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  • PA6
    PA6 펠릿 유리섬유
    그 안에서 자동차 산업 라이 금속보다 저렴하고 가볍기 때문에 사용됩니다. 기계 높은 유연성과 내구성 덕분에 다른 재료보다 많이 사용됩니다.
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  • PA66
    PA66 펠릿 유리섬유
    나일론 6,6 폴리아미드 66은 나일론 6보다 결정성이 더 높은 소재입니다. 폴리아미드 66 또는 PA 66이라고도 합니다. 향상된 기계적 특성 보다 규칙적인 분자 구조 덕분에 나일론 66은 가공에 적합합니다. 향상된 내열성 그리고 낮은 수분 흡수율 표준 나일론 6과 비교했을 때.
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  • PA12
    PA12 펠릿 유리섬유
    파12 gf20 나일론 12는 폴리아미드 12(PA12) 화합물에 20%의 유리 섬유를 첨가하여 만든 엔지니어링 플라스틱의 일종입니다. 순수 나일론 12에 비해 여러 가지 장점을 가진 고성능 소재입니다. 더 높은 강도, 강성, 내열성, 내화학성 및 전기적 특성 Pa12 gf20은 다양한 산업 분야에서 여러 용도로 널리 사용됩니다. 자동차, 항공우주, 의료, 전기 및 산업 .
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  • 피비티
    PBT 펠릿 유리섬유
    PBT GF30 이 소재는 탁월한 성능을 제공하는 고성능 열가소성 복합 소재입니다. 기계적 강도 및 내열성 이 복합 재료는 보강재를 사용하여 만들어집니다. 폴리부틸렌 테레프탈레이트(PBT) 수지 유리 섬유 30% PBT GF30은 고유한 특성과 장점 덕분에 다양한 산업 분야에서 활용됩니다.
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  • TPU
    TPU 펠릿 유리 섬유
    TPU TPU는 열가소성 폴리우레탄(TPU) 플라스틱의 약자입니다. TPU는 용융 공정을 통해 가공되는 열가소성 플라스틱 계열에 속합니다. 그중에서도 TPU는 유연성, 인성, 우수한 인장 강도 등 고무와 플라스틱의 특성을 모두 갖춘 것이 특징입니다. TPU는 자동차 기술, 케이블, 일부 스포츠 장비 등에 널리 사용됩니다.
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  • ABS
    ABS 펠릿 유리 섬유
    ABS 사출 성형은 고온 고압 상태에서 용융된 ABS 플라스틱을 금형에 주입하는 공정입니다. ABS는 널리 사용되는 플라스틱으로 다양한 제품에서 찾아볼 수 있기 때문에 사출 성형이 적용되는 분야는 매우 많습니다. 자동차, 소비재 및 건설 산업 몇 가지 예를 들자면.
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  • 유리 섬유
    고온 저항성 PPA 유리 섬유 폴리머, 폭넓은 응용 분야
    폴리프탈아미드(PPA) 반결정성 방향족 폴리아미드입니다. 폴리아미드 또는 나일론 , 가족. 나일론 6/6과 비교하면, 더 강하고, 더 단단하며, 습기에 덜 민감하고, 단열 성능이 더 뛰어납니다. 또한, 상당한 저항력을 가지고 있습니다. 화학적 피로 그리고 기계적 크리프 .
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  • HPP-NA-LGF
    HPP 일반 등급 충전재, 장유리섬유(LGF), 폴리프로필렌 변성 플라스틱 강화 소재
    폴리프로필렌 , also known as PP , is a polyolefin or saturated polymer . It is a low-density thermoplastic with good resistance to heat. Other characteristics of PP include: chemical resistance, elasticity, toughness, fatigue resistance, and electrical insulation capability.
