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Local-overall interaction buckling of inelastic columns: A numerical study of the inelastic Van der Neut column

机译:非弹性柱的局部整体相互作用屈曲:非弹性Van der Neut柱的数值研究

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The elastic Van der Neut column has been a very useful tool to enhance our understanding of local-flexural interaction buckling of columns. In particular, Van der Neut's work has (a) illuminated the basic mechanism behind interaction buckling and (b) demonstrated that local-flexural interaction buckling is a highly imperfection sensitive phenomenon. In this paper, a component of inelastic behaviour is added to the classical Van der Neut column and its influence on the column buckling curve and the imperfection sensitivity is investigated. Numerical calculations are carried out using a finite differences scheme which is first explained in detail. In general, plasticity gives rise to a second 'plateau' in the buckling curve, curtailing the column capacity at low column slenderness values. This plateau typically exhibits low to moderate imperfection sensitivity. However, for yield stresses of the order of the local buckling stress of the flanges, both plateaus merge to form an extended zone of very high imperfection sensitivity.
机译:Van der Neut弹性柱一直是一个非常有用的工具,可以增进我们对柱的局部-弯曲相互作用屈曲的了解。 Van der Neut的工作特别是(a)阐明了相互作用屈曲背后的基本机理,并且(b)证明了局部-弯曲相互作用屈曲是高度不完美的敏感现象。在本文中,将非弹性行为的一个分量添加到经典的Van der Neut柱中,并研究了其对柱屈曲曲线和缺陷敏感性的影响。数值计算是使用有限差分方案进行的,首先将对其进行详细说明。通常,可塑性会导致屈曲曲线出现第二个“平稳”状态,从而降低了在低色谱柱细长度值下的色谱柱容量。该平稳期通常表现出低至中等的缺陷敏感性。然而,对于凸缘的局部屈曲应力的数量级的屈服应力,两个平台合并以形成具有非常高的缺陷敏感性的延伸区域。

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