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  • PP-NA-LCF
    PP Carbon Fiber Pellets
    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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  • MXD6-NA-LGF
    LFT MXD6 filling Long glass fiber high toughness injection molding
    PPA Engineering Plastic (High Temperature Nylon) | Xiamen LFT body{ font-family: Arial, Helvetica, sans-serif; line-height:1.8; color:#111; max-width:1100px; margin:0 auto; padding:20px; } h1,h2,h3{color:#1f6f3f; margin-top:28px;} h1{font-size:28px;} h2{font-size:24px;} h3{font-size:20px;} p{font-size:16px; margin:10px 0;} ul{margin:10px 0 10px 20px;} .box{ background:#f5f7f5; border-left:4px solid #1f6f3f; padding:15px; margin:15px 0; } .img{ width:100%; max-width:700px; height:auto; display:block; margin:15px 0; } .highlight{color:#1f6f3f; font-weight:bold;} PPA (Polyphthalamide) Engineering Plastic PPA (Modified Polyphthalamide) is a high-performance semi-aromatic nylon with excellent heat resistance, mechanical strength, and chemical stability, widely used in demanding engineering applications. Material Overview PPA offers a heat deformation temperature above 300°C and continuous service temperature up to 170°C, making it suitable for high-temperature environments. It maintains excellent strength, stiffness, fatigue resistance, and creep resistance under high temperature and humidity conditions. Key Characteristics Excellent heat resistance (HDT > 300°C) High mechanical strength and stiffness Outstanding fatigue and creep resistance Good chemical resistance and crack resistance Stable performance under high humidity Excellent surface quality and appearance Short injection molding cycle time Performance Advantages Mechanical Performance High strength, hardness, and toughness allow PPA to replace metal in many applications. Thermal Stability Compared with PA46, PPA offers higher thermal stability and better long-term performance at elevated temperatures. Electrical & Arc Resistance Excellent CTI (comparative tracking index) and arc resistance make it suitable for electronic components. Chemical Resistance Strong resistance to oils, fuels, glycols, and many industrial chemicals. Processing Advantages Good flowability and short cycle time improve production efficiency in injection molding. Application Fields Automotive Industry Used in fuel systems, transmission systems, and engine components to reduce weight and extend service life. Electronics & Electrical Applied in connectors, sensors, switches, chip sockets, and high-density PCB components. Industrial Components Suitable for bearings, seals, compressor parts, and wear-resistant mechanical components. High-End Applications Used in coating, plating, and flame-retardant applications requiring high surface quality. Processing Guidelines Drying: Moisture content must be controlled below 0.1% before processing to avoid molecular degradation. Injection Temperature: 615–650°F (approx. 324–343°C) Mold Temperature: ≥275°F for optimal crystallization and dimensional stability Cycle Time: Short residence time (<10 minutes in barrel recommended) Product Features Available for injection molding applications Compatible with high-performance reinforced grades Supports surface finishing and plating grades Custom color and formulation available Supplier Information Xiamen LFT Composite Plastic Co., Ltd. Specialized in long fiber reinforced thermoplastics (LFT) including LGF and LCF modified engineering plastics. ISO9001 & IATF16949 certified Customized formulations available Strong R&D and in-house testing lab Global supply capability Professional technical support for injection molding
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  • PA66-NA-LCF
    Polyamide 66 Long Carbon Fiber filled wear resistance for auto parts
    Physical Properties of Nylon Materials ✔ Excellent mechanical properties: high strength and good toughness. ✔ Self-lubricating & wear resistance: low friction coefficient, long service life in transmission parts. ✔ Excellent heat resistance: PA66 can work at 150°C for long term. After glass fiber reinforcement, heat distortion temperature can exceed 252°C. ✔ Excellent electrical insulation: high volume resistivity and breakdown resistance, ideal for electrical/electronic applications. Introduction of Nylon66 Filled LCF Pellets PA66 is a high-performance engineering plastic with high moisture absorption, which may affect dimensional stability. To improve performance, carbon fiber and glass fiber reinforcement has been widely used since the 1970s. Carbon fiber reinforced PA66 significantly improves strength, stiffness, heat resistance, and dimensional stability compared to unreinforced PA66. It is widely used in automotive, sports equipment, textile machinery, aerospace, and industrial applications. Carbon fiber provides: High strength & stiffness Excellent wear resistance Corrosion resistance Creep resistance Lightweight performance Compared with glass fiber, carbon fiber offers higher modulus and better rigidity performance. Datasheet Reference (PA6-LCF / PA66-LCF) Technical data shows that bending strength, modulus, impact strength and shear strength increase significantly with carbon fiber content. Only transverse shear strength shows slight decrease, but overall mechanical performance is greatly improved. Application of PA66-LCF Certificates & Compliance ✔ ISO9001 / IATF16949 Quality Management System ✔ National Laboratory Accreditation ✔ REACH & RoHS Compliance Testing ✔ Modified Plastics Innovation Enterprise Certificates ✔ Honorary Certificates Factory & Laboratory Q & A 1. Is there a unified performance standard for carbon fiber products? No unified standard exists. Performance depends on fiber type, matrix, and product design. Testing is required before mass production. 2. Are carbon fiber composites expensive? Cost depends on raw materials, process complexity, and order volume. High-performance applications may require expensive materials, but mass production reduces unit cost. 3. Are carbon fiber composites toxic? Generally non-toxic. Some materials like PEEK are even food-grade and widely used in medical applications. 4. Thermoset vs Thermoplastic composites? Thermoset materials rely on curing, while thermoplastics are shaped by cooling and are recyclable.
