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Carbon prepregs
Unknown BrandSKU: 900001ECCN: EAR99

Carbon prepregs

Carbon fiber prepregs are composites reinforced with carbon fibers. They have epoxy resin as a binder that impregnates carbon fibers (carbon fiber). Carbon fiber is thin threads of carbon atoms combined into a crystal 5-10 microns thick.

$113.03

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EAR99
ECCN CodeEAR99
ClassificationNot on CCL — Low Sensitivity
DestinationsWorldwide (except OFAC-sanctioned countries)
Customer TierAll Buyers
LicenseNot required (NLR)

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Carbon Fiber Series

Model

Weaving method

Material model

Density
1 thread/10mm)

Dimensions mm)

Mass per unit area g/)

Warp

Weft

Radial direction

Transverse direction

Width

Thickness

1K

W-1011

Flat weave

Carbon fiber 1K

Carbon fiber 1K

9,10

9,10

1000

0,16

125

W-1021

2/2 twill weave

Carbon fiber 1K

Carbon fiber 1K

9,10

9,10

1000

0,16

125

3K

W-3011

Flat weave

Carbon fiber 3K

Carbon fiber 3K

4,92

4,92

1000

0,25

198

W-3021

2/2 twill weave

Carbon fiber 3K

Carbon fiber 3K

4,92

4,92

1000

0,25

198

6K

W-6011

Flat weave

Carbon fiber 6K

Carbon fiber 6K

4,00

4,00

1000

0,44

324

W-6021

2/2 twill weave

Carbon fiber 6K

Carbon fiber 6K

4,00

4,00

1000

0,44

324

12K

W-7011

Flat weave

Carbon fiber 12K

Carbon fiber 12K

4,00

4,00

1000

0,64

640

W-7021

2/2 twill weave

Carbon fiber 12K

Carbon fiber 12K

4,00

4,00

1000

0,64

640

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Carbon prepregs are materials made from carbon fibers pre-impregnated with a thermoset or thermoplastic resin. They are a semi-finished product, ready for further molding and curing under certain conditions of temperature and pressure. Carbon prepregs are widely used in aerospace, automotive, sports and other high-tech industries due to their outstanding mechanical properties.

Main characteristics of carbon prepregs

  1. High strength and rigidity. Carbon fibers have exceptional mechanical properties, providing high strength and stiffness with a relatively low material density. This makes them ideal for applications where strength to weight ratio is important.

  2. Lightness. Carbon fiber prepregs are significantly lighter than traditional metal materials such as steel and aluminum. This property is especially important in the aerospace and automotive industries, where reduced structural weight leads to improved fuel efficiency and performance.

  3. Corrosion resistance. Carbon prepregs are highly resistant to corrosion. This makes them durable and reliable in aggressive environments.

  4. Heat resistance. Carbon fibers retain their mechanical properties at high temperatures. This allows them to be used in extreme temperature conditions.

  5. Variability of molding. Prepregs can be used to create complex geometric shapes and structures. They can be easily cut, laid and cured into molds of varying complexity.

Application of carbon prepregs

  1. Aerospace industry. Prepregs are widely used for the manufacture of wings, fuselages, tail sections and other aircraft components. Their lightness and strength contribute to improved flight performance and reduced fuel consumption.

  2. Automotive industry. In the production of sports and racing cars, prepregs are used to create body panels, chassis and other elements where high strength and minimal weight are important.

  3. Sports and recreation. Prepregs are used in the production of sports equipment such as bicycles, tennis rackets, skis and snowboards. Their use makes it possible to create lightweight and durable equipment, improving the performance of athletes.

  4. Marine technology. In shipbuilding, prepregs are used to create hulls, masts and other structural elements of yachts and boats, providing high strength and corrosion resistance.

  5. Renewable energy. Prepregs are used in the manufacture of wind turbine blades, which ensures high efficiency and durability of these structures.

Technological process for the production of prepregs

  1. Impregnation. Carbon fibers are impregnated with a thermoset or thermoplastic resin. This process can be carried out by various methods, including molten or pressure impregnation.

  2. Molding. The impregnated fibers are placed into molds where they take on the desired configuration. At this stage it is important to ensure the correct placement of the fibers to achieve maximum strength.

  3. Curing. Molded prepregs are heat treated to polymerize the resin and achieve the final strength and stiffness of the material.

Prepregs are an innovative material with unique properties that are used in a wide variety of industries. Their high strength, lightness, corrosion resistance and heat resistance make them indispensable in applications where reliability and efficiency are important. The use of prepregs allows the creation of high-tech structures, providing new opportunities for engineering and design.

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