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Viscometric and Sedimentation Characterization of Bidisperse Magnetorheological Fluids

机译:双分散磁流变液的粘度和沉降特性

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Magnetorheological fluids (MRFs) are typically thought of as Bingham-plastic (BP) fluids characterized by a yield stress. Partial substitution of micrometer-scale Fe particles with nanometer-scale Fe particles leads to bidisperse MRFs. This partial substitution mitigates particle sedimentation, but can reduce yield stress for high nanoparticle concentrations. We examine tradeoffs between increasing suspension stability versus decreasing in yield stress as nanoparticles are substituted for microparticles. Four groups of fluids with total Fe concentration of 50, 60, 70, and 80 wt% were considered. A sedimentation measuring device quantified sedimentation velocity of MRFs in a gravitational field. This sensor relates the rate of change of inductance relative to settling rate as Fe wt% decreases because of sedimentation. MRF flow curves were measured using a parallel disk rheometer and yield stress was identified using the BP flow model.
机译:磁流变流体(MRF)通常被认为是具有屈服应力特征的宾汉塑性(BP)流体。用纳米级铁颗粒部分替代微米级铁颗粒会导致双分散MRF。这种部分取代减轻了颗粒沉降,但是可以降低高纳米颗粒浓度时的屈服应力。我们研究了在提高悬浮液稳定性与降低屈服应力之间的权衡关系,因为纳米颗粒代替了微粒。考虑了四组总铁浓度分别为50、60、70和80 wt%的流体。沉降测量装置可量化重力场中MRF的沉降速度。该传感器将电感的变化速率与沉降速率相关联,因为沉降时Fe wt%降低,电感的变化速率与沉降速率有关。使用平行盘流变仪测量MRF流量曲线,并使用BP流量模型确定屈服应力。

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