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Numerical Investigation of Distribution Laws of Shear Force in Box Girder Webs

机译:框梁网剪切力分布规律的数值研究

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摘要

To study the shear force distribution laws of a box girder with a single-box multichamber (SB-MC) configuration for different supporting conditions, numbers of webs, stiffness of end diaphragm, and web thickness values, a box girder with SB-MC was numerically simulated using three-dimensional finite element model. According to the comparison results of web shear force, the concept of η, a shear-increased coefficient for webs, was introduced. The results show that supporting conditions and chambers have a significant impact on the shear-increased coefficient η, and end diaphragm must be set up in the 3D finite element model when calculating η. Nonlinear analysis shows that in the elastic phase, the shear-increased coefficient η basically does not change, but in the cracking stage, the coefficient η of each web changes with the degree of web cracking, and side-webs (S-Webs) reach the ultimate load first. The variation of the web thickness hardly affects the distribution of the shear force, so the method to adjust the web thickness of S-Web was proposed according to the result of shear-increased coefficient η to improve the shear resistance of the box girder.
机译:要使用单盒式多示例(SB-MC)配置的盒梁的剪切力分布规律进行不同的支撑条件,腹板的数量,端膜的刚度和幅材厚度值,具有SB-MC的盒子梁使用三维有限元模型进行数值模拟。根据卷材剪切力的比较结果,介绍了η的概念,剪切增加的腹板系数。结果表明,支撑条件和腔室对剪切增加的系数η具有显着影响,并且在计算η时必须在3D有限元模型中设置端膜片。非线性分析表明,在弹性相中,剪切增加的系数η基本上不会改变,而是在裂解阶段,每个腹板的系数η随着腹板开裂的程度和侧面腹板(S-Web)的变化最终负载首先。幅材厚度的变化几乎不影响剪切力的分布,因此根据剪切增加的系数η的结果提出了调节S-幅材的幅材厚度的方法,以提高箱梁的剪切电阻。

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