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Magnetorheological Fluid Behavior Under Constant Shear Rates and High Magnetic Fields Over Long Time Periods

机译:恒定剪切率和高磁场下长时间的磁流变流体行为

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This paper presents a new magnetorheological (MR) cell design along with a study of the magnetic field, shear rate, and time/shear strain influences on the properties and behavior of a MR fluid tested for long periods of time. The MR cell was designed to adapt a commercially available rheometer to measure the rheological properties of the fluid. Overall characteristics of the designed MR cell output capability are provided. Constant shear rate tests, two hours in duration, have been performed at shear rates between 0.1 l/s and 200 l/s under magnetic field intensities up to 0.4 T. The rheological measurements indicated that over time the fluid's shear stress magnitude decreases until it reaches a steady state. The time required to reach the steady state depends on both the magnetic field strength and the shear rate. The higher the field and the smaller the shear rate the shorter the time for the steady state to be reached.
机译:本文介绍了一种新的磁流变(MR)单元设计,并研究了磁场,剪切速率以及时间/剪切应变对长时间测试的MR流体的特性和行为的影响。 MR池经过设计,可适应市售的流变仪,以测量流体的流变性。提供了设计的MR单元输出功能的总体特征。在高达0.4 T的磁场强度下,以0.1 l / s至200 l / s的剪切速率进行了持续两个小时的恒定剪切速率测试。流变学测量表明,随着时间的流逝,流体的剪切应力强度一直下降,直到达到达到稳定状态。达到稳态所需的时间取决于磁场强度和剪切速率。磁场越高,剪切速率越小,达到稳态的时间越短。

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