首页> 外文会议>IEEE International Conference on Condition Monitoring and Diagnosis >The thermal conductivity and electrical strength of epoxy resin with different filler content of micro and nano alumina
【24h】

The thermal conductivity and electrical strength of epoxy resin with different filler content of micro and nano alumina

机译:用微铝和纳米氧化铝不同填料含量的环氧树脂的导热性和电力

获取原文

摘要

Epoxy resin is widely used in high voltage apparatus, electrical machines etc due to its excellent mechanical, electrical and chemical properties. Great progress has been made in application on electrical insulation, casting and potting. The epoxy resin containing nano-size and micro-size Al2O3 of various contents are prepared. The purpose of efforts we engaged in is to study the efforts of nano Al2O3, micro Al2O3 and nano-micro Al2O3 on the characteristics of epoxy resin on electrical and thermal properties. The epoxy resin(UVR6105) is used as the base material and Methyl six hydrogen anhydride is used as the curing agent. Various nanocomposites, microcomposites and nano-microcomposites are prepared and fabricated properly through three roller grinding machine. Breakdown strength experiments are done through JNC801 breakdown voltage tester. Nano Al2O3 enhances the electrical characteristics of epoxy resin on breakdown strength while micro Al2O3 lowers it. The thermal properties of thermal conductivity of the epoxy resin are tested through LFA477. The thermal conductivity of epoxy resin is increasing with the filling contents of the Al2O3 while there is a comparatively lower value if nano Al2O3 is added due to its high thermal interface resistance between epoxy resin and Al2O3.
机译:由于其优异的机械,电气和化学性能,环氧树脂广泛应用于高压装置,电机等。在电绝缘,铸造和灌封的应用中取得了巨大进展。制备含有各种内容物的纳米尺寸和微尺寸Al 2 O 3的环氧树脂。我们从事的努力的目的是研究纳米Al2O3,微Al 2 O 3和纳米微量Al2O3对电气和热性质上环氧树脂特性的努力。环氧树脂(UVR6105)用作基材,六氢酐用作固化剂。通过三个辊磨机适当地制备各种纳米复合材料,微掩模材料和纳米微孔复合材料。通过JNC801击穿电压测试仪完成击穿强度实验。 Nano Al2O3增强了环氧树脂对击穿强度的电特性,而Micro Al2O3降低。通过LFA477测试环氧树脂的热导率的热性能。由于环氧树脂和Al 2 O 3之间的高热界面电阻,随着环氧树脂和Al 2 O 3之间的高热界面电阻,随着纳米Al 2 O 3的增加,环氧树脂的热导率随着Al 2 O 3的填充物而增加。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号