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  • PP-NA-LCF30
    LFT-G PP long carbon fiber reinforced material high performance original black
    Long Carbon Fiber & PP-LCF body { font-family: Arial, sans-serif; line-height: 1.6; color: #333; margin: 20px; } h2 { font-size: 24px; background-color: #f0f0f0; padding: 10px; color: #339933; } p { margin: 10px 0; } ul { margin: 10px 0 10px 20px; } img { max-width: 100%; height: auto; display: block; margin: 10px 0; } Long Carbon Fiber In recent years, due to the growing demand for lightweight materials in industries such as automotive, aerospace, military, and construction, and the increasing need for environmentally friendly and sustainable materials, fiber reinforced thermoplastic composites have been increasingly used. Carbon fiber reinforced composites have high recycling value, and with effective recycling technology, costs can be significantly reduced. The recycling method for fiber reinforced thermoplastic composites depends on the fiber form and molding method. Carbon fiber reinforcement forms include short fiber, long fiber, and continuous fiber, primarily using melt forming. For high melting point thermoplastics like PEI or PEEK, solvent forming is also possible. Thermoplastic composites are more recyclable than thermosetting composites due to their linear molecular structure, which allows remelting and reshaping. PP-LCF Datasheet Application Our materials can be recycled. Many companies are developing recycling methods for fiber reinforced thermoplastic composites. For example, the 2014 Chevrolet Corvette used recycled carbon fiber composites in 21 body panels, including doors, boot lids, side panels, and fenders. Ford used recycled long carbon fiber and polypropylene (LCF/PP) to replace ASA engineering plastic in the A-pillar bracket of the 2018 Explorer SUV. About LFT-G Xiamen LFT Composite Plastic Co., Ltd. is a brand-name company focusing on LFR & LFRT: Long Glass Fiber Series (LGF) & Long Carbon Fiber Series (LCF). Our thermoplastic LFT can be used for LFT-G injection molding, extrusion, and LFT-D molding. Fiber lengths can be customized from 5~25mm. Our continuous infiltration reinforced thermoplastics have passed ISO9001 & IATF16949 certification, and our products hold multiple national trademarks and patents. Our carbon fiber LFT series has broken foreign technical barriers, providing high-performance thermoplastic engineering plastics for domestic automotive, military, aerospace, medical, renewable energy, and sports industries.
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  • PA6-NA-LCF50
    Xiamen LFT-G Polyamide 6 filling Long Carbon Fiber reinforced thermoplastic material
    PA6 Long Carbon Fiber Composite body { font-family: Arial, sans-serif; line-height: 1.6; color: #333; margin: 20px; } h2 { font-size: 24px; background-color: #f0f0f0; padding: 10px; color: #339933; } p { margin: 10px 0; } ul { margin: 10px 0 10px 20px; } img { max-width: 100%; height: auto; display: block; margin: 10px 0; } Polyamide 6 (PA6) Nylon 6 (PA6) is a general engineering plastic with lightweight, wear resistance, corrosion resistance, and good toughness. As a thermoplastic resin, it softens when heated and hardens when cooled, allowing repeated processing. Long Carbon Fiber Carbon fiber has high strength, high modulus, large specific surface area, and high electrical conductivity. Compared with glass fiber, carbon fiber provides maximum strength along the fiber direction. Carbon fiber reinforced composites are stronger than polymer matrix materials while maintaining light weight, gradually replacing traditional metals in electronics, electric vehicles, medical devices, industrial equipment, and sports/leisure products. LCF VS SCF Advantages of Long Carbon Fiber Filled High strength and high toughness Small coefficient of thermal expansion Low hardness and light weight Corrosion resistance and aging resistance Temperature resistance TDS of PA6 for Reference Application of PA6 Suitable for manufacturing helmets, car bumpers, treadmills, etc. Certifications Factory & Warehouse Teams & Customers About Us Xiamen LFT Composite Plastic Co., Ltd is a brand-name company focusing on LFT & LFRT: Long Glass Fiber Series (LGF) & Long Carbon Fiber Series (LCF). Our thermoplastic LFT materials can be used for LFT-G injection molding, extrusion, and LFT-D molding. Fiber lengths can be customized from 5~25mm. Our continuous infiltration reinforced thermoplastics have passed ISO9001 & IATF16949 certification, and products hold multiple national trademarks and patents.
