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首页> 外文期刊>Journal of intelligent material systems and structures >A Magnetorheological Damper with Bifold Valves for Shock and Vibration Mitigation
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A Magnetorheological Damper with Bifold Valves for Shock and Vibration Mitigation

机译:带有双阀的磁流变阻尼器,用于减轻冲击和振动

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摘要

This study presents the design and fabrication of a flow-mode bifold magnetorheological (MR) damper for shock and vibration mitigation for high piston velocity (15mph or 6.75m/s) as well as an evaluation of its performance at low speed. Based on a Bingham-plastic (BP) model, as well as a BP model coupled with a low speed hysteresis model, two theoretical MR damper models for flow-mode MR dampers are constructed. Using the design strategy associated with the Bingham-model based damper model, two MR damper designs for achieving the performance requirement with a limited space are considered: first, the conventional MR damper that has an MR valve inside the piston head and second, the bifold MR damper that has MR valves at each end of the damper. After numerically comparing the damping performances of the two MR damper designs, the bifold MR damper has been chosen because its dynamic range is better at high speed. The bifold MR damper was tested at a relatively low piston velocity using an MTS testing machine under sinusoidal loading. Experimental data compare well with the results predicted by the theoretical models.
机译:这项研究提出了一种用于高活塞速度(15mph或6.75m / s)的减震和减振的流模双折磁流变(MR)阻尼器的设计和制造,以及其低速性能的评估。基于宾厄姆塑料(BP)模型以及结合低速磁滞模型的BP模型,构建了两个理论上用于流式MR阻尼器的MR阻尼器模型。使用与基于Bingham模型的阻尼器模型相关的设计策略,考虑了两种MR阻尼器设计,这些设计可在有限的空间内达到性能要求:首先,传统的MR阻尼器在活塞头内部具有MR阀,其次,双折叠MR阻尼器在阻尼器的两端都有MR阀。在对两个MR阻尼器设计的阻尼性能进行数值比较之后,选择了双向MR阻尼器,因为它的动态范围在高速下更好。使用MTS测试机在正弦负载下以相对较低的活塞速度测试了双折MR阻尼器。实验数据与理论模型预测的结果进行了很好的比较。

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