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  • PA6-LGF
    LFT-G PA6 폴리아미드6 나일론6 충전재 장섬유 유리 40가지 색상 (자동차 부품용)
    PA6 및 PA6-LGF 장섬유 강화 나일론 PA6, also known as Nylon 6, is a high-performance polyamide widely used in engineering plastics, fibers, and films. It is a thermoplastic polymer with repeating amide groups (-NH-CO-) in the main chain, offering strong mechanical properties and versatile processing capabilities. What is PA6 Plastic? PA6 is an aliphatic polyamide that provides excellent strength, wear resistance, and chemical resistance to weak acids, alkalis, and certain organic solvents. Its lightweight and processable nature make it widely applied in fibers, engineering plastics, and thin films. However, the polar amide groups in PA6 easily form hydrogen bonds with water molecules, which can result in high moisture absorption, dimensional changes, and reduced impact strength in dry or low-temperature conditions. Advantages of PA6 High mechanical strength and toughness with excellent tensile and compressive properties Outstanding fatigue resistance, maintaining strength after repeated bending High softening point, heat resistant Low friction and wear-resistant surface Corrosion resistance to alkalis, salts, weak acids, oils, and most solvents Self-extinguishing, non-toxic, odorless, and good weather and biological resistance Excellent electrical insulation even in high humidity environments Lightweight, easy to dye, and easy to mold due to low melting viscosity Limitations of PA6 High moisture absorption (up to 3% when saturated) Poor light and thermal stability; prolonged high-temperature exposure may cause discoloration and surface cracking Strict injection molding requirements; trace moisture can affect product quality Dimensional stability is sensitive to thermal expansion and wall thickness variations Not resistant to strong acids or oxidizing agents; unsuitable for acid-resistant applications Why Reinforce PA6 with Long Glass Fiber? To overcome the natural limitations of PA6, long glass fiber (LGF) reinforcement is applied. PA6-LGF composites combine the lightweight, chemical, and heat resistance of PA6 with the mechanical strength and dimensional stability of long glass fibers. LGF reinforcement improves tensile, compressive, and flexural strength, reduces shrinkage, enhances fatigue resistance, and provides improved thermal and chemical stability. This makes PA6-LGF ideal for high-performance structural components. Applications of PA6-LGF PA6 reinforced with 30% long glass fiber (30% LGF) is widely used in: Power tool shells and components Engineering machinery parts Automobile structural and functional components The composite improves mechanical strength, dimensional stability, heat resistance, aging resistance, and fatigue resistance. Its fatigue strength can be up to 2.5x that of unreinforced PA6. Processing and Forming Tips for 30% PA6-LGF Shrinkage is reduced to ~0.3% compared with 1–1.5% for pure PA6. Excessive fiber content may cause surface floating fibers and poor compatibility. 30% LGF is recommended for balanced performance. Recycled material content should be kept below 25% to avoid color and mechanical property degradation. Gradual cooling after molding prevents warping due to fiber orientation during injection molding. Mold design, gate position, and temperature control are critical. Customers & Staffs Certificates
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  • PA66-NA-LGF
    LFT-G는 변성 나일론66, PA66, 장섬유 유리 복합재를 전자 기기에 충전하는 데 사용됩니다.
