-one interweaving method of warp yarns to form a unique diagonal pattern. Its core feature is "balancing strength and flexibility". On the basis of retaining the common advantages of carbon fiber, which is "lighter than aluminum and stronger than steel", it has significantly improved the molding adaptability and can perfectly fit complex curved surface structures such as car bodies, ship hulles, and sports equipment. Meanwhile, the diagonal texture makes the appearance of the formed parts more layered and high-end, making it the mainstream choice for high-end customized products.
 
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Core Advantage

  • Excellent molding adaptability: The two-top-down/three-top-down interwoven structure endows it with good flexibility, allowing it to easily fit various complex curved surfaces (such as arcs and irregular-shaped parts). During the molding process, it is less likely to wrinkle or crack, significantly improving the qualification rate of molded parts.

  • High-end appearance and texture: The clear diagonal patterns on the surface can present a uniform and beautiful texture without excessive grinding after molding, which is more visually layered than plain weave fabric and meets the appearance requirements of high-end products.

  • Balanced strength and flexibility: The tensile strength and elastic modulus are superior to those of plain weave fabric. While maintaining good flexibility, it ensures the structural strength and load-bearing capacity of the formed parts, meeting the performance requirements of high-end scenarios.

  • Wide process compatibility: It can be perfectly compounded with various resins such as epoxy resin and vinyl ester resin, and is compatible with high-end molding processes such as vacuum introduction, winding, and molding, with a high processing upper limit.

  • Outstanding environmental resistance: It features corrosion resistance, UV aging resistance, fatigue resistance and other properties. It can maintain stable performance even after long-term use in harsh environments such as outdoors and at sea.



Product Application

  • In the field of automotive modification/new energy vehicles: body kits, rear wings, hoods, chassis irregular components, battery casings, etc., suitable for complex curved surface forming, taking into account both lightweight and appearance texture.

  • In the field of sports equipment: bicycle frames, wheelsets, badminton rackets, tennis rackets, skis, surfboards, etc., the flexibility and high strength are utilized to enhance the controllability and durability of sports equipment.

  • In the field of shipbuilding: Complex curved surface components such as ship hulls, decks, and cabin interiors are corrosion-resistant and have strong molding adaptability, making them suitable for use in Marine environments.

  • In the high-end electronic and electrical field: special-shaped structural components such as the fuselage of unmanned aerial vehicles and the shells of high-end audio equipment, taking into account lightweight, aesthetics and structural strength.



Technical Parameters

Parameter category Specific parameter
Material 100% carbon fiber
Weight specifications 100g/㎡, 200g/㎡, 300g/㎡, 400g/㎡ (customizable)
Width 100-1600mm (customizable
The color black. Other colors can be customized
Fiber types 1k/3k/6k/12k
Customized service OEM ODM production based on orders



FAQ

1. Which complex curved surface products are suitable for making twill carbon fiber cloth?

It is suitable for making various arc-shaped and irregular-shaped components such as car rear wings, body kits, bicycle frames, ship hulls, and skis. Its flexibility can ensure that the fabric fits the mold perfectly, avoiding forming defects such as bubbles and wrinkles.


2. Will the grain direction of twill carbon fiber cloth affect the performance of the product?

There will be a slight impact. The strength of twill fabric has slight differences in the direction of the grain. It is recommended to adjust the fabric laying direction according to the force direction of the product during processing. If extremely high uniformity of performance is required, a multi-directional cross-laying method can be adopted to make up for it.

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