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AC dielectric strength of polymer materials under tensile stress at 77K and normal temperature

机译:聚合物材料在77K和常温下的拉应力下的交流介电强度

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The performance of dielectric materials has an important effect on influencing the service life of the electric equipments. The dielectric sheets used for superconducting devices usually endure several lapping tension when lapped on the conductor, so the AC dielectric strengths of polymer sheets under tensile status are important to dielectric design. In this paper, a special electrode system was designed to measure the breakdown voltages of polyimide and poly tetra fluoro ethylene (PTFE) sheets under tensile status both in air at normal temperature and in liquid nitrogen at 77 K. The test data are processed by the method of Weibull plot. As a result, the AC breakdown strengths of polyimide films in liquid nitrogen at 77 K increase significantly as the tensile stresses increasing, the most amplitude achieves 29.16 %. The breakdown strengths of polyimide under tensile stress are significantly higher than PTFE in liquid nitrogen at 77 K, the most increasing amplitude achieves 121.43 %. Polyimide has good dielectric characteristics under tensile status in liquid nitrogen at 77 K.
机译:介电材料的性能对影响电气设备的使用寿命有重要影响。用于超导器件的电介质片在导体上重叠时通常会承受几种重叠张力,因此聚合物片在拉伸状态下的交流电绝缘强度对于电介质设计很重要。本文设计了一种特殊的电极系统,以在常温空气和77 K液氮中在拉伸状态下测量聚酰亚胺和聚四氟乙烯(PTFE)片的击穿电压。威布尔图法。结果,随着拉伸应力的增加,液氮中聚酰亚胺薄膜的交流击穿强度随着拉伸应力的增加而显着增加,最大振幅达到29.16%。在77 K液氮中,聚酰亚胺在拉伸应力下的击穿强度显着高于PTFE,最大增加幅度达到121.43%。聚酰亚胺在77 K的液氮中处于拉伸状态时具有良好的介电特性。

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