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A FEM-based method dynamic analysis of a thrust magnetic bearing with permanent magnet bias

机译:基于FEM的永磁偏置推力轴承动态分析

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Active magnetic bearings (AMB) are well-known components for the suspension of mechanical objects. The hybrid thrust magnetic bearing (HTMB) with permanent magnet creating bias flux and subsidiary air gap in this paper is used to save energy, and two opposing electromagnetic poles allow control forces in two directions and take account of linearizing effects. The flux distribution is affected by the control voltage and the permanent magnets for the HTMB. Accurate analysis and efficient optimal design are essential to avoid costly trials. The dynamic performances of the HTMB with subsidiary air gap are analyzed. The flux distribution at different time in the HTMB is shown, and the time variation of the magnetic force, the displacement of the thrust plane, the speed of the thrust plane are given respectively in case the voltages are 15V, 20V, and 28V. The inductance of the thrust magnetic bearing is calculated for each position. The described method can simulate the dynamic behavior of the AMB with permanent magnets. It enables design optimization of sophisticated AMBs by extensive parameter studies.
机译:有源电磁轴承(AMB)是用于悬挂机械物体的众所周知的组件。本文使用带有永久磁铁的混合推力磁轴承(HTMB)来产生偏磁通量和辅助气隙,以节省能量,并且两个相对的电磁极允许在两个方向上施加控制力并考虑线性化效应。磁通量分布受HTMB的控制电压和永磁体的影响。准确的分析和有效的最佳设计对于避免昂贵的试验至关重要。分析了具有辅助气隙的HTMB的动态性能。显示了HTMB中不同时间的磁通量分布,并给出了电压分别为15V,20V和28V时磁力的时间变化,推力面的位移,推力面的速度。计算每个位置的推力磁性轴承的电感。所描述的方法可以模拟带有永磁体的AMB的动态行为。通过广泛的参数研究,它可以优化复杂AMB的设计。

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