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  • CPP-NA-LCF
    PP Copolymer Carbon Fiber
    The modified polypropylene material reinforced by carbon fiber has a series of advantages, such as light weight, high modulus, high specific strength, low coefficient of thermal expansion, high temperature resistance, heat shock resistance, corrosion resistance, good vibration absorption, etc., and can be applied to auto parts such as automobile sub-instrument assembly.
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  • PLA CF
    PLA Plastic Resin with Fiber Reinforced Thermoplastic Compounds
    It takes less energy to produce PLA than petroleum-based thermoplastics, making it relatively eco-friendly. PLA is often regarded as being biodegradable.
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  • ABS-NA-LGF
    ABS Pellets Glass Fiber
    ABS injection molding refers to the process of injecting molten ABS plastic into a mold at high pressures and temperatures. There are many ABS injection molding applications as it is a widely used plastic and can be found in the automotive, consumer product, and construction industries to name a few.
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  • TPU-NA-LGF
    Long Glass Fiber Reinforced Composites TPU Pellets
    TPU (Thermoplastic Polyurethane) long glass fiber reinforced composite is a high-performance material that combines the excellent flexibility, abrasion resistance, and weatherability of TPU with the superior strength and dimensional stability of long glass fibers.
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  • PPA Pellets
    PPA reinforced filling long glass fiber
    Fiber-reinforced PPA has high temperature resistance, high strength and low density, so it is considered the best resin to replace steel with plastic in the future. It can be used in many industrial and civil fields, including automobiles, equipment, entertainment, food processing, communications, electronics and electrical , power tools, gardening, etc.
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  • PBT-NA-LGF
    LFT-G fiber filled PBT composites high strength injection molding
    Our long glass fiber reinforced PBT compounds offer high strength and excellent chemical compatibility, making them ideal for industrial applications where durability and performance are critical.
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  • PP-CF
    PP Carbon Fiber reinforced
    HDPE-LGF | Long Fiber Reinforced Polyethylene Composite Solution | LFT-G :root{ --green:#01A55B; --dark:#1F2933; --gray:#5F6B72; --light:#F4F7F5; --border:#E3E8E5; } *{ margin:0; padding:0; box-sizing:border-box; } body{ font-family:Arial,Helvetica,sans-serif; color:var(--dark); line-height:1.7; } .container{ width:90%; max-width:1200px; margin:auto; } img{ width:100%; height:auto; display:block; } h1{ font-size:52px; line-height:1.2; } h2{ font-size:38px; line-height:1.3; margin-bottom:25px; } h3{ font-size:22px; margin-bottom:15px; } p{ font-size:17px; color:var(--gray); } .btn{ display:inline-block; margin-top:35px; padding:15px 35px; background:#01A55B; color:#fff; text-decoration:none; border-radius:5px; } /* ================= HERO ================= */ .hero{ background:#F4F8F6; padding:90px 0; } .hero-grid{ display:block; } .hero-content{ max-width:900px; margin:auto; text-align:center; } .hero-label{ color:#01A55B; font-weight:bold; letter-spacing:1px; margin-bottom:20px; } .hero h1 span{ color:#01A55B; } .hero p{ max-width:850px; margin:20px auto; } /* COMMON SECTION */ section{ padding:90px 0; } .gray-section{ background:#F4F7F5; } /* MATERIAL CONTENT */ .material-section{ display:block; } .material-content{ max-width:900px; margin:auto; } .material-content p{ margin-bottom:20px; } .material-image{ margin-top:50px; width:100%; } .material-image img{ width:100%; height:auto; display:block; } /* PERFORMANCE */ .performance{ padding:70px 0; } .performance-grid{ display:grid; grid-template-columns:repeat(4,1fr); gap:25px; } .performance-item{ padding:35px 20px; border:1px solid #E3E8E5; border-radius:15px; text-align:center; } .performance-item strong{ display:block; font-size:38px; color:#01A55B; } @media(max-width:900px){ .hero-content{ max-width:100%; } .performance-grid{ grid-template-columns:1fr; } h1{ font-size:38px; } } LONG FIBER REINFORCED THERMOPLASTIC PP- LGF Long Fiber Reinforced Polyethylene A high-performance composite material combining the high stiffness and