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Mechanical behavior of magnetorheological dampers after long-term operation in a cable vibration control system

机译:电缆振动控制系统长期运行后磁流变阻尼器的力学行为

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摘要

In this paper, 30 magnetorheological (MR) dampers used for vibration control of stay cables after one decade of service were selected to study their long-term mechanical behavior. The damping capacity of the used MR dampers, including the damping force amplitude and the equivalent damping coefficient, was compared with those of new MR dampers. One used damper still with considerable damping capacity was utilized for the comparative study with a new MR damper under various input voltages, excitation frequencies, and excitation amplitudes. A modified phenomenological mechanical model for used MR dampers was developed based on the experimental observation. Moreover, some used dampers were cut in half, and the remaining volumes of the MR fluid were measured. The iron particles of the MR fluid in the used damper with the worst damping capacity were analyzed using a scanning electron microscopy (SEM). The results show that 24 dampers among the used dampers can still generate considerable damping force. However, the equivalent damping coefficient and the damping force amplitude of these 24 used MR dampers decreased by 32.4% and 29.8%, respectively, on the average. Furthermore, six dampers among the used dampers failed to provide enough damping. The proposed modified mechanical model is more accurate to reflect the mechanical behavior of used MR dampers. It was found that the performance degradation of the used dampers is related to the leakage of the MR fluid and the factor that the surface of MR iron particles became rough and uneven, as observed by the SEM.
机译:在本文中,选择了30次服务后停留电缆振动控制的30个磁流变(MR)阻尼器,以研究其长期力学行为。与新的MR阻尼器相比,使用了MR阻尼器的阻尼能力,包括阻尼力幅度和等效阻尼系数。在各种输入电压,激发频率和激发幅度下,使用具有相当长的阻尼能力的使用阻尼器具有相当大的阻尼容量。基于实验观察,开发了用于使用MR Dampers的改进的现象机械模型。此外,将一些使用的阻尼器切成两半,并测量MR流体的剩余体积。使用扫描电子显微镜(SEM)分析使用具有最糟糕的阻尼能力的使用阻尼器中MR流体的铁颗粒。结果表明,二手阻尼器中的24个阻尼器仍然可以产生相当大的阻尼力。然而,相同的阻尼系数和这些24使用的MR阻尼器的阻尼力幅度分别在平均值下降32.4%和29.8%。此外,使用过的阻尼器中的六个阻尼器未能提供足够的阻尼。所提出的改进的机械模型更准确地反映使用MR阻尼器的机械性能。结果发现,使用的阻尼器的性能下降与MR流体的泄漏以及铁颗粒表面变得粗糙并且不均匀的因子,如SEM所观察到的那样。

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