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The in-plane shear failure of transversely stiffened thin plates

机译:横向加劲薄板的面内剪切破坏

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This paper examines the response of stiffened plates with plain flat outstands when subjected to in-plane shear loading in the form of applied in-plane shear displacement The buckling and post-buckling failure capabilities of thin plates subjected to in-plane shear, can, of course, be improved through the introduction of stiffening elements whose fiexural and torsional rigidities can contribute significantly towards a more stabilised structural system. This paper details appropriate suitable finite element modelling strategies and procedures to enable the determination of the post-buckled failure response of the stiffened shear panels and to highlight the significant influence of the stiffeners. The modelling procedures are able to describe the complete loading history of the stiffened panel structures from the onset of initial buckling through the elastic post-buckling phase of behaviour involving the considerable interaction between plate and stiffener and then through initial material yielding and yield propagation to ultimate conditions and elasto-plastic unloading.
机译:本文以平面内剪切位移的形式研究了平面突出的加劲板在平面内剪切载荷作用下的响应平面内剪切薄板的屈曲和屈曲后破坏能力可以当然,可以通过引入加强元件来改进其刚性,这些加强元件的抗弯刚度和抗扭刚度可以显着有助于更稳定的结构系统。本文详细介绍了合适的有限元建模策略和过程,以能够确定加筋剪力板的屈曲后破坏响应,并强调加劲肋的重要影响。建模过程能够描述加筋板结构的完整加载历史,从初始屈曲开始到弹性后屈曲阶段,其行为涉及板材和加劲肋之间的大量相互作用,然后通过初始材料屈服和屈服传播直至最终条件和弹塑性卸载。

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