lightweight advantages of PP Homopolymer with the superior reinforcement capability of long glass fibers. Designed for structural applications requiring excellent rigidity, dimensional stability, impact performance and long-term durability. Request Technical Data 20-60% Glass Fiber Content 6-25mm Long Fiber Length High Impact Resistance HighStiffness What is PP-LGF? PP Homopolymer-LGF is a long glass fiber reinforced polypropylene composite engineered for lightweight structural applications. The combination of a rigid PP homopolymer matrix and long glass fibers provides significantly enhanced stiffness, strength, creep resistance and dimensional stability. Compared with conventional short glass fiber reinforced polypropylene, the long fiber reinforcement network improves load transfer efficiency, resulting in superior mechanical performance and longer service life. Why Long Fiber Technology? Long Fiber Reinforcement Network During processing, long glass fibers maintain longer reinforcement paths inside the polymer matrix. The continuous fiber network improves load transfer efficiency and provides enhanced structural performance. ✓ Improved mechanical strength ✓ Higher impact resistance ✓ Better fatigue performance ✓ Improved creep resistance ✓ Enhanced dimensional stability Key Material Advantages High Stiffness & Strength Provides excellent rigidity and load-bearing capability for structural components. Excellent Dimensional Stability Maintains dimensional accuracy under long-term mechanical loading. Superior Creep Resistance Improves long-term performance under continuous mechanical stress. Lightweight Design Offers significant weight reduction compared with metal while maintaining structural performance. .advantage-grid{ display:grid; grid-template-columns:repeat(4,1fr); gap:25px; } .advantage-card{ padding:35px 25px; background:#fff; border:1px solid #E3E8E5; border-radius:15px; } .advantage-card h3{ color:#01A55B; } @media(max-width:900px){ .advantage-grid{ grid-template-columns:1fr; } } PP-LGF Compared With Traditional Materials Property Standard PP PP-LGF Metal Strength Medium High High Weight Very Low Low High Impact Resistance Excellent Excellent Medium Chemical Resistance Excellent Excellent Limited Corrosion Resistance Excellent Excellent Poor .comparison-table{ width:100%; border-collapse:collapse; background:#fff; } .comparison-table th{ background:#01A55B; color:#fff; padding:18px; } .comparison-table td{ padding:18px; border-bottom:1px solid #ddd; text-align:center; } PP-LGF Applications PP-LGF provides lightweight and durable solutions for industries requiring high mechanical performance and long-term reliability. Automotive Modules Instrument panel carriers Front-end modules Battery brackets Seat structures Industrial Equipment Machine housings Structural supports Industrial components Consumer & Appliance Components Furniture structures Power tool housings Appliance frames .application-grid{ display:grid; g...
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  • PLA-NA-LCF
    LFT-G Polylactic acid filled long carbon fiber
    HDPE-LGF | Long Fiber Reinforced Polyethylene Composite Solution | LFT-G :root{ --green:#01A55B; --dark:#1F2933; --gray:#5F6B72; --light:#F4F7F5; --border:#E3E8E5; } *{ margin:0; padding:0; box-sizing:border-box; } body{ font-family:Arial,Helvetica,sans-serif; color:var(--dark); line-height:1.7; } .container{ width:90%; max-width:1200px; margin:auto; } img{ width:100%; height:auto; display:block; } h1{ font-size:52px; line-height:1.2; } h2{ font-size:38px; line-height:1.3; margin-bottom:25px; } h3{ font-size:22px; margin-bottom:15px; } p{ font-size:17px; color:var(--gray); } .btn{ display:inline-block; margin-top:35px; padding:15px 35px; background:#01A55B; color:#fff; text-decoration:none; border-radius:5px; } /* ================= HERO ================= */ .hero{ background:#F4F8F6; padding:90px 0; } .hero-grid{ display:block; } .hero-content{ max-width:900px; margin:auto; text-align:center; } .hero-label{ color:#01A55B; font-weight:bold; letter-spacing:1px; margin-bottom:20px; } .hero h1 span{ color:#01A55B; } .hero p{ max-width:850px; margin:20px auto; } /* COMMON SECTION */ section{ padding:90px 0; } .gray-section{ background:#F4F7F5; } /* MATERIAL CONTENT */ .material-section{ display:block; } .material-content{ max-width:900px; margin:auto; } .material-content p{ margin-bottom:20px; } .material-image{ margin-top:50px; width:100%; } .material-image img{ width:100%; height:auto; display:block; } /* PERFORMANCE */ .performance{ padding:70px 0; } .performance-grid{ display:grid; grid-template-columns:repeat(4,1fr); gap:25px; } .performance-item{ padding:35px 20px; border:1px solid #E3E8E5; border-radius:15px; text-align:center; } .performance-item strong{ display:block; font-size:38px; color:#01A55B; } @media(max-width:900px){ .hero-content{ max-width:100%; } .performance-grid{ grid-template-columns:1fr; } h1{ font-size:38px; } } LONG FIBER REINFORCED THERMOPLASTIC PLA-LCF Long Fiber Reinforced Polyphenylene Sulfide‌ A high-performance bio-based composite material combining the renewable characteristics and lightweight properties of PLA with the superior reinforcement capability of long carbon fibers. Designed for demanding applications requiring a high stiffness-to-weight ratio, strength, dimensional stability, lightweight performance and improved mechanical durability. PLA-LCF offers an excellent balance of lightweight construction, mechanical strength and sustainability, making it ideal for lightweight structural components, industrial applications, prototyping and applications where bio-based material solutions are preferred. Request Technical Data 20-60% Glass Fiber Content 6-25mm Long Fiber Length HighStiffness & Strength Bio-BasedMaterial Solution What is PLA-LCF? PLA-LCF is a long carbon fiber reinforced polylactic acid composite engineered for lightweight structural and demanding industrial applications. The combination of a bio-based PLA matrix and long carbon fibers provides enhanced stiffness, tensile strength, dimensional stability and mechanical durability, while maintaining the lightweight and renewable characteristics of PLA. Compared with conventional short carbon fiber reinforced PLA, the long fiber reinforcement network improves load transfer efficiency, resulting in superior mechanical performance, high strength-to-weight ratio, excellent structural stability and enhanced durability. PLA-LCF is particularly suitable for applications requiring high rigidity, lightweight construction, dimensional stability and a more sustainable material solution, making it an attractive option for lightweight structural components, industrial parts, sports equipment and metal replacement applications. Why Long Fiber Technology? Long Fiber Reinforcement Network During processing, long carbon fibers maintain longer reinforcement paths inside the polymer matrix. The continuous fiber network improves load transfer efficiency and provides enhanced structural performance. ✓ Improved mechanical strength ✓ Higher impact resistance ✓ Better fatigue performance ✓ Improved creep resistance ✓ Enhanced dimensional stability Key Material Advantages High Stiffness & Strength Excellent rigidity and strength for demanding structural applications. High Temperature Resistance Maintains mechanical performance and dimensional stability under elevated temperatures. Bio-Based Material Made with a renewable PLA matrix, providing a more sustainable alternative to conventional petroleum-based materials. Dimensional Stability Long carbon fiber reinforcement improves dimensional stability and helps maintain structural integrity during processing and service. .advantage-grid{ display:grid; grid-template-columns:repeat(4,1fr); gap:25px; } .advantage-card{ padding:35px 25px; background:#fff; border:1px solid #E3E8E5; border-radius:15px; } .advantage-card h3{ color:#01A55B; } @media(max-width:900px){ .advantage-grid{ grid-template-columns:1fr; } } PLA-LCF Compared With Traditional Materials Property Standard PLA PLA-LCF Metal ...
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  • PEEK-NA-LCF
    UltraStrong Carbon Fiber Reinforced PEEK Composite
    PEEK carbon fiber reinforced composite materials combine the high-performance properties of PEEK with the strength and durability of carbon fiber, making them ideal for applications in extreme environments and 3D printing.
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  • CPP-NA-LCF
    PP Copolymer Carbon Fiber
    The modified polypropylene material reinforced by carbon fiber has a series of advantages, such as light weight, high modulus, high specific strength, low coefficient of thermal expansion, high temperature resistance, heat shock resistance, corrosion resistance, good vibration absorption, etc., and can be applied to auto parts such as automobile sub-instrument assembly.
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