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PA6 M1200A-R16

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1. Mechanical Equipment

  • Power Transmission Systems
    Used in manufacturing high-precision and wear-resistant components such as bearings, gears (spur/bevel), and cams—benefiting from its high strength, fatigue resistance, and self-lubricating properties.

  • Fluid Control
    Suitable for chemically and pressure-resistant applications such as pump impellers, high-pressure seals, and oil-resistant gaskets.

  • Automation Components
    Applied in long-life industrial parts like shear machine pulley sleeves and electromagnetic valve seats, requiring long-term stable performance.


2. Automotive & Transportation

  • Powertrain Systems
    Used for high-temperature-resistant parts around the engine, such as pistons and oil pipes, ensuring long-term stability under hot oil environments.

  • Safety and Structural Components
    Includes wear-resistant drive belts and brake system auxiliary parts, relying on impact resistance and dimensional stability.


3. Electronics & Electrical Appliances

  • Precision Components
    Applied in insulating and protective parts like device housings and cable sheaths, offering lightweight and heat-resistant properties.

  • Functional Parts
    Includes frames for wearable electronics and sensor mounts; conductivity modification allows for applications like anti-static or electromagnetic shielding.


4. Special Industrial Applications

  • Wear-Resistant Materials
    Used in mining machinery and textile equipment as liners, rollers, and other easily worn components, replacing metal to reduce maintenance costs.

  • Customized Solutions
    Enhanced with reinforcing fibers or fillers (e.g., glass fiber) to improve thermal resistance and mechanical strength, making it suitable for aerospace and precision instrument applications.


5. Processing & Modification Tips

PA6 (Polyamide 6) requires strict moisture control. It should be dried at 80–100°C for 4–6 hours before processing. The recommended injection molding temperature is 230–280°C (can be raised above 250°C for reinforced grades).
Modification options include the addition of conductive agents, toughening agents, and other additives to optimize performance for specific needs.

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