TI-5000 Series | PAI: Polyamide-imide | Disengaging latch TI grade | Gear TI grade
TI-5000 Series | PAI: Polyamide-imide | Disengaging latch TI grade | Gear TI grade

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TI-5000 Series | PAI: Polyamide-imide | Disengaging latch TI grade | Gear TI grade

TI-5000 Series (PAI: Polyamide-imide)

Characteristics

  1. (1) The TI-5000 Series demonstrates a superior balance of heat resistance and strength.
    Its non-reinforced strength at 250°C rivals that of POM at room temperature.
  2. (2) The superior wear resistance of the TI-5000 Series prevents any damage to itself or to other materials.
    → Damage to the photosensitive drum heat roll is miniscule.
  3. (3) This series demonstrates superior creep property.
    → Deformations are rare, and jammings are minimal.
  4. (4) This series demonstrates superior dimensional stability.
    → The linear expansion coefficient is minimal, and precision is high.

The TI-5000 Series "exceeds the performance of traditional engineering plastics in almost all aspects."

 

Superior Balanced Physical Properties and Optimal for Heat-Resistant Gears

The TI-5000 Series boasts superior heat resistance (continuous use temperature of 250°C), heat distortion resistance (deflection temperature under load of 279°C), mechanical properties (especially tensile strength and shock resistance), fatigue resistance, flame retardance, friction and wear resistance, and stress crack resistance.

Characteristics

  1. (1) The TI-5000 Series demonstrates a superior balance of heat resistance and strength.
    → Its strength lends itself to preventing cracks in gear tips or welding.
  2. (2) It demonstrates high strength even without reinforcement from glass fibers as well as superior abrasion resistance.
    → This property prevents any damage to itself or to other materials (for example, contact gears or internal shafts)
  3. (3) This series demonstrates superior dimensional stability.
    → The linear expansion coefficient is minimal, and precision is high.

The TI-5000 Series “exceeds the performance of traditional engineering plastics in almost all aspects.”



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