首页> 外文会议>Annual international conference on composites engineering >A STUDY ON THE STRUCTURE OF BIAXIALLY ORIENTED PTFE MICROPOROUS FILM AND THE MECHANISM OF WATERPROOF AND WATER VAPOR PERMEABILITY
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A STUDY ON THE STRUCTURE OF BIAXIALLY ORIENTED PTFE MICROPOROUS FILM AND THE MECHANISM OF WATERPROOF AND WATER VAPOR PERMEABILITY

机译:双轴取向PTFE微孔膜结构的研究及防水蒸汽渗透性机理

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Nowadays more and more people pay much more attention to the comfortability and functionality of the clothes. Waterproof and selective permeability are of critical importance to people under critical circumstances. But conventional fabric has no, if any, waterproof property and conventional film has no water vapor permeability. Through special process film can obtain water vapor permeability but simultaneously doesn't loss its waterproof property. Among the different processes, biaxial stretching of the PTFE film is one popular method to achieve the desired properties. In this paper, the biaxially oriented PTFE microporous film was analysed. Fig. 1 is the scanning electron micrograph of the surface of PTFE film. The spider web microporous film is formed using biaxial orientation technique. In which, lots of micro-pores are connected by micro-fibrils formed when biaxial stretching process.
机译:如今越来越多的人需要更多地关注衣服的舒适性和功能。在关键情况下,防水和选择性渗透性对人们至关重要。但是,常规织物没有,如果有的话,防水性和常规膜没有水蒸气渗透性。通过特殊的工艺薄膜可以获得水蒸气渗透性,但同时不会损失其防水性。在不同的过程中,PTFE膜的双轴拉伸是一种达到所需性质的一种普遍的方法。本文分析了双轴取向的PTFE微孔膜。图。图1是PTFE膜表面的扫描电子显微照片。使用双轴取向技术形成蜘蛛网微孔膜。其中,许多微孔通过双轴拉伸过程而形成的微纤维连接。

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