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Evaluation of the retention and recovery of hydrophobicity of insulating materials in high voltage outdoor applications under AC and DC stresses with the Dynamic Drop Test

机译:使用动态跌落测试评估高压户外应用在交流和直流应力下绝缘材料的疏水性的保持和恢复

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This paper shows the results of the development of a test procedure to quantify dynamic properties of hydrophobicity, focusing on the retention and the recovery of hydrophobicity. The Dynamic Drop Test (DDT) has proven to be a suitable test method and the investigations are intended to improve the test with respect to repeatability and reproducibility. The results include an overview on the investigations for determining suitable test parameters and test conditions in the DDT at two independent test laboratories. Parameters like the volume conductivity, the flow rate of the electrolyte, test voltage and magnitude, as well as the definition of a physically determined failure criterion are analysed for a variety of polymeric insulating materials used in electrical applications. The recovery of hydrophobicity is evaluated by using the DDT with a so called interval testing. This procedure enables a defined evaluation of the recovery of hydrophobicity compared to the test method previously used. The interval testing covers resting and stressing periods under ac and dc stresses.
机译:本文显示了量化疏水性动态特性的测试程序的开发结果,重点是疏水性的保留和恢复。动态跌落测试(DDT)已被证明是一种合适的测试方法,研究旨在改善测试的可重复性和可重复性。结果包括在两个独立的测试实验室中确定DDT中合适的测试参数和测试条件的调查概述。针对电气应用中使用的各种聚合物绝缘材料,分析了诸如体积电导率,电解质的流速,测试电压和幅值以及物理确定的失效准则等参数。通过将DDT与所谓的间隔测试结合使用来评估疏水性的恢复。与之前使用的测试方法相比,该程序可以对疏水性的恢复进行明确的评估。间隔测试涵盖了在交流和直流应力下的静止和应力周期。

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