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Experimental study of magnetorheological dampers and application to cable vibration control

机译:磁流变阻尼器的实验研究及其在电缆振动控制中的应用

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As primary members of cable-stayed bridges, cables are susceptible to vibrations because of their low intrinsic damping. Mechanical dampers have been used to improve cable damping. Magnetorheological (MR) dampers have been proven efficient for seismic applications because of their large Output damping forces, stable performance, low power requirement, and quick response from both laboratory research and field practice. In this paper, experimental work was carried out to demonstrate that MR dampers are also suitable for cable vibration control. First, a MR damper was tested with various test parameters to obtain the performance curves of the MR damper under different loading conditions, including different electric currents, loading frequencies, loading wave types, and working temperatures. The MR damper was then installed on a cable to reduce the cable vibration. A 7.16 m long stay cable with a prototype-to-model scale factor of 8 was established for this study. The frequencies of the stay cable under different tension forces were measured and compared with those obtained through theoretical calculations. Then, a free vibration control test was carried Out with the MR damper being installed at the 1/4 point of the cable. In the forced vibration test, a shaker was installed at 0.18 m from the lower end of the cable. The measured data show that the damper is efficient for cable vibration control within its working current range (zero to maximum) although there is a saturation effect. It was also observed that the damper could reduce cable vibration under a variety of excitation frequencies, especially for resonant vibrations.
机译:作为斜拉桥的主要构件,电缆固有的阻尼低,因此容易受到振动的影响。机械阻尼器已用于改善电缆阻尼。磁流变(MR)阻尼器由于其大的输出阻尼力,稳定的性能,较低的功率要求以及实验室研究和现场实践的快速响应而被证明对地震应用有效。在本文中,进行了实验工作以证明MR阻尼器也适用于电缆振动控制。首先,使用各种测试参数对MR阻尼器进行测试,以获得MR阻尼器在不同负载条件下的性能曲线,包括不同的电流,负载频率,负载波类型和工作温度。然后将MR阻尼器安装在电缆上,以减少电缆振动。这项研究建立了一条7.16 m长的拉索,其原型对模型的比例因子为8。测量了斜拉索在不同张力下的频率,并将其与通过理论计算获得的频率进行比较。然后,在将MR阻尼器安装在电缆的1/4点处进行了自由振动控制测试。在强制振动测试中,在距离电缆下端0.18 m处安装了振动筛。测量数据表明,尽管存在饱和效应,该阻尼器在其工作电流范围内(从零到最大值)可有效控制电缆振动。还观察到,阻尼器可以减少电缆在各种激励频率下的振动,特别是对于共振振动。

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