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Continuous Production of Piezoelectric PVDF Fibre for E-Textile Applications

机译:连续生产用于电子纺织应用的压电PVDF纤维

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摘要

Polymers have been widely used as piezoelectric materials in the form of films and bulk materials but there are limited publications on piezoelectric fibre structures. In this paper the process of preparing piezoelectric polyvinylidene fluoride (PVDF) fibres from granules by continuous melt extrusion and in-line poling is reported for the first time. The poling of PVDF fibres was carried out at an extension ratio of 4:1, a temperature of 80 ◦C and a high voltage of the order of 13 000 V on a 0.5 mm diameter fibre in a melt extruder. The entire process of making PVDF fibres from granules and poling them to make piezoelectric fibres was carried out in a continuous process using a customized melt extruder. The prepared piezoelectric fibres were then tested using an impact test rig to show the generation of voltage upon application of an impact load. PVDF granules, unpoled fibres and poled fibres were examined by Fourier transform infrared spectroscopy (FTIR) which showed the presence of β phase in the poled fibres. The ultimate tensile stress and strain, Young’s modulus and microstructures of poled and unpoled fibres were investigated using a scanning electron microscope (SEM).
机译:聚合物已经以膜和块状材料的形式广泛用作压电材料,但是关于压电纤维结构的出版物有限。本文首次报道了通过连续熔融挤出和在线极化从颗粒中制备压电聚偏二氟乙烯(PVDF)纤维的方法。在熔融挤出机中,在直径为0.5 mm的纤维上以4:1的拉伸比,80℃的温度和13000 V的高电压对PVDF纤维进行极化。由颗粒制备PVDF纤维并将其极化以制备压电纤维的整个过程是使用定制的熔融挤出机以连续过程进行的。然后使用冲击试验台对制备的压电纤维进行测试,以显示施加冲击载荷后产生的电压。通过傅立叶变换红外光谱法(FTIR)检查了PVDF颗粒,未极化纤维和极化纤维,结果表明极化纤维中存在β相。使用扫描电子显微镜(SEM)研究了极化和非极化纤维的极限拉伸应力和应变,杨氏模量和微观结构。

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