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  • Polymer with copolymer long carbon fiber
    Copolymer Long carbon fiber Reinforced Polypropylene PP
    The pp copolymer is a non-polar crystalline polymer. Polymer with copolymer long carbon fiber have high chemical resistance.
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  • Reinforced Polyetheretherketone PEEK with long carbon fiber
    Polyetheretherketone PEEK with Long carbon fiber Reinforced
    Polyetheretherketone PEEK with Long carbon fiber Reinforced is a special engineering plastic with excellent performance.
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  • Reinforced PPSlong glass fiber resin
    Modified Polyphenylene sulfide PPS filled Long Glass fiber Reinforced
    Engineer PPS filled Long Glass fiber Reinforcedis one kind of engineering modifeid plastic materials of long glass fiber reinforced PPS
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  • LFT Nylon12 Long Glass Fiber Reinforced Composite Granules
    LFT Polyamide Nylon 12 Long Glass Fiber 30% Composite For Bicycle
    Product Name: Polyamide12 long glass fiber 40% composite,Nylon Long fiber thermoplastic Certificated: SGS, 16949 system certificated,MSDS,and so on.
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  • LFT Nylon12 Long Glass Fiber Reinforced Composite Granules
    LFT Nylon GF40 Polyamide LGF 40% Composite For Auto Parts
    Product Name: Polyamide12 long glass fiber 40% composite,Nylon Long fiber thermoplastic Certificated: SGS, 16949 system certificated,MSDS,and so on.
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  • LFT Polypropylene homopolymer fill long carbon fiber composite
    LFT PP Carbon Fiber Reinforced Thermoplastic PP LCF 20%
    Product name: LFT PP Carbon Fiber Reinforced Thermoplastic Materials Certificated:FDA,SGS,IATF 16949, and so on.
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  • LFT Polypropylene homopolymer fill long carbon fiber polymer
    LFT PP Fill Long Carbon Fiber PP LCF 30% Polymer
    Product name: LFT PP Carbon Fiber Reinforced Thermoplastic Materials Certificated:FDA,SGS,IATF 16949, and so on.
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  • MXD6-NA-LGF30
    High quality MXD6 composite long glass fiber nylon original color automotive parts
    MXD6 Nylon - MXD6 is a kind of crystalline polyamide resin, which is synthesized by the condensation of m-benzoylamine and adipic acid. The advantages of nylon MXD6 1. in a wide range of temperature, maintain high strength, high rigidity 2. High thermal deformation temperature and small thermal expansion coefficient 3. Low water absorption rate, small size change after water absorption, less mechanical strength reduction 4. forming shrinkage rate is very small, suitable for precision forming processing 5. excellent coating, especially suitable for high temperature surface coating 6. oxygen, carbon dioxide and other gases also have excellent barrier Application of MXD6 in plastic modification industry MXD6 can be combined with fiberglass, carbon fiber, mineral, and/or advanced fillers for use in fiberglass reinforced materials containing 50-60% and for exceptional strength and stiffness. Even when filled with high glass content, its smooth, resin-rich surface produces a fibre-free high gloss surface, ideal for painting, metal-plating, or creating naturally reflective shells. 1. suitable for high liquidity of thin wall It is a very fluid resin that can easily fill thin walls as thin as 0.5 mm thick even when the glass fiber content is as high as 60%. 2. Excellent surface finish A resin-rich perfect surface has a highly polished appearance, even with a high glass fiber content. 3. High strength and stiffness The tensile and flexural strength of MXD6 is similar to that of many cast metals and alloys with the addition of 50-60% glass fiber reinforced material. 4. good dimensional stability At ambient temperatures, the linear expansion coefficient (CLTE) of MXD6 glass fiber composites is similar to that of many cast metals and alloys. Strong reproducibility due to low shrinkage and the ability to maintain tight tolerances (length tolerances as low as ± 0.05% if properly formed). Datasheet Tested by our own lab, for reference only. Frequently asked questions 1. How to choose the fiber content of the product? Is the larger product suitable for higher fiber content material? A. This is not absolute. The content of glass fiber is not more is better. The suitable content is just to meet the requirements of each products. 2. Can products with appearance requirements be made of long-fiber materials? A. The main feature of LFT-G thermoplastic long glass fiber and long carbon fiber is to show the mechanical properties. If the customer has bright or other requirements for the appearance of the products, it needs to be evaluated in combination with specific products. 3. Are there any special process requirements of long carbon fiber injection molding products? A. We must consider the requirements of long fiber for the injection molding machine screw nozzle, mold structure and injection molding process. Long fiber is a relatively high cost materiaql, and need to evaluate the cost performance problem in the selection process. 
