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Yokeless radial electrodynamic bearing

机译:无轭径向电动轴承

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When null-flux, passive electrodynamic bearings include a ferromagnetic yoke in front of the permanent magnets, the stiffness associated with the radial centering force becomes negative under a critical speed. This yields a strong instability and the necessity of using mechanical launch bearings at low speeds. In this paper, an electrodynamic bearing without ferromagnetic yoke is proposed. An analytical 2D model of the bearing is presented and some hypotheses are validated. The model is then used to perform a first analysis of the bearing performance. The force predictions correspond to expectations: the stiffness never reaches negative values. It is also shown that for given geometrical parameters, the performance of the studied bearing can be improved by choosing the appropriate number of phases and number of pole pairs of the winding.
机译:当零磁通,被动电动轴承在永磁体前面包括铁磁轭时,在临界转速下,与径向对中力相关的刚度将变为负值。这样会产生很大的不稳定性,并且有必要在低速下使用机械启动轴承。本文提出了一种无铁磁轭的电动轴承。提出了轴承的解析二维模型,并验证了一些假设。然后使用该模型对轴承性能进行首次分析。力的预测与预期相对应:刚度永远不会达到负值。还表明,对于给定的几何参数,可以通过选择适当的相数和绕组的极对数来改善所研究轴承的性能。

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