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首页> 外文期刊>Journal of Mechanical Science and Technology >Design and geometric parameter optimization of hybrid magnetorheological fluid damper
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Design and geometric parameter optimization of hybrid magnetorheological fluid damper

机译:混合磁流变流体阻尼器的设计与几何参数优化

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摘要

A hybrid type magneto-rheological (MR) fluid damper based on electromagnet and two permanent magnets apart from electromagnet was designed and its characteristics were analyzed numerically. In the proposed MR damper, the magnetic field is generated by the permanent magnet and raised by the additional electromagnet. This combination provides a larger amount of damping force with lower consumption of electric energy. The proposed model has an additional advantage of providing a moderate damping force in case of electromagnet failure. The magnetic circuit of a hybrid MR valve was analyzed by applying Kirchhoff's law and magnetic flux conservation rule. A 2D axisymmetric model of the proposed hybrid MR damper was developed in commercial software where magnetic field properties are analyzed by finite element method. The optimization process was developed to optimize the geometric parameters and generated damping force using design of experiment (DoE) technique. The damping force of the MR damper was selected as an objective function. The optimal solution to the optimization problem of the hybrid MR valve structure was evaluated and compared with the solution obtained from the initial parameters. It is demonstrated that the novel hybrid type provides higher damping force than the previous model.
机译:设计了基于电磁铁和两个永磁体的混合型磁流变(MR)流体阻尼器,其特征在数值上进行了分析。在所提出的MR阻尼器中,磁场由永磁体产生并由附加电磁铁凸起。该组合提供了更大的阻尼力,具有较低的电能消耗。所提出的模型具有在电磁磁性故障的情况下提供适中阻尼力的额外优点。通过应用Kirchhoff的法律和磁通量保护规则分析混合动力MR阀的磁路。在商业软件中开发了建议混合MR阻尼器的2D轴对称模型,其中通过有限元方法分析磁场特性。开发了优化过程以优化几何参数和使用实验设计的阻尼力(DOE)技术。选择MR阻尼器的阻尼力被选为目标函数。评估了混合MR阀结构的优化问题的最佳解决方案,并与从初始参数获得的溶液进行比较。证明新型混合型提供比以前模型更高的阻尼力。

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