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Shape design sensitivity analysis for stability of elastic continuum structures

机译:弹性连续体结构稳定性的形状设计敏感性分析

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摘要

This paper addresses a method for shape design sensitivity analysis of a buckling load in a continuous elastic body. The sensitivity formula for critical load is analytically derived and expressed in terms of shape variation, based on the continuum formulation of the stability problem. Though the buckling problem is more efficiently solved by structural elements such as a beam and shell, elastic solids have been chosen for the buckling analysis in this paper because solid elements can generally be used for any kind of structure whether it is thick or thin. The initial stress and buckling analysis is carried out by the commercial analysis code ANSYS. Sensitivity is then computed by using the mathematical package MATLAB with the results of ANSYS. Several problems including straight and curved beams under compressive load, ring under pressure load, thin-walled section and bottle shaped column are chosen in order to illustrate the efficiency of the presented method. (c) 2006 Elsevier Ltd. All rights reserved.
机译:本文提出了一种用于连续弹性体中屈曲载荷的形状设计敏感性分析的方法。基于稳定性问题的连续公式,可以得出临界载荷的灵敏度公式,并根据形状变化来表示。尽管屈曲问题可以通过梁和壳体之类的结构元素更有效地解决,但本文还是选择了弹性固体进行屈曲分析,因为固体元素通常可以用于任何类型的结构,无论是厚的还是薄的。初始应力和屈曲分析由商业分析代码ANSYS进行。然后使用数学软件包MATLAB和ANSYS的结果来计算灵敏度。为了说明所提方法的有效性,选择了压缩载荷下的直梁和弯曲梁,压力载荷下的环,薄壁型材和瓶形柱等几个问题。 (c)2006 Elsevier Ltd.保留所有权利。

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