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  • PA12-NA-LCF
    LFT-G Polyamide 12 filled long carbon fiber plastic higher performance
    Polyamide 12 (PA12) Material Polyamide (PA), commonly known as nylon, is a group of engineering plastics widely used as metal replacement materials for lightweight and cost-efficient solutions. PA series materials offer excellent heat resistance, electrical insulation, chemical resistance, and mechanical strength. Due to their crystalline structure, they provide stable performance under harsh environments. When reinforced with carbon fiber (short or long), PA materials achieve metal-like stiffness, making them widely used in automotive, electronics, transportation, and consumer goods industries. Main Properties of PA12 ✔ Excellent chemical resistance ✔ Outstanding low-temperature impact resistance ✔ Good aging resistance ✔ Stable performance under long-term conditions PA12 may not have the highest heat resistance compared to other nylons, but it provides excellent long-term stability under varying conditions such as temperature, pressure, and chemical exposure. It is especially suitable for applications requiring long service life and dimensional stability. Applications More application fields are available. Please contact us for technical support. Product Details Model Color Length Sample Package MOQ Port Lead Time PA12-NA-LCF Natural / Customized 6–25 mm Available 20 kg/bag 20 kg Xiamen Port 7–45 days Production Process Testing & Quality Control Contact Us for More Materials
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  • TPU-NA-LGF
    LFT-G TPU Thermoplastic Urethane filled long glass fiber compounds
    .lft-wrap{ font-family:Arial,Helvetica,sans-serif; color:#555; line-height:1.8; font-size:14px; max-width:1100px; margin:0 auto; } .lft-wrap h2{ font-size:26px; color:#2E8B57; margin-top:40px; margin-bottom:15px; border-left:5px solid #2E8B57; padding-left:12px; } .lft-wrap p{ margin:12px 0; } .lft-wrap ul{ margin:10px 0 15px 25px; } .lft-wrap li{ margin-bottom:8px; } .lft-wrap img{ max-width:100%; border-radius:8px; margin-top:15px; } .lft-note{ background:#f8fff8; border:1px solid #d8ead8; padding:18px; border-radius:8px; margin-top:20px; } .lft-cta{ background:#f8fff8; border:1px solid #d6edd6; border-radius:10px; padding:25px; margin-top:35px; text-align:center; } .lft-btn{ display:inline-block; background:#2E8B57; color:#fff !important; text-decoration:none; padding:12px 28px; border-radius:30px; margin-top:15px; font-weight:bold; } .lft-btn:hover{ background:#246b45; } What is TPU? TPU (Thermoplastic Polyurethane) is a high-performance elastomer material that combines the elasticity of rubber with the processing advantages of thermoplastics. TPU is mainly divided into polyester-based and polyether-based types, with a wide hardness range from 60HA to 85HD. It offers excellent: Wear resistance Oil resistance Elasticity and flexibility Transparency Low-temperature performance Environmental friendliness TPU materials are widely used in consumer products, sports equipment, power tools, automotive parts, cables, and industrial components. As a thermoplastic elastomer, TPU can be repeatedly heated and processed without significant chemical crosslinking, making it suitable for injection molding and extrusion applications. Why Reinforce TPU with Long Glass Fiber? Long glass fiber reinforced TPU composites provide a highly efficient solution when conventional reinforced plastics cannot meet structural performance requirements. By forming a three-dimensional internal fiber skeleton network, long glass fibers significantly improve: Mechanical strength Dimensional stability Fatigue resistance Impact resistance Durability in harsh environments Metal replacement capability Long glass fiber reinforced TPU materials help reduce product weight while maintaining excellent structural performance and long-term durability. Compared with Short Glass Fiber Compared with short glass fiber reinforced materials, long glass fiber composites provide superior load transfer efficiency, better impact resistance, and improved fatigue performance due to the longer retained fiber structure inside the material. Applications TPU-LGF materials are widely used in industries requiring flexibility, durability, and structural strength. Automotive door and window components Safety toe caps Mechanical structural parts Pneumatic nail gun housings Professional