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Numerical simulation and design of stainless steel hollow flange beams under shear

机译:剪切下不锈钢空心法兰梁的数值模拟与设计

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Stainless steel offers a range of benefits over conventional carbon steel in structural applications. This paper presents the detailed numerical modelling of shear response of cold-formed stainless steel hollow flange sections using finite element software package, Abaqus. The effect of geometric parameters such as section height and section thickness, and the influence of different steel grades were investigated following the validation of finite element models. From numerical results, the formation of diagonal tension fields can be clearly observed in the webs of rectangular hollow flange sections while more even distribution of the stresses in the webs is seen in triangular hollow flange sections. Further, a plastic hinge type mechanism is formed in triangular flanges at the post-failure region. The evaluation of Eurocode 3 and the direct strength method shear design provisions for stainless steel hollow flange beams is found to be significantly conservative. Therefore, modified provisions were proposed and the comparison of those with finite element results confirmed the accurate and consistent shear resistance predictions over the codified provisions. (C) 2020 Elsevier Ltd. All rights reserved.
机译:不锈钢在结构应用中提供了一系列常规碳钢的优势。本文介绍了使用有限元软件包,ABAQUS的冷成型不锈钢中空法兰部分剪切响应的详细数值模型。在有限元模型的验证之后,研究了几何参数如截面高度和截面厚度的影响,以及不同钢等级的影响。根据数值结果,可以在矩形中空凸缘部分的腹板中清楚地观察到对角线张力场的形成,同时在三角空心凸缘部分中看到腹板中的应力的更均匀分布。此外,在破坏后区域的三角形凸缘中形成塑料铰链型机构。发现不锈钢空心法兰梁的欧洲码头3和直接强度法剪切设计规定是显着保守的。因此,提出了修改的规定,并将有限元结果的比较证实了对编纂规定的准确和一致的剪切阻力预测。 (c)2020 elestvier有限公司保留所有权利。

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