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Flexible Epoxy-Silicone Rubber Laminates for High Voltage Insulations With Enhanced Delamination Resistance

机译:具有增强抗分层性的用于高压绝缘的柔性环氧硅橡胶层压板

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摘要

In this work, functionalized damping layers consisting of crosslinked silicone rubber are incorporated into brittle epoxy-based composites to improve the delamination resistance of high voltage insulations. Selected functional organosilanes are attached onto the elastomer surface by a two-step modification to ensure a covalent bonding between the thermosetting resin and the damping layer. Functional model insulations and stator bar prototypes are then prepared with a vacuum pressure impregnation process. The influence of the damping layer on the thermo-mechanical and electrical properties as well as the delamination resistance is characterized. The results give evidence that the flexibility of the new composite materials can be increased significantly whereas the electrical properties are not affected by the elastomer layer. By evaluating the performance of the stator bar prototypes it can be clearly shown that both delamination resistance as well as high voltage endurance can be enhanced considerably by the application of flexible damping layers. (C) 2014 Society of Plastics Engineers
机译:在这项工作中,将由交联硅橡胶组成的功能化阻尼层掺入脆性的环氧基复合材料中,以改善高压绝缘层的抗分层性。选定的功能性有机硅烷通过两步修饰连接到弹性体表面上,以确保热固性树脂和阻尼层之间的共价键合。然后,通过真空压力浸渍工艺制备功能模型绝缘体和定子棒原型。表征了阻尼层对热机械和电性能以及抗分层性的影响。结果表明,新复合材料的柔韧性可以显着提高,而电性能不受弹性体层的影响。通过评估定子棒原型的性能,可以清楚地表明,通过应用柔性阻尼层可以显着提高抗分层性和耐高压性。 (C)2014年塑料工程师学会

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