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  • MXD6-NA-LGF30
    MXD6 filling Long glass fiber30 high toughness injection molding natural color sample available
    MXD6 Plastic | Long Glass Fiber Reinforced MXD6 (MXD6-LGF) What is MXD6? Polyadipyl-m-benzoylamine, commonly referred to as MXD6 or nylon MXD6, is a high-performance engineering thermoplastic. Compared to other engineering plastics, MXD6 has higher mechanical strength and modulus. It is also a special high barrier nylon, with excellent resistance to oxygen and carbon dioxide. Unlike PVDC or EVOH, its barrier performance is not affected by temperature or humidity, making MXD6 ideal for high-temperature and humid conditions. Structural and Mechanical Performance MXD6 nylon exhibits high strength, high rigidity, high thermal deformation temperature, low thermal expansion, excellent dimensional stability, and low water absorption. Its mechanical properties change minimally after water absorption. MXD6 has low shrinkage for precision forming, excellent paintability at high temperatures, and outstanding barrier properties. Advantages of MXD6 Maintains high strength and rigidity over a wide temperature range High heat deflection temperature with low thermal expansion coefficient Low water absorption and minimal mechanical property reduction Small molding shrinkage, suitable for precision molding processes Excellent paintability, especially at high temperatures Outstanding barrier to oxygen, carbon dioxide, and other gases MXD6-LGF | Long Glass Fiber Reinforced MXD6 MXD6 can be compounded with long glass fibers, carbon fibers, minerals, and advanced fillers to produce composites with 50-60% glass fiber reinforcement. This results in exceptional strength and stiffness while maintaining a smooth, resin-rich surface ideal for painting, metal coating, or reflective housings. Key Advantages of MXD6-LGF High fluidity for thin walls: Can fill walls as thin as 0.5 mm even with 60% glass fiber content. Excellent surface finish: Resin-rich surfaces provide high gloss appearance despite high fiber content. Very high strength and stiffness: Comparable to many cast metals and alloys with 50-60% glass fiber. Good dimensional stability: Low shrinkage and tight tolerances; coefficient of linear expansion similar to many metals. MXD6-LGF TDS (Technical Data Sheet) Applications of MXD6-LGF MXD6-LGF replaces metals for high-quality structural parts in automotive, electronics, and electrical appliances. It performs well in environments requiring high mechanical strength and oil resistance, operating at 120–160℃ long-term. With glass fiber reinforcement, MXD6 maintains heat resistance up to 225℃, suitable for cylinder blocks, cylinder heads, pistons, and synchronous gears of automotive engines. MXD6/PPO alloys offer high temperature resistance, high strength, wear resistance, oil resistance, and excellent dimensional stability, enabling metal replacement in automotive body panels, fenders, wheel covers, and complex curved parts. About Us
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  • PLA-NA-LGF30
    Xiamen LFT-G PLA Polylactic acid composite long glass fiber filling thermoplastic resin original color
    PLA Plastic | Long Glass Fiber Reinforced PLA (PLA-LGF) What is PLA? Polylactic acid (PLA) is a biodegradable and eco-friendly polymer plastic, produced via pollution-free processes. PLA can naturally degrade and recycle in the environment, making it an ideal green polymer material and one of the most representative biodegradable plastics. PLA Structure and Heat Resistance The molecular structure of PLA affects its heat resistance, toughness, mechanical strength, degradability, and biocompatibility. PLA has a spiral molecular chain with low activity, resulting in slow crystallization after injection molding and relatively poor heat resistance. During hot processing, ester bonds may break partially, generating terminal carboxyl groups that accelerate thermal degradation. Long Glass Fiber (LGF) Reinforced PLA Reinforcing PLA with long glass fibers (PLA-LGF) improves mechanical strength, rigidity, and heat resistance. The fibers act as skeleton support, restricting polymer chain movement during heating and increasing thermal stability. Types of Fibers for PLA Reinforcement Fibers used for PLA enhancement include: