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Optimal design of a magneto-rheological brake absorber for torsional vibration control

机译:用于扭振控制的磁流变减震器的优化设计

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摘要

This research presents an optimal design of a magneto-rheological (MR) brake absorber for torsional vibration control of a rotating shaft. Firstly, the configuration of an MR brake absorber for torsional vibration control of a rotating shaft system is proposed. Then, the braking torque of the MR brake is derived based on the Bingham plastic model of the MR fluid. By assuming that the behaviour of the MR brake absorber is similar to that of a dry friction torsional damper, the optimal braking torque to control the torsional vibration is determined and validated by simulation. The optimal design problem of the MR brake absorber is then developed and a procedure to solve the optimal problem is proposed. Based on the proposed optimal design procedure, the optimal design of a specific rotating shaft system is performed. Vibration control performance of the shaft system employing the optimized MR brake absorber is then investigated through simulation and discussion on the results is given.
机译:这项研究提出了一种用于旋转轴扭转振动控制的磁流变(MR)制动减振器的优化设计。首先,提出了用于旋转轴系统的扭转振动控制的MR制动减震器的构造。然后,基于MR流体的宾厄姆塑性模型导出MR制动器的制动扭矩。通过假定MR制动减振器的性能类似于干摩擦扭转阻尼器的性能,可以确定并通过仿真确定控制扭转振动的最佳制动扭矩。然后,开发了MR减震器的优化设计问题,并提出了解决该问题的方法。基于所提出的最佳设计程序,对特定的旋转轴系统进行了最佳设计。然后,通过仿真研究了采用优化的MR制动减振器的轴系统的振动控制性能,并对结果进行了讨论。

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