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Analysis of the polarization state of melt-spun polypropylene fibers

机译:熔纺聚丙烯纤维的偏振态分析

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In this work, melt-spun polypropylene fibers were treated in an electric field of corona discharge. The fibers were then characterized using the thermally stimulated current spectroscopy. It has been shown that the electret state of corona treated polypropylene fibers is a result of combination of three different effects: Maxwell-Wagner polarization, dipole polarization and charge trapping. The electret slate induce in polypropylene fibers by the corona discharge treatment holds for a long time (several months). Our analysis of the effect of processing temperature and electric field intensity on the characteristics of the electret stale in melt-spun polypropylene fibers allows one to specify optimum technological regimes for industrial production of polypropylene-based electret materials.
机译:在这项工作中,熔纺聚丙烯纤维在电晕放电电场中进行了处理。然后使用热激发电流光谱对纤维进行表征。已经表明,电晕处理过的聚丙烯纤维的驻极体状态是三种不同效应结合的结果:麦克斯韦-瓦格纳极化,偶极极化和电荷俘获。通过电晕放电处理,聚丙烯纤维中的驻极体板岩会保持很长一段时间(数月)。我们对加工温度和电场强度对熔融纺制聚丙烯纤维中驻极体陈旧特性的影响的分析使我们可以为工业生产聚丙烯基驻极体材料指定最佳技术方案。

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