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Enhanced properties of magnetorheological fluids: Effect of pressure

机译:磁流变液的增强特性:压力的影响

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Magnetorheological fluids are extensively used in the industrial world to produce dissipative systems in an easily adjustable or even self-adaptive way. Sometimes their intrinsic rheological properties fail to meet system requirements in terms of available forces or yield stress for a given design space. In technical literature, previous works show a dependency of the shear strength of magnetorheological fluids on the internal pressure of the fluid, called squeeze strengthen effect. This work aims at the experimental validation of the behaviour of the magnetorheological fluids in both flow and shear modes under a given compressive state. Two specific ad hoc experimental test rigs are used for the campaign. The systems are designed in order to apply the magnetic field and the pressure at the same time and the tests are carried out following a design of experiment method. The magnetic parts of the system are designed with the help of a magnetic finite element simulation software, then the experiments are performed and the results are collected. The output is analysed through an analysis of variance approach, a statistical procedure that shows the influence of multiple variables on the system outputs. The outcome of the experimental tests confirms the beneficial effect of the pressure in both flow and shear modes, with performances up to three times compared with the datasheet values, where no pressure is considered.
机译:磁流变流体在工业界被广泛使用,以易于调节甚至自适应的方式产生耗散系统。有时,对于给定的设计空间,它们的固有流变特性无法满足系统要求。在技​​术文献中,先前的工作表明磁流变流体的剪切强度与流体的内部压力有关,这被称为挤压增强效应。这项工作的目的是在给定的压缩状态下在流动和剪切模式下磁流变流体行为的实验验证。该活动使用了两个特定的临时实验测试台。设计该系统是为了同时施加磁场和压力,并按照实验方法的设计进行测试。借助磁性有限元模拟软件设计系统的磁性零件,然后进行实验并收集结果。通过方差分析方法(一种显示了多个变量对系统输出的影响的统计程序)对输出进行分析。实验测试的结果证实了压力在流动和剪切模式下的有益效果,其性能是不考虑压力的数据表值的三倍。

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