Optimum Synthesis of Thin-Walled Vibrating Beams With Coupled Bending and Torsion

R. Grandhi, J. Moradmand
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引用次数: 9

Abstract

This paper considers the optimum structural design of vibrating beams in which the inertial axes and the elastic axes are noncollinear. The condition of noncollinear axes exists in structures having unsymmetric cross-sections. For unsymmetric cross-sections the centroid and the shear center do not coincide. This results in coupling between some of the bending and torsional modes. This paper presents results for the simply supported and cantilever beams with a thin-walled channel cross-section. The minimization of the structural volume subject to multiple frequency constraints and its dual problem of maximization of the fundamental frequency subject to a volume constraint are considered. A quadratic extended interior penalty function with Newton’s method of unconstrained minimization is used in structural optimization. The structures considered have nonstructural masses besides their own mass.
弯扭耦合薄壁振动梁的优化合成
本文研究了惯性轴与弹性轴非共线振动梁的结构优化设计问题。非对称截面结构存在非共轴线条件。对于非对称截面,质心和剪切中心不重合。这导致一些弯曲和扭转模式之间的耦合。本文给出了具有薄壁通道截面的简支梁和悬臂梁的计算结果。考虑了多频率约束下结构体积的最小化问题及其在体积约束下基频最大化的对偶问题。利用二次扩展内罚函数和牛顿无约束极小化方法进行结构优化。所考虑的结构除了自身质量外还有非结构质量。
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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