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Combined squeeze-shear properties of magnetorheological fluids: Effect of pressure

机译:磁流变液的组合挤压剪切特性:压力的影响

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摘要

Several applications of magnetorheological fluids are nowadays present in the industrial world; however, sometimes material properties are not sufficient to meet the system requirements. Among the technical literature, there is experimental evidence of the squeeze-strengthen effect, which is a pressure dependency of the yield stress of the magnetorheological fluid. Since many magnetorheological systems are rotary devices, such as brakes and clutches, this article investigates the behaviour of magnetorheological fluids under pressure when a rotation is applied to shear the fluid. The system is designed to apply both the magnetic field and the pressure following a design of experiment method. The experimental apparatus comprises a cylinder in which a piston applies both pressure and a prescribed rotation. The magnetic circuit is designed to provide a tunable, nearly constant magnetic induction field inside the fluid. The experimental apparatus measures the torque produced by the magnetorheological fluid as a function of the variables considered, and consequently, the yield shear stress is evaluated. A statistical analysis of the results finds a positive interaction between the magnetic field and the pressure, which enhances the magnetorheological fluid performances, measured in terms of yield stress, up to more than two times the manufacturer's datasheet values.
机译:如今,磁流变流体在工业领域中有多种应用。但是,有时材料性能不足以满足系统要求。在技​​术文献中,有压缩增强效应的实验证据,该效应是磁流变流体的屈服应力的压力依赖性。由于许多磁流变系统是旋转设备,例如制动器和离合器,因此本文研究了在施加旋转力来剪切流体时,在压力下磁流变流体的行为。该系统旨在按照实验方法的设计同时施加磁场和压力。该实验设备包括气缸,在气缸中活塞既施加压力又施加规定的旋转。磁路设计为在流体内部提供可调的,几乎恒定的磁感应场。该实验设备根据所考虑的变量来测量磁流变流体产生的扭矩,从而评估屈服剪切应力。对结果进行统计分析后发现,磁场和压力之间存在正向相互作用,从而提高了磁流变液的性能(以屈服应力衡量),是制造商数据表值的两倍以上。

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