Structural Modification with Mode Shape Expansion for Rib Stiffeners

F. Kuratani, T. Shimada, T. Yamano, T. Ogawa
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引用次数: 1

Abstract

In this paper, we propose a procedure for predicting the modal data of a thin plate structure with a rib stiffener even when the rib is attached at a location where mode shapes are not measured. This procedure is based on the structural dynamics modification (SDM) method in which the mode shape expansion (MSE) method is incorporated to estimate the experimental mode shapes at the unmeasured points. In the MSE estimation, a submodel including the possible rib attachment points is used instead of the whole structure model. Numerical examples through the plate structure with the two L-shaped ribs show that the proposed procedure accurately predicts the modal data using the estimated mode shapes at the unmeasured points. The mode shapes are estimated satisfactorily with the submodel under a free boundary condition. The optimal number of analytical modes to be combined in the MSE estimation can be determined from the condition number of the modal matrix of the submodel.
肋加强筋模态振型扩展的结构修正
在本文中,我们提出了一个程序,以预测具有肋加强薄板结构的模态数据,即使肋连接在一个没有测量模态振型的位置。该方法基于结构动力学修正(SDM)方法,结合模态振型展开(MSE)方法对未测点处的实验模态振型进行估计。在MSE估计中,使用包含可能的肋骨附着点的子模型来代替整个结构模型。通过两个l型肋板结构的数值算例表明,该方法利用未测点处的估计模态振型准确地预测了模态数据。在自由边界条件下,用子模型对模态振型进行了满意的估计。根据子模型的模态矩阵的条件数,可以确定在MSE估计中需要组合的解析模态的最优个数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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