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  • Long carbon fiber reinforced PLA
    Xiamen LFT PLA filling Long carbon fiber Reinforced polylactic acid
    PLA materials are current pioneering materials in biodegradable materials. Long carbon fiber Reinforced polylactic acid PLA modified materials are likely to become global advantages in future green materials.
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  • PA12-NA-LCF
    LFT Polyamide12 Long Carbon Fiber composites lightweight high toughness
    PA12 & PA12-LCF Information body { font-family: Arial, sans-serif; line-height: 1.6; color: #333; margin: 20px; } h2 { font-size: 24px; color: #339933; background-color: #f0f0f0; padding: 10px; } h3 { font-size: 20px; margin-top: 20px; } p { margin: 10px 0; } ul { margin: 10px 0 10px 20px; } a { color: #0073e6; text-decoration: none; } a:hover { text-decoration: underline; } img { max-width: 100%; height: auto; display: block; margin: 10px 0; } .product-links a { background-color: #CCCCCC; padding: 5px 10px; margin-right: 10px; display: inline-block; text-decoration: none; color: #000; } .faq strong { display: block; margin-top: 10px; } PA12 Information Long carbon chain nylon is a nylon with amide groups in the main chain repeating unit, where the methylene group between two amide groups is more than 10. Examples include nylon 11, nylon 12, etc. PA12, also known as poly(dodecalactam) or poly(laurolactam), is a semi-crystalline thermoplastic material. It has low water absorption, high dimensional stability, heat resistance, corrosion resistance, toughness, and easy processing. Compared with PA11, PA12's raw material is only one-third the cost of PA11, making it widely used in automotive fuel hoses, air brake hoses, submarine cables, and 3D printing. PA12 offers advantages over other nylons, including low water absorption, low density, low melting point, impact and friction resistance, low-temperature resistance, fuel resistance, good dimensional stability, and noise reduction. It combines the properties of PA6, PA66, and polyolefins (PE, PP) for lightweight yet strong materials. PA12-LCF Adding carbon fiber to PA12 is like adding steel reinforcement to concrete. The fiber bears most of the external forces, improving overall structural strength. Carbon fiber has high axial strength and modulus, low density, high specific performance, no creep, excellent fatigue resistance, corrosion resistance, and superior thermal and electrical properties. Compared with glass fiber, carbon fiber has over 3 times the Young's modulus, and about twice that of Kevlar fiber. Carbon fiber reinforced nylon materials (CF/PA) have developed rapidly due to high strength, rigidity, thermal stability, dimensional accuracy, wear resistance, and excellent damping properties compared to glass fiber reinforced nylon. Datasheet for Reference PA12 has low water absorption, good low-temperature resistance, excellent air tightness, alkali and grease resistance, medium resistance to alcohols and dilute inorganic acids, and good mechanical and electrical properties. It is also self-extinguishing. Application Suitable for automotive, sports parts, solar energy, high-end toys, and other industries. Other Products You May Wonder PP-LCF PA6-LCF PA66-LCF Frequently Asked Questions 1. How does thermoplastic carbon fiber composite material achieve low cost and environmental protection? Thermoplastic carbon fiber composites are used to make parts for high-end machinery. They have excellent machinability, vacuum forming, stamping mold plasticity, and bending processability. 2. Are thermoplastic carbon fiber composites only suitable for injection molding? Injection molding offers high automation, protects material from contamination, and ensures product quality and precision. It is suitable for complex-shaped and mass production. Reinforcement is done with short or powdered carbon fibers; continuous fiber cannot be used in this process. Compression molding is simpler and cheaper for equipment and molds. It can be used for both thermosetting and thermoplastic resins, reduces raw material loss, and is suitable for mass production with lower cost. Xiamen LFT Composite Plastic Co., Ltd. We Will Provide You: LFT & LFRT material technical parameters and leading-edge design Mold front design and recommendations Technical support for injection molding and extrusion molding