Natural plant fibers: sisal, flax, linen, bamboo, coconut, wood fiber Animal fibers: silk Mineral fibers: basalt fiber Chemical fibers: glass fiber, carbon fiber Glass fiber and carbon fiber are widely used due to their high strength and modulus, while natural fibers are favored for biodegradability and renewable sources. Modified fibers blended with PLA have shown Vicat softening temperatures exceeding 140°C. Compared with Short Fiber (SGF) Long glass fiber reinforced PLA demonstrates superior mechanical properties compared with short fiber (SGF) reinforced PLA. It is more suitable for large structural parts, offering 1–3 times higher toughness and 0.5–1 times greater tensile strength and rigidity. Injection Molding of PLA-LGF Lab & Testing Warehouse & Storage Certification About Xiamen LFT Composite Plastic Co., Ltd. Xiamen LFT Composite Plastic Co., Ltd. specializes in long fiber reinforced thermoplastics (LFT) including PLA
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  • PA6-NA-LGF30
    Xiamen LFT-G Nylon 6 Polyamide 6 composite Long Glass Fiber modified plastic 12mm original color
    PA6 Material Overview PA6 (Polyamide 6) is a widely used engineering plastic with excellent balanced performance. Its raw materials are readily available and cost-effective, making it accessible without dependence on foreign technology. However, PA6 has some limitations such as high water absorption, lower low-temperature impact toughness, and moderate dimensional stability. To overcome these limitations, PA6 is often reinforced with glass fiber (GF) to enhance mechanical properties. PA6-LGF (Long Glass Fiber Reinforced PA6) 1. Influence of Glass Fiber Content Glass fiber content is a key factor in the performance of reinforced composites. Increasing fiber content increases fiber density, thinning the PA6 matrix between fibers. This enhances impact toughness, tensile strength, and bending strength. Example: For PA6-LGF, increasing fiber content to 35% raised notch impact strength from 24.8 J/m to 128.5 J/m. However, excessive fiber content can reduce impact strength. Bending strength also improves as fibers transfer stress and absorb energy when broken, with experimental results showing bending modulus up to 4.99 GPa for 35% LGF. 2. Influence of Fiber Retention Length Fiber length significantly affects mechanical properties. When fiber length is below the critical length, increasing length improves resin-fiber bonding and tensile load resistance. When fiber exceeds the critical length, longer fibers absorb more impact energy and improve impact strength, as the number of fiber ends (crack initiation points) decreases. Example: At 40% fiber content, increasing fiber length from 4mm to 13mm improved tensile strength from 154.8 MPa to 164.4 MPa, with bending strength and notched impact strength increasing by 24% and 28%, respectively. Fibers longer than 7mm enhance warping resistance and mechanical stability under high temperature and humidity. Technical Data Reference (TDS) PA6-LGF can be reinforced with 20%-60% long glass fiber depending on product requirements. Compared to unreinforced PA6, PA6-LGF offers enhanced strength, heat resistance, impact resistance, dimensional stability, and reduced warping. The following TDS shows the data for PA6-LGF30. Applications of PA6-LGF PA6-LGF is widely used in automotive, electronic/electrical, and machinery/engineering parts. Automotive Parts Lightweight and miniaturization trends promote PA6-LGF use in engines, electrical systems, and body components. Electronic & Electrical Components Excellent flame retardancy and corrosion resistance make PA6-LGF suitable for switchgear, circuit breakers, contactors, connectors, and cable protection tubes. Mechanical & Engineering Parts Good impact resistance, wear resistance, and self-lubrication properties allow PA6-LGF to be used in machinery and engineering accessories. About Xiamen LFT Composite Plastics Co., Ltd. Xiamen LFT focuses on Long Glass Fiber (LGF) and Long Carbon Fiber (LCF) reinforced thermoplastics. Our LFT materials support injection molding (LFT-G) and extrusion molding, as well as LFT-D molding, with fiber lengths from 5–25mm. Our products are ISO9001 & IATF16949 certified, patented, and widely used in automotive, electronics, industrial, and engineering applications.
