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Glass Fiber Reinforced Plastic Performance Introduction

January 16, 2026

Latest company news about Glass Fiber Reinforced Plastic Performance Introduction

  Glass fiber reinforcement is a highly effective method to enhance the properties of various thermoplastic resins, creating composite materials with superior performance. 1. Glass Fiber Reinforced Polypropylene: This composite significantly improves the mechanical strength, thermal resistance, creep resistance, and dimensional stability of standard polypropylene. It is widely used in applications such as fan blades, battery casings, heater housings, washing machine pulleys, filter plates and frames, assorted pipes, and automotive components. 2. Glass Fiber Reinforced Polyethylene: This specialized grade is developed for demanding applications in motors and fans, offering enhanced strength and heat resistance, and is also suitable for various other parts in the electromechanical and chemical industries. 3. Glass Fiber Reinforced ABS & AS: Compared to their unreinforced counterparts, glass fiber reinforced ABS and AS exhibit markedly higher tensile strength, flexural strength, modulus, and heat deflection temperature, alongside reduced linear expansion and mold shrinkage. They offer excellent electrical properties and dimensional stability. The reinforcement also improves long-term aging performance, creep resistance, and fatigue strength, making them ideal for manufacturing high-precision components. 4. Glass Fiber Reinforced Nylon: This composite addresses the inherent moisture sensitivity of nylon by improving dimensional stability and increasing the continuous use temperature. It also boosts surface hardness, tensile strength, rigidity, and wear resistance. It is commonly used to replace metals in gears, transmission parts, power tool housings, and various electrical insulators, coil bobbins, and parts requiring temperature, oil, and wear resistance. 5. Glass Fiber Reinforced PBT & PET: These materials combine excellent mechanical properties with a high heat distortion temperature, good electrical characteristics, solder resistance, moisture resistance, and weatherability. They are extensively used in the electronics, electrical, automotive, and machinery industries for robust and reliable components.

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