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An Experimental Investigation of Unimodal and Bimodal Magnetorheological Fluids with an Application in Prosthetic Devices

机译:单峰和双峰磁流变液的实验研究及其在修复装置中的应用

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The study investigates the field-induced shear yield stress and the off-state viscosity of selected unimodal and bimodal magnetorheological (MR) fluids. Five grades of commercially available iron powder are used to prepare unimodal MR fluids, one for each powder grade, and bimodal M R fluids, using two grades of micron-sized powder. The iron powder contains particles with a mean diameter ranging from 1 to 8 urn. The solid loading of all fluids is held to a constant value while varying the particle size and the ratio between the coarse and the fine powders. All fluids employ a perfluorinated polyether base fluid whose qualities are described. The bimodal MR fluids are compared to their corresponding unimodal fluids. Results show the bimodal fluids to have a lower off-state viscosity than their corresponding unimodal fluids. An application in prosthetic devices is introduced in which the yielding and the off-state characteristics of the MR fluid are of equal importance. In this application, the shear yield stress determines the rigidness while the off-state viscosity determines the flexibility in the absence of a magnetic field. For this particular application, prominent M R fluids are selected based on the ratio between the on-state yield stress and the off-state viscosity.
机译:该研究调查了选定的单峰和双峰磁流变(MR)流体的场致剪切屈服应力和断态粘度。使用两种等级的微米级粉末,使用五种等级的市售铁粉制备单峰MR流体,每种粉末等级一种,而双峰型M R流体。铁粉包含平均直径为1至8微米的颗粒。在改变粒径和粗粉与细粉之比的同时,所有流体的固含量保持恒定。所有流体均使用描述其质量的全氟化聚醚基础流体。将双峰MR流体与其相应的单峰流体进行比较。结果表明,双峰流体比其相应的单峰流体具有更低的态态粘度。介绍了在假体设备中的应用,其中MR流体的屈服和断态特性同等重要。在此应用中,在没有磁场的情况下,剪切屈服应力决定了刚度,而断态粘度决定了挠性。对于此特定应用,基于导通状态屈服应力与截止状态粘度之间的比率选择突出的M R流体。

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