首页|Synergistic Promotion of Electrical,Mechanical and Thermal Properties for Silicone Rubber-based Field Grading Material via Compound Modification

Synergistic Promotion of Electrical,Mechanical and Thermal Properties for Silicone Rubber-based Field Grading Material via Compound Modification

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Use of nonlinear conductive SiC/silicone rubber(SR)field grading material(FGM)can improve the local field concen-tration of composite insulators.Adding large volume fraction and large-size SiC particles(SiCp)into SR can obtain a good field grading effect,but it is accompanied by the deterioration of mechanical properties.Compounding SiC with different shapes can solve this contradiction.By incorporating one-dimensional SiC whiskers(SiCw)to synergize with granular SiCp,SiC/SR FGM with better field-dependent conductivity,mechanical prop-erties and thermal conductivity than large-size SiCp and large volume fraction filling case can be obtained by using smaller size SiCp and lower filling contents.The simulations of 500 kV line insulators show that the modified SiC/SR FGM can reduce the maximum field strength along the insulator surface and at sheath-core rod interfaces by 55%and 71.4%,respectively.The combined application of FGM and grading ring can achieve a complementary effect.Using FGM to partially replace the role of the grading rings,the field strength indicators can still meet the operational requirements after the tube radius and shielding depth of the grading rings at both ends are reduced by 36.2%and 40%separately,which is a benefit to alleviating the problems of high weight and large volume faced by traditional field grading methods.

Compound modificationelectric field regulationfield grading materialfield-dependent conductivitymechanical propertiesthermal conductivity

Jiale Wu、Yangzhi Gong、Peiqi Xiong、Zexi Xing、Xiaofeng Xue、Xiao Yang、Boyang Shen、Xingming Bian

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State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources,North China Electric Power University,102206 Beijing,China

State Grid Fuzhou Electric Power Supply Company,Fuzhou 350009,Fujian Province,China

Electrical Engineering Division,University of Cam-bridge,Cambridge CB3 0FA,UK

Science and Technology Project of State Grid Corporation of China

7000-202158440A-0-0-00

2024

中国电机工程学会电力与能源系统学报(英文版)
中国电机工程学会

中国电机工程学会电力与能源系统学报(英文版)

CSTPCDEI
ISSN:2096-0042
年,卷(期):2024.10(1)
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