Product Introduction LFT (Long Fiber Reinforced Thermoplastic) is a high-performance composite material produced by impregnating long glass fibers or long carbon fibers with thermoplastic resins such as PP PA PPS and PEEK followed by pelletizing. Compared with short-fiber composites LFT retains significantly longer fiber lengths enabling superior reinforcement performance. At the same time it maintains the recyclability and processing advantages of thermoplastics allowing efficient mass production through injection molding. Product Highlights 1. Ultra-lightweight: Density is approximately 1/5 that of steel delivering outstanding weight reduction 2. High production efficiency: Short molding cycles well-suited for automated manufacturing; over 30% cost reduction compared with thermoset composites 3. Excellent durability: High fatigue resistance chemical resistance and low water absorption ensure stable performance under complex operating conditions 4. Sustainable & recyclable: Melt-reprocessable with a recycling rate exceeding 95% compliant with environmental regulations 5. Outstanding cost-performance ratio Main Application Industries LFT materials are widely used in: 1. Automotive: chassis skid plates battery pack brackets and other structural components 2. Robotics: bases external housings and quadruped robot leg components 3. New Energy Equipment: photovoltaic mounting systems energy storage enclosures 4. Rail Transit: seat frames interior panels 5. Construction Machinery: cab components loader panels 6. High-End Equipment Manufacturing: semiconductor equipment unmanned aerial vehicles (UAVs)
Product Specifications
1. Ultra-High Mechanical Performance Exceptional stiffness high impact strength flame retardancy corrosion resistance as well as excellent fatigue and creep resistance. 2. Lightweight & Plastic-to-Steel Replacement Density of only 1.2–1.4 g/cm³ delivering 100–500% weight reduction compared with metal components. 3. High-Efficiency Injection Molding Rapid molding cycles achieving over 60% efficiency improvement compared with thermoset composites or metal processing. 4. Superior Environmental Resistance Outstanding fatigue performance resistance to high and low temperatures chemical corrosion resistance and low water absorption ensuring reliable operation in harsh industrial environments involving oil moisture and complex conditions. 5. Optimized for Robotics Applications Enables over 30% overall weight reduction 50%+ molding efficiency improvement and 50% longer component service life significantly enhancing the dynamic performance of robotic systems.