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首页> 外文期刊>Journal of intelligent material systems and structures >Nondimensional Herschel-Bulkley Analysis of Magnetorheological and Electrorheological Dampers
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Nondimensional Herschel-Bulkley Analysis of Magnetorheological and Electrorheological Dampers

机译:磁流变和电流变阻尼器的无量纲Herschel-Bulkley分析

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Quasisteady modeling of linear stroke flow mode magnetorheological (MR) (or electrorheological (ER)) dampers has focused primarily on the utilization of the Bingham-plastic constitutive model to assess performance metrics such as damping capacity. In such Bingham-plastic MR (or ER) flows, the variable yield stress of the fluid, τ_y, is activated by applying magnetic (or electric) field. The Bingham-plastic model assumes that the material is in either (1) a pre-yield condition where the local shear stress is less than the yield stress, τ < τ_y, or (2) a post-yield condition, where the local shear stress is greater than the yield stress, τ > τ_y, so that the material flows with a constant post-yield viscosity. The objective of this study is to analyze the damping capacity of such a controllable MR or ER damper in the situation when the field dependent fluid exhibits post-yield shear thinning or thickening behavior, that is, the post-yield viscosity is a function of shear rate. A Herschel-Bulkley model with a field dependent yield stress is proposed, and the impact of shear rate dependent viscosity on damping capacity is assessed. Key analysis results - velocity profile, pre-yield thickness, and damping coefficient - are presented in a nondimensional formulation that is consistent with prior results for the Bingham-plastic analysis. The nondimensional analysis formulated here clearly establishes the Bingham number as the independent variable for assessing flow mode damper performance.
机译:线性冲程流动模式磁流变(MR)(或电流变(ER))阻尼器的拟稳态建模主要集中在利用宾厄姆塑性本构模型来评估性能指标(例如阻尼能力)。在这种宾厄姆塑性MR(或ER)流中,流体的可变屈服应力τ_y通过施加磁场(或电场)来激活。 Bingham塑性模型假定材料处于(1)局部剪切应力小于屈服应力τ<τ_y的屈服前条件,或(2)局部剪切的屈服后条件应力大于屈服应力τ>τ_y,因此材料以恒定的屈服后粘度流动。这项研究的目的是分析这种可控制的MR或ER阻尼器在场相关流体表现出屈服后剪切变稀或增稠行为时的阻尼能力,即屈服后粘度是剪切的函数。率。提出了具有随场变化的屈服应力的Herschel-Bulkley模型,并评估了取决于剪切速率的粘度对阻尼能力的影响。关键分析结果-速度分布,屈服前厚度和阻尼系数-以无量纲形式表示,与Bingham-塑性分析的先前结果一致。此处制定的无量纲分析清楚地将宾厄姆数确定为评估流量模式阻尼器性能的自变量。

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