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Effect of load eccentricity on the buckling and post-buckling states of short laminated Z-columns

机译:载荷偏心度对短层合Z柱屈曲和屈曲后状态的影响

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This paper was dealt with buckling and post-buckling behavior of short thin-walled Z-columns made of a carbon-epoxy laminate, subjected to eccentric compressive load. The buckling mode and the buckling load of real structures versus load eccentricity were discussed. The study involved both experimental tests were carried out on real laminated structures and numerical simulations by the finite element method. The buckling load of real structures was determined by approximation methods on the basis of experimental and numerical post-buckling equilibrium paths of the structure. Additionally, in numerical simulations, the bifurcation load value was determined by solving an eigen problem. In all cases, experimental findings and numerical results show high agreement. The study determined the quantitative influence of the direction and value of compressive load eccentricity on the buckling load and rigidity of the structure in the post-buckling state.
机译:本文研究了由碳-环氧树脂层压板制成的短薄壁Z柱在偏心压缩载荷下的屈曲和后屈曲行为。讨论了实际结构的屈曲模式和屈曲载荷与载荷偏心率的关系。这项研究涉及在真实的叠层结构上进行的实验测试以及通过有限元方法进行的数值模拟。真实结构的屈曲载荷是根据实验和数值后屈曲平衡路径的近似方法确定的。另外,在数值模拟中,通过解决本征问题来确定分叉载荷值。在所有情况下,实验结果和数值结果均显示出较高的一致性。研究确定了压缩载荷偏心的方向和值对屈曲后状态下结构的屈曲载荷和刚度的定量影响。

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