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Influence of thermal-mechanical stress on the insulation system of a low voltage electrical machine

机译:热机械应力对低压电机绝缘系统的影响

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Varying ohmic loss in the winding of electrical machines, which are operated at various operating points, results in temperature changes during operation. Particularly, when the temperature is varying dynamically, the insulation system suffers from repeated thermalmechanical stress, since the thermal expansion coefficients of the insulating materials and copper conductors are different. For the appropriate design of an insulation system, the effect of thermal-mechanical stress must be known. In the present work, motorettes are subjected to repeated thermal cycles. The expected lifetime is estimated and compared to the lifetime which is achieved by applying a lifetime-model which only considers thermal aging while ignoring thermal-mechanical stress effects. In addition, the hotspot temperature is simulated, the lifetime at the hotspot is estimated as the worst case. As expected, the results indicate that the thermal-mechanical stress plays a significant role during dynamic thermal aging of the winding insulation system. To better understand the thermal-mechanical stress effect, the resulting thermal-mechanical stress in a single wire is analyzed by the finite element method. A preliminary analysis of the aging mechanism of materials due to cyclic thermal-mechanical stress is performed with the theory of material fatigue.
机译:在各种操作点运行的电机绕组中变化欧姆损耗,导致在操作期间的温度变化。特别是,当温度动态变化时,绝缘系统遭受重复的热电机械应力,因为绝缘材料和铜导体的热膨胀系数是不同的。对于保温系统的适当设计,必须知道热机械应力的效果。在本工作中,摩托斯经受重复的热循环。预期的寿命估计并与通过施加寿命模型实现的寿命相比,该寿命模型仅考虑热老化,同时忽略热机械应力效应。此外,模拟热点温度,热点处的寿命估计是最坏的情况。如预期的那样,结果表明,在绕组绝缘系统的动态热老化期间,热机械应力在绕组绝缘系统的动态衰老中起着重要作用。为了更好地理解热机械应力效应,通过有限元法分析了单线中的最终热机械应力。材料疲劳理论进行了循环热机械应力引起的材料老化机理的初步分析。

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