4.6 Article

A fabrication method for adaptive dielectric gradient insulating components

期刊

HIGH VOLTAGE
卷 8, 期 1, 页码 59-69

出版社

WILEY
DOI: 10.1049/hve2.12211

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This paper proposes a fabrication method for adaptive dielectric gradient components and presents experimental results on the improvement of flashover voltage using this method. The results show that the flashover voltage can be significantly increased by using this method, and the improvement is affected by the non-uniformity of the initial electric field. This method is expected to promote the widespread use of dielectric gradient insulating components in industrial applications.
Dielectric gradient components have advantages in electric field mitigation and insulation improvement. In this paper, we propose a fabrication method for adaptive dielectric gradient components using in situ AC electric field, including the mechanism and the corresponding operational procedures for industrial applications. Based on the electric polarisation and self-assembly effect of the filler particles in the liquid matrix, the chain-like structure in the high field strength region is constructed to enhance the local permittivity and mitigate the maximum of the spatial electric field. The dielectric gradient basin insulator is prepared by this method, and its flashover voltage is increased by 12.8% compared with that of a homogeneous dielectric basin insulator, and the improvement is 20.8% when metal particles are present on the surface. The more non-uniform the initial electric field is, the greater the improvement in flashover voltage. This method is expected to promote the industrial application of dielectric gradient insulating components.

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