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Resistance to Brittle Fracture of Glass Reinforced Polymer Composites Used in Composite (Nonceramic) Insulators

机译:用于复合(非陶瓷)绝缘子的玻璃纤维增​​强聚合物复合材料的抗脆性断裂性能

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摘要

In this paper, the most important results are presented and discussed from a multiyear interdisciplinary study directed toward the identification of the most suitable glass/polymer composite systems with the highest resistance to brittle fracture for high voltage composite insulator applications. Several unidirectional glass/polymer composite systems, commonly used in composite insulators, based either on E-glass or ECR-glass fibers embedded in either polyester, epoxy, or vinyl ester resins have been investigated for their resistance to stress corrosion cracking in nitric acid. The most important factors (fiber and resin types, surface fiber exposure, polymer fracture toughness, moisture absorption, interfacial properties, sandblasting) affecting the resistance of the composites to brittle fracture have been identified and thoroughly analyzed. It has been shown that the brittle fracture process of composite (nonceramic) insulators can be successfully eliminated, or at least dramatically reduced, by the proper chemical optimization of composite rod materials for their resistance to stress corrosion cracking.
机译:在本文中,经过多年的跨学科研究,提出并讨论了最重要的结果,该研究旨在确定最合适的玻璃/聚合物复合材料系统,该系统具有最高的耐高压复合绝缘子应用的脆性断裂性能。已经研究了几种通常用于复合绝缘子的单向玻璃/聚合物复合系统,这些系统基于嵌入聚酯,环氧树脂或乙烯基酯树脂中的E玻璃或ECR玻璃纤维,具有抗硝酸中应力腐蚀开裂的能力。已经确定并彻底分析了影响复合材料抗脆性​​断裂的最重要因素(纤维和树脂类型,表面纤维暴露,聚合物断裂韧性,吸湿性,界面特性,喷砂)。已经表明,通过适当地优化复合棒材料的抗应力腐蚀开裂性能,可以成功地消除或至少显着减少复合(非陶瓷)绝缘子的脆性断裂过程。

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