    PA66-LGF 장섬유 강화 나일론 PA66, or Nylon 66, is a high-performance polyamide widely used in engineering plastics. It offers excellent mechanical properties including tensile strength, flexural strength, and impact resistance, along with superior thermal and chemical stability. With lightweight, high wear resistance, good electrical insulation, and self-extinguishing properties, PA66 is ideal for automotive, electrical, industrial equipment, and construction applications. Why Reinforce PA66 with Long Glass Fiber? While PA66 is versatile, it has limitations: high water absorption, low compressive strength when wet, poor alkali resistance, and potential deformation at ultra-low temperatures. Long glass fiber (LGF) reinforcement addresses these challenges. Adding LGF significantly improves impact resistance, thermal deformation resistance, mechanical performance, molding processability, and chemical resistance. LGF acts as a robust internal skeleton, enhancing the durability and reliability of PA66 components. PA66-LGF Technical Datasheet *The datasheet is tested by Xiamen LFT and provided for reference only.* Applications of PA66-LGF PA66 reinforced with 30% long glass fiber is ideal for high-performance applications such as: Automotive components and structural parts Power tool housings and mechanical parts Industrial equipment components For specialized applications, please consult our technical team. PA66-LGF Product Details Number Color Length Sample MOQ Port of Loading Delivery Time Payment Terms PA66-NA-LGF30 Original color (customizable) 12mm (customizable) Available 25kg Xiamen Port 7-15 days after shipment Discussed Xiamen LFT Composite Plastic Co., Ltd Xiamen LFT Composite Plastic Co., Ltd. is a leading manufacturer specializing in long fiber reinforced thermoplastics (LFT & LFRT), including Long Glass Fiber (LGF) and Long Carbon Fiber (LCF) series. Our thermoplastic LFT can be applied in LFT-G injection molding, extrusion molding, and LFT-D molding. We provide products according to customer requirements with fiber lengths from 5 to 25mm. Our continuous infiltration reinforced thermoplastics have passed ISO9001 & 16949 certifications and hold numerous national patents and trademarks. Our Services Technical parameters and leading-edge design of LFT & LFRT materials Mold front design recommendations Technical support for injection molding and extrusion molding processes
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  • PLA-NA-LGF
    PLA(폴리락트산) 화합물, 긴 유리섬유 열가소성 수지 (엔지니어링용)
    PLA 및 LGFLA – 친환경 강화 바이오플라스틱 PLA (Polylactic Acid) is a non-natural polyester and one of the most promising "green plastics." Known for its biocompatibility, biodegradability, and high mechanical strength, PLA can be completely degraded by microorganisms into CO₂ and water, making it non-toxic and environmentally friendly. PLA offers mechanical properties similar to polypropylene, while providing the gloss, clarity, and processability of polystyrene. With a lower processing temperature than polyolefins, PLA can be molded via injection molding, extrusion, blow molding, spinning, and other general plastic processes. Its applications range from disposable packaging and fibers to nonwovens, and extend to medical, chemical, pharmaceutical, and 3D printing industries. Long Glass Fiber Reinforced PLA (LGFPLA) Glass fiber is an inorganic non-metallic material with excellent insulation, heat resistance, corrosion resistance, and mechanical strength. When used to reinforce PLA, it creates Long Glass Fiber PLA (LGFPLA), a high-performance thermoplastic composite with glass fibers 10–25mm long, forming a 3D structure for superior strength and stability. LGFPLA is available as columnar pellets, typically 12mm (for injection molding) or 25mm (for compression molding) in length, with glass fiber content from 20% to 60%. Colors can be customized to match client requirements. Advantages of LGF vs SGF (Long Fiber vs Short Fiber PLA) Longer fiber length improves mechanical properties and part durability. High specific stiffness and strength, with excellent impact resistance — ideal for automotive parts. Improved creep resistance and dimensional stability for precise molding. Outstanding fatigue resistance and long-term reliability. Stable performance in high temperature and humid environments. Minimal fiber damage during molding due to fiber mobility within the mold. Technical Specifications Product Number Color Length Fiber Specification Package Sample Port of Loading Delivery Time PLA-NA-LGF Natural or customizable 6–25mm 20%–60% 25kg/bag Available Xiamen Port 7–15 days after shipment Lab & Factory Xiamen LFT Composite Plastic Co., Ltd. Xiamen LFT Composite Plastic Co., Ltd. specializes in developing and producing long glass fiber (LGF) and long carbon fiber (LCF) reinforced thermoplastic composites (LFT-G, LFRT, LFT). Our materials are lightweight, high-strength, impact-resistant, and environmentally friendly, offering excellent corrosion and chemical resistance along with superior molding performance. Our products are used across industries including automotive, aerospace, military, electrical, medical, sports equipment, and daily consumer goods, producing components such as gears, rollers, pulleys, pump impellers, fan blades, and more.
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