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Numerical failure analysis of built-up columns composed of closely spaced pultruded FRP channels

机译:紧密间隔拉挤玻璃钢通道组成的组合柱数值失效分析

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The results of geometrically nonlinear analyses on 43 built-up Pultruded Fibre-Reinforced Polymer (PFRP) columns with closely spaced chords and intermittent interconnections are presented. A comparison between columns with the end sections entirely loaded and columns loaded at the end battens only is reported, showing no appreciable difference in the P-delta response. The effects due to variations of column length and battens spacing are then investigated. It is found that stocky columns with small battens spacing attain pre-buckling failure at the web-flange junctions of the chords for loads approximately equal to 70% of the crushing load. Slender columns fail by global buckling, whereas intermediate-slenderness columns may experience interaction between local and global buckling. A design method is finally proposed.
机译:给出了对43根弦距紧密且相互间断的组合式拉挤纤维增强聚合物(PFRP)色谱柱进行几何非线性分析的结果。报告了在末端部分完全装满的柱子与仅在末端板条上装载的柱子之间的比较,结果表明P-delta响应没有明显差异。然后研究了由于柱长和板条间距变化引起的影响。可以发现,对于大约等于破碎载荷70%的载荷,具有小的板条间距的高架柱在弦的腹板-法兰连接处达到了预屈曲破坏。细长的柱因整体屈曲而失效,而中等细长的柱则可能会发生局部屈曲和整体屈曲。最后提出一种设计方法。

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