智能阻尼器的振动控制建模

Hongiun Liu, J. Teng
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引用次数: 1

摘要

利用电磁流变(ERIMR)阻尼器的半主动结构振动控制最近引起了广泛的兴趣,因为它结合了无源装置的优点和主动控制的优点。本文介绍了分别为斜拉索半主动振动控制试验研究而研制的低力变能阻尼器和高力磁流变阻尼器的设计和振动试验。电流变阻尼器和磁流变阻尼器分别采用流体的剪切模式和固定模式进行设计。在不同的电场强度和不同的位移幅值下,测试了所构建的电流变阻尼器的动态特性。通过一系列激振频率下的周期性振动试验,得到了恢复力对位移和速度的滞回线。在此基础上建立了电流变阻尼器的Bingham模型和滞回双粘性模型,并根据试验数据确定了模型参数。将实验滞回线与用所建立的滞回双粘性模型预测的滞回线进行比较,表明所建立的模型较准确地捕捉了阻尼器的非线性阻尼特性。关键词:智能阻尼器,振动控制,模型,电磁流变液
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling of smart dampers for vibration control
Semi-active structural vibration control using electrohnagneto-rheological (ERIMR) dampers has recently attracted extensive interest because it combines the advantages of passive devices with the benefits of active control. This paper describes the design and vibration testing of a low-force ER damper and a high-force MR damper, which are developed for the experimental studies of semi-active vibration control of a stay cable and a system of coupled adjacent buildings respectively. The ER and MR dampers are designed using the shear-mode and the fixed-mode of the fluid respectively. Dynamic characteristics of the built ER damper are tested at different electric field strengths and varying displacement amplitudes. The hysteresis loops of restoring force versus displacement and velocity are experimentally obtained via periodic vibration testing under a series of exciting frequencies. Then the Bingham model and a hysteretic biviscous model for the ER damper are established in which the model parameters are determined from the testing data. A comparison between the experimental hysteresis loops and those predicted using the established hysteretic biviscous model shows that the developed model captures the nonlinear damping behavior of the damper quite accurately. Kqwords - smart damper, vibration control, modehg, electro/magneto-rheological fluid
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