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Investigation of hydrodynamic clutch with a magnetorheological fluid

机译:带有磁流变液的液力离合器的研究

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This article presents the results of experimental investigations and simulations for a new design of a hydrodynamic clutch with a magnetorheological working fluid. The concept of magnetorheological fluid applications to improve the performance of a hydrodynamic clutch can be realized using resistant flow control inside a hydrodynamic clutch channel by changing the fluid shear stress with magnetic fields. The increase in the shear stress of a working fluid under a magnetic field causes an increase in the pressure drop in the channels, an increase in the flow losses, and a decrease in the transmitted power. Moreover, the steady-state and dynamic characteristics of the clutch are presented and the relations that occur between the design parameters are shown.
机译:本文介绍了具有磁流变工作流体的新型液力离合器的实验研究和仿真结果。磁流变流体应用的概念,可以通过在磁场中改变流体的切应力,在流体动力离合器通道内部使用阻力控制来实现改善流体动力离合器性能的目的。磁场下工作流体的剪切应力的增加导致通道中压降的增加,流量损失的增加以及传输功率的减少。此外,介绍了离合器的稳态和动态特性,并显示了设计参数之间的关系。

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