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Plain Twill Satin Weave Cloth Carbon Fiber Fabric
Carbon Fiber Woven Fabric is a type of material made by weaving carbon fibers together, usually in a textile loom. Carbon fibers are extremely thin filaments, typically composed of carbon atoms bonded together in crystals that are more or less aligned parallel to the long axis of the fiber. This alignment gives the fiber high strength-to-volume ratio, making it incredibly strong for its size. The weaving process interlaces these fibers in various patterns, such as plain, twill, or satin weave, to produce a fabric that can be used in composite material applications.
| Model | Weaving Technology | Weight (g) | Fiber Warp | Fiber Weft | Density Warp | Density Weft | Thickness (mm) | Width (cm) |
|---|---|---|---|---|---|---|---|---|
| GX-1K | Plain/Twill | 90-140 | 1K | 1K | 7-10.5 | 7-10.5 | 0.14-0.17 | 50-150 |
| GX-3K | Plain/Twill | 160-280 | 3K | 3K | 4-7 | 4-7 | 0.23-0.34 | 50-150 |
| GX-6K | Plain/Twill | 280-400 | 6K | 6K | 3.5-5 | 3.5-5 | 0.36-0.42 | 50-150 |
| GX-12K | Plain/Twill | 300-640 | 12K | 12K | 1.8-4 | 1.8-4 | 0.38-0.64 | 50-150 |
Exceptional tensile strength and rigidity attributed to high-quality individual carbon fibers.
Ideal for applications where high strength and low weight are critical.
Resistant to corrosion, suitable for harsh environmental conditions.
Unique thermal management properties in composite structures.
Withstands repeated loading cycles without significant strength degradation.
Main Applications:
Main wings, tail wings and fuselage of aircraft; Automobile engines, synchronizers, hoods, bumpers, decorative parts, bicycle frames, handlebars, rackets, sound basins, kayaks, skis; building reinforcement, watches, pens, bags, etc.
Customization:
Carbon fiber fabric can be customized to meet specific requirements regarding weave pattern, fiber type, coating, and weight per area.




RAXIS Fiber