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  • PA12-NA-LGF
    High strength PA12 nylon12 composite lgf virgin white color for automotive
    Product number: PA12-NA-LGF Fiber specification: 20%-60% Product feature: High strength, High toughness and durability Product application: Suitable for automotive, sports parts, solar energy, photovoltaic industry and other industries.
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  • PPS-NA-LGF
    Xiamen LFT high temperature resistance Polyphenylene sulfide PPS filled long glass fiber polymer
    Polyphenylene Sulfide (PPS) PPS (polyphenylene sulfide) is a high-performance engineering plastic with metal-like hardness, excellent strength, and exceptional thermal, chemical, and electrical resistance. It offers flame retardancy (V0), low warping, and high wear resistance. Compared with metals, PPS is lightweight, which is ideal for vehicles, ships, and aircraft. PPS combines high strength with low weight, excellent corrosion resistance, and outstanding insulation properties even under high temperature, high humidity, and high-frequency conditions. PPS is also wear-resistant, suitable for self-lubricating bearings, gears, and seals, and allows one-step molding unlike metals which require multiple processes. Long Glass Fiber Compounds Our "Center Fill" LFT compounds are produced by impregnating thousands of glass fiber filaments with molten PPS resin, then cutting the resultant material into pellets. This process ensures uniform fiber distribution and superior mechanical properties. Significantly improved impact resistance Increased stiffness and strength Excellent heat resistance Improved creep and wear characteristics Reduced warpage and deformation Enhanced properties of recycled crystalline and amorphous resins Technical Details Name Fiber Content Color Length MOQ TDS FOB Price Delivery Polyphenylene sulfide filled long glass fiber polymer 20%-60% Natural color / Customized 6-25mm 25KG/Bag Contact us for TDS USD 8.8-11.1/KG By ship or air Company Profile Xiamen LFT Composite Plastic Co., LTD, established in 2009, is a leading global supplier of long fiber reinforced thermoplastic materials, integrating R&D, production, and marketing. Our LFT products are ISO9001 & IATF16949 certified, with numerous national trademarks and patents, serving automotive, aerospace, military, new energy, medical, wind power, and sports equipment sectors. Other Materials You May Be Interested In PA66-NA-LGF   PPA-NA-LCF   PA12-NA-LGF
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  • PA12-NA-LGF
    High strength PA12 nylon12 composite lgf virgin white color for automotive
    Product number: PA12-NA-LGF Fiber specification: 20%-60% Product feature: High strength, High toughness and durability Product application: Suitable for automotive, sports parts, solar energy, photovoltaic industry and other industries.
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  • PP-NA-LGF
    High Chemical Resistance PP Long Glass Fiber Material Natural Black Custom Color
    PP long glass fiber reinforced composite is a high-performance thermoplastic material made by compounding polypropylene (PP) with continuous long glass fibers. This material offers a significant improvement in mechanical properties compared to standard PP.
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  • MXD6-LGF
    LFT MXD6 Polyamide New Materials Long Glass Fiber filled Compounds
    MXD6 long glass fiber reinforced material offers excellent mechanical strength, dimensional stability, and outstanding gas barrier properties. It is ideal for applications requiring high stiffness, heat resistance, and reduced permeability, such as automotive components, electronics, and industrial parts.
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  • PA6-NA-LGF
    High Stifiness PA 6 Long Glass Fiber Plastic White Black Color
    PA6 refers to polyamide 6, which is a widely used engineering plastic with excellent mechanical strength, wear resistance, and chemical stability. Adding long glass fibers to PA6 can significantly enhance the material’s mechanical properties, such as strength, rigidity, impact resistance, and dimensional stability.
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