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Shear Performance of a Metal Foam Magnetorheological Fluid Damper

机译:金属泡沫磁流变阻尼器的剪切性能

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This paper mainly investigates the shear performance of a metal foam magnetorheological (MR) fluid damper. As for the damper, MR fluids are stored in metal foam in the action of magnetic field, MR fluids are drawn out from the metal foam, and then fill the shear gap, thus producing the MR effect. Based on previous research, as a sample, the metal foam nickel (Ni) is applied to store MR fluids, and the metal foam Ni MR fluid damper is designed and manufactured. A test rig, including the metal foam MR fluid damper, dc motor with speed controller, force sensor with amplifier, and DAQ card and PC with LabVIEW software, is built to study the shear performance. The effects of excitation current and shear rate on damping force are analyzed. Besides, considering the influence of different currents on magnetic field, a series of magnetic field simulations on the damper are carried out in ANSYS FEM software. The results show that the excitation current is the key factor to damping force of the damper; with the increasing of the current, the damping force will increase. However, once the current is above 1.5 A, the increment is no longer obvious. Besides, damping force will decrease with the share rate increasing.
机译:本文主要研究金属泡沫磁流变(MR)流体阻尼器的剪切性能。对于阻尼器,MR流体在磁场作用下存储在金属泡沫中,MR流体从金属泡沫中抽出,然后填充剪切间隙,从而产生MR效果。在以前的研究基础上,以金属泡沫镍(Ni)为例来存储MR流体,并设计并制造了金属泡沫Ni MR流体阻尼器。为了研究剪切性能,建立了一个测试设备,包括金属泡沫MR流体阻尼器,带速度控制器的直流电动机,带放大器的力传感器以及带LabVIEW软件的DAQ卡和PC。分析了励磁电流和剪切速率对阻尼力的影响。此外,考虑到不同电流对磁场的影响,在ANSYS FEM软件中对阻尼器进行了一系列磁场模拟。结果表明,励磁电流是减振器阻尼力的关键因素。随着电流的增加,阻尼力将增加。但是,一旦电流超过1.5 A,则增量不再明显。此外,阻尼力将随着份额的增加而减小。

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