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| Performance | Direct Impact on Massage Airbags |
|---|---|
| High Elasticity | Adapts to varying inflation pressures (0.1–0.5 MPa), enabling adjustable intensity from gentle massage to deep tissue compression. |
| Fatigue Resistance | Withstands over 100,000 inflation/deflation cycles without leakage, offering 3–5x lifespan compared to traditional rubber airbags. |
| Airtightness | Weld strength ≥15 N/15 mm ensures leak-free operation under high pressure, maintaining stable massage rhythm. |
| Lightweight Design | Density of 1.1–1.2 g/cm³ reduces weight by 20% vs. PVC airbags, enhancing portability and device integration. |
| Eco-Friendliness | 95% recyclability compliant with EU REACH and RoHS standards, eliminating risks of plasticizer migration from traditional PVC. |
Industry Trends
Driven by advancements in smart hardware and medical rehabilitation technologies, TPU membrane massage airbags are evolving toward: