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  • PA66-NA-LCF30
    LFT-G PA66-Nylon66-Füllung, lange Kohlefaser, 20–60 % modifizierter Kunststoff, höhere Leistung, natürliche Farbe
    Materialeinführung Im Jahr 1935 synthetisierten Wallace Carothers, ein wissenschaftlicher Forscher bei DuPont, und sein Team erstmals erfolgreich PA66 durch Kondensation von Adipinsäure und Adipindiamin, und DuPont schloss 1939 die kommerzielle Produktion von PA66-Fasern ab. Ab den 1950er Jahren wurde PA , einschließlich PA6 und PA66, wurde für die Herstellung von Spritzgussprodukten als Ersatz für Metall entwickelt, um den Anforderungen an geringes Gewicht und Kostenreduzierung von Industrieprodukten gerecht zu werden. Derzeit ist PA66 neben PA6 die am häufigsten verwendete PA-Art. PA66 Wissenschaftlicher Name: Polyhexandiamid Abkürzung: PA66 Allgemeiner Name: Nylon 66  PA66 hat viele Ähnlichkeiten mit PA6. PA66 ist ebenfalls ein transparentes bis milchig weißes Granulat, das durch Zugabe eines für Polymere spezifischen Farbstoffs (Masterbatch) nahezu jede Farbe annehmen kann. Materialeigenschaften Similar to the basic properties of PA6, PA66 also has low specific gravity, high tensile strength, wear resistance, good self-lubrication, and excellent impact toughness. In addition, because the number of hydrogen bonds in PA66 is more than in PA6, the intermolecular force of PA66 is stronger than the intermolecular force of PA6, which makes the internal structure of PA66 more compact than PA6, with better thermal properties, higher rigidity and toughness, better dimensional stability, lower water absorption, and more wear resistance. However, PA66 has a higher market price than PA6 and is not as easy to process and mold as PA6. Like PA6, PA66 can also add a certain percentage of glass fiber, carbon fiber, etc. to improve the performance and meet the application needs of different products. The following table is a PA66-LCF30 performance table produced by Xiamen LFT composite plastic company. Materials Application PA66 has higher hardness, mechanical strength, toughness, self-lubrication, friction resistance, heat resistance after the addition of carbon fiber, and is widely used in automotive parts, electrical and electronic, as well as mechanical and engineering parts and other fields. Automotive parts PA66's low specific gravity, high rigidity, strong toughness, heat resistance and gasoline resistance make it widely used in automotive modules, automotive structural parts, automotive interior and exterior parts, automotive transmission system and chassis shield, automotive fuel system, automotive ignition system, etc. The products involve automotive cable channel modules, structural parts of front-end components of automotive sunroof system, automotive rearview mirror bracket, automotive radiator, headlight support frame, door module, seat structural parts, seat shell and backrest, dashboard skeleton, air cooler fan, etc. Electrical and electronics PA66's good insulation, flame retardancy and corrosion resistance make it suitable for making various connectors, switches, sockets, terminal blocks, wire coverings, wire ties, insulating spacers, circuit breaker housings, transformer bobbins, retaining clips and motor parts after glass fiber reinforcement. Mechanical and engineering parts PA66's good rigidity, toughness, self-lubricating properties, heat and abrasion resistance make it suitable for manufacturing various nuts, screws, cable ties, worm gears, rotating wheels, gears, pump impellers, pulley sleeves, bushings, solenoid distribution valve seats, power tool housings, pipes, luggage racks, fan housings, appliance housings, door and window frames, cable drag chains and large machine tool baffles. Details Number Color Length Sample Package MOQ Delivery time Port of Loading PA66-NA-LCF30 Natural color (can be customized) 12mm about (can be customized) Available 20kg/bag 20kg 7-15 days after shipment Xiamen Port Other products you may wonder                       pa6-lcf                                    pa12-lcf                                  peek-lcf Frequently asked questions Q. How to choose the reinforcement method and length of the material when using long fiber reinforced thermoplastic material? A.  The selection of materials depend on the requirements of the products. It is necessary to access how much the content is enhanced and how much length is more appropriate, which are depending on the performance requirements of the products. Q. Under what circumstances can long fiber replace short fiber? What are the common alternative materials? A. Traditional staple fiber materials can be replaced with long glass fiber and long carbon fiber LFT materials in the case of customers whose mechanical properties cannot be met or where higher metal substitutes are desired. For example, PP long glass fiber is often replacing nylon reinforced glass fiber, and...
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