Ritz solution for buckling analysis of thin-walled composite channel beams based on a classical beam theory

N. N. Dương, N. Kien, N. T. Nhan
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引用次数: 1

Abstract

Buckling analysis of thin-walled composite channel beams is presented in this paper. The displacement field is based on classical beam theory. Both plane stress and plane strain state are used to achieve constitutive equations. The governing equations are derived from Lagrange’s equations. Ritz method is applied to obtain the critical buckling loads of thin-walled beams. Numerical results are compared to those in available literature and investigate the effects of fiber angle, length-to-height’s ratio, boundary condition on the critical buckling loads of thin-walled channel beams. Keywords: Ritz method; thin-walled composite beams; buckling.
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基于经典梁理论的薄壁复合通道梁屈曲分析的Ritz解
本文对薄壁组合梁进行了屈曲分析。位移场基于经典梁理论。采用平面应力和平面应变两种状态来建立本构方程。控制方程由拉格朗日方程导出。采用里兹法计算了薄壁梁的临界屈曲载荷。将数值计算结果与已有文献进行了比较,探讨了纤维角度、长高比、边界条件对薄壁槽钢临界屈曲荷载的影响。关键词:里兹法;薄壁组合梁;屈曲。
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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