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PA6 Series — Glass Fiber Reinforced Halogen-Free Flame Retardant PA6 (Black)

PA6 Series — Glass Fiber Reinforced Halogen-Free Flame Retardant PA6 (Black)

  • Product Description Glass Fiber Reinforced PA6:Glass fiber reinforced PA6 is a modified engineering plastic produced by adding a specific proportion of glass fibers to a PA6 base, followed by melt blending, shear dispersion, and extrusion pelletizing using a twin-screw extruder. This reinforcement significantly enhances the rigidity, strength, heat resistance, and dimensional stability of PA6, while overcoming the disadvantages of neat PA6, such as high moisture absorption, significant dimensional changes, and insufficient low-temperature toughness. The material offers high tensile strength, high flexural modulus, excellent heat resistance, superior creep resistance, good dimensional stability, and strong chemical resistance. It is widely used in automotive components (such as intake manifolds, radiator tanks, fan shrouds, door handles, and engine cover parts), power tool housings, sports equipment, industrial gears, bearings, and structural parts that demand high strength and rigidity.
  • Product Features ◎ Glass Fiber Reinforced Halogen-Free Flame Retardant PA6:Glass fiber reinforced halogen-free flame retardant PA6 is a high-performance engineering plastic based on polyamide 6, formulated with a high content of glass fibers and halogen-free flame retardants, along with compatibilizers, heat stabilizers, and other modifying additives. It is produced through twin-screw extrusion compounding and specialized molding processes. This material retains the excellent processability and mechanical properties of PA6 while delivering significantly improved rigidity, heat resistance, dimensional stability, and flame retardancy. It also meets environmental regulatory requirements and is widely used in battery systems (such as battery module housings, covers, and high-voltage connectors), as well as in electronics and electrical applications (such as 5G base station antenna radomes, circuit breaker enclosures, and electric vehicle charging station housings) where high mechanical strength and stringent flame retardancy standards are essential.