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Shear response of trapezoidal profiled webs in girders with concrete-filled RHS flanges

机译:带有混凝土填充RHS法兰的大梁中梯形异型腹板的剪力响应

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The present paper deals with the shear buckling response of trapezoidal profiled webs in girders with concrete filled rectangular hollow section (RHS) flanges. It outlines an experimental work of four girders with shear buckled trapezoidal profiled webs in interactive and global manners. Characteristic strain distributions on the trapezoidal profiled webs are reported. The analysis of load-deformation responses indicates that the trapezoidal profiled web buckled in the global manner suffered greater strength drops at early stage and less strength improvement contributed by the concrete-filled RHS flange in contrast to those buckled in interactive manner with partial local buckling. Finite element models explicitly allowing for isolated trapezoidal profiled webs with varied side boundaries and visual girder models with proposed design ratios are then presented for 572 cases. It is shown that the first eigenmode shape and critical stressing of the trapezoidal profiled webs are most likely influenced when the shear buckling in local manner takes place. Related geometric ratios involved with shear span, web slenderness, trapezoid altitude and subpanel height are examined through a parametric study. Afterwards, an analytical formula incorporating a proposed rigidity ratio as well as a correlated contribution coefficient is proposed for the determining shear buckling strength of trapezoidal profiled webs in the girders with concrete-filled RHS flanges. The proposed formula is verified in contrast to referred ones through a comparative study which can be deemed suitable for the design of trapezoidal profiled webs in girders with concrete filled rectangular hollow section (RHS) flanges.
机译:本文研究了带有矩形空心截面(RHS)法兰的大梁中梯形异型腹板的剪切屈曲响应。它概述了四个梁的试验工作,这些梁具有剪切屈曲的梯形异型腹板,以交互和整体的方式进行。报告了梯形异型腹板上的特征应变分布。荷载-变形响应的分析表明,与以局部局部屈曲的交互式方式屈曲的那些相比,以整体方式屈曲的梯形异型腹板在早期遭受了更大的强度下降,而由混凝土填充的RHS法兰所带来的强度改进却较少。然后,针对572个案例,提出了明确允许使用具有不同侧边界的孤立梯形异型腹板的有限元模型和具有建议设计比率的可视梁模型。结果表明,当局部发生剪切屈曲时,梯形腹板的本征模形状和临界应力最有可能受到影响。通过参数研究检查了与剪切跨度,腹板细长度,梯形高度和子面板高度有关的几何比。然后,提出了一个包含拟议的刚度比以及相关贡献系数的解析公式,用于确定带有RHS法兰的大梁中梯形异型腹板的剪切屈曲强度。通过比较研究,可以证明所提出的公式与所引用的公式相反,该比较研究可以认为适合于设计矩形空心截面(RHS)法兰的大梁中的梯形异型腹板。

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