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Epoxy/α-alumina nanocomposite with high electrical insulation performance | |
Chen Yun1; Zhang Donghai1; Wu Xiaofeng1; Wang Haosheng1; Zhang Chong2; Yang Wei2; Chen Yunfa1![]() | |
2017 | |
Source Publication | Progress in Natural Science: Materials International
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ISSN | 1002-0071 |
Volume | 27Issue:5Pages:574 |
Abstract | An experimental study was conducted to improve the electrical insulation of epoxy resin. The effects of boehmite, γ-alumina and α-alumina nanoparticles on the volume resistivity, dielectric strength and glass transition temperature of epoxy nanocomposites were investigated. The results showed that α-alumina nanoparticles displayed obvious advantages in enhancing electrical insulation performance of epoxy nanocomposites, compared to boehmite and γ-alumina nanoparticles. The direct current volume resistivity and breakdown strength of epoxy nanocomposite with 2.0 wt% α-alumina nanoparticles was improved to 2.2×10 18 Ω?cm and 76.1 kV·mm -1 respectively. And these improved values of electrical insulation properties are much higher than these of epoxy nanocomposites reported in previous studies. The main reason of these improvements may be that the epoxy |
Keyword | Nanocomposite Epoxy resin insulation α-alumina |
Language | 英语 |
Document Type | 期刊论文 |
Identifier | http://ir.ipe.ac.cn/handle/122111/44933 |
Collection | 中国科学院过程工程研究所 |
Affiliation | 1.中国科学院过程工程研究所 2.Global Energy Interconnection Research Institute |
First Author Affilication | 中国科学院过程工程研究所 |
Recommended Citation GB/T 7714 | Chen Yun,Zhang Donghai,Wu Xiaofeng,et al. Epoxy/α-alumina nanocomposite with high electrical insulation performance[J]. Progress in Natural Science: Materials International,2017,27(5):574. |
APA | Chen Yun.,Zhang Donghai.,Wu Xiaofeng.,Wang Haosheng.,Zhang Chong.,...&Chen Yunfa.(2017).Epoxy/α-alumina nanocomposite with high electrical insulation performance.Progress in Natural Science: Materials International,27(5),574. |
MLA | Chen Yun,et al."Epoxy/α-alumina nanocomposite with high electrical insulation performance".Progress in Natural Science: Materials International 27.5(2017):574. |
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