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首页> 外文期刊>Journal of medical engineering & technology >Experimental method to reveal the effect of rotor magnet size and air gap on artificial heart driving motor torque and efficiency.
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Experimental method to reveal the effect of rotor magnet size and air gap on artificial heart driving motor torque and efficiency.

机译:实验方法揭示转子磁铁尺寸和气隙对人工心脏驱动电动机转矩和效率的影响。

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摘要

To investigate experimentally the effect of rotor magnet design on artificial heart driving motor performance, seven rotors with different magnet lengths or thicknesses, as well as different peripheral angles, were manufactured and tested in the same motor stator with different rotating speeds. The input power (voltage and current) and output torque were measured and the motor efficiency was computed. The results demonstrated that the reduction of rotor magnet size and the enlargement of the air gap between the rotor magnets and the stator coil core have no significant effect on motor efficiency, but will reduce the torque value on which the motor achieves the highest efficiency; it could be remedied however by increasing the rotating speed, because the torque at the high efficiency point will increase along with the rotating speed. These results may provide a basis for developing small rotor magnets, large air gap and high efficiency motors for driving an artificial heart pump.
机译:为了实验研究转子磁体设计对人工心脏驱动电机性能的影响,在同一电机定子中以不同的转速制造并测试了七个具有不同磁体长度或厚度以及不同圆周角的转子。测量输入功率(电压和电流)和输出转矩,并计算电动机效率。结果表明,减小转子磁体的尺寸以及增大转子磁体与定子线圈铁心之间的气隙不会对电机效率产生明显影响,但是会减小使电机获得最高效率的转矩值;但是可以通过提高转速来解决,因为高效点处的扭矩会随着转速而增加。这些结果可为开发小​​的转子磁体,大的气隙和驱动人工心脏泵的高效电动机提供基础。

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