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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Experiments and Models of the Magneto Rheological Behavior of High Weight Percent Suspensions of Carbonyl Iron Particles in Silicone Oil
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Experiments and Models of the Magneto Rheological Behavior of High Weight Percent Suspensions of Carbonyl Iron Particles in Silicone Oil

机译:高重量百分比的硅油中羰基铁颗粒悬浮液的磁流变行为的实验和模型

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摘要

Flow properties of magnetorheological (MR) fluids are greatly altered by the application of a magnetic field. The design, optimization, and control of novel devices that exploit MR fluid behavior in multidegree of freedom applications require three dimensional models characterizing the coupling of magnetic behavior to mechanical behavior in MR fluids. The authors have derived 3D MR fluid models based on multiscale kinetic theory. The underlying bases of the models are summarized, with phenomenological empiricism distinguished from multiscale first principles, and the models' ability to capture the experimentally measured mechanical response of a MR fluid-based damper to specified magnetic fields is assessed. The results of this comparison are that the kinetic theory-based models both relate macroscale MR fluid behavior to a first-principles description of magnetomechanical coupling at the microscale and possess the flexibility to best match the measured behavior of a particular MR fluid device observed in our experiments.
机译:磁流变(MR)流体的流动特性通过施加磁场而大大改变。在多自由度应用中利用MR流体行为的新型设备的设计,优化和控制,需要三维模型来表征MR流体中磁行为与机械行为的耦合。作者基于多尺度动力学理论推导了3D MR流体模型。总结了模型的基础,并从现象学的经验主义与多尺度的第一原理进行了区分,并评估了模型捕获MR流体阻尼器对指定磁场的实验测量机械响应的能力。进行比较的结果是,基于动力学理论的模型都将宏观MR流体行为与微观尺度上的磁机械耦合的第一性原理描述相关联,并且具有与我们在我们所观察到的特定MR流体设备的测量行为最佳匹配的灵活性。实验。

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