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首页> 外文期刊>Experimental Mechanics >Buckling and Post-buckling Behaviour of Prismatic Aluminium Columns Submitted to a Series of Compressive Loads
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Buckling and Post-buckling Behaviour of Prismatic Aluminium Columns Submitted to a Series of Compressive Loads

机译:承受一系列压缩载荷的方形铝柱的屈曲和屈曲后行为

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摘要

The buckling and post-buckling behaviour of prismatic aluminium columns from stocky to very slender shapes is investigated. The unconventional, in terms of buckling tests, displacement control of compressive load and a series of loadings provided an enhanced insight into the buckling process. A phenomenon of buckling load drop has been detected in columns of intermediate slenderness, reaching over 20% of the load early critical value. This newly observed occurrence resembles finite disturbance instability, which until recently was commonly believed to only appear in cases of thin walled cylindrical shells, but not columns. The observation is in contradiction to predicted results from the elasto-plastic buckling models of Engesser or Shanley, with constant or growing values of load during the post-buckling process. Further tests on columns of intermediate slenderness, with strain gauges glued at node and anti-node locations of the buckled profiles, revealed that even minute buckling results in fields of highly non-symmetric residual microplastic strain. The results of the present study indicate that running column buckling tests under displacement control is worthy of being adopted as common practice. The envelope of column post-buckling states can be conveniently determined. This information will in turn allow for the quick and reliable estimation of the safety of a column, which has undergone accidental or deliberate damage in the form of limited buckling when under operational load.
机译:研究了棱柱形铝柱从矮到细长的屈曲和后屈曲行为。就屈曲测试,压缩载荷的位移控制和一系列载荷而言,这是非常规的,可以更好地了解屈曲过程。在中等细长的列中已检测到屈曲载荷下降的现象,达到载荷早期临界值的20%以上。新近观察到的这种现象类似于有限的扰动不稳定性,直到最近,人们普遍认为这种扰动不稳定性仅出现在薄壁圆柱壳的情况下,而不是圆柱体。该观察结果与Engesser或Shanley的弹塑性屈曲模型的预测结果相矛盾,后者在屈曲后的过程中具有恒定或不断增长的载荷值。在中间细长的圆柱上进行的进一步测试(在弯曲轮廓的节点和反节点位置处粘贴有应变仪)显示,即使微小的屈曲也会导致高度不对称的残余微塑性应变场。本研究的结果表明,在位移控制下的运行柱屈曲试验值得作为常规做法。列屈曲后状态的包络线可以方便地确定。该信息反过来将允许对柱子的安全性进行快速而可靠的估计,在操作负载下,柱子受到了有限屈曲形式的意外或故意损坏。

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