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Analysis of a compact annular-radial-orifice flow magnetorheological valve and evaluation of its performance

机译:紧凑型环形径向孔流磁流变阀的分析及其性能评估

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This article outlines a compact annular-radial-orifice flow magnetorheological valve through theoretical calculation, simulation analysis and experiment verification. The fluid flow paths of this proposed magnetorheological valve consist of a single annular flow channel, a single radial flow channel and an orifice flow channel through structural design. The finite element modelling and analysis of the magnetorheological valve was carried out using ANSYS/Emag software, including achieving optimal magnetic field distribution and yield stress in the annular flow path and radial flow path, respectively. Moreover, this proposed magnetorheological valve was prototyped and evaluated experimentally, showing that the magnetorheological valve has significantly improved its efficiency, especially the pressure drop at the 1.0 mm width of annular resistance gap and 0.5 mm width of radial resistance gap.
机译:本文通过理论计算,仿真分析和实验验证,概述了一种紧凑的环形径向孔流磁流变阀。通过结构设计,该提出的磁流变阀的流体流动路径包括单个环形流动通道,单个径向流动通道和孔口流动通道。使用ANSYS / Emag软件对磁流变阀进行了有限元建模和分析,包括分别在环形流路和径向流路中实现了最佳的磁场分布和屈服应力。此外,该磁流变阀进行了原型设计和实验评估,表明磁流变阀的效率得到了显着提高,尤其是在环形电阻间隙为1.0 mm宽度和径向电阻间隙为0.5 mm时的压降。

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