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APPROXIMATING ANNULAR DUCT FLOW IN ER/MR DAMPERS USING A RECTANGULAR DUCT

机译:使用矩形管道在ER / MR阻尼器中近似环形管道流动

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In general, ER/MR dampers have a cylindrical cross-section, for reasons of simplicity of design and maximum strength of the damper. Usually the ER/MR effect is activated by applying field across an annular valve. However, for simplicity of the analysis and design, a rectangular duct flow model is usually adopted. This paper compares analytical solutions of the rectangular and annular duct model under the assumption of uniform field across the valve gap. To compare errors between annular and rectangular duct models, a formulation for the error in the case of Bingham plastic material will be derived for flow mode dampers. This paper focuses on the errors of shear stress, velocity profile and equivalent viscous damping coefficient arising from the approximation of an annular duct as a rectangular duct. The impact of the small gap assumption, that is, the valve gap, d, is much smaller than the annular radius, R_1, is thoroughly investigated. We conclude that the approximate rectangular duct model can accurately describe the annular valve behavior as long as d/R_11.
机译:通常,由于设计简单和阻尼器最大强度的原因,ER / MR阻尼器具有圆柱形横截面。通常,通过在环形阀上施加电场来激活ER / MR效应。但是,为了简化分析和设计,通常采用矩形管道流动模型。本文在假设气门间隙均匀场的情况下,比较了矩形和环形管道模型的解析解。为了比较环形和矩形风管模型之间的误差,将为宾厄塑料材料的流动模式阻尼器得出误差的公式。本文着重探讨了将环形风管近似为矩形风管时产生的剪切应力,速度分布和等效粘性阻尼系数的误差。彻底研究了小间隙假设(即气门间隙d)远小于环形半径R_1的影响。我们得出结论,只要d / R_1 << 1,近似矩形管道模型就可以准确地描述环形阀的行为。

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