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On the electrical endurance characterization of insulating materials by constant and progressive stress test

机译:通过恒压和渐进应力测试表征绝缘材料的电耐久性

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摘要

Expressions for the generalized probability distributions of failure times obtained from constant-stress and progressive-stress tests are presented. Three types of life models are considered for this purpose, i.e. linear inverse-power and exponential models, and a threshold life model based on the inverse-power law. Moreover, two types of progressive-stress tests are examined, i.e. tests at linearly increasing voltage starting either from zero or from a selected electrical field or voltage value. It is shown that both constant and progressive-stress tests can provide a complete electrical endurance characterization of the tested insulation, once the generalized probability distribution has been defined appropriately. However, while the constant-stress tests have a significant advantage in providing shorter test times compared to the progressive-stress tests, the latter tests give rise to less dispersed data. Examples of insulation characterization by constant and progressive-stress tests on XLPE and EPR specimens are given.
机译:给出了从恒应力和渐进应力测试获得的失效时间的广义概率分布的表达式。为此考虑了三种类型的寿命模型,即线性逆功率和指数模型,以及基于逆功率定律的阈值寿命模型。此外,检查了两种类型的渐进应力测试,即在从零开始或从选定的电场或电压值开始线性增加的电压下进行的测试。结果表明,一旦适当定义了广义概率分布,恒定应力测试和渐进应力测试都可以提供被测绝缘体的完整电耐久性特征。但是,尽管恒定压力测试与渐进压力测试相比在提供更短的测试时间方面具有显着的优势,但后一种测试的分散数据较少。给出了通过对XLPE和EPR试样进行恒定和渐进应力测试来表征绝缘的示例。

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