Electrical Insulation Performance Comparisons between Kapton and Teflon Coil Insulation Systems for Pulse Power Applications

Jiing-Liang Wu, E.S. Ortoli, D. Hackworth
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引用次数: 3

Abstract

Current pulse power alternator windings operate at high current densities and high electromagnetic field levels. Consequently, the winding insulation systems must be designed to withstand high electrical voltage stress and large mechanical loads. Finite element analysis of pulse alternator windings has indicated that good bonding strengths, inter-laminar tensile strength and inter-laminar shear strength, at winding insulation tape interfaces are required to maintain mechanical integrity. These bonding interfaces include the conductor to barrier tape (Teflon or Kapton), barrier tape to barrier tape, barrier tape to glass armor tape, glass armor tape to glass armor tape layers and glass armor tape to composite support structures. Although bonding strength data from adhesive manufacturers is available for bonding metal to metal, bonding strength data for Teflon/Teflon, Kapton/Kapton, Teflon/woven glass and Kapton/woven glass are practically non-existent. Therefore a testing program was developed to determine the mechanical properties of various combinations of barrier tapes and adhesives that were suitable for the high voltage pulse power application. A survey and an evaluation of adhesive properties and performance were conducted to select the prospective adhesives. A total of 11 adhesives were selected and matched with the two prospective barrier tapes: Kapton and Teflon. To further enhance bonding and adhesion, both sides of the tapes were chemically etched. In addition, an evaluation was performed of Teflon tape samples bonded using tapes which came with adhesive on one side with no etching on the opposite side. Multiple samples of all of the candidate barrier tape/adhesive combinations were manufactured and prepared for testing. Testing was performed per specification of ASTM D897 - 01, Standard Test Method for Tensile Properties of Adhesive Bonds. Three rounds of performance testing were conducted to down-select from the initial list of tape-adhesive combinations to the final one tape/adhesive combination that showed the best performance.
脉冲电源应用中卡普顿和特氟龙线圈绝缘系统的电绝缘性能比较
电流脉冲发电机绕组在高电流密度和高电磁场水平下工作。因此,绕组绝缘系统必须设计成能够承受高电压应力和大机械载荷。脉冲交流发电机绕组的有限元分析表明,绕组绝缘带界面处需要良好的粘结强度、层间抗拉强度和层间剪切强度,以保持机械完整性。这些连接接口包括导体到阻挡带(特氟龙或卡普顿),阻挡带到阻挡带,阻挡带到玻璃铠装带,玻璃铠装带到玻璃铠装带层和玻璃铠装带到复合支撑结构。虽然粘合剂制造商提供的金属与金属粘合的粘合强度数据是可用的,但特氟龙/特氟龙、卡普顿/卡普顿、特氟龙/编织玻璃和卡普顿/编织玻璃的粘合强度数据实际上是不存在的。因此,开发了一种测试程序,以确定适合高压脉冲电源应用的各种阻隔带和粘合剂组合的机械性能。对胶粘剂的性能和性能进行了调查和评价,以选择有前景的胶粘剂。总共选择了11种粘合剂,并与两种潜在的屏障胶带(Kapton和Teflon)相匹配。为了进一步增强粘合和附着力,胶带的两面都进行了化学蚀刻。此外,对特氟龙胶带样品进行了评估,使用胶带粘合,其中一面带有粘合剂,另一面没有蚀刻。所有候选屏障胶带/粘合剂组合的多个样品被制造和准备用于测试。测试是按照ASTM D897 - 01的规范进行的,即粘合剂的拉伸性能的标准测试方法。进行了三轮性能测试,从最初的胶带-粘合剂组合列表中向下选择最终表现出最佳性能的胶带/粘合剂组合。
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