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A novel solid-rotor induction motor with skewed slits in radial and axial directions and its performance analysis using finite element method

机译:一种新颖的径向和轴向偏斜槽的实心转子感应电动机及其性能的有限元分析

摘要

Due to its simple construction and excellent mechanical/thermal stress withstanding capability, induction motor with solid-rotor structure is widely used in many high-speed, high pressure application fields. In this paper, a novel solid-rotor induction motor with skewed slits in both radial and axial directions is presented. The performance of the proposed solid rotor is simulated using time stepping finite element method (FEM). Because of the existence of the axial slits, the magnetic flux in the slit-rotor motor can penetrate, relative to those without slits, deeper into the rotor. Analysis shows that its torque is about 3.46 times of that of the motor with no rotor slits. By skewing the rotor slits in the radial direction in the novel motor being proposed, the torque is further increased by about 37.7% when compared with that of the motor with its rotor slits not skewed along the radial direction. Although more torque ripples are generated in rotors with skewed slits in the radial direction, it is shown that the torque ripples can be easily reduced by skewing of the slits along the axial direction.
机译:由于其结构简单和出色的机械/热应力承受能力,具有实心转子结构的感应电动机已广泛应用于许多高速,高压应用领域。在本文中,提出了一种新颖的实心转子感应电动机,该电动机在径向和轴向上都有倾斜的缝隙。所提出的实心转子的性能是使用时间步进有限元方法(FEM)进行仿真的。由于存在轴向缝隙,因此相对于没有缝隙的转子,缝隙转子电动机中的磁通量可以更深地渗透到转子中。分析表明,其扭矩约为没有转子缝隙的电动机的3.46倍。通过提出的新型电动机中的转子狭缝在径向方向上倾斜,与转子狭缝未沿径向倾斜的电动机相比,转矩进一步增加了约37.7%。尽管在具有沿径向方向倾斜的狭缝的转子中产生了更多的转矩脉动,但是示出了通过使狭缝沿轴向倾斜可以容易地减小转矩脉动。

著录项

  • 作者

    Ho SL; Niu S; Fu WN;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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