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Friction tuned mass damper optimization for structure under harmonic force excitation

机译:简谐激励下结构的摩擦调谐质量阻尼器优化。

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摘要

In this work, an optimization method of Friction Tuned Mass Damper (FTMD) parameters is presented. Friction tuned mass dampers (FTMD) are attached to mechanical structures to reduce their vibrations with dissipating the vibratory energy through friction between both bodies. In order to exploit the performances of FTMD, the determination of the optimum parameters is recommended. However, the presence of Coulomb's friction force requires the resolution of a non-linear stick-slip problem. First, this work aims at determining the responses of the vibratory system. The responses of the main mass and of the FTMD are determined analytically in the sticking and sliding phase using the equivalent damping method. Second, this work aims to optimize the FTMD parameters; the friction coefficient and the tuned frequency. The optimization formulation based on the Ricciardelli and Vickery method at the resonance frequencies, this method is reformulated for a system with a viscous damping. The inverse problem of finding the FTMD parameters given the magnitude of the force and the maximum acceptable displacement of the primary system is also considered; the optimization of parameters leads to conclude on the favorable FTMD giving significant vibration decrease, and to advance design recommendations.
机译:在这项工作中,提出了摩擦调谐质量阻尼器(FTMD)参数的优化方法。摩擦调谐质量阻尼器(FTMD)连接到机械结构,以通过两个主体之间的摩擦耗散振动能量,从而减少其振动。为了利用FTMD的性能,建议确定最佳参数。但是,库仑摩擦力的存在要求解决非线性粘滑问题。首先,这项工作旨在确定振动系统的响应。使用等效阻尼方法在黏着和滑动阶段通过解析确定主要质量和FTMD的响应。其次,这项工作旨在优化FTMD参数。摩擦系数和调谐频率。在共振频率上基于Ricciardelli和Vickery方法的优化公式,针对具有粘性阻尼的系统重新制定了该方法。还考虑了在给定力的大小和一次系统的最大可接受位移的情况下找到FTMD参数的反问题;参数的优化可以得出有利的FTMD的结论,从而显着降低振动,并提出设计建议。

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