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通过超声焊接将电子元件集成到纺织品中,用于智能纺织品的电缆驱动应用。

Integrating Electronics to Textiles by Ultrasonic Welding for Cable-Driven Applications for Smart Textiles.

作者信息

Micus Sebastian, Rostami Sahar Golmohammadi, Haupt Michael, Gresser Götz T, Meghrazi Milad Alizadeh, Eskandarian Ladan

机构信息

German Institutes for Textile and Fiber Research Denkendorf (DITF), 73770 Denkendorf, Germany.

Institute for Textile and Fiber Technologies (ITFT), University of Stuttgart, 70569 Stuttgart, Germany.

出版信息

Materials (Basel). 2021 Oct 1;14(19):5735. doi: 10.3390/ma14195735.

Abstract

The connection between flexible textiles and stiff electronic components has always been structurally weak and a limiting factor in the establishment of smart textiles in our everyday life. This paper focuses on the formation of reliable connections between conductive textiles and conventional litz wires using ultrasonic welding. The paper offers a promising approach to solving this problem. The electrical and mechanical performance of the samples were investigated after 15 and 30 wash-and-dry cycles in a laundry machine. Here the contact resistances and their peeling strength were measured. Furthermore, their connection properties were analysed in microsections. The resistance of the joints increased more than 300%, because the silver-coated wires suffered under the laundry cycles. Meanwhile, the mechanical strength during the peeling test decreased by only about 20% after 15 cycles and remained the same after 30 cycles. The good results obtained in this study suggest that ultrasonic welding offers a useful approach to the connection of textile electronics to conductive wires and to the manufacture of smart textiles.

摘要

柔性纺织品与刚性电子元件之间的连接在结构上一直较为薄弱,这是智能纺织品在日常生活中应用的一个限制因素。本文重点研究了利用超声波焊接在导电纺织品与传统绞合线之间形成可靠连接。该论文提供了一种解决此问题的有前景的方法。在洗衣机中经过15次和30次洗涤 - 干燥循环后,对样品的电气和机械性能进行了研究。在此测量了接触电阻及其剥离强度。此外,还在微观切片中分析了它们的连接特性。由于镀银线在洗涤循环中受损,接头电阻增加了300%以上。同时,在剥离试验中,机械强度在15次循环后仅下降了约20%,30次循环后保持不变。本研究获得的良好结果表明,超声波焊接为纺织电子产品与导线的连接以及智能纺织品的制造提供了一种有用的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/346f/8510271/975abca1c1b8/materials-14-05735-g001.jpg

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