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An Integrated Magnetic Circuit Model and Finite Element Model Approach to Magnetic Bearing Design

机译:电磁轴承设计的集成磁路模型和有限元模型方法

摘要

A code for designing magnetic bearings is described. The code generates curves from magnetic circuit equations relating important bearing performance parameters. Bearing parameters selected from the curves by a designer to meet the requirements of a particular application are input directly by the code into a three-dimensional finite element analysis preprocessor. This means that a three-dimensional computer model of the bearing being developed is immediately available for viewing. The finite element model solution can be used to show areas of magnetic saturation and make more accurate predictions of the bearing load capacity, current stiffness, position stiffness, and inductance than the magnetic circuit equations did at the start of the design process. In summary, the code combines one-dimensional and three-dimensional modeling methods for designing magnetic bearings.
机译:描述了用于设计磁性轴承的代码。该代码根据与重要轴承性能参数有关的磁路方程生成曲线。设计人员从曲线中选择满足特定应用要求的轴承参数,然后直接通过代码将其输入到三维有限元分析预处理器中。这意味着正在开发的轴承的三维计算机模型可立即用于查看。与设计过程开始时的磁路方程相比,有限元模型解决方案可用于显示磁饱和区域,并更准确地预测轴承的负载能力,电流刚度,位置刚度和电感。总之,该代码结合了用于设计磁性轴承的一维和三维建模方法。

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