首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Apparent stress-strain relationships in experimental equipment where magnetorheological fluids operate under compression mode
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Apparent stress-strain relationships in experimental equipment where magnetorheological fluids operate under compression mode

机译:磁流变流体在压缩模式下运行的实验设备中的表观应力-应变关系

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摘要

This paper presents an experimental investigation of two different magnetorheological ( MR) fluids, namely, water-based and hydrocarbon-based MR fluids in compression mode under various applied currents. Finite element method magnetics was used to predict the magnetic field distribution inside the MR fluids generated by a coil. A test rig was constructed where the MR fluid was sandwiched between two flat surfaces. During the compression, the upper surface was moved towards the lower surface in a vertical direction. Stress-strain relationships were obtained for arrangements of equipment where each type of fluid was involved, using compression test equipment. The apparent compressive stress was found to be increased with the increase in magnetic field strength. In addition, the apparent compressive stress of the water-based MR fluid showed a response to the compressive strain of greater magnitude. However, during the compression process, the hydrocarbon-based MR fluid appeared to show a unique behaviour where an abrupt pressure drop was discovered in a region where the apparent compressive stress would be expected to increase steadily. The conclusion is drawn that the apparent compressive stress of MR fluids is influenced strongly by the nature of the carrier fluid and by the magnitude of the applied current.
机译:本文介绍了两种不同的磁流变(MR)流体的实验研究,即在各种施加电流下处于压缩模式的水基和烃基MR流体。使用有限元方法磁学来预测线圈产生的MR流体内部的磁场分布。建造了一个试验台,将MR流体夹在两个平面之间。在压缩期间,上表面在垂直方向上朝向下表面移动。使用压缩测试设备获得涉及每种流体类型的设备布置的应力-应变关系。发现表观压应力随磁场强度的增加而增加。此外,水基MR流体的表观压应力表现出对更大应变的响应。然而,在压缩过程中,基于烃的MR流体似乎表现出独特的行为,其中在预期表观压缩应力会稳定增加的区域中发现了突然的压降。得出的结论是,MR流体的视在压应力受载流体的性质和所施加电流的大小的强烈影响。

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