Optimization Design of Asymmetric Axial Magnetic Bearing with Unidirectional Large Bearing Capacity for Turbomachinery

Hao Jiang, Zhenzhong Su, Dong Wang, Chao Wu, Zhi Li
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Abstract

In order to overcome the large axial thrust generated by the working substance (steam or gas, etc) of turbomachinery, an asymmetric axial magnetic bearing (AAMB) is proposed. Firstly, the topology and features of the AAMB are introduced. The magnetic circuit model of the AAMB is established by the reluctance network method. Secondly, the constraints such as the load capacity and dimensions are considered. Then we take the shortest axial length as the optimization goal to design the AAMB, and the design scheme is obtained through genetic algorithm (GA). Finally, the supporting characteristics of the AAMB are verified by finite element method (FEM). The result shows that the overall axial length of the AAMB is less than 82.1 mm of that in the traditional design scheme.
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叶轮机械单向大承载力非对称轴向磁轴承的优化设计
为了克服叶轮机械工作物质(蒸汽或气体等)产生的较大轴向推力,提出了一种非对称轴向磁轴承(AAMB)。首先,介绍了AAMB的拓扑结构和特点。采用磁阻网络法建立了AAMB的磁路模型。其次,考虑了承载能力和尺寸等约束条件。然后以轴向长度最短为优化目标设计AAMB,并通过遗传算法得到设计方案。最后,采用有限元法对AAMB的支承特性进行了验证。研究结果表明,AAMB的总轴向长度小于传统设计方案的82.1 mm。
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