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Modeling and analysis of a novel magnetic levitation gravity compensator

机译:新型磁悬浮重力补偿器的建模与分析

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摘要

In this paper, a novel cylindrical magnetic levitation gravity compensator is proposed, of which the mover is composed of several permanent magnet rings in the arrangement of Halbach structure and the stator is composed of one permanent magnet ring and four copper coils. The new vacuum compatible gravity compensator can be applied to the 6-DOF high precision magnetic levitation stage as the vibration isolation and leveling device. Firstly, the analytical model of the magnetic levitation gravity compensator is established. The flux density distribution of the Halbach magnet array rings is obtained by using equivalent current model. Then the expressions of magnetic levitation forces and vertical stiffness are derived. Secondly, finite element method (FEM) is used to calculate the magnetic levitation forces in order to verify the analytical model. The results from FEM are in good agreement with the ones from analytical model, which indicates that the analytical model is accurate and reasonable. In addition, a cooling system for the magnetic levitation gravity compensator is designed and the thermal field of stator part is calculated. Last, the temperature rise experiment is achieved.
机译:本文提出了一种新型的圆柱型磁悬浮重力补偿器,其动子由Halbach结构布置的几个永磁环组成,定子由一个永磁环和四个铜线圈组成。新型真空兼容重力补偿器可作为振动隔离和水平调节装置应用于6自由度高精度磁悬浮平台。首先,建立了磁悬浮重力补偿器的解析模型。使用等效电流模型获得哈尔巴赫磁体阵列环的磁通密度分布。然后推导了磁悬浮力和垂直刚度的表达式。其次,采用有限元法(FEM)计算磁悬浮力,以验证解析模型。有限元分析的结果与分析模型的结果吻合良好,表明分析模型是准确合理的。另外,设计了磁悬浮重力补偿器的冷却系统,并计算了定子部件的热场。最后,完成了温升实验。

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