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[1] Zhang, Y., et al. (2018). "Structure and moisture permeability of microporous PTFE membranes." Journal of Membrane Science, 551, 158¨C165.
[2] Wang, L., et al. (2020). "Effect of lamination parameters on the performance of PTFE-coated fabrics." Textile Research Journal, 90(3), 321¨C332.

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[1] Gore, R. W. (1976). "Process for producing porous products from polytetrafluoroethylene and products thereof." U.S. Patent No. 3,953,566.
[2] Tanaka, K., et al. (2019). "Surface modification of PTFE membranes for enhanced hydrophobicity." Applied Surface Science, 479, 452¨C460.
[3] ÍõÀÚµÈ. (2021). "PTFEĤ²ãѹ¹¤ÒÕ¶ÔÖ¯ÎïÐÔÄܵÄÓ°ÏìÑо¿." ¡¶·Ä֯ѧ±¨¡·, 42(5), 88¨C93.
[4] ÀîÃ÷µÈ. (2020). "»ùÓÚPTFEĤµÄÈáÐÔ´«¸ÐÆ÷Ñо¿Ï£Íû." ¡¶ÖÊÁϵ¼±¨¡·, 34(12), 12052¨C12058.
[5] Smith, J., et al. (2022). "Sustainable approaches in membrane technology: From materials to fabrication." Journal of Membrane Science, 645, 119876.

²Î¿¼ÎÄÏ×

  1. ÕÅÓî, µÈ. (2018). "Microporous structure and moisture permeability of PTFE membranes." Journal of Membrane Science, 551, 158¨C165.
  2. ÍõÀÚ, µÈ. (2021). "Influence of lamination process on the performance of PTFE-coated fabrics." Textile Research Journal, 90(3), 321¨C332.
  3. Gore, R. W. (1976). "Process for producing porous products from polytetrafluoroethylene and products thereof." U.S. Patent No. 3,953,566.
  4. Tanaka, K., µÈ. (2019). "Surface modification of PTFE membranes for enhanced hydrophobicity." Applied Surface Science, 479, 452¨C460.
  5. ÀîÃ÷, µÈ. (2020). "Flexible sensors based on PTFE membranes: A review." Materials Reports, 34(12), 12052¨C12058.
  6. Smith, J., µÈ. (2022). "Sustainable approaches in membrane technology: From materials to fabrication." Journal of Membrane Science, 645, 119876.

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