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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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  • 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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  • PA12-NA-LCF
    LFT-G Polyamide 12 long carbon fiber reinforced compounds nylon for car parts
    Long carbon fiber Carbon fiber has many excellent properties, high axial strength and modulus, low density, high specific performance, no creep, super high temperature resistance in non-oxidizing environment, good fatigue resistance, specific heat and electrical conductivity between non-metal and metal, small coefficient of thermal expansion and anisotropy, good corrosion resistance, good X-ray transmission. Good electrical and thermal conductivity, good electromagnetic shielding, etc. Compared with traditional glass fiber, carbon fiber has more than 3 times of Young's modulus; it is about 2 times of Young's modulus compared with Kevlar fiber, which is insoluble and swollen in organic solvents, acids and alkalis, and has outstanding corrosion resistance. But is there a way to reduce the price of carbon fiber? That is to mix it with relatively cheap nylon material to form a composite material with good performance and meet the requirements. In that case, there is no doubt that carbon fiber nylon will definitely have a place in the composite material. Nylon itself is an engineering plastic with excellent performance, but moisture absorption, poor dimensional stability of products. Strength and hardness are also far from metal. In order to overcome these shortcomings, as early as before the 70s. People have used carbon fiber or other varieties of fibers for reinforcement to improve its performance. Carbon fiber reinforced nylon materials have developed rapidly in recent years, because nylon and carbon fiber are excellent performance in the field of engineering plastics materials, its compound material synthesis reflects the superiority of the two, such as strength and rigidity than unreinforced nylon is much higher, high temperature creep is small, thermal stability has improved significantly, good dimensional accuracy, wear resistance. Excellent damping, compared with glass fiber reinforced has better performance. Therefore, carbon fiber reinforced nylon (CF / PA) composites have developed rapidly in recent years. And for 3D printing using SLS technology is the most suitable technical means to achieve carbon fiber reinforced nylon. TDS for reference Application Our company Xiamen LFT composite plastic Co., Ltd is a brand-name company that focuses on LFT&LFRT. Long Glass Fiber Series (LGF) & Long Carbon Fiber Series (LCF). The company's thermoplastic LFT can be used for LFT-G injection molding and extrusion, and can also be used for LFT-D molding. It can be produced according to customer requirements: 5~25mm in length. The company's continuous infiltration reinforced thermoplastics have passed ISO9001&16949 system certification,  and the products have obtained lots of national trademarks and patents.
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  • ABS-NA-LGF
    Acrylonitrile Butadiene Styrene ABS filling long glass fiber modified thermoplastic resin
    ABS & Long Glass Fiber Compounds body { font-family: Arial, sans-serif; color: #333; line-height: 1.6; } h2 { font-size: 24px; color: #339933; margin-top: 30px; } h3 { font-size: 20px; color: #339933; margin-top: 20px; } p, ul { font-size: 18px; } ul { margin-left: 20px; } table { width: 100%; border-collapse: collapse; margin-top: 15px; margin-bottom: 15px; } table, th, td { border: 1px solid #000; } th, td { text-align: center; padding: 5px; font-size: 18px; } img { max-width: 100%; margin-top: 15px; margin-bottom: 15px; } What is ABS material? ABS (Acrylonitrile Butadiene Styrene) is a thermoplastic polymer structural material with high strength, good toughness, and easy machinability. ABS appears as opaque ivory grains, but products can be colored and have a high gloss finish. Why fill with Long Glass Fiber? Long fiber reinforced thermoplastics (LFT & LFRT) differ from conventional short fiber reinforced thermoplastics. Short fibers are usually 1–2 mm long, while long fiber processes maintain lengths of 5–25 mm. The long fiber is impregnated with a special resin system, cut to desired lengths, and can be used in injection molding, extrusion, and other applications. This enables direct replacement of steel and thermoset products. Advantages of ABS filling Long Glass Fiber Compounds Glass fiber is heat resistant, increasing the heat resistance of reinforced plastics, especially for nylon plastics. Reduces shrinkage and greatly improves rigidity by limiting polymer chain movement. Prevents stress cracking and significantly improves impact resistance. Enhances mechanical strength, including tensile, compressive, and bending strength. Flame retardancy: Most reinforced plastics cannot ignite due to added fibers and additives. Datasheet for Reference Applications of ABS Filling Long Glass Fiber Compounds Mainly used in load-bearing and structural parts. Product Details Number Length Color MOQ Package Sample Delivery Time Port of Loading ABS-NA-LGF30 5–25 mm Original color (customizable) 25 kg 25 kg/bag Available 7–15 days after shipment Xiamen Port Our Company Our Teams & Customers We Offer You LFT & LFRT material technical parameters and leading-edge design. Mold front design and recommendations. Technical support for injection molding and extrusion molding. Contact Way Ms. Wallis Email: sale02@lfrtplastic.com Whatsapp: (+86) 13950095727 WeChat: 13950095727
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  • PLA-NA-LGF
    LFT Polylactic acid compounds filled long glass fiber thermoplastic resin
    PLA (Polylactic Acid) PLA, also known as polylactic acid, is a biodegradable and environmentally friendly polymer. Its production process is pollution-free, and the material can naturally degrade, making it one of the most representative green plastics. The structure of PLA has a significant impact on its heat resistance, toughness, mechanical strength, degradability, and biocompatibility. Among these, heat resistance is a key limitation. PLA molecular chains contain only one methylene group, forming a spiral structure with low chain mobility. As a result, PLA exhibits slow crystallization during injection molding, leading to low crystallinity and poor heat resistance. Additionally, during thermal processing, ester bonds may break, generating terminal carboxyl groups that accelerate thermal degradation through autocatalysis. LGF Reinforced PLA Long fiber reinforcement significantly enhances the performance of PLA. Fibers act as a structural skeleton within the polymer matrix, restricting molecular chain movement under heat and thereby improving thermal resistance. Various fibers can be used for PLA reinforcement, including: Natural plant fibers (sisal, flax, bamboo, coconut fiber, wood fiber) Animal fibers (silk) Mineral fibers (basalt fiber) Synthetic fibers (carbon fiber, glass fiber) Among these, carbon fiber and glass fiber are widely applied due to their high strength and modulus, while natural fibers are gaining attention for their sustainability and biodegradability. Studies show that reinforced PLA composites can achieve a Vicat softening temperature exceeding 140°C, significantly improving thermal performance compared to pure PLA. Comparison with Short Fiber (SGF) Compared to short fiber reinforced materials, long glass fiber (LGF) composites offer superior mechanical performance: 1–3 times higher toughness 50–100% increase in tensile strength and stiffness Better suitability for large structural parts Injection Molding Laboratory Warehouse Certifications Xiamen LFT Composite Plastic Co., Ltd. Xiamen LFT Composite Plastic Co., Ltd. specializes in long fiber reinforced thermoplastics (LFT & LFRT), including Long Glass Fiber (LGF) and Long Carbon Fiber (LCF) materials. Our materials are suitable for injection molding, extrusion (LFT-G), and direct molding (LFT-D). Fiber lengths can be customized from 5–25 mm according to customer requirements. Our products are manufactured using advanced continuous fiber impregnation technology and are certified under ISO9001 and IATF16949 systems, with multiple patents and registered trademarks.
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