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首页> 外文期刊>International Journal of Performability Engineering >Applying Eyring's Model to 'Times to Breakdown' of Insulating Fluid
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Applying Eyring's Model to 'Times to Breakdown' of Insulating Fluid

机译:将艾林模型应用于绝缘流体的“分解时间”

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摘要

In this paper the test purpose will have two objectives: First will be to verify if times to breakdown of insulating fluid between electrodes recorded at three different voltages have an exponential distribution as predicted by theory. Second will be to assess whether or not the accelerated model proposed by Eyring will be able to translate results for the shape and scale parameters of an underlying Inverse Weibull model, obtained under two accelerating using conditions, to expected normal using condition results for these two parameters. The product being analyzed is a new type of insulate fluid, and the accelerating factor is the voltage stresses applied to the fluid at two different levels (30KV and 40KV). The normal operating voltage is 25KV and it was possible to test the fluid at normal voltage using condition. Both results for the two parameters of the Inverse Weibull model, obtained under normal using condition and translated from accelerated using conditions to normal conditions, will be compared to each other to assess the accuracy of the Eyring model when the accelerating factor is only the voltage stress.
机译:在本文中,测试目的将有两个目标:首先将是验证在三种不同电压下记录的电极之间的绝缘液击穿的时间是否具有理论预测的指数分布。第二个步骤是评估Eyring提出的加速模型是否能够将在两个加速使用条件下获得的基础反Weibull模型的形状和比例参数的结果转换为这两个参数的使用条件结果的预期法线。被分析的产品是一种新型的绝缘流体,加速因素是在两种不同水平(30KV和40KV)下施加到流体上的电压应力。正常工作电压为25KV,可以使用条件在正常电压下测试流体。当加速因子仅为电压应力时,将在正常使用条件下获得并从加速使用条件转换为正常条件的反向威布尔模型两个参数的两个结果进行比较,以评估Eyring模型的准确性。 。

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