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首页> 外文期刊>Thin-Walled Structures >Prediction Of The Elasto-plastic Post-buckling Strength Of Uniformly Compressed Plates From The Fictitious Elastic Strain At Failure
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Prediction Of The Elasto-plastic Post-buckling Strength Of Uniformly Compressed Plates From The Fictitious Elastic Strain At Failure

机译:根据虚拟破坏时的弹性应变预测均匀压缩板的弹塑性后屈曲强度

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This paper discusses the use of the theory of elasticity to determine the post-buckling strength of uniformly loaded square simply supported thin (steel) plates with sinusoidal-shaped initial imperfections and longitudinal edges free to wave in plane. Based on the findings from a FEM parameter study two main types of failure are distinguished: edge failure and center failure. The parameters determining which failure mode occurs are explained using a simple two-strip model. To determine the elastic post-buckling behavior of plates a modified far post-buckling solution is proposed, which is simpler to use than the existing far post-buckling solutions reported in the literature, giving results with engineering accuracy for loads up to about three times the buckling load. It is shown that determining the post-buckling strength as the elastic load corresponding to first membrane yield (as is done in the effective width method) paradoxically gives reasonable results for plates failing by center failure, but very conservative results for plates failing by edge failure. For plates failing by edge failure a more accurate strength prediction is obtained by deriving empirical expressions for a fictitious elastic strain at failure.
机译:本文讨论了使用弹性理论确定具有正弦形初始缺陷和纵向边缘在平面中自由波动的均布方形简支薄板(钢板)的屈曲后强度。基于FEM参数研究的结果,可以区分两种主要的失效类型:边缘失效和中心失效。使用简单的两步模型来解释确定发生哪种故障模式的参数。为了确定板的弹性后屈曲行为,提出了一种改进的远后屈曲解决方案,该解决方案比文献中报道的现有远后屈曲解决方案更易于使用,可提供高达三倍载荷的工程精度结果屈曲载荷。结果表明,将屈曲后强度确定为对应于第一膜屈服的弹性载荷(在有效宽度方法中进行)反常地给出了因中心失效而导致板失效的合理结果,但对于因边缘失效而导致板失效的结果却非常保守。对于因边缘破坏而失效的板,通过推导失效时的虚拟弹性应变的经验表达式,可以获得更准确的强度预测。

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