power tools Industrial connectors and fasteners Wear-resistant engineering components Our engineering team can recommend suitable TPU-LGF grades according to your processing method and performance requirements. About Xiamen LFT Composite Plastic Co., Ltd. Xiamen LFT Composite Plastic Co., Ltd. specializes in long fiber reinforced thermoplastic materials (LFT & LFRT), including Long Glass Fiber (LGF) and Long Carbon Fiber (LCF) reinforced composites. Our materials are suitable for: LFT-G injection molding Extrusion molding LFT-D direct molding processes Customized pellet lengths from 5–25 mm are available according to customer requirements. The company has passed ISO9001 & IATF16949 quality management certifications and owns multiple national patents and trademarks. Certifications & Quality Assurance ISO9001 & IATF16949 Quality Management Certification National Laboratory Accreditation Modified Plastics Innovation Enterprise REACH & ROHS Compliance Testing Multiple National Patents & Trademarks Need Technical Support or Material Recommendations? Contact us for datasheets, samples, processing guidance, and customized TPU-LGF material solutions. Contact Us
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  • PLA-NA-LGF
    PLA Polylactic acid compounds long glass fiber thermoplastic resin for engineering
    PLA Plastic PLA (Polylactic Acid) is a bio-based and biodegradable polyester considered one of the most promising “green plastics”. It features excellent biocompatibility, biodegradability, and mechanical strength. Under composting conditions, PLA can be fully degraded into CO₂ and water, making it non-toxic and environmentally friendly. PLA has mechanical properties similar to polypropylene, while its transparency and gloss are comparable to polystyrene. It can be processed using standard thermoplastic methods such as injection molding, extrusion, blow molding, and 3D printing. It is widely used in packaging, fibers, medical, pharmaceutical, and disposable products, and is considered a key material in reducing plastic pollution. Long Glass Fiber Reinforced PLA (LGFPLA) Glass fiber is an inorganic non-metallic material with excellent properties such as high strength, heat resistance, corrosion resistance, and insulation. It is widely used as a reinforcement material in composites. Long glass fiber reinforced PLA (LGFPLA) refers to PLA composites reinforced with glass fibers typically ranging from 10–25 mm in length. After injection molding, fibers form a 3D network structure, significantly improving mechanical performance. LGFPLA belongs to the LFT (Long Fiber Thermoplastic) material family. Standard LGFPLA pellets are typically 12 mm or 25 mm in length. Fiber content ranges from 20% to 60%, and colors can be customized according to customer requirements. LGF vs SGF (Long Fiber vs Short Fiber) Compared with short glass fiber composites, long fiber reinforced thermoplastics (LFT) offer significant performance advantages: Longer fiber length for improved mechanical strength Higher specific stiffness and impact resistance Excellent creep resistance and dimensional stability Improved fatigue resistance Better performance under heat and humidity conditions Reduced fiber breakage during molding Product Details Grade Color Length Fiber Content Package Sample Port Delivery Time PLA-LGF Natural / Customized 6–25 mm 20%–60% 25 kg/bag Available Xiamen Port 7–15 days Lab & Factory About Xiamen LFT Composite Plastic Co., Ltd. Xiamen LFT Composite Plastic Co., Ltd. specializes in the development and production of long glass fiber (LGF) and long carbon fiber (LCF) reinforced thermoplastics, including PP, PA6, PA66, PPA, PA12, TPU, PBT, PLA, PET, PPS, and PEEK. Our materials offer high strength, lightweight performance, impact resistance, corrosion resistance, recyclability, and excellent processing properties, making them ideal for automotive, electrical, industrial, aerospace, and consumer applications.
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  • PE GF
    High Density Polyethylene Composite Pellets with 20-60% Long Glass Fiber Content
    HDPE long glass fiber reinforced material provides improved stiffness, strength, and impact resistance, making it suitable for demanding applications. It is widely used in automotive components, industrial containers, and outdoor equipment that require durability and lightweight performance.
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