Our range of Carbon Fabrics is meticulously crafted using the finest quality carbon fibers, ensuring top-tier performance and reliability across various applications. We specialize in weaving these fibers unidirectionally, in plain weave, and in twill weave patterns to meet the precise requirements of our customers.
A range of Carbon Fabrics made from t-quality carbon fibers, available in unidirectional, plain weave, and twill weave patterns to meet customer specifications. These fibers boast high strength-to-weight and stiffness-to-weight ratios, and are thermally and electrically conductive with excellent fatigue resistance. Our customers can achieve the strength and stiffness of metals while saving significant weight.
Compatible with epoxy, polyester, and vinyl ester resins, our carbon fabrics are ideal for prepregs. We use 1k, 3k, 6k, and 12k carbon fiber types and provide fabrics with a standard width of 1000mm, with customizable options. We currently manufacture twill, plain, and unidirectional (UD) weave patterns.
Our range of Carbon Fabrics is meticulously crafted using the finest quality carbon fibers, ensuring top-tier performance and reliability across various applications. We specialize in weaving these fibers unidirectionally, in plain weave, and in twill weave patterns to meet the precise requirements of our customers.
The carbon fibers used by Us boast exceptional strength-to-weight and stiffness-to-weight ratios, making them ideal for applications that demand high performance with minimal weight. These fibers are thermally and electrically conductive, providing versatility for a wide range of industrial applications. Furthermore, they exhibit excellent fatigue resistance, ensuring durability and longevity even under repetitive stress conditions.
Our customers benefit from the advanced engineering processes we employ, achieving the strength and stiffness comparable to metals while significantly reducing weight. This advantage is critical in industries such as aerospace, automotive, and sporting goods, where reducing weight without compromising strength is paramount.
Our carbon fabrics are compatible with almost all resin systems, including epoxy, polyester, and vinyl ester resins. This compatibility makes our fabrics highly versatile and suitable for various composite manufacturing processes. One of the primary uses of our carbon fabrics is in the preparation of prepregs, which are pre-impregnated composite fibers where a certain amount of resin is already included. Prepregs are essential for high-performance applications due to their uniform resin distribution and enhanced material properties.
We use a range of carbon fiber types, including 1k, 3k, 6k, and 12k fibers, allowing us to offer a broad spectrum of fabric densities and strengths. The term 'k' refers to the number of filaments per tow, with higher numbers indicating thicker, stronger fibers. This variety ensures that we can provide materials tailored to specific application needs, whether it’s for lightweight structures or highly stressed components.
Our standard fabric width is 1000mm, which suits most applications. However, understanding that different projects may have unique requirements, we offer customizable widths to cater to specific needs. This flexibility ensures that our customers get the exact material dimensions necessary for their applications without compromising on quality or performance.
Currently, We manufactures carbon fabrics in three primary weave patterns: twill, plain,
and unidirectional (UD). Each weave pattern has distinct characteristics:
Unidirectional (UD): In this pattern, all fibers run in one direction,
providing maximum strength along the fiber direction. This is ideal for applications
requiring high tensile strength and stiffness in a single direction.
Plain Weave: This pattern interlaces fibers at right angles,
creating a balanced fabric with uniform strength and stability. It is versatile and
suitable for various general-purpose applications.
Twill Weave: Known for its diagonal ribbing, the twill weave
offers enhanced drapability and better impact resistance, making it suitable for complex
shapes and dynamic loading conditions.
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