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The shear-lag effect of composite box girder bridges with corrugated steel webs and trusses

机译:波形钢腹板和桁架组合箱梁桥的剪力滞效应

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摘要

The composite box girder bridge with corrugated steel webs and trusses is a recently proposed enhanced composite box girder bridge structure. The shear-lag effect of this kind of structure is studied in detail in this research. Two 8.744 m-long test beams with and without concrete filled in the bottom steel tubes were constructed and tested. The non-uniform distribution of cross-sectional stress in the top concrete slab was captured. The filling of concrete inside the bottom steel tubes is shown not to have a great influence on the shear-lag effect. Numerical parametric studies were carried out to study the influence of various factors on the shear-lag effect of this kind of structure. The numerical results indicate that the magnitude of the shear-lag effect increases with the width-to-span ratio and the suspension ratio. Analytical equations were derived to calculate the shear-lag coefficient for composite box girders with corrugated steel webs and trusses based on the energy variational principle. The experimental and numerical validation indicates that the proposed equations can be well applied in engineering practice.
机译:具有波纹钢腹板和桁架的复合箱梁桥是最近提出的增强的复合箱梁桥结构。本研究详细研究了这种结构的剪力滞效应。构造并测试了在底部钢管中填充和不填充混凝土的两个8.744 m长的测试梁。捕获了顶部混凝土板中横截面应力的不均匀分布。底部钢管内部的混凝土填充对剪切滞后效应影响不大。进行了数值参数研究,研究了各种因素对这种结构的剪力滞效应的影响。数值结果表明,剪切滞后效应的幅度随着宽度-跨度比和悬浮比的增加而增加。推导了基于能量变化原理的波纹钢腹板和桁架组合箱梁的剪力滞系数计算公式。实验和数值验证表明,所提出的方程可以很好地应用于工程实践。

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