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  • PA6-NA-LCF
    Polyamide 6 filling Long Carbon Fiber composite engineering plastic 5-25mm length
    Product number: PA6-NA-LCF40 Product fiber: 20%-60% Product application: Suitable for manufacturing helmets, Car bumps and Robotic and arms etc. Product feature: High toughness, Light weight, High strength, Wear strength, Corrosion resistance, Creep resistance, Conduction, Heat transfer.
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  • PEEK-NA-LCF30
    LFT-G PEEK high quality modified materials fill long carbon fiber for automotives good performance
    Throughout the plastics industry, PEEK is widely recognized as one of the leading high-performance polymers (HPP). While metals have traditionally dominated industries such as automotive, aerospace, oil & gas, and medical devices, PEEK materials are rapidly transforming the market with lightweight and high-strength alternatives. What is PEEK Material? PEEK (Polyether Ether Ketone) belongs to the family of aromatic polyketone polymers, also known as Polyaryletherketone (PAEK). It is one of the world's most advanced thermoplastic engineering materials. Research on PEEK began in the 1960s, and the material was first commercialized by Imperial Chemical Industries (ICI) in 1981. Chemically, PEEK is a semi-crystalline linear polymer that combines excellent mechanical strength, high heat resistance, chemical resistance, wear resistance, and dimensional stability. Compared with traditional metals, PEEK materials are lightweight, corrosion-resistant, easy to process, and offer exceptional specific strength (strength-to-weight ratio). Datasheet for Reference Key Advantages of PEEK High Heat Resistance Continuous operating temperature up to 260°C (500°F), suitable for extreme thermal environments. Chemical Resistance Resistant to fuels, oils, hydraulic fluids, solvents, and harsh chemical environments. Mechanical Strength Excellent stiffness, fatigue resistance, and creep resistance over long service life. Flame Resistance High ignition temperature with low smoke emission, widely used in aerospace applications. Recyclable & Reprocessable Can be repeatedly melted and processed with minimal property loss. Electrical Stability Excellent electrical insulation properties, with optional conductive modifications available. PEEK is also non-hygroscopic, radiation resistant, and transparent under X-ray exposure, making it ideal for medical and electronic applications. As a thermoplastic engineering material, PEEK can be processed by injection molding, extrusion, and compression molding using conventional equipment. Today, PEEK is increasingly replacing traditional metals and alloys in demanding applications where lightweight structures, durability, and long-term reliability are required. Applications PEEK materials are widely used in: Automotive components Aerospace structures Oil & gas equipment Medical devices Electrical and electronic applications Industrial machinery parts Contact us for additional application solutions and customized material recommendations. Production Processing Injection molding is one of the most common methods for manufacturing PEEK plastic components. During injection molding, molten PEEK material is injected into a mold cavity under high pressure. After cooling and solidification, the finished part is ejected from the mold. This process enables the production of complex, thin-wall, high-precision components with excellent surface finish and dimensional stability. Certifications ISO9001 / IATF16949 Quality Management Certification National Laboratory Accreditation Certificate Modified Plastics Innovation Enterprise REACH & ROHS Heavy Metal Testing Xiamen LFT-G Factory Production Capacity: 500 tons/month Packing: 20kg/bag About Us Xiamen LFT Composite Plastic Co., Ltd. was established in 2009 and specializes in long fiber reinforced thermoplastic materials. The company integrates R&D, production, and global sales of advanced engineering plastics, including long glass fiber and long carbon fiber reinforced composites. Our products are widely used in automotive, aerospace, new energy, industrial equipment, medical devices, and sports applications. ```
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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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  • PA66-NA-LCF
    LFT-G Polyamide 66 Long Carbon Fiber filled wear resistance
