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Carbon fiber woven cloth is a high-performance composite material made of carbon fiber through a specific weaving process. It weaves carbon filaments in a regular pattern to form a cloth-like material with a planar structure, making full use of the excellent properties of carbon fiber such as high strength, high modulus, and low density. Carbon fiber woven cloth has become a key material in the field of modern high-end manufacturing through its combined advantages of "high strength + lightweight + weather resistance" - it not only solves the difficulty of traditional materials being "heavy and weak", but also maintains stable performance in extreme environments.
3K Carbon Fiber Fabric Specifications
Model Specifications | Fabric Structure | Warp and Weft Density | GSM(g/m²) | Thickness(mm) |
R-CF-3K-P180 | Plain | 4.5×4.5 | 180 | 0.25 |
R-CF-3K-P200 | Plain | 5×5 | 200 | 0.26 |
R-CF-3K-T200 | Twill | 5×5 | 200 | 0.26 |
R-CF-3K-T220 | Twill | 5.5×5.5 | 220 | 0.30 |
R-CF-3K-P240 | Plain | 6×6 | 240 | 0.32 |
R-CF-3K-T240 | Twill | 6×6 | 240 | 0.32 |
R-CF-3K-P280 | Plain | 7×7 | 280 | 0.34 |
Product Features
Carbon fiber fabric has extremely high tensile strength, which is much higher than steel, while its weight is only about one-fifth of steel. At the same time, the high modulus gives it good rigidity, which can keep its shape stable when subjected to external force and is not easy to deform |
Carbon fiber has a low thermal expansion coefficient, small dimensional changes under different temperature environments, can maintain good dimensional stability, and is suitable for occasions with high precision requirements. |
Carbon fiber cloth has good tolerance to chemicals such as acids, alkalis, and salts, and can maintain stable performance in harsh chemical environments and extend service life. |
Carbon fiber material has good impact resistance, can absorb and disperse impact force, and protect the product from being easily broken or damaged when it is impacted. |
Carbon fiber products is light in weight and can effectively reduce the weight of the product. In the fields of aerospace, automobiles, etc., it helps to improve transportation efficiency and reduce energy consumption. |
Carbon fiber has certain electrical and thermal conductivity properties, which can meet the requirements of electrical conductivity and thermal conductivity of materials in some special application scenarios. |
Explore the Production Process
Hanging Yarn
Hang the carbon filament on the yarn rack to prepare for the subsequent steps.
Threading Yarn
Pass the carbon fiber filament through each paddle and steel wire in an orderly manner to ensure that the yarn is neatly arranged.
Hanging Tail Wire
After heating, the tail wire will melt, thus binding the carbon filaments and preventing them from loosening.
Weaving
Selecting the right carbon filament quality and weaving process is crucial to the quality of the final finished carbon fiber fabric.
Winding
When the carbon fiber cloth is woven to the set number of meters, the machine will automatically stop for the next operation.
Unloading Cloth
Finally, the woven carbon fiber cloth is packaged and stored to complete the entire production process.
Carbon fiber woven cloth is a high-performance composite material made of carbon fiber through a specific weaving process. It weaves carbon filaments in a regular pattern to form a cloth-like material with a planar structure, making full use of the excellent properties of carbon fiber such as high strength, high modulus, and low density. Carbon fiber woven cloth has become a key material in the field of modern high-end manufacturing through its combined advantages of "high strength + lightweight + weather resistance" - it not only solves the difficulty of traditional materials being "heavy and weak", but also maintains stable performance in extreme environments.
