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Modification of dependence of DC insulation resistivity of low density polyethylene(LDPE) on temperature and electric field using inorganic additives

机译:用无机添加剂改变低密度聚乙烯(LDPE)对低密度聚乙烯(LDPE)对温度和电场的依赖性

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One of the reasons which has hampered the use of polyethylene (PE) as an insulating material for HVDC cables is the inherent dependence of its dc insulation resistivity ρ{sub}v on temperature T and electric field E. The objectives of the presentwork are: (i) to investigate the possibility of modifying the dependence of the insulation resistivity ρ{sub}v of LDPE on temperature and electric field by doping LDPE with an inorganic additive, and (ii) to find a mathematical model representing thatdependence. Measurements of dc resistivity were made using relatively thick samples (~2 mm) of undoped and doped LDPE at different electric fields ranging from 17 kV/mm to 33 kV/mm for temperatures from 50°C to 80°C. Results indicate that the use of the additive has a significant effect on the rate of decay of the insulation resistivity with temperature in the doped material. Based on these measurements, the dependence ρ{sub}v = f(E, T) was found to conform to the law ρ{sub}v = ρ{sub}oe{sup}(-[α*(E)T + β*(E)]). Nonlinear curve fitting was used to determine the coefficients α*(E) and β*(E). It is concluded that use of additives to LDPE can be a promising method for manufacturing insulating materials for HVDC cables.
机译:阻碍了使用聚乙烯(PE)作为HVDC电缆的绝缘材料的原因之一是其直流绝缘电阻率ρ{Sub} V在温度T和电场E上的固有依赖性。本厂的目标是: (i)通过用无机添加剂掺杂LDPE和(ii)来调查LDPE对温度和电场的绝缘电阻率ρ{Sub} V的依赖性的可能性,以找到代表该依赖的数学模型。在不同电场的不同电场上使用相对厚的样品(〜2mm)的不同电场的相对厚的样品(〜2mm)进行测量,该电场从17kV / mm到33kV / mm的温度为50℃至80℃。结果表明,添加剂对掺杂材料中的温度的绝缘电阻率的衰减速率具有显着影响。基于这些测量,发现依赖性ρ{sub} v = f(e,t)符合法律ρ{sub} v =ρ{sub} oe {sup}( - [α*(e)t + β*(e)])。非线性曲线配件用于确定系数α*(e)和β*(e)。结论是,使用添加剂对LDPE的使用可以是用于制造HVDC电缆的绝缘材料的有希望的方法。

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