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AN INVERSE METHOD FOR MATERIAL CHARACTERIZATION OF MAGNETORHEOLOGICAL DAMPERS

机译:磁流变测压器材料表征的逆方法

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Flow of magnetorheological (MR) fluids in dampers is investigated. The MR fluid flows through narrow passages in the damper subject to a magnetic field applied across the passages. The inverse problem of the determination of the required constitutive properties of the MR fluid together with the corresponding flow pattern for the efficient damping of a given load is solved. The fluid is modeled as a Bingham plastic with time-varying yield-stress. Flow is governed by the continuously adjustable constitutive parameters of the MR fluid which are determined to generate variable resistance to flow to dampen the selected load efficiently. The method developed leads to the determination of the magnetic field variation necessary to achieve a specific displacement of the piston in the damper. The governing equations are solved for any time history of the dimensionless yield stress of the fluid. Relationships that correlate damping load and magnetic field time variations are obtained. The analytical tools developed are helpful in damper design.
机译:研究了阻尼器中的磁流变(MR)流体的流动。 MR流体通过阻尼器中的窄通道流过施加在通道上的磁场。解决了MR流体所需的本构体特性的逆问题与用于对给定负荷的有效阻尼的相应流动模式一起进行。流体以弯曲的塑料模拟,具有时变屈服应力。流动由MR流体的可持续调节的组成型参数控制,该MR流体被确定为有效地产生可变阻力以使所选择的负载抑制。该方法开发的方法导致确定在阻尼器中实现活塞特定位移所需的磁场变化。解决了控制方程,用于流体的无量纲屈服应力的任何时间历史。获得相关阻尼负荷和磁场时间变化的关系。开发的分析工具有助于阻尼器设计。

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