3K Carbon Fiber Fabric Specifications
Model Specifications | Fabric Structure | Warp and Weft Density | GSM(g/m²) | Thickness(mm) |
R-CF-3K-P180 | Plain | 4.5×4.5 | 180 | 0.25 |
R-CF-3K-P200 | Plain | 5×5 | 200 | 0.26 |
R-CF-3K-T200 | Twill | 5×5 | 200 | 0.26 |
R-CF-3K-T220 | Twill | 5.5×5.5 | 220 | 0.30 |
R-CF-3K-P240 | Plain | 6×6 | 240 | 0.32 |
R-CF-3K-T240 | Twill | 6×6 | 240 | 0.32 |
R-CF-3K-P280 | Plain | 7×7 | 280 | 0.34 |
Product Features
Carbon fiber fabric has extremely high tensile strength, which is much higher than steel, while its weight is only about one-fifth of steel. At the same time, the high modulus gives it good rigidity, which can keep its shape stable when subjected to external force and is not easy to deform |
Carbon fiber has a low thermal expansion coefficient, small dimensional changes under different temperature environments, can maintain good dimensional stability, and is suitable for occasions with high precision requirements. |
Carbon fiber cloth has good tolerance to chemicals such as acids, alkalis, and salts, and can maintain stable performance in harsh chemical environments and extend service life. |
Carbon fiber material has good impact resistance, can absorb and disperse impact force, and protect the product from being easily broken or damaged when it is impacted. |
Carbon fiber products is light in weight and can effectively reduce the weight of the product. In the fields of aerospace, automobiles, etc., it helps to improve transportation efficiency and reduce energy consumption. |
Carbon fiber has certain electrical and thermal conductivity properties, which can meet the requirements of electrical conductivity and thermal conductivity of materials in some special application scenarios. |
Explore the Production Process
Hanging Yarn
Hang the carbon filament on the yarn rack to prepare for the subsequent steps.
Threading Yarn
Pass the carbon fiber filament through each paddle and steel wire in an orderly manner to ensure that the yarn is neatly arranged.
Hanging Tail Wire
After heating, the tail wire will melt, thus binding the carbon filaments and preventing them from loosening.
Weaving
Selecting the right carbon filament quality and weaving process is crucial to the quality of the final finished carbon fiber fabric.
Winding
When the carbon fiber cloth is woven to the set number of meters, the machine will automatically stop for the next operation.
Unloading Cloth
Finally, the woven carbon fiber cloth is packaged and stored to complete the entire production process.
Application of Carbon Fiber Fabric
Aerospace
Carbon fiber fabric can be used to manufacture aircraft wings, fuselages, tails and other structural components, while reducing the weight of the aircraft, ensuring structural strength and reliability, and improving flight performance and fuel efficiency.
Sports Goods
Such as bicycle frames, badminton rackets, tennis rackets, golf clubs, skis, surfboards, etc., can improve the strength, rigidity and elasticity of equipment, improve sports performance, and reduce the weight of equipment, making it easier for athletes to control.
Industrial Field
Carbon fiber fabric can be used as a reinforcing material to manufacture industrial components such as pressure vessels, pipes, fan blades, drive shafts, etc., to improve the bearing capacity and service life of components.
Automotive Industry
Carbon fiber fabric can be used to manufacture automobile body shells, hoods, trunk lids, spoilers, chassis components, etc., to make the car lighter, reduce fuel consumption and exhaust emissions, and improve the vehicle's handling performance and collision safety.
Electronic Products
Carbon fiber fabric can be used to manufacture laptop shells, mobile phone shells, tablet shells, etc., which can not only reduce the weight of the product, but also improve the appearance texture and heat dissipation performance of the product, while using its electromagnetic shielding performance to reduce the electromagnetic interference of electronic products to other equipment.
Construction Field
Carbon fiber cloth can be used for structural reinforcement and earthquake-resistant reinforcement of buildings, such as reinforcing beams, columns, walls, etc., to improve the bearing capacity and earthquake resistance of buildings. It can also be used to manufacture some building components with special requirements, such as fire-proof and anti-corrosion wall panels, roof panels, etc.
Application of Carbon Fiber Fabric
Aerospace
Carbon fiber fabric can be used to manufacture aircraft wings, fuselages, tails and other structural components, while reducing the weight of the aircraft, ensuring structural strength and reliability, and improving flight performance and fuel efficiency.
Sports Goods
Such as bicycle frames, badminton rackets, tennis rackets, golf clubs, skis, surfboards, etc., can improve the strength, rigidity and elasticity of equipment, improve sports performance, and reduce the weight of equipment, making it easier for athletes to control.
