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Estimation for a life model of transformer insulation under combined electrical and thermal stress

机译:电热应力联合作用下变压器绝缘寿命模型的估算

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摘要

A life model for power transformer insulation is proposed. It is the Arrhenius model with a weighting factor for the enhanced reaction under combined thermal/electrical stress. Laboratory tests are used to evaluate the model's parameters. The thermal and thermal/electrical stress aging data on Fish paper are presented and analyzed. The estimates from the life model are close to the experimental results. It is hoped that the life model is extendable to other engineering materials. The model's parameters can be evaluated from two laboratory tests, thermal aging and combined thermal/electrical aging. For the Fish paper, when thermal stress is increased by 30 degrees C, the life is reduced by a factor of 2; at 70 degrees C life was 238 hours and at 100 degrees C life was 120 hours. The material life was further reduced by a factor of nearly 2 when subjected to thermal/electrical stress: at 80 degrees C life was 200 hours, whereas at 80 degrees C and 600 Vac life was 118 hours. Electrical stress is important in accelerating the material degeneration.
机译:提出了电力变压器绝缘寿命模型。它是具有加权因子的Arrhenius模型,用于在热/电组合应力下增强反应。实验室测试用于评估模型的参数。介绍并分析了鱼纸上的热应力和热/电应力老化数据。寿命模型的估计值接近实验结果。希望寿命模型可以扩展到其他工程材料。该模型的参数可以通过两个实验室测试进行评估,即热老化和热/电组合老化。对于鱼用纸,当热应力增加30摄氏度时,寿命将缩短2倍。在70℃下的寿命是238小时,在100℃下的寿命是120小时。经受热/电应力时,材料寿命进一步降低了将近2倍:在80摄氏度时的寿命为200小时,而在80摄氏度和600 Vac的情况下的使用寿命为118个小时。电应力在加速材料退化方面很重要。

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