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[1] Wang, X., et al. (2020). "Thermal degradation behavior of PTFE composite fabrics under high temperature." Journal of Applied Polymer Science, 137(15), 48678.

[2] Li, Y., et al. (2019). "Low-temperature mechanical properties of PTFE-coated fabrics for extreme cold environments." Textile Research Journal, 89(12), 2345¨C2355.

[3] Zhang, H., et al. (2021). "UV aging resistance of PTFE laminated membranes: Effect of surface modification." Polymer Degradation and Stability, 185, 109472.

[4] Chen, G., et al. (2018). "Chemical resistance of PTFE composite textiles in acidic and alkaline environments." Materials Chemistry and Physics, 217, 145¨C153.

[5] Liu, M., et al. (2022). "Mechanical performance of PTFE composite materials under high-pressure conditions." Composites Part B: Engineering, 235, 109768.

[6] DuPont Technical Report (2021). "Enhanced thermal stability of PTFE composites with nano-silica additives." DuPont Innovation Center.

[7] Toray Industries White Paper (2020). "Plasma treatment improves adhesion between PTFE film and textile substrates." Toray R&D Review.

[8] Ç廪´óѧÖÊÁÏѧԺÑо¿±¨¸æ (2022). ¡°PTFE¸´ºÏÃæÁÏ×ÏÍâÀÏ»¯»úÀí¼°¿¹Ñõ»¯¸ÄÐÔÑо¿.¡± ¡¶ÖÊÁÏ¿ÆÑ§Ï£Íû¡·, µÚ36¾í, µÚ4ÆÚ, pp. 567¨C575.

[9] Öйú·ÄÖ¯¿ÆÑ§Ñо¿Ôº (2021). ¡°¼«µØÓö๦ЧPTFE¸´ºÏÃæÁϵÄÑз¢ÓëÓ¦ÓÃ.¡± ¡¶·ÄÖ¯µ¼±¨¡·, µÚ12ÆÚ, pp. 89¨C95.

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