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首页> 外文期刊>Journal of teoretical and applied mechanics >Stability And Load Carrying Capacity Of Multi-cell Thin-walled Columns Of Rectangular Cross-sections
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Stability And Load Carrying Capacity Of Multi-cell Thin-walled Columns Of Rectangular Cross-sections

机译:矩形截面多单元薄壁柱的稳定性和承载能力

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摘要

The paper concerns theoretical, numerical and experimental analysis of the stability and ultimate load of multi-cell thin-walled columns of rectangular and square cross-sections subjected to axial compression (uniform shortening of the column). The theoretical analysis deals with the local and global stability of multi-cell orthotropic columns of a rectangular profile with rectangular cells. It has been shown that for a multi-cell column made of the same material and having the same cross-section area, the value of local buckling stress of the column walls grows rapidly with an increase of the cell number. The experiment conducted for iso-tropic columns has also proved a significant growth of the ultimate load with the increase of the cell number. The paper gives some conclusions which can be useful in design of thin-walled box columns.
机译:本文涉及矩形和方形截面的多单元薄壁柱在承受轴向压缩(柱的均匀缩短)时的稳定性和极限载荷的理论,数值和实验分析。理论分析涉及具有矩形单元的矩形截面的多单元正交异性柱的局部和整体稳定性。已经显示出,对于由相同材料制成且具有相同横截面积的多单元柱,随着单元数目的增加,柱壁的局部屈曲应力值迅速增长。对于各向同性柱子进行的实验还证明,随着孔数的增加,极限载荷也将显着增加。本文给出了一些结论,这些结论对薄壁箱形柱的设计很有用。

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