Bjørk R, Bahl C R H
Department of Energy Conversion and Storage, Technical University of Denmark - DTU, Anker Engelunds Vej, DK-2800 Kgs, Lyngby, Denmark.
Sci Rep. 2022 Mar 8;12(1):4130. doi: 10.1038/s41598-022-07988-6.
A nested conical passive magnetic bearing is presented. The bearing consists of a nested conical rotor inside a conical stator, i.e. two coaxial tilted rings of permanent magnets, both with a rectangular cross section. Varying the cone or tilt angle of the rotor and stator we determine the rotor radius that provides the highest force for three different magnetization cases. For this optimal rotor radius, we show that the bearing with the highest volume normalized force also has the highest stiffness, and furthermore often also the highest varying stiffness with axial displacement. Finally, we show that a conical bearings with a tilt angle of [Formula: see text] has an almost constant stiffness and a linearly varying force with axial displacement, making it ideal as a bearing.
本文提出了一种嵌套锥形被动磁轴承。该轴承由位于锥形定子内部的嵌套锥形转子组成,即两个同轴倾斜的永磁体环,两者均具有矩形横截面。通过改变转子和定子的锥角或倾斜角,我们确定了在三种不同磁化情况下能提供最大力的转子半径。对于这个最佳转子半径,我们表明具有最高体积归一化力的轴承也具有最高的刚度,而且通常随着轴向位移其变化刚度也最高。最后,我们表明倾斜角为[公式:见原文]的锥形轴承具有几乎恒定的刚度以及随轴向位移线性变化的力,使其成为理想的轴承。