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  • LBT-508 Comfortable Plastic Back Frame
  • LBT-508 Comfortable Plastic Back Frame
  • LBT-508 Comfortable Plastic Back Frame
  • LBT-508 Comfortable Plastic Back Frame
  • LBT-508 Comfortable Plastic Back Frame
  • LBT-508 Comfortable Plastic Back Frame
  • LBT-508 Comfortable Plastic Back Frame
  • LBT-508 Comfortable Plastic Back Frame
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LBT-508 Comfortable Plastic Back Frame


LBT-508 Comfortable Plastic Back Frame is a carefully designed seating accessory made of high-quality polypropylene (PP) material. It is formed in one-time through advanced injection molding process, ensuring structural stability and durability. Its overall design is small and lightweight, which is not only easy to carry and install, but also effectively saves space. The back curve has been ergonomically optimized to fit the natural shape of the human spine, providing excellent support and comfort, and can maintain a good sitting experience even after long-term use, reducing back fatigue. PP material has good corrosion resistance and easy cleaning characteristics, and is easy to maintain. It is an ideal choice for home, office and public places.

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LBT-508 Comfortable Plastic Back Frame knowledge

How to improve the durability and comfort of Plastic Back Frame through material selection?

How to improve the durability and comfort of Comfortable Plastic Back Frame through material selection?
The durability and comfort of Plastic Back Frame directly affect the user experience, and the choice of material is a key factor. The following are professional suggestions for optimizing material selection:

1. Improved durability: Choose high-strength, fatigue-resistant plastics

Engineering plastics (such as PA nylon, POM polyoxymethylene): have high mechanical strength, wear resistance and impact resistance, suitable for long-term load-bearing use.
Reinforced plastics (such as glass fiber/carbon fiber reinforced PP or ABS): improve rigidity through fiber reinforcement and reduce the risk of deformation.
Weather-resistant materials (such as ASA, PC): UV-resistant and oxidation-resistant, suitable for outdoor or high-frequency use scenarios.

2. Comfort optimization: flexible materials combined with ergonomic design

TPE/TPU (thermoplastic elastomer): provide cushioning and flexibility, reduce the sense of pressure on the body.
Foamed plastics (such as EVA or PE foam composite layer): lightweight and shock-absorbing, suitable for back frame designs that require shock absorption.
Surface treatment (anti-slip texture, breathable hole design): improve fit and avoid stuffiness or friction discomfort.

3. Balance performance and cost: choose according to the application scenario

Medical/rehabilitation equipment: give priority to biocompatible materials (such as medical-grade PP) and sterilizability.
Sports protective gear: need to take into account both elasticity and support (such as TPU+nylon composite structure).
Office/home supplies: focus on lightweight and low cost (such as modified PP or ABS).

4. Testing and verification

Fatigue test: simulate long-term use to evaluate the material's ability to resist deformation.
Environmental test: check the performance stability under conditions such as high temperature and humidity.

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