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Breakdown resistance analysis of traction motor winding insulation under thermal ageing

机译:牵引电动机绕组绝缘老化后的击穿电阻分析

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Stator inter-turn faults are among the most important electric motor failures as they progress fast and lead to catastrophic motor breakdowns. Inter-turn faults are caused due to the windings' insulation degradation. The main stress which deteriorates the insulation is the thermal one. Proper understanding of how this stress influences the electrical properties of insulation over time may lead to reliable prognosis and estimation of the motor's remaining useful life. In transport applications where reliability and safety come first it is a critical issue. In this paper, extensive experimental testing and statistical analysis of thin film insulation for traction motor windings has been performed under fixed thermal stress. The results indicate that for high thermal stress the electrical properties of the insulation material present a non-monotonic behavior thus proving the well-known and established Arrhenius law inadequate for modelling this type of problems and estimating the remaining useful life of thin film insulation materials.
机译:定子匝间故障是最重要的电动机故障之一,因为它们快速发展并导致灾难性的电动机故障。匝间故障是由于绕组的绝缘性能下降引起的。破坏绝缘的主要应力是热应力。正确理解该应力如何随时间影响绝缘的电性能可能会导致可靠的预后并估计电动机的剩余使用寿命。在可靠性和安全性至上的运输应用中,这是一个关键问题。在本文中,在固定的热应力下,对牵引电机绕组的薄膜绝缘进行了广泛的实验测试和统计分析。结果表明,对于高热应力,绝缘材料的电性能呈现非单调性,因此证明了众所周知的已建立的阿伦尼乌斯定律不足以对此类问题进行建模并估计薄膜绝缘材料的剩余使用寿命。

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