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Performance prediction and analysis of disk-type eddy-current drivers

机译:磁盘式涡流驱动器的性能预测与分析

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摘要

For the disk-type eddy-current drivers, an accurate and simple performance prediction method is developed. The static field produced by the permanent magnets and induction field by eddy currents are calculated using magnetic equivalent circuit method, and Faraday’s and Ampere’s law, respectively. In this model, many factors, such as the saturation effect of ferromagnetic materials, working temperature and the electromagnetic effects of back iron are taken into consideration. Compared with other methods, the model has a good agreement with three-dimensional finite-element method, and the average error is 4.9%. Finally, a prototype and corresponding test platform are made. Test results show that the proposed method is effective, and the maximum error is less than 8%. Besides, it is confirmed that eddy-current drivers can tolerate shaft misalignment and be used as speeders.
机译:对于磁盘式涡流驱动器,开发了准确和简单的性能预测方法。 使用磁性等效电路方法和法拉第和安培的法律计算由永磁体和涡流辐射电流产生的静电场。 在该模型中,考虑了许多因素,例如铁磁性材料的饱和效果,工作温度和后铁的电磁效应。 与其他方法相比,该模型与三维有限元方法有良好的一致性,平均误差为4.9%。 最后,制造了原型和相应的测试平台。 测试结果表明,该方法有效,最大误差小于8%。 此外,确认涡流驱动器可以耐受轴未对准,并用作速度。

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