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Multi-physical Analysis of the Forces in the Flexible Rotor Supported by the Magnetorheological Squeeze Film Dampers

机译:由磁流变挤压膜阻尼器支撑的柔性转子中力的多物理分析

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To reduce lateral vibrations of rotating machines, the damping devices are placed between the rotor and its frame. This is enabled by magnetorheological squeeze film dampers. To achieve their optimum performance their damping effect must be adaptable to the current working conditions. In this paper, modelling of the magnetorheological squeeze film damper is based on the assumptions of the classical theory of lubrication except that for the lubricant. The model is completed with the magnetic force acting between the damper rings. Therefore, the magnetostatic approaches to determining the magnetic field in the damper gap at different distinguishing levels were proposed and compared. The developed mathematical model was applied for analysis of a rotating machine with a flexible shaft. The carried out computational simulations confirmed that the developed magnetorheological damper arrives at significant suppression of the rotor vibration in a wide range of running speeds.
机译:为了减少旋转机器的横向振动,阻尼装置放置在转子和框架之间。 这通过磁流变挤压膜阻尼器使能。 为了实现其最佳性能,它们的阻尼效果必须适应当前的工作条件。 在本文中,磁流变挤压膜阻尼器的建模基于除润滑剂之外的润滑性理论的假设。 该模型以磁力作用在阻尼环之间的磁力完成。 因此,提出并比较了确定在不同区别水平下阻尼间隙中的磁场的磁场的静磁场。 施加了开发的数学模型,用于分析柔性轴的旋转机器。 所进行的计算模拟证实,开发的磁流变测压器在各种运行速度下达到转子振动的显着抑制。

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