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Analytical Asymmetric Air Gap Model for Active Magnetic Thrust Bearings of Mixed Materials Including Eddy Currents

机译:用于涡流的混合材料有源磁力推力轴承的分析不对称气隙模型

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The electrodynamics of magnetic thrust bearings are characterized by an above-average dependency on the used materials. Axially directed fields render laminated stators and rotors ineffective. High induced voltages inside the magnetic core evoke eddy currents and opposing fields, which are compensated by an additional magnetizing current causing a significant delay between the measurable coil current and the force-related magnetic flux. Although this effect, hampering control dynamics, can be reduced by the use of Soft Magnetic Composites for non-rotating parts, the thrust disk will be made of steel due to its superior tensile strength and saturation flux density. The analytical modeling of mixed-material magnetic thrust bearings reveals new challenges arising from asymmetries and low permeable magnetic core sections, which are both addressed in this paper.
机译:磁力推力轴承的电动轴承的特征在于对二手材料的高度平均依赖性。轴向定向的字段渲染层压定子和转子无效。磁芯内部的高感应电压唤起涡流和相对的领域,其通过额外的磁化电流补偿,从而在可测量的线圈电流和力相关磁通量之间产生显着延迟。虽然这种效果,通过使用软磁复合材料来减少阻碍控制动态,但由于其优异的拉伸强度和饱和通量密度,螺杆将由钢制成。混合材料磁力推力轴承的分析建模揭示了来自本文寻址的不对称和低渗磁芯部分产生的新挑战。

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