Development of a textile multilayered device with piezoelectric property using different knitted fabric structures

IF 1.5 Q2 MATERIALS SCIENCE, TEXTILES Research journal of textile and apparel Pub Date : 2023-10-13 DOI:10.1108/rjta-04-2023-0047
Gabriela Maestri, Claudia Merlini, Leonardo Mejia, Fernanda Steffens
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Abstract

Purpose This study aims to develop two piezoelectric textile devices formed from different weft knitted fabric rapports (Jersey and Pique) to be applied in the renewable energy’s (RE) area. Design/methodology/approach Two different weft knitted rapports were produced with polyester (PES). The device developed has five layers: a central of poly(vinylidene fluoride) (PVDF) nonwoven, involved by two insulating layers of PES knitted fabric; and two conductive external layers, made of polypyrrole-coated PES knitted fabric. The piezoelectric textile devices were joined by sewing the five layers of the device. Findings The FTIR technique confirmed the β -phase in the PVDF nonwoven. This study produced and tested two different textiles devices with piezoelectric behavior, confirmed by the correlated pattern of voltage and tensile stress difference curves, showing the potential application in RE’s and sustainable energies field as smart textiles, such as devices incorporated in garments in the areas of high movement (elbow, knee, foot, fingers and hands, among others), and as an energy generator device Originality/value Textile materials with piezoelectric properties promise to advance RE’s developments due to their high material flexibility and sensitivity to the electrical response. The knitted fabric technology presents flexibility due to its construction process. Comparative studies analyzing the electrical response between knitted and woven fabrics have already been realized. However, there is a gap in terms of research scientific research regarding the comparison of the piezoelectric effect in a material that presents different knitted fabric rapports.
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利用不同针织物结构研制具有压电性能的纺织多层装置
本研究旨在开发两种由不同纬编织物(Jersey和Pique)制成的压电纺织装置,并应用于可再生能源(RE)领域。设计/方法/方法用涤纶(PES)生产了两种不同的纬编织物。所开发的装置有五层:一层中央为聚偏氟乙烯(PVDF)非织造布,涉及两层绝缘的PES针织物;两层导电外层,由聚吡咯涂层PES针织物制成。压电纺织装置通过缝合装置的五层连接在一起。FTIR技术证实了PVDF非织造布中存在β相。本研究制作并测试了两种不同的具有压电行为的纺织品设备,通过电压和拉伸应力差曲线的相关模式进行了验证,显示了作为智能纺织品在可再生能源和可持续能源领域的潜在应用,例如在高运动区域(肘部,膝盖,脚,手指和手等)的服装中包含的设备。具有压电特性的纺织材料由于其高材料柔韧性和对电响应的敏感性,有望推动可再生能源的发展。针织物技术由于其构造过程而具有一定的灵活性。已经实现了针织物和机织物电响应的对比研究。然而,在研究方面,科学研究对呈现不同针织物关系的材料的压电效应进行了比较。
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来源期刊
Research journal of textile and apparel
Research journal of textile and apparel MATERIALS SCIENCE, TEXTILES-
CiteScore
2.90
自引率
13.30%
发文量
46
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