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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Performance comparison of MR dampers with three different working modes: Shear, flow and mixed mode
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Performance comparison of MR dampers with three different working modes: Shear, flow and mixed mode

机译:MR阻尼器在三种不同工作模式下的性能比较:剪切,流动和混合模式

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In this work, three different magneto-rheological(MR) dampers, which are applicable for vibration control of a multi-story structure, are devised and their performance characteristics are compared. As a first step, the schematic configurations of the shear, flow, and mixed mode MR dampers are described with design constraints. The analytical models to predict the field-dependent damping forces are derived for each type and their damping forces are evaluated. The field-dependent damping forces are compared in terms of the damping force magnitude and the mixed-mode type of MR damper is chosen as an optimal candidate for the vibration control of the multi-story structure. An appropriate size of the mixed mode MR damper is manufactured and its field-dependent damping characteristics are evaluated in time domain. In addition, the displacement vs. damping force cycles of the piston are observed at various field intensities.
机译:在这项工作中,设计了三种不同的磁流变(MR)阻尼器,它们适用于多层结构的振动控制,并比较了它们的性能特征。第一步,在设计约束条件下描述剪切,流量和混合模式MR阻尼器的示意性配置。为每种类型导出了用于预测与现场有关的阻尼力的分析模型,并对它们的阻尼力进行了评估。根据阻尼力的大小对与场有关的阻尼力进行比较,并选择MR阻尼器的混合模式类型作为多层结构振动控制的最佳候选者。制造了适当尺寸的混合模式MR阻尼器,并在时域中评估了其与场有关的阻尼特性。另外,在各种场强下都可以观察到活塞的位移与阻尼力循环。

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