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  • PP-NA-LCF30
    LFT Polypropylene reinforced plastic long carbon fiber higher performance 12mm natural color
    PP Material & LFT Solutions body { font-family: Arial, sans-serif; line-height: 1.6; color: #333; margin: 20px; } h2 { font-size: 24px; background-color: #CCCCCC; padding: 10px; } h3 { font-size: 20px; margin-top: 20px; } p { margin: 10px 0; } .highlight { background-color: #FFFF99; color: #333; padding: 5px; } img { max-width: 100%; height: auto; display: block; margin: 10px 0; } ul { margin: 10px 0 10px 20px; } PP Material PP is a polymer made of propylene as monomer by coordination polymerization, and is one of the five major general-purpose plastics: PE, PP, PVC, PS, and ABS. Key Properties: Colorless, tasteless, non-toxic; can meet FDA and other food-grade material requirements when unadded. Due to crystalline nature, the original color is milky white translucent with better transparency than PE. Low specific gravity of 0.9, making it one of the lightest plastics compared to water. Good toughness, especially repeated bending resistance, commonly known as “100-fold rubber”. Better heat resistance than PE, up to 120°C. Good resistance to hydrolysis; can be sterilized by high-temperature steam. Excellent chemical resistance, particularly to acids; suitable for storing concentrated sulfuric acid. Outdoor use is susceptible to light, UV, and aging. Modified PP Material By filling PP with carbon fiber, the rigidity and modulus are increased, reducing deformation caused by shrinkage. However, toughness decreases. Adding anti-UV or anti-aging agents improves outdoor performance, and adding flame retardant materials improves fire resistance. TDS for Reference Only SGF vs LGF Long Carbon Fiber Specification Application Product Processing We Will Offer You LFT & LFRT material technical parameters and leading-edge design Mold front design and recommendations Technical support for injection molding and extrusion molding
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  • PA66-LGF
    LFT Nylon Polyamide 6,6 Long Glass Fiber Reinforced Composites
    The mechanical properties of long glass fiber reinforced nylon 66 (LGFR-PA66) are obviously better than those of short glass fiber reinforced nylon 66 (SGFR-PA66), and the molding processing performance is also better. It can be molded by various molding methods such as injection molding and extrusion molding, and complex components can also be formed.
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  • PA6-NA-LGF
    High Stifiness PA 6 Long Glass Fiber Plastic White Black Color
    PA6 refers to polyamide 6, which is a widely used engineering plastic with excellent mechanical strength, wear resistance, and chemical stability. Adding long glass fibers to PA6 can significantly enhance the material’s mechanical properties, such as strength, rigidity, impact resistance, and dimensional stability.
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  • PBT-LGF
    LFT PBT Polybutylene terephthalate Glass Fiber filled Composites
    One of the remarkable features of PBT-GF is its excellent dimensional stability. The presence of glass fibers greatly reduces the material's tendency to expand or contract under varying temperature conditions. This property ensures that PBT GF retains its shape and size, making it suitable for applications that demand tight tolerances and precise dimensions.
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  • MXD6-LGF
    LFT MXD6 Polyamide New Materials Long Glass Fiber filled Compounds
    MXD6 long glass fiber reinforced material offers excellent mechanical strength, dimensional stability, and outstanding gas barrier properties. It is ideal for applications requiring high stiffness, heat resistance, and reduced permeability, such as automotive components, electronics, and industrial parts.
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  • PLA GF
    Glass Fiber Filling PLA Resin Pellets Injection Molding
    PLA itself is an environmentally friendly thermoplastic, known for its biodegradability. However, it has limited mechanical properties, such as strength, toughness, and heat resistance. By incorporating long glass fibers, the performance of PLA is significantly improved, making it suitable for demanding applications.
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