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The effect of hydrostatic pressure and temperature on the permittivity of crosslinked polyethylene

机译:静压压力和温度对交联聚乙烯介电常数的影响

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The real part of the permittivity of crosslinked polyethylene cable insulation has been measured as functions of temperature and hydrostatic pressure. The results obtained are discussed in terms of the Clausius-Mosotti equation. The real part ofthe permittivity decreases with increasing temperature. The temperature dependence cannot be totally ascribed to the variation of density with temperature. This suggests that the polarizability of this crosslinked polyethylene decreases with increasingtemperature, which is qualitatively consistent with a Debye model. The effect of applying hydrostatic pressure is to increase the real permittivity. Analysis of the effect of pressure on the dielectric behaviour on the basis of the Clausius-Mosotti modelleads to a negative partial derivα/ partial deriv P: the polarizabilityα of crosslinked polyethylene decreases with pressure. The major consequences of applying pressure are to reduce the free volume of the polymer, increasing the restricting force forfree dipole rotation.
机译:已经测量了交联聚乙烯电缆绝缘的介电常数的实际部分被测量为温度和静水压力的功能。就克劳斯 - 莫斯特方程而言,获得的结果。介电常数的实际部分随着温度的增加而降低。温度依赖性不能完全归因于温度的密度的变化。这表明这种交联聚乙烯的极化性随着较高的温度而降低,这与德比模型进行了定性一致。施加静水压力的效果是提高真实介电常数。基于Clausius-Mosotti制剂的压力对介电行为对阴性部分衍生α/部分衍生P的影响分析:交联聚乙烯的极化性α与压力降低。施加压力的主要后果是减少聚合物的自由体积,增加了偶珠旋转的限制力。

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