Customization: | Available |
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Shape: | Carbon Fiber Cloth |
Raw Materials: | 100% Carbon Fiber |
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6k 300g 320g bidirectional carbon fiber fabric is a common carbon fiber fabric, which can be used for the appearance of carbon fiber products and for the inner layer reinforcement of carbon fiber products. It is composed of 6000 carbon fiber monofilaments in a bundle, and then woven into cloth. 6K weave is perfectly suited for structural applications due to its resistance to flex, but is light enough to be able to contour to complex shapes and angles.
Product advantages:
Bidirectional Carbon Fiber Fabric | ||||||||
Item No. | Reinforcement Yarn | Weave Pattern |
Tow Count/10MM | Weight | Thickness | Width | ||
Warp Yarn | Welf Yarn | Warp Yarn | Welf Yarn | g/m2 | (mm) | (mm) | ||
PR-6K-CP320 | 6k | 6k | Plain | 4 | 4 | 320 | 0.32 | 100-1500mm |
PR-6K-CT320 | 6k | 6k | Twill | 4 | 4 | 320 | 0.32 | 100-1500mm |
- High stiffness: The twill weave method changes the fiber arrangement angle of the carbon fiber fabric in both the warp and weft directions, increasing the material's resistance to deformation and stiffness. This feature enables it to maintain good stability and shape when subjected to loads such as bending and shearing.
- Lightweight: Carbon fiber materials have a low density, and 6K 300g 320g twill carbon fiber fabric also has the characteristics of light weight. This is a very important advantage for some application fields that have strict weight restrictions, such as aerospace, automobiles, etc., which can reduce the weight of the overall structure and improve the performance and efficiency of the equipment.
- Low thermal expansion coefficient: Carbon fiber has a low thermal expansion coefficient. 6K 300g 320g twill carbon fiber fabric has good dimensional stability when the temperature changes. It is not easy to expand or shrink significantly due to temperature changes, and can maintain stable performance under different temperature environments.
Application areas:
In the aerospace field, it is used to manufacture aircraft wings, fuselages and other structural parts;
In the automotive industry, it can be used to manufacture body frames, engine hoods and other automotive parts;
In the sporting goods industry, it can be used to make golf clubs, tennis rackets, bicycle frames, etc.;
In the field of building reinforcement, it can be used to strengthen concrete structures and improve the seismic resistance and bearing capacity of buildings;
It can also be used to manufacture medical equipment, electronic equipment casings, etc. to meet their requirements for strength and lightweight.
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