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QUASI-STEADY BINGHAM BIPLASTIC ANALYSIS OF ER/MR DAMPERS

机译:ER / MR阻尼器的准稳态宾汉塑性分析

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摘要

Magnetorheological (MR) fluids are characterized by dynamic yield stress with the application of a magnetic field. The Bingham plastic model has proven useful in modeling MR fluid properties, as in flow mode dampers. However, certain MR fluids can exhibit shear thinning behavior, wherein the fluid's apparent plastic viscosity decreases at high strain rates. The Bingham plastic model does not account for such behavior, resulting in over-prediction of equivalent viscous damping. This paper proposes a Bingham biplastic model to account for shear thinning or shear thickening. This approach assumes a bilinear post-yield viscosity, with a critical strain rate specifying the region of high strain rate flow. Furthermore, the model introduces non-dimensional terms to account for the additional parameters associated with shear thinning and thickening. A comparison is made between Bingham plastic and Bingham biplastic force responses to sinusoidal input, and equivalent viscous damping is examined with respect to nondimensional parameters.
机译:磁流变(MR)流体的特征是在磁场作用下产生动态屈服应力。与流动模式阻尼器一样,宾汉塑料模型已被证明可用于对MR流体特性进行建模。但是,某些MR流体可能会表现出剪切稀化行为,其中,流体的表观塑性粘度在高应变速率下会降低。 Bingham塑性模型不能解释这种行为,从而导致等效粘性阻尼的过高预测。本文提出了一种Bingham双塑性模型来说明剪切变稀或剪切增厚。该方法假设双线性屈服后粘度,临界应变率指定了高应变率流动区域。此外,该模型引入了无量纲项,以说明与剪切稀化和增稠相关的其他参数。在宾汉塑性和宾汉双塑性力对正弦输入的响应之间进行比较,并就无量纲参数检查了等效粘性阻尼。

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