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Product Description
>> Carbon Fiber UD fabrics are high-performance materials featuring carbon fibers all oriented in a single direction, offering exceptional strength, lightweight characteristics, corrosion resistance, and being widely utilized in aerospace, automotive, sports goods, and construction industries for components that require enhanced mechanical properties along a specific axis.
- | 0° | 90° |
(g/m²) | ||
Fiber | Density (g/m²) | Fiber | Density (g/m²) | ||
CUD200-12k | 12K | 200 | Other | -- | 200 |
CUD300-12k | 12K | 300 | Other | -- | 300 |
CUD320-6k | 6K | 320 | Other | -- | 320 |
CUD320-12k | 12K | 320 | Other | -- | 320 |
CUD500-6k | 6K | 500 | Other | -- | 500 |
Technical Sheet
Code | Warp | Weft | Density g/m2 | Thickness mm | ||
Fiber | Weight g/m2 | Fiber | Weight g/m2 | |||
CUD300 | 12K | 300 | Hot Melt | 8 | 300 | 0.3 |
>> Suitable Production Process | >> Characteristics |
| Carbon fiber fabric has a relatively low density, about one-fourth that of steel, and is very light in weight. Using carbon fiber fabric in building reinforcement will not add excessive weight to the original structure and will not significantly change the force system of the structure. It is especially suitable for building reinforcement projects with strict restrictions on self-weight. Moreover, carbon fiber fabric is very thin, and after pasting, it basically does not increase the size and weight of the original structure, having minimal impact on the space and appearance of the building. For example, when reinforcing ancient buildings or buildings with special appearance requirements, carbon fiber fabric can achieve the reinforcement purpose without damaging the original architectural style. With high strength, high modulus, high temperature resistance, wear resistance, corrosion resistance, fatigue resistance, electrical conductivity, electric heating and infrared radiation and other excellent properties. |
Main Application Area
Aerospace & Aviation, Military industry and wind power industry,
Transportation, Construction Industry, Medical equipment, Sports products.
>> Sports Equipment This material is highly valued in the sports goods industry. It is used to manufacture a wide range of sports equipment, including bicycles, tennis rackets, golf clubs, and fishing rods. For bicycles, carbon fiber fabric frames offer a perfect combination of lightness and stiffness, allowing cyclists to achieve higher speeds with less effort. Tennis rackets made from carbon fiber fabric provide better power transfer and control, enhancing the player's performance. Golf clubs crafted with carbon fiber fabric offer greater flexibility and accuracy, while fishing rods are more sensitive and durable, enabling anglers to detect even the slightest bites. | |
>> Electronics and Electrical Appliances In the electronics industry, carbon fiber fabric is used in the manufacturing of high-performance electronic devices due to its electrical conductivity and thermal properties. It can be incorporated into components such as heat sinks to improve heat dissipation, ensuring the proper functioning and longevity of electronic devices. Additionally, its lightweight nature makes it suitable for applications where reducing the weight of electronic products is crucial, such as in portable devices and aerospace electronics. | |
Advantage
Good Corrosion Resistance and Durability Carbon fiber fabric has excellent corrosion resistance and can resist the erosion of chemical substances such as acids, alkalis, and salts, as well as the influence of harsh environments such as humidity and high temperature. Compared with traditional steel reinforcement methods, carbon fiber fabric will not rust and does not require complex anti-corrosion treatments, thus reducing maintenance costs and subsequent maintenance work. This gives it great advantages in building reinforcement projects in corrosive environments such as coastal areas and chemical plants, ensuring that the reinforced structure can work stably for a long time. | ![]() |
Width And Weight Can Customized
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Maintenance
Clean the surface of the carbon fiber Fabric. During use, dust and stains on the surface of carbon fiber Fabric should be cleaned in time, and special cleaners should be used to avoid acidic or alkaline cleaners. | |
| Prevent carbon fiber Fabric From being exposed to sunlight for a long time. Long exposure to sunlight will make the surface of carbon fiber Fabric crack and fade, affecting the beauty and service life. |
![]() | When storing carbon fiber Fabric Attention should be paid to avoid humidity, high temperature and other environments. When storing carbon fiber Fabric, avoid humidity, high temperature and other environments, and keep dry and ventilated. |
In summary, carbon fiber Fabric has a long service life, but long-term use also needs to pay attention to some matters. During use, attention should be paid to prevent damage to the surface of the carbon fiber Fabric, to avoid environmental effects such as high temperature and high humidity, and to check the use regularly.
In terms of maintenance,attention should be paid to cleaning the surface of the carbon fiber Fabric, avoiding long-term exposure to the sun, and properly storing the carbon fiber Fabric.