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Evaluation of a multi-drum magnetorheological brake via finite element analysis considering number of drums and fluid gap selection in optimization

机译:考虑鼓数和优化选择液隙的有限元分析评估多鼓磁流变制动器

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摘要

Under the same excitation, the multi-drum magnetorheological brake has a nonuniform distribution of flux density over fluid gaps. Each fluid gap has its own flux density and shear area. Therefore, the number of drums and the fluid gap selection in optimization are two important parameters to be considered in a multi-drum brake design. When a fluid gap is selected in optimization, the brake is optimized to reach the maximum required flux density over this gap. This article focuses on evaluating the influence of these two parameters on the performance of the multi-drum brake. According to the number of drums and the fluid gap selection in optimization, the brakes were marked and optimized via finite element analysis. After all optimal designs were obtained, the performance in terms of torque, volume, mass, and power consumption as well as the torque-volume, torque-mass, and torque-power ratios were calculated and compared. Based on the evaluation results, suggestions on the number of drums and the fluid gap selection in optimization are given.
机译:在相同的激励下,多鼓磁流变制动器在流体间隙上的磁通密度分布不​​均匀。每个流体间隙都有其自己的通量密度和剪切面积。因此,鼓数和优化中的液隙选择是多鼓制动器设计中要考虑的两个重要参数。如果在优化中选择了流体间隙,则会对制动器进行优化,以在该间隙上达到所需的最大磁通密度。本文着重评估这两个参数对多鼓式制动器性能的影响。根据鼓的数量和优化中的液隙选择,通过有限元分析对制动器进行标记和优化。获得所有最佳设计后,就扭矩,体积,质量和功率消耗以及扭矩-体积,扭矩-质量和扭矩-功率比的性能进行了计算和比较。根据评估结果,给出了优化中的转鼓数量和液隙选择的建议。

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