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电子纱线的水洗测试

Wash Testing of Electronic Yarn.

作者信息

Hardy Dorothy Anne, Rahemtulla Zahra, Satharasinghe Achala, Shahidi Arash, Oliveira Carlos, Anastasopoulos Ioannis, Nashed Mohamad Nour, Kgatuke Matholo, Komolafe Abiodun, Torah Russel, Tudor John, Hughes-Riley Theodore, Beeby Steve, Dias Tilak

机构信息

The Advanced Textiles Research Group, School of Art and Design, Nottingham Trent University, Nottingham NG1 4FQ, UK.

School of Electronics and Computer Science, University of Southampton, Highfield, Southampton SO17 1BJ, UK.

出版信息

Materials (Basel). 2020 Mar 9;13(5):1228. doi: 10.3390/ma13051228.

Abstract

Electronically active yarn (E-yarn) pioneered by the Advanced Textiles Research Group of Nottingham Trent University contains a fine conductive copper wire soldered onto a package die, micro-electro-mechanical systems device or flexible circuit. The die or circuit is then held within a protective polymer packaging (micro-pod) and the ensemble is inserted into a textile sheath, forming a flexible yarn with electronic functionality such as sensing or illumination. It is vital to be able to wash E-yarns, so that the textiles into which they are incorporated can be treated as normal consumer products. The wash durability of E-yarns is summarized in this publication. Wash tests followed a modified version of BS EN ISO 6330:2012 procedure 4N. It was observed that E-yarns containing only a fine multi-strand copper wire survived 25 cycles of machine washing and line drying; and between 5 and 15 cycles of machine washing followed by tumble-drying. Four out of five temperature sensing E-yarns (crafted with thermistors) and single pairs of LEDs within E-yarns functioned correctly after 25 cycles of machine washing and line drying. E-yarns that required larger micro-pods (i.e., 4 mm diameter or 9 mm length) were less resilient to washing. Only one out of five acoustic sensing E-yarns (4 mm diameter micro-pod) operated correctly after 20 cycles of washing with either line drying or tumble-drying. Creating an E-yarn with an embedded flexible circuit populated with components also required a relatively large micro-pod (diameter 0.93 mm, length 9.23 mm). Only one embedded circuit functioned after 25 cycles of washing and line drying. The tests showed that E-yarns are suitable for inclusion in textiles that require washing, with some limitations when larger micro-pods were used. Reduction in the circuit's size and therefore the size of the micro-pod, may increase wash resilience.

摘要

由诺丁汉特伦特大学先进纺织品研究小组率先研发的电子活性纱线(E纱线)包含一根精细的导电铜线,该铜线焊接在封装芯片、微机电系统器件或柔性电路上。然后,芯片或电路被置于保护性聚合物封装(微荚)中,整个组件被插入纺织护套中,形成具有传感或照明等电子功能的柔性纱线。能够洗涤E纱线至关重要,这样包含它们的纺织品就可以像普通消费品一样进行处理。本出版物总结了E纱线的洗涤耐久性。洗涤测试遵循BS EN ISO 6330:2012程序4N的修改版本。据观察,仅包含一根精细多股铜线的E纱线在经过25次机洗和晾晒干后仍能使用;在经过5至15次机洗然后滚筒烘干后也能使用。五根温度传感E纱线(由热敏电阻制成)中有四根以及E纱线中的单对发光二极管在经过25次机洗和晾晒干后仍能正常工作。需要更大微荚(即直径4毫米或长度9毫米)的E纱线对洗涤的耐受性较差。五根声学传感E纱线(直径4毫米的微荚)中只有一根在经过20次机洗并采用晾晒干或滚筒烘干后仍能正常工作。制造带有嵌入柔性电路且电路上装有元件的E纱线也需要相对较大的微荚(直径0.93毫米,长度9.23毫米)。只有一个嵌入电路在经过25次洗涤和晾晒干后仍能正常工作。测试表明,E纱线适用于需要洗涤的纺织品,但使用较大微荚时存在一些限制。减小电路尺寸从而减小微荚尺寸,可能会提高洗涤耐受性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bab/7085099/87866dfa4fb8/materials-13-01228-g001.jpg

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