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An extended evaluation for the shear behavior of hollow tubular flange plate girders

机译:空心管状翼缘板梁抗剪性能的扩展评估

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In this paper, an extended numerical investigation is conducted to study the shear behavior of transversely stiffened hollow tubular flange plate girders (HTFPGs) using ABAQUS software. A comparison between the HTFPGs and plate girders with flat flange plates (IPGs) is first made considering the elastic-buckling and the post-buckling strength. The results indicated that the realistic support condition at the juncture of the web and flanges of HTFPGs is nearly fixed. The study is then extended to examine hybrid HTFPGs (HHTFPGs). The main goal of this extension was to examine the validity of the current EN 1993-1-5 provisions regarding both the shear resistance and the behavior trend of such hybrid girders. The validity of the other international design codes such as the AASHTO, AISC and BS 5950 were also checked. The results of the finite element (FE) models confirmed that using HHTFPGs provides economy as their strength could be utilised efficiently. In addition, it was found that the strengths obtained with EN 1993-1-5 provisions do reproduce suitably the trends obtained numerically, but their design equations were found to be extremely conservative. Moreover, the shear strength recently proposed for homogenous HTFPGs seemed to be slightly conservative for the case of HHTFPGs. Therefore, it was modified herein by taking the relative effect of the actual flange yield strength into account. This shear strength currently modified is found to represent the actual behavior of these girders better than the original and recently proposed EN 1993-1-5 shear strengths. Several remarks regarding the selection of optimum dimensions for the HTFPGs are also presented.
机译:在本文中,进行了扩展的数值研究,以使用ABAQUS软件研究横向加劲的空心管状翼缘板梁(HTFPG)的剪切特性。首先,考虑了弹性屈曲强度和屈曲后强度,对HTFPG和带有平面翼缘板(IPG)的板梁进行了比较。结果表明,HTPFG腹板和翼缘交界处的实际支撑条件几乎是固定的。然后将研究扩展到检查混合HTFPG(HHTFPG)。扩展的主要目的是检查有关此类混合梁的抗剪强度和行为趋势的现行EN 1993-1-5规定的有效性。还检查了其他国际设计规范(例如AASHTO,AISC和BS 5950)的有效性。有限元(FE)模型的结果证实,使用HHTFPG可以节省成本,因为可以有效利用它们的强度。此外,发现使用EN 1993-1-5规定获得的强度确实可以再现通过数字获得的趋势,但是发现它们的设计方程式非常保守。此外,对于HHTFPG,最近针对均质HTFPG提出的剪切强度似乎有些保守。因此,在此通过考虑实际法兰屈服强度的相对影响对其进行了修改。发现当前修改的这种剪切强度比最初和最近提出的EN 1993-1-5剪切强度更好地代表了这些大梁的实际性能。还介绍了有关为HTFPG选择最佳尺寸的一些说明。

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