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首页> 外文期刊>Journal of intelligent material systems and structures >Smart sealing for magnetorheological fluid actuators
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Smart sealing for magnetorheological fluid actuators

机译:磁流变流体执行器的智能密封

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摘要

In automotive and industrial environments, magnetorheological fluid-based applications such as clutches and brakes are gaining continuously more attention. However, one of the serious challenges for their application are drag losses at high shear rates. While viscous losses of the magnetorheological fluid can be eliminated by a magnetorheological fluid movement control based on partially filled shear gaps, commonly utilized sealings also cause drag losses based on dry friction. To overcome these challenges, in this contribution, a novel design of sealings for magnetorheological fluid-based actuators is introduced eliminating the adverse drag losses. The intended sealing is based on the magnetorheological fluid itself, positioned in a sealing gap and exposed to a well-defined magnetic stray field of a permanent magnet to prevent any leakage. To eliminate drag torques, a superimposed functional principle with the magnetorheological fluid movement control is utilized. An analytical and a simulation-based modeling approach is proposed describing the torque behavior of the magnetorheological fluid sealing. In experimental investigations, the drag torque-free operation is proven by showing a lossless operation above a defined rotational speed.
机译:在汽车和工业环境中,基于磁流变流体的应用(例如离合器和制动器)越来越受到关注。但是,其应用面临的严峻挑战之一是高剪切速率下的阻力​​损失。虽然可以通过基于部分填充的剪切间隙的磁流变流体运动控制来消除磁流变流体的粘性损失,但通常使用的密封也会由于干摩擦而引起阻力损失。为了克服这些挑战,在此贡献中,引入了一种用于磁流变流体致动器的新型密封设计,从而消除了不利的阻力损失。预期的密封基于磁流变流体本身,位于密封间隙中,并暴露于永磁体的明确定义的杂散磁场中,以防止泄漏。为了消除阻力力矩,利用了磁流变流体运动控制的叠加功能原理。提出了一种基于分析和基于仿真的建模方法,该方法描述了磁流变流体密封的扭矩行为。在实验研究中,无阻力转矩运行通过显示高于定义转速的无损运行得到证明。

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