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A comparative study of some design concepts for mechanically prestressed fiber-reinforced composite insulations

机译:机械预应力纤维增强复合材料绝缘设计概念的比较研究

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In recent years, the accumulated research evidence in our group has demonstrated that the addition of mechanically prestressed fibers in epoxy resin will strengthen the microstructure and therefore improve the electrical insulation strength of the epoxy resin by increasing the electrical tree growth resistance. In this paper, a comparative study of the effect of some different design concepts on mechanically prestressed insulation is presented. Calculations of the effect of prestress in the resin and the optimized design for the composite insulation are based on fundamental stress analysis. The electrical treeing test results from prestressing specimens with multiple unidirectional and orthogonal fibers clearly demonstrate the beneficial effect of mechanical prestress and that enforced compressive stresses in the resin by optimized prestress design can significantly increase the electrical tree growth time to failure and therefore improve the electrical insulation.
机译:近年来,我们小组中积累的研究证据表明,在环氧树脂中添加机械预应力纤维将增强微观结构,并因此通过增加耐电树生长性来提高环氧树脂的电绝缘强度。本文对一些不同设计概念对机械预应力绝缘的影响进行了比较研究。树脂中的预应力影响的计算以及复合绝缘材料的优化设计均基于基本应力分析。来自具有多条单向和正交纤维的预应力试样的电气树测试结果清楚地表明了机械预应力的有益效果,并且通过优化的预应力设计在树脂中施加压缩应力可以显着增加电气树的失效时间,从而改善电气绝缘性。

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