Zhang Zhongyuan, Dai Xiaohan, Li Le, Zhou Songsong, Xue Wei, Liu Yunpeng, Liu Hechen
Hebei Key Laboratory of Distributed Energy Storage and Micro-Grid, North China Electric Power University, Baoding 071003, China.
China Electric Power Research Institute, Beijing 100192, China.
Polymers (Basel). 2021 Sep 19;13(18):3185. doi: 10.3390/polym13183185.
As a lightweight and highly insulating composite material, epoxy resin syntactic foam is increasingly widely used for insulation filling in electrical equipment. To avoid core burning and cracking, which are prone to occur during the casting process, the epoxy resin-based syntactic foam insulation materials with high thermal conductivity and low coefficient of thermal expansion are required for composite insulation equipment. The review is divided into three sections concentrating on the two main aspects of modifying the thermal properties of syntactic foam. The mechanism and models, from the aspects of thermal conductivity and coefficient of thermal expansion, are presented in the first part. The second part aims to better understand the methods for modifying the thermal properties of syntactic foam by adding functional fillers, including the addition of thermally conductive particles, hollow glass microspheres, negative thermal expansion filler and fibers, etc. The third part concludes by describing the existing challenges in this research field and expanding the applicable areas of epoxy resin-based syntactic foam insulation materials, especially cross-arm composite insulation.
作为一种轻质且高度绝缘的复合材料,环氧树脂复合泡沫越来越广泛地用于电气设备的绝缘填充。为避免在浇注过程中容易出现的芯部燃烧和开裂问题,复合绝缘设备需要具有高导热率和低热膨胀系数的环氧树脂基复合泡沫绝缘材料。本文综述分为三个部分,重点关注复合泡沫热性能改性的两个主要方面。第一部分从导热率和热膨胀系数方面介绍了其机理和模型。第二部分旨在更好地理解通过添加功能填料来改性复合泡沫热性能的方法,包括添加导热颗粒、空心玻璃微珠、负热膨胀填料和纤维等。第三部分通过描述该研究领域现有的挑战并拓展环氧树脂基复合泡沫绝缘材料的适用领域,特别是横担复合绝缘,来进行总结。