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Modeling and analysis of magnetorheological inner mass single unit impact dampers

机译:磁流变内部质量单件减振器的建模与分析

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摘要

In this article, ongoing studies to apply semi-active control devices to reduce undesired vibrations of civil engineering structures are investigated. In doing so, the barrier of the nonlinear inner mass single unit impact dampers is equipped by the magnetorheological fluid dampers. For convenience, this kind of impact dampers is briefly named smart impact dampers. Dynamic behavior of a vibratory system equipped with the smart impact damper is modeled based on the modified Bouc-Wen model for the magnetorheological damper. Performance of the smart impact damper to suppress free vibration of an Euler-Bernoulli beam is investigated. Furthermore, effects of varying applied current to the magnetorheological fluid damper on vibratory behavior of the beam are illustrated in user-oriented charts. The analysis results show that the smart impact dampers with optimal parameters can suppress undesired vibrations much better than conventional impact damper systems.
机译:在本文中,正在进行的研究是应用半主动控制设备来减少土木工程结构的不希望有的振动。这样做时,磁流变流体阻尼器装备了非线性内部质量单单元冲击阻尼器的屏障。为了方便起见,这种冲击阻尼器简称为智能冲击阻尼器。基于改进的Bouc-Wen磁流变阻尼器模型,对配备有智能冲击阻尼器的振动系统的动力学行为进行建模。研究了智能冲击阻尼器抑制欧拉-伯努利梁自由振动的性能。此外,在面向用户的图表中说明了改变施加到磁流变流体阻尼器的电流对梁的振动行为的影响。分析结果表明,具有最佳参数的智能减震器比传统的减震器系统能够更好地抑制不希望的振动。

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