材料科学
复合材料
碳化硅
电场
电阻式触摸屏
电介质
介电强度
加速老化
介电常数
环氧树脂
相对介电常数
电气故障
非线性系统
电阻率和电导率
场强
介电损耗
碳化物
法律工程学
作者
Xinyu Wang,Chenguang Zhao,Yongsen Han,Huan Zheng,Yunlong Sun
摘要
ABSTRACT For the purpose of studying the impacts of electrical aging on nonlinear resistive field grading materials, epoxy silicon carbide composites were manufactured under varying electrical aging field and time. The microscopic morphologies of the samples were characterized. The dielectric properties, breakdown strength, conductivity, and trap density were tested. The findings show that the permittivity (along with loss tangent) of the samples increased significantly with the elevation of aging electric field and extension of aging time. Similar phenomena also occurred in the trap density. The breakdown strength of aged composites was reduced relative to unaged counterparts, and for nonlinear conductivity, elevated aging electric field (or prolonged aging time) led to a decreased switching electric field and an increased nonlinear coefficient. A higher nonlinear coefficient is beneficial to optimizing the electric field uniformity within power equipment, but the reduced switching electric field and breakdown strength induced by electrical aging endanger the reliability of the composites. The present study establishes a fundamental basis for elucidating the long‐term stability of epoxy/SiC composite‐based nonlinear resistive field grading materials.
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