首页> 外文会议>Biennial Conference on Mechanical Vibration and Noise >ANALYSIS AND EXPERIMENTAL EVALUATION OF INHERENT INSTABILITY IN ELECTROMAGNETIC EDDY-CURRENT DAMPERS INTENDED FOR REDUCING LATERAL VIBRATION OF ROTATING MACHINERY
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ANALYSIS AND EXPERIMENTAL EVALUATION OF INHERENT INSTABILITY IN ELECTROMAGNETIC EDDY-CURRENT DAMPERS INTENDED FOR REDUCING LATERAL VIBRATION OF ROTATING MACHINERY

机译:用于减少旋转机械横向振动的电磁涡流阻尼器中固有不稳定性的分析与实验评价

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There have been a number of papers published that concern the design and operation of electromagnetic, eddy-current dampers for controlling lateral vibration of rotating machinery. Many of these papers have included analysis approaches and all have been generally effective for low-speed operations. There have been a few reports concerning high-speed (supercritical) operations and many of these have indicated instability problems, but none of these have provided a valid analysis to account for instability. That is, all of the analytical approaches have ignored the disk rotation, relative to the magnetic field, and no obvious sources of instability have been found. In this paper, we will present our work in which we have rederived the analyses of this system in which we have not made the common assumption of no rotation between the disk and the magnetic field. In this case, the potential of instability for supercritical speed operation is clear and, in fact, the equivalent negative damping contribution of the eddy-current damper, under these conditions, has a negative effect on the system even if not fully unstable. We have carefully performed a series of experimental tests which corroborate this analytical approach. Finally, we briefly discuss alternative eddy-current damper design approaches that could be considered to provide effective damping at all speeds and avoid these instability problems.
机译:已发布许多文件,涉及电磁,涡流阻尼器的设计和操作,用于控制旋转机械的横向振动。许多这些论文都包括分析方法,所有这些都是对低速操作有效的。有一些关于高速(超临界)操作的报告,其中许多已经指出了不稳定问题,但这些都没有提供有效的分析来解释不稳定。也就是说,相对于磁场,所有分析方法都忽略了磁盘旋转,并且已经发现了无稳定性的明显源。在本文中,我们将介绍我们的工作,我们已经重新生化了该系统的分析,其中我们没有在盘和磁场之间没有旋转的公共假设。在这种情况下,用于超临界速度操作的不稳定性的可能性是透明的,实际上,在这些条件下,涡流阻尼器的等效负阻尼贡献即使不是完全不稳定,也具有对系统的负面影响。我们已经仔细执行了一系列实验测试,这些测试证实了这种分析方法。最后,我们简要讨论了可以考虑的替代涡流阻尼设计方法,以便在所有速度下提供有效阻尼,并避免这些不稳定问题。

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