端部效应对偏心圆柱永磁联轴器静转矩性能的影响

Stig Högberg, H. Hansen, B. B. Jensen, F. B. Bendixen
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引用次数: 1

摘要

永磁联轴器广泛应用于需要通过气隙传递扭矩的应用中。本研究的目的是观察和解释径向和轴向错位对12极圆柱形永磁联轴器的影响。测量了两个耦合副的拔出扭矩,在最大径向不对准时分别增加了3.1%和3.8%。当在有限元分析软件中建模时,联轴器产生的静态拉出扭矩比对准的情况下多3.7%。针对轴向错位,测量并模拟了不同错位距离下的拉拔力矩。小偏差时,拉拔力矩的减小不显著,而当偏差距离大于3-4 mm时,拉拔力矩随偏差距离线性减小。这些结果表明,径向和轴向不对中对静扭矩性能没有不利影响,但对非静态性能的影响没有考虑,可能是有害的。
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Influence of end-effects on static torque performance of misaligned cylindrical permanent magnet couplings
Permanent magnet couplings are widely used in applications requiring torque to be transmitted through an airgap. The aim of this study is to observe and explain the effect of radial and axial misalignment in a 12-pole, cylindrical permanent magnet coupling. Pull-out torque was measured for two coupling pairs which showed an increase of 3.1% and 3.8%, respectively, at maximum radial misalignment. When modeled in finite element analysis software, the coupling produces 3.7% more static pull-out torque than the aligned case. For axial misalignment the pull-out torque at different misalignment distances was measured and simulated. An insignificant reduction in pull-out torque was observed for small misalignment, whereas it decreases linearly with misalignment distance when above 3-4 mm. These results show that radial and axial misalignment do not adversely affect static torque performance, though the affect on non-static performance is not considered and may be detrimental.
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