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Optimal design of high damping force engine mount featuring MR valve structure with both annular and radial flow paths

机译:具有环流和径流路径的MR阀结构的高阻尼力发动机悬置的优化设计

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摘要

This paper focuses on the optimal design of a compact and high damping force engine mount featuring magnetorheological fluid (MRF). In the mount, a MR valve structure with both annular and radial flows is employed to generate a high damping force. First, the configuration and working principle of the proposed MR mount is introduced. The MRF flows in the mount are then analyzed and the governing equations of the MR mount are derived based on the Bingham plastic behavior of the MRF. An optimal design of the MR mount is then performed to find the optimal structure of the MR valve to generate a maximum damping force with certain design constraints. In addition, the gap size of MRF ducts is empirically chosen considering the 'lockup' problem of the mount at high frequency. Performance of the optimized MR mount is then evaluated based on finite element analysis and discussions on performance results of the optimized MR mount are given. The effectiveness of the proposed MR engine mount is demonstrated via computer simulation by presenting damping force and power consumption.
机译:本文着重于具有磁流变液(MRF)的紧凑型高阻尼力发动机支架的优化设计。在安装座中,采用具有环形和径向流的MR阀结构来产生高阻尼力。首先,介绍了所提出的MR支架的配置和工作原理。然后,分析MRF在支座中的流动,并基于MRF的宾汉塑性行为推导MR支座的控制方程。然后执行MR支座的最佳设计,以找到MR阀的最佳结构,以在某些设计约束下产生最大阻尼力。此外,根据经验选择MRF管道的间隙尺寸时要考虑到安装座在高频下的“锁定”问题。然后,基于有限元分析评估优化的MR支座的性能,并对优化的MR支座的性能结果进行讨论。提出的MR发动机支架的有效性通过计算机仿真显示了阻尼力和功耗,从而得到了证明。

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