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Brushless DC motor torque improvement with mgnetic material stator core

机译:磁性材料定子芯无刷直流电动机扭矩改善

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In transportation, BLDC motors are required to have high torque. This BLDC electric motor is designed to drive an electric car. Increased torque can be done in many ways one of which is the selection of the stator material. Effect on the generated torque can be studied by replacing its stator materials. Design was begun with determining the electrical circuit and the coil for the excitation power. Electric motors which was simulated in this paper was a 3-phase BLDC motor. Voltage and current data were analyzed to study the motor performance when different core materials used. It can be concluded that applying ferrite materials stator core reduced core loss, while using ferrite core on the stator slots produces higher voltages and lower currents. Based on the magnitude of the torque produced by the electric motors, ferrite materials was more suitable to be used as slots of the stator core for better motor.
机译:在运输中,BLDC电机必须具有高扭矩。 该BLDC电动机设计用于驾驶电动汽车。 可以在许多方面可以在许多方面进行增加的扭矩是定子材料的选择。 通过更换其定子材料,可以研究对产生的扭矩的影响。 设计是开始使用确定电路和励磁功率的电路和线圈。 本文模拟的电动机是3相BLDC电动机。 分析电压和电流数据以研究使用不同的核心材料时的电动机性能。 可以得出结论,应用铁氧体材料定子芯降低核心损耗,同时在定子槽上使用铁氧体磁芯产生更高的电压和更低的电流。 基于电动机产生的扭矩的大小,铁氧体材料更适合用作定子芯的槽,用于更好的电动机。

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