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Predicting S4 Beam Joint Nonlinearity Using Quasi-Static Modal Analysis

机译:使用准静态模态分析预测S4光束关节非线性

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Recently, a new algorithm was presented (Festjens et al., Int J Mech Sci 75 (2013) 170-177) that allows one to predict the effective natural frequency and damping ratio as a function of amplitude for a structure with bolted joints. This paper applies a variant on that algorithm to a finite element model of the "S4 Beam" (two C-shaped beams bolted together on their ends) and compares the results with the measurements described in (Singh et al., IMAC 2019). The algorithm, which is here referred to as Quasi-Static Modal Analysis (QSMA), is applied to a detailed finite element model of the beam in the commercial software package, Abaqus. Coulomb friction is assumed to govern the contact interface. Amplitude dependent damping and natural frequency curves are calculated for the structure and compared to experimental measurement. Several studies are included which explore the solver tolerances and preload values needed to reach agreement with experimental measurements. Additionally, the shape of the actual contact interfaces is measured using a profilometer and fed into the model to quantify the effect of slight curvature in the contact.
机译:最近,提出了一种新的算法(Festjens等,Int J Mech SCI 75(2013)170-177),其允许一个人以螺栓接头的结构幅度的函数预测有效的固有频率和阻尼比。本文将该算法上的变型应用于“S4梁”的有限元模型(两个C形梁在其端部上螺栓连接在一起),并将结果与​​(Singh等人,IMAC 2019)中描述的测量值进行比较。这里被称为准静态模态分析(QSMA)的算法应用于商业软件包中的光束的详细有限元模型,ABAQUS。假设库仑摩擦来管理联系人界面。对结构进行计算并与实验测量相比计算幅度依赖性阻尼和固有频率曲线。包括几项研究,探讨了与实验测量达成协议所需的求解型公差和预载值。另外,使用型材计测量实际接触界面的形状,并馈入模型中以量化略微曲率在接触中的效果。

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