Industrial Field
Carbon fiber fabric can be used as a reinforcing material to manufacture industrial components such as pressure vessels, pipes, fan blades, drive shafts, etc., to improve the bearing capacity and service life of components.
Automotive Industry
Carbon fiber fabric can be used to manufacture automobile body shells, hoods, trunk lids, spoilers, chassis components, etc., to make the car lighter, reduce fuel consumption and exhaust emissions, and improve the vehicle's handling performance and collision safety.
Electronic Products
Carbon fiber fabric can be used to manufacture laptop shells, mobile phone shells, tablet shells, etc., which can not only reduce the weight of the product, but also improve the appearance texture and heat dissipation performance of the product, while using its electromagnetic shielding performance to reduce the electromagnetic interference of electronic products to other equipment.
Construction Field
Carbon fiber cloth can be used for structural reinforcement and earthquake-resistant reinforcement of buildings, such as reinforcing beams, columns, walls, etc., to improve the bearing capacity and earthquake resistance of buildings. It can also be used to manufacture some building components with special requirements, such as fire-proof and anti-corrosion wall panels, roof panels, etc.
Guidelines for Using Carbon Fiber Fabric
Carbon fiber fabric is a high-performance composite material made of woven carbon fiber. It is lightweight and high-strength and is commonly used in the automotive, medical devices, sports equipment, bicycle frames and other fields.
When using it, generally follow the following steps:
![]() | Cutting and PreparationClean the work area to ensure that the surface is flat and dust-free (it is recommended to wear gloves, masks and goggles to avoid skin contact or inhalation of carbon fiber). Cut the carbon fiber cloth with scissors or professional cutting tools according to the shape and size of the required parts. |
Laying and PositioningLay the cut carbon fiber fabric on the mold or substrate (such as plastic or metal mold) to ensure a tight fit and no wrinkles. When multiple layers are stacked, they can be laid crosswise in the design direction to enhance strength. | ![]() |
![]() | Impregnation with ResinUse resin (such as epoxy resin or polyester resin) to evenly apply or inject it onto the cloth to completely impregnate the fibers (avoid dry spots). Common methods include: Hand lay-up method: manually brush the resin. Vacuum infusion: evacuate the air through a vacuum pump to make the resin penetration more uniform. Autoclave process: used for high-precision parts, combined with heat and pressure curing. |
Curing MoldingAfter resin infiltration, curing is carried out according to the resin type: Room temperature curing: leave it for 24-48 hours (refer to the resin manual for specific time). Heating curing: Use an oven or hot air gun to accelerate at 80-150°C, the time is about 1-2 hours. After curing, demould and trim the edges to complete the part. | ![]() |
Guidelines for Using Carbon Fiber Fabric
Carbon fiber fabric is a high-performance composite material made of woven carbon fiber. It is lightweight and high-strength and is commonly used in the automotive, medical devices, sports equipment, bicycle frames and other fields.
When using it, generally follow the following steps:
![]() | Cutting and PreparationClean the work area to ensure that the surface is flat and dust-free (it is recommended to wear gloves, masks and goggles to avoid skin contact or inhalation of carbon fiber). Cut the carbon fiber cloth with scissors or professional cutting tools according to the shape and size of the required parts. |
Laying and PositioningLay the cut carbon fiber fabric on the mold or substrate (such as plastic or metal mold) to ensure a tight fit and no wrinkles. When multiple layers are stacked, they can be laid crosswise in the design direction to enhance strength. | ![]() |
![]() | Impregnation with ResinUse resin (such as epoxy resin or polyester resin) to evenly apply or inject it onto the cloth to completely impregnate the fibers (avoid dry spots). Common methods include: Hand lay-up method: manually brush the resin. Vacuum infusion: evacuate the air through a vacuum pump to make the resin penetration more uniform. Autoclave process: used for high-precision parts, combined with heat and pressure curing. |
Curing MoldingAfter resin infiltration, curing is carried out according to the resin type: Room temperature curing: leave it for 24-48 hours (refer to the resin manual for specific time). Heating curing: Use an oven or hot air gun to accelerate at 80-150°C, the time is about 1-2 hours. After curing, demould and trim the edges to complete the part. | ![]() |