    .card{ background:#ffffff; border:1px solid #eaeaea; border-radius:14px; padding:22px; margin-bottom:20px; transition:all 0.3s ease; box-shadow:0 2px 10px rgba(0,0,0,0.04); } .card:hover{ transform:translateY(-6px); box-shadow:0 10px 25px rgba(0,0,0,0.10); border-color:#cfead3; } h2{ color:#2f7d32; margin-bottom:12px; font-size:20px; } p,li{ color:#666; font-size:15px; line-height:1.8; } ul{ padding-left:20px; } .table{ width:100%; border-collapse:collapse; margin-top:10px; } .table th,.table td{ border:1px solid #e5e5e5; padding:10px; text-align:left; font-size:14px; } .table th{ background:#f3f8f4; color:#2f7d32; } .cta-btn{ display:inline-block; margin-top:10px; padding:12px 22px; background:#2f7d32; color:#fff; text-decoration:none; border-radius:8px; transition:0.3s; font-weight:bold; } .cta-btn:hover{ background:#256428; } .faq{ margin-top:10px; } .faq-item{ border-bottom:1px solid #eee; } .faq-item input{ display:none; } .faq-item label{ display:block; padding:14px 0; cursor:pointer; font-size:15px; font-weight:bold; color:#2f7d32; position:relative; } .faq-item label::after{ content:"+"; position:absolute; right:0; font-size:18px; } .faq-content{ max-height:0; overflow:hidden; transition:all 0.3s ease; } .faq-content p{ margin:0; padding:0 0 12px 0; } .faq-item input:checked ~ .faq-content{ max-height:200px; } .faq-item input:checked + label::after{ content:"−"; } Introduction to Long Carbon Fiber Reinforced PA66 Long Carbon Fiber Reinforced PA66 (Polyamide 66) is a high-performance engineering thermoplastic composite designed for demanding structural and mechanical applications. Reinforced with 40% long carbon fiber, PA66-LCF40 delivers significantly improved strength, stiffness, fatigue resistance, and dimensional stability compared to standard PA66 materials, making it an ideal metal replacement solution in automotive, industrial, and electrical applications. Composition and Structure PA66-LCF40 consists of a polyamide 66 matrix reinforced with 40% long carbon fibers. The long fiber reinforcement forms a continuous load-bearing network that enhances stress transfer efficiency, resulting in superior mechanical strength, improved creep resistance, and excellent long-term durability under dynamic loads. Key Features High Strength and Stiffness Excellent Fatigue Resistance Outstanding Impact Performance Good Heat Resistance Excellent Dimensional Stability Low Creep Under Load Lightweight Metal Replacement Material Good Wear Resistance Improved Structural Integrity Typical Applications Automotive Structural Components Electric Vehicle Battery Parts Power Tool Housings and Structural Frames Industrial Machinery Components Mechanical Brackets and Supports Electrical and Electronic Housings Sports Equipment Structural Parts Transportation and Logistics Components Our Working Process Requirement Analysis Material Selection & Technical Recommendation Customized Formulation & Sample Preparation COA Support & Quality Verification Production, Delivery & Technical Follow-up Technical Datasheet (PA66-LCF40%) Property Unit Typical Value Tensile Strength MPa 260 Tensile Modulus MPa 26000 Flexural Strength MPa 380 Flexural Modulus MPa 24000 Notched Izod Impact kJ/m² 40 Heat Deflection Temperature (1.8 MPa) °C 220 Density g/cm³ 1.40 FAQ What is Long Carbon Fiber Reinforced PA66? PA66-LCF40 is a high-performance composite material made by reinforcing polyamide 66 with 40% long carbon fiber, offering excellent strength, stiffness, and durability. What are the advantages of PA66-LCF40? It provides high mechanical strength, excellent fatigue resistance, good heat resistance, low creep, and long-term dimensional stability. Which industries use PA66-LCF40? It is widely used in automotive, electric vehicles, power tools, industrial equipment, electronics, and structural engineering applications. Why choose long carbon fiber PA66 instead of short fiber PA66? Long carbon fibers provide better load transfer, higher impact resistance, improved fatigue performance, and stronger structural integrity than short fiber composites. Is PA66-LCF40 suitable for metal replacement? Yes. It is widely used as a metal replacement material in structural applications requiring high strength, stiffness, and durability. Need Technical Support for PA66-LCF Materials? Contact our engineering team for material selection guidance, processing recommendations, datasheets, and customized PA66 long carbon fiber solutions. Contact Us About LFT-G Xiamen LFT Composite Plastic Co., Ltd., established in 2009, is a global supplier of long fiber reinforced thermoplastic (LFT) materials integrating R&D, production, and sales. We specialize in long glass fiber and long carbon fiber reinforced thermoplastics, including PP, HDPE, PA6, PA66, PA12, PPA, PPS, PEEK, TPU, ABS, PLA and other engineering plastics. Our products are certified to ISO 9001, ISO 14001, and IATF 16949 standards and are widely used in automotive, aerospace, new energy, med...
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