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首页> 外文期刊>Journal of Applied Polymer Science >Melt spinning of β-phase poly(vinylidene fluoride) yarns with and without a conductive core
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Melt spinning of β-phase poly(vinylidene fluoride) yarns with and without a conductive core

机译:含和不含导电芯的β相聚偏二氟乙烯纱线的熔融纺丝

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When poly(vinylidene fluoride) (PVDF) is to be used as a piezoelectric material, the processing must include the formation of polar β-phase crystallites, as well as the application of electrically conducting charge collectors, that is, electrodes. In this article, results from the melt spinning of PVDF yarns and a novel bicomponent PVDF-yarn with a conductive carbon black/polypropylene (CB/PP) core are presented. Melt spinning has been done under conditions typical for industrial large-scale fiber production. The effects on the resulting crystalline structure of varying the spinning velocity, draw rate, and draw temperature are discussed. The results show that, for maximum α-to-β phase transformation, cold drawing should take place at a temperature between 70 and 90°C, and both the draw ratio and the draw rate should be as high as possible. It was observed that the cold drawing necessary to form β-phase crystallinity simultaneously leads to a decrease in the core conductivity of the bicomponent yarns. In this work, the melt spinning of bicomponent fibers with high-β-phase PVDF in the sheath and a CB/PP core was successfully accomplished. The core material remained electrically conductive, paving the way for the use of a CB-polymer compound as inner electrode in the melt spinning of piezoelectric bicomponent fibers.
机译:当将聚偏二氟乙烯(PVDF)用作压电材料时,处理过程必须包括形成极性β相微晶,以及使用导电电荷收集器(即电极)。在本文中,介绍了PVDF纱线的熔融纺丝和具有导电炭黑/聚丙烯(CB / PP)芯的新型双组分PVDF纱线的结果。熔融纺丝是在工业大规模纤维生产的典型条件下完成的。讨论了改变纺丝速度,拉伸速率和拉伸温度对所得晶体结构的影响。结果表明,为了最大程度地实现α-β相变,应在70至90°C的温度下进行冷拔,并且拉伸比和拉伸速率均应尽可能高。观察到,形成β相结晶度所需的冷拉伸同时导致双组分纱线的芯导电率降低。在这项工作中,成功地完成了在护套和CB / PP芯中具有高β相PVDF的双组分纤维的熔融纺丝。芯材保持导电,为在压电双组分纤维的熔融纺丝中使用CB-高分子化合物作为内部电极铺平了道路。

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