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An Efficient Modeling Methodology Of Structural Systems Containing Viscoelastic Dampers Based On Frequency Response Function Substructuring

机译:基于频率响应函数子结构的含粘弹性阻尼器结构系统的高效建模方法

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摘要

In this paper it is suggested a modeling methodology of structural systems supported by translational and rotational viscoelastic mounts or joints based on a frequency response function coupling technique. Such strategy enables to predict the dynamic behaviour of the composite systems given a set of frequency response functions of the main structure and a driving point frequency response function of the viscoelastic support. These frequency response functions can be obtained either experimentally or by finite element modeling. Both cases are considered in the study. After presenting the underlying theoretical aspects, the results of numerical simulations of two-dimensional structures are presented, emphasizing the procedure conceived to compute the frequency response functions of the viscoelastic mounts or joints from a detailed finite element model using commercial packages and material properties provided by manufacturers. The dependency of the viscoelastic behaviour on frequency and temperature is accounted for by using the complex modulus approach and the concepts of reduced frequency and shift factor. An investigation using experimentally acquired frequency response functions of a frame structure with a translational viscoelastic damper is presented. Based on the obtained results, the main features of the modeling methodology are highlighted.
机译:在本文中,提出了一种基于频率响应函数耦合技术的结构系统的建模方法,该结构系统由平移和旋转粘弹性支座或关节支撑。在给定主体结构的一组频率响应函数和粘弹性载体的驱动点频率响应函数的情况下,这种策略能够预测复合系统的动态行为。这些频率响应函数可以通过实验或通过有限元建模获得。研究中考虑了这两种情况。在介绍了基本的理论方面之后,给出了二维结构的数值模拟结果,强调了使用详细的有限元模型,使用商业软件包和材料特性提供的,从详细的有限元模型中计算粘弹性支座或接头的频率响应函数的过程。制造商。粘弹性行为对频率和温度的依赖性是通过使用复数模量方法以及降低频率和偏移因子的概念来解决的。提出了一项研究,该研究使用具有平移粘弹性阻尼器的框架结构的实验获得的频率响应函数进行了研究。基于获得的结果,突出了建模方法的主要特征。

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