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Experimental and theoretical study of the lateral compression process on the empty and foam-filled hexagonal columns

机译:空心六边形泡沫柱横向压缩过程的实验和理论研究

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摘要

In this article, a new analytical model of plastic deformation during the flattening process on hexagonal metal columns under the lateral loading in the quasi-static condition is presented. Based on the introduced model, some theoretical relations are derived to forecast the average and instantaneous lateral load of the hexagonal column in two different conditions: empty and polyurethane foam-filled. Then, some lateral compression tests were carried out on the empty and foam-filled metal columns and the experimental results were compared with the theoretical predictions by the present formulas that showed an admissible correlation. The theoretical relations estimate variations of the lateral load in terms of lateral displacement. The theoretical analysis shows that the lateral load on the hexagonal column during the flattening process is dependent on the column wall thickness, column length, and material properties of the column and polyurethane foam-filler. Finally, the effects of geometrical characteristics of the hexagonal columns and material properties of the columns and foams on the lateral load are investigated, experimentally.
机译:本文提出了一种在准静态条件下承受侧向载荷的六角形金属柱压扁过程中塑性变形的新解析模型。基于引入的模型,推导了一些理论关系来预测六角形圆柱在两种不同条件下的平均和瞬时侧向荷载:空的和聚氨酯泡沫填充的。然后,在空的和泡沫填充的金属柱上进行了一些侧向压缩试验,并将实验结果与本公式的理论预测值进行了比较,结果表明了可接受的相关性。理论关系根据侧向位移来估算侧向载荷的变化。理论分析表明,扁平化过程中六角形柱的侧向载荷取决于柱壁厚度,柱长以及柱和聚氨酯泡沫填料的材料性能。最后,通过实验研究了六角形圆柱的几何特性以及圆柱和泡沫材料的性能对侧向载荷的影响。

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  • 来源
    《Materials & design》 |2014年第1期|250-261|共12页
  • 作者单位

    Mechanical Engineering Department, Yasouj University, P.O. Box 75914-353, Yasouj, Iran;

    Mechanical Engineering Department, Yasouj University, P.O. Box 75914-353, Yasouj, Iran;

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