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Comparison of Surface Permanent Magnet Axial and Radial Flux Coaxial Magnetic Gears

机译:表面永磁轴向和径向磁通同轴电磁齿轮的比较

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摘要

This paper provides a thorough, parametric comparison of axial and radial flux coaxial magnetic gears with surface-mounted permanent magnets. While both topologies share similar operating principles and can achieve comparable shear stresses, they exhibit different scaling trends with respect to key design parameters. Both topologies’ volumetric torque densities (VTDs) increase with the outer radius, but the axial flux topology's VTD increases with the radius at a much faster rate than the radial flux topology's VTD. Another difference between the topologies involves their cross-sectional scaling parameters. The stack length axially scales radial flux gear cross sections, and, as it increases, the impact of end-effects decreases, which improves the performance. For axial flux gears, the radii ratio scales the cross section's radial width between different radii. This fundamentally changes optimal parameter values and design performance tradeoffs. Finally, axial flux rotors experience significant axial forces, but the radial forces on radial flux rotors can be balanced out. Based on these trends, radial flux gears are superior to axial flux gears for most applications; however, axial flux gears have a significant advantage when a large radius and a small axial length are permissible or when mechanical power needs to be transmitted across a flat barrier.
机译:本文对带有表面安装永磁体的轴向和径向磁通量同轴电磁齿轮进行了彻底的参数比较。虽然这两种拓扑结构具有相似的工作原理,并且可以实现相当的剪应力,但它们在关键设计参数方面呈现出不同的缩放趋势。两种拓扑的体积扭矩密度(VTD)都随着外径的增加而增加,但是轴向磁通拓扑的VTD随半径的增大的速度要比径向磁通拓扑的VTD快得多。拓扑之间的另一个差异涉及其横截面缩放参数。烟囱长度沿轴向缩放径向通量齿轮的横截面,并且随着烟囱长度的增加,端部影响的影响减小,从而改善了性能。对于轴向磁通齿轮,半径比可缩放横截面在不同半径之间的径向宽度。这从根本上改变了最佳参数值和设计性能的折衷。最后,轴向磁通量转子承受很大的轴向力,但是可以平衡径向磁通量转子上的径向力。基于这些趋势,在大多数应用中,径向磁通齿轮优于轴向磁通齿轮。但是,当允许较大的半径和较小的轴向长度时,或者当需要通过平坦的屏障传递机械动力时,轴向磁通齿轮具有显着的优势。

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