On electric strength of solid insulating materials

E. Husain, M. M. Mohsin, R. Nema
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引用次数: 4

Abstract

A simple equation of the form E=-A+B log/sub 10/ ( rho /sub v/)/( epsilon /sub r/).(tan delta ) to predict the electric strength of a solid insulating material using the ASTM electrode system has been proposed. The constant B has been obtained as a function of the thickness t of solid insulating materials. The equation requires the values of volume resistivity rho /sub v/, relative permittivity epsilon /sub r/, and dissipation factor tan delta of the material, which may be obtained easily by low-voltage nondestructive measurements. The values of electric strength calculated using this equation for polyethylene, fiberglass, leatheroid, mica, empire cloth, and polyethylene-coated leatheroid show an excellent agreement with the experimentally measured values when 0.15 mm>
论固体绝缘材料的电强度
一个简单的方程E=-A+B log/ (10)/(v/)/(r/)(tan delta),以预测固体绝缘材料的电强度使用ASTM电极系统已被提出。得到了固体绝缘材料厚度t的函数常数B。该方程要求材料的体积电阻率rho /sub v/、相对介电常数epsilon /sub r/和耗散系数tan delta的值,这些值可以很容易地通过低压无损测量得到。用该公式计算聚乙烯、玻璃纤维、人造革、云母、帝国布和聚乙烯涂层人造革在0.15 mm>时的电强度值与实验测量值吻合良好
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