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Improving Electrotextile Wearability Using Stiffness Testing Methods

机译:使用刚度测试方法改善电纺织物的耐磨性

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摘要

The ability to integrate electrical functionality into textile garments is becoming increasingly desired both on the battlefield and in the work environment. In order to accomplish this, the issue of compatibility of mechanical properties between dissimilar materials needs to be addressed. Textiles are typically selected for comfort while electrical materials are chosen for superior electrical properties with secondary consideration given to properties such as flexibility. As a result many attempts to integrate electrical functionality into textiles result in stiff, unwieldy garments that have difficulty gaining user acceptance. Part of the electrotextile work done at Foster-Miller has focused on the integration of these dissimilar materials in a manner that does not degrade the wearability of the garment. Our work has included the development of textile cables that carry power and data using both electrical and optical media. In order to assess the wearability of these cables a method was needed of testing their stiffness. Several methods of measuring textile stiffness existed but did not address the many issues and material characteristics unique to conductive textiles.
机译:在战场和工作环境中,都越来越需要将电子功能集成到纺织服装中的能力。为了做到这一点,需要解决异种材料之间的机械性能相容性问题。通常选择纺织品是为了舒适,而选择电气材料是为了获得优越的电气性能,同时还要考虑诸如柔韧性之类的性能。结果,许多试图将电子功能集成到纺织品中的尝试导致坚硬,笨拙的服装难以获得用户的认可。在福斯特·米勒(Foster-Miller)进行的部分电子纺织工作中,以不降低服装的耐磨性的方式致力于这些异种材料的集成。我们的工作包括开发纺织电缆,该纺织电缆同时使用电介质和光学介质来承载电力和数据。为了评估这些电缆的耐磨性,需要一种测试其刚度的方法。存在几种测量纺织品刚度的方法,但没有解决导电纺织品特有的许多问题和材料特性。

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