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  • PA66-NA-LGF
    LFT Polyamide6 long glass fiber reinforced plastic
    PA66 Long Glass Fiber Reinforced (PA66-LGF) Nylon (PA) offers a combination of excellent properties, including high mechanical strength, chemical resistance, oil resistance, wear resistance, self-lubrication, and good processability. As a result, nylon has become one of the most widely used engineering thermoplastics in many industrial applications. However, the performance requirements of nylon vary depending on the application, operating conditions, and service environment. For example, components such as electric drill housings, motor housings, pump impellers, bearings, diesel engine components, and air-conditioning fan blades may require high strength, rigidity, and dimensional stability. Since unmodified nylon can exhibit reduced toughness at low temperatures, impact modification may be required for certain applications. For long-term outdoor use, weather-resistant modification may also be necessary. The most commonly used reinforcing materials for nylon include glass fiber, carbon fiber, and various other fibrous materials. Among them, glass fiber reinforcement is one of the most widely adopted solutions. Adding glass fiber can significantly improve the stiffness, strength, hardness, dimensional stability, and heat resistance of nylon. Depending on the required mechanical performance and application, glass fiber content can typically range from approximately 20% to 50%. Grades with around 30% glass fiber are commonly used for a balance of strength, stiffness, processability, and cost, while higher fiber contents can be selected when greater mechanical performance is required. Production Technology of Glass Fiber Reinforced Nylon Long glass fiber reinforced nylon can be manufactured using a specialized compounding process designed to maintain a relatively long fiber length within the polymer matrix. During the production process, nylon resin and other formulation components are prepared and fed into the compounding system, while continuous glass fiber is introduced through a dedicated fiber feeding system. The glass fiber is impregnated and combined with the molten nylon resin under controlled processing conditions. Proper control of screw configuration, temperature, feeding rate, and shear is important for achieving good fiber distribution while minimizing unnecessary fiber breakage. Factors Affecting the Properties of Glass Fiber Reinforced Nylon 1. Glass Fiber and Nylon Interfacial Bonding The interfacial bonding between glass fiber and nylon resin is one of the most important factors affecting the performance of glass fiber reinforced nylon. If the adhesion between the fiber and polymer matrix is insufficient, the reinforcing efficiency can be significantly reduced. Therefore, appropriate glass fiber surface treatment and sizing technology are important. Glass fiber manufacturers can provide different surface treatments and sizing systems designed for specific polymer matrices, allowing compounders to select a suitable fiber type for the target nylon formulation. 2. Glass Fiber Length The length of glass fiber retained in the nylon matrix is another important factor affecting mechanical performance. In general, long glass fiber reinforced nylon can provide advantages over conventional short glass fiber materials in terms of tensile strength, flexural strength, stiffness, dimensional stability, and impact performance. 3. Glass Fiber Dispersion Uniform glass fiber dispersion is also critical to achieving consistent material performance. It is influenced by the screw configuration, screw speed, residence time, processing temperature, and formulation. Excessive shear can cause unnecessary fiber breakage, reducing the effective fiber length and potentially affecting the mechanical properties of the final product. Therefore, processing conditions should be optimized according to the glass fiber content and formulation requirements. 4. Other Processing Factors In addition to fiber length and dispersion, factors such as processing temperature, glass fiber diameter, fiber type, resin grade, additives, and moisture control can also influence the final performance of glass fiber reinforced nylon. Glass Fiber Reinforced Nylon and Melt Flowability Compared with unfilled nylon, glass fiber reinforced nylon generally exhibits higher melt viscosity and can therefore present greater processing challenges during injection molding. Potential issues include higher injection pressure requirements, incomplete filling, increased mold temperature requirements, and reduced surface quality. For demanding injection molding applications, processing performance can be improved through formulation optimization, including the appropriate selection of processing aids, lubricants, stabilizers, and other additives. Injection molding parameters should also be adjusted according to the specific material grade and part design. High-Temperature Heat and Oxidative Aging Resistance In applications such as bearings, engine components, and...
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  • PA6-NA-LCF30
    PA6 LFT-G brand composite long carbon fiber polyamide 6 for manufacturing helmets
    PA6 raw material Polyamide 6, also known as polycaprolactam or nylon 6(PA6), is a semi-transparent to opaque yellowish or milky white thermoplastic resin. The relative density of PA6 is 1.12~ 1.14g /cm3, the melting point is 219~225℃, the tensile strength is 68~83MPa, the compression strength is 82~88MPa, the low temperature resistance is good (-75℃ is not brittle), the wear resistance, self-lubricating and oil resistance is good. Due to the excellent structure and properties of PA6, more and more researchers at home and abroad have carried out important research and development on PA6, including exploring new polymerization chemicals for production, changing its structure and properties, and finding new processing methods, etc. PA6-LCF Long carbon fiber (LCF) reinforced nylon composites with high specific strength, high specific modulus, high temperature resistance and other excellent properties, expand the application space of nylon high technology field, is one of the most important reinforced composites at present. TDS Tested by us, for reference only. Application Injection technology About us Come and contact us now!
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