基于cfd的无刷直流电动机温度场分析及寿命预测

Jiajin Wang, Lin Xu, Lingfeng Cai, Jian Zhang, Jie Tian
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引用次数: 0

摘要

超过三分之一的电机事故是由电机绝缘系统故障引起的,这使得电机绝缘成为电机可靠性中最薄弱的环节。热应力是导致保温材料逐渐劣化并最终失效的重要因素之一。本文在Ansys Fluent中建立了电机的三维温度场模型,并基于计算流体动力学方法计算了电机在空气介质中的稳态温度场分布,确定了定子绝缘的最大温升。对电机定子绝缘材料进行恒热应力加速老化试验,基于维纳过程建立电机寿命预测模型,能够准确预测电机绝缘受温度影响的寿命,提高电机运行可靠性。
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CFD-based Temperature Field Analysis and Lifetime Prediction of Brushless DC Motor
More than one-third of motor accidents are caused by failures in the motor insulation system, making motor insulation the weakest link in motor reliability. Thermal stress is one of the most important factors causing gradual insulation deterioration and eventually failure. In this paper, the three-dimensional temperature field model of the motor is established in Ansys Fluent, and the steady-state temperature field distribution of the motor in the air medium is calculated based on the computational fluid dynamics method, and the maximum temperature rise of the stator insulation is determined. A constant thermal stress accelerated aging test is performed on the motor stator insulation material, and a lifetime prediction model of the motor is established based on the Wiener process, which can accurately predict the lifetime of the motor insulation affected by temperature and improve the operational reliability of the motor.
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