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Carbon fiber slitting machines are specialized equipment for precisely cutting continuous carbon fiber bundles/yarns to a set length. Their core function is to solve the cutting challenges of high hardness, high wear resistance, easy fuzzing, and easy delamination of carbon fibers. They are widely used in composite materials, conductive fillers, friction materials, and other fields.
The cutting tools require extremely high precision: they must be made of ultra-hard, wear-resistant materials such as cemented carbide, high-speed steel, and ceramics, with sharp edges and precise spacing to prevent fiber splitting, fraying, and entanglement.
Tension control is stringent: constant tension is maintained throughout the entire process to prevent the fiber bundle from loosening, deviating, or breaking, ensuring uniform cutting length.
Insulation and protection: Carbon fiber is conductive, so the equipment must be electrically insulated; the entire process is sealed and dust-free to prevent carbon powder contamination and safety hazards.
Precision is paramount: the length error of mainstream models is controlled within ±0.1~0.5mm, meeting the requirements of high-end composite materials.

Composite Materials: Short-cut carbon fiber reinforced plastics (CFRP), automotive lightweighting, wind turbine blades, sporting goods.
Conductive/Thermal Conductive Materials: Conductive coatings, electromagnetic shielding, heat dissipation materials, battery electrodes.
Friction Materials: Brake pads, clutch plates, improving wear resistance and thermal conductivity.
Environmental Protection/Filtration: High-temperature filter materials, adsorption materials.
Regularly sharpen/replace blades and adjust blade gap to ensure cutting quality.
Clean the feed rollers and cutter head to prevent carbon powder buildup and entanglement.
Inspect the tension system and insulation to ensure safe and stable operation.

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