1000mm High Tensile Strength CWT200-1000 Sports Goods
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1000mm High Tensile Strength CWT200-1000 Sports Goods

Weight can be customized (100g/ M2-600g /m2) ;Width can be customized (500mm-1270mm)
Code: CWT200-1000
Brand: QINI
Width: 1000mm
Material: Carbon Fiber 3K
Weight: 200g/M2
Roll length: 100m/roll
Process: Woven
Availability:

Product Description


>> Carbon Fiber Twill fabric is a type of woven fabric made from carbon fibers. In its structure, the twill weave pattern is characterized by diagonal ribs or lines created by the interlacing of the warp (lengthwise) and weft (crosswise) carbon fiber yarns. This weave pattern gives the fabric a distinct appearance and specific mechanical characteristics. The 3K, 6K, or other tow counts of carbon fibers can be used, where the number indicates the number of individual filaments in each tow of carbon fiber.


Code

90°

Density

(g/m²)

Fiber

Density (g/m²)

Fiber

Density (g/m²)

CWT120-1k

1K

60

1K

60

120

CWT200-3k

3K

100

3K

100

200

CWT280-3k

3K

140

3K

140

280

CWT360-6k

6K

180

6K

180

360

CWT450-12k

12K

225

12K

225

450

CWT640-12k

12K

320

12K

320

640



Technical Sheet


Code

Warp

Weft

Density

g/m2

Thickness mm

Fiber

Weight g/m2

Fiber

Weight

g/m2

CWT200

3K

100

3K

100

200

0.2


>> Suitable Production Process >> Characteristics
  • Carbon Fiber Preparation: High-quality carbon fibers are first selected, which may be PAN-based, pitch-based, or viscose-based, with PAN-based being the most common. These fibers are then processed to ensure they are of the appropriate length, diameter, and quality for weaving.

  • Weaving: The carbon fibers are woven into a twill pattern using specialized looms. The warp fibers are set up on the loom first, and then the weft fibers are interlaced with them in a diagonal pattern to create the twill weave. The tension and speed during the weaving process are carefully controlled to ensure the quality and uniformity of the fabric.

  • Surface Treatment and Sizing: After weaving, the fabric may undergo a surface treatment to improve the adhesion between the carbon fibers and the matrix material (usually a resin) in composite applications. A sizing agent is also applied to protect the fibers from damage during handling and to enhance their compatibility with the resin.

  • Finishing: The fabric may be further processed through steps such as cutting to the desired dimensions, edge sealing to prevent fraying, and sometimes additional treatments depending on the specific application requirements.




  • Good Flexibility and Formability: The twill weave allows the fabric to have a certain degree of flexibility, making it easier to conform to complex shapes during the manufacturing process. It can be molded into various forms, which is essential for creating components with intricate designs, like the body panels of sports cars or the frames of bicycles.

  • Corrosion Resistance: Carbon fibers are highly resistant to corrosion from a wide range of chemicals, including acids, alkalis, and salts. This makes Carbon Fiber Twill fabric suitable for use in harsh environments, such as marine applications where it can be exposed to saltwater, or in industrial settings with corrosive substances.

  • Anisotropic Properties: Similar to other carbon fiber products, Carbon Fiber Twill fabric has anisotropic properties. Its mechanical properties vary depending on the direction. The strength and modulus are generally higher along the direction of the fibers (warp and weft directions) compared to the transverse direction. This characteristic allows designers to optimize the orientation of the fabric in composite materials to meet specific performance requirements.


Main Application Area


Aerospace & Aviation, Military industry and wind power industry,

Transportation, Construction Industry, Medical equipment, Sports products.


>> Aviation Field


Carbon Fiber Plain Weave Fabric is widely used in the aviation field as a lightweight, high-strength material. It can make aircraft wings, beams, rudder and other parts, can reduce the weight of the aircraft, increase flight speed and range, and improve fuel efficiency.

Aviation Field
Automotive Field >> Automotive Field


Carbon Fiber Twill fabric is employed in the production of car body panels, spoilers, and interior trim pieces. It not only reduces the weight of the vehicle but also gives it a high-end and sporty appearance. In high-performance cars, it contributes to better acceleration, handling, and braking.

>> Sports Equipment


This fabric is widely used in the production of sports equipment like tennis rackets, golf clubs, and snowboards. Its strength and flexibility allow for the creation of products that offer better performance, control, and comfort to athletes.

Sports Equipment



Maintenance

1


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.


  区块


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.


图标 (1)


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.


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