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Three-dimensional temperature field simulation for the rotor of an asynchronous motor

机译:异步电动机转子的三维温度场模拟

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A three-dimensional heat transfer model is built according to the rotor structure of an asynchronous motor, and three-dimensional temperature fields of the rotor under different working conditions, such as the unloaded, rated loaded and that with broken rotor bars, are studied based on the finite element numerical method and experiments. The feasibility of inspecting the motor faults by infrared thermography is also discussed. The following conclusions can be drawn from the study: the temperature field is uniform in the circumferential direction of the rotor and the temperature changes along the axial direction of the rotor with the maximum temperature appearing at the point near the power-output end; the heat transfer in the axes of the motor is the main means of heat dissipation of the rotor; the loss of bearing has a more sensitive effect on the temperature field of the motor end cover when the motor is unloaded; therefore, under this working condition it is easier to detect the fault of the motor bearing by thermography; no obvious temperature change appears when rotor bars are broken, so this fault is out of the range that can be detected by thermography. This study is helpful for undergraduates to understand the inner temperature distribution of the asynchronous motor, and is also of great importance for engineers in the field of nondestructive inspection of motor faults.
机译:根据异步电动机的转子结构,建立了三维传热模型,研究了转子在空载,额定载荷和转子断条等不同工况下的三维温度场。有限元数值方法和实验。还讨论了通过红外热像仪检查电动机故障的可行性。从研究中可以得出以下结论:在转子的圆周方向上温度场是均匀的,温度沿转子的轴向变化,最高温度出现在功率输出端附近。电机轴向的传热是转子散热的主要手段。当电动机空​​载时,轴承的丢失对电动机端盖的温度场具有更敏感的影响;因此,在这种工作条件下,更容易通过热像仪检测电动机轴承的故障。转子条断裂时不会出现明显的温度变化,因此该故障不在热像仪可以检测的范围内。这项研究不仅有助于大学生理解异步电动机的内部温度分布,而且对工程师进行电动机故障的无损检查也具有重要意义。

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