首页> 外文期刊>Journal of structural engineering >Behavior of Cold-Formed Steel Built-Up Sections with Intermediate Stiffeners under Bending. I: Tests and Numerical Validation
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Behavior of Cold-Formed Steel Built-Up Sections with Intermediate Stiffeners under Bending. I: Tests and Numerical Validation

机译:带中间加劲肋的冷弯型钢组合截面的行为。 I:测试和数值验证

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An experimental investigation of simply supported built-up section beams with different sectional configurations has been conducted under both four-point bending and three-point bending. Intermediate stiffeners were employed to the webs of built-up sections to improve the buckling strength that is susceptible to local buckling and/or distortional buckling. In this study, the built-up sections were assembled by self-tapping screws from two channels with web stiffeners, which were brake-pressed from high-strength, zinc-coated grades G500 and G550 structural steel sheets with nominal 0.2% proof stresses of 500 and 550 MPa, respectively. The screws were located either at the flanges or webs, and the built-up sections include both open sections and closed sections. The moment capacities and observed failure modes of the beam tests are presented, and no failure was found in the screws. The local and distortional buckling behavior of the built-up section beam specimens were found to be different from the single profiles. Finite-element (FE) models were developed, and numerical analysis that includes material nonlinearity, geometric nonlinearity, and contact nonlinearity was performed. The FE and the experimental results were found in good agreement in terms of ultimate moments and failure modes. The verified FE models are used to perform parametric studies in the companion paper. The structural behavior and design rule for built-up section beams with intermediate stiffeners is then explored and presented. (C) 2015 American Society of Civil Engineers.
机译:在四点弯曲和三点弯曲的情况下,已经进行了具有不同截面配置的简支组合截面梁的试验研究。将中间加劲肋用于组合部分的腹板,以提高易受局部屈曲和/或变形屈曲影响的屈曲强度。在这项研究中,用两个带有腹板加劲肋的通道的自攻螺钉组装了成型段,这些腹板由高强度,镀锌等级为G500和G550的结构钢板制动压制而成,其标称极限应力为0.2%。分别为500和550 MPa。螺钉位于法兰或腹板上,组合部分包括开放部分和封闭部分。给出了梁测试的弯矩承载力和观察到的破坏模式,并且在螺钉中未发现破坏。发现组合截面梁样本的局部和变形屈曲行为与单个轮廓不同。开发了有限元(FE)模型,并进行了包括材料非线性,几何非线性和接触非线性的数值分析。在极限力矩和破坏模式方面,有限元与实验结果吻合良好。经过验证的有限元模型用于在随附的论文中进行参数研究。然后探讨并提出了带有中间加劲肋的组合型截面梁的结构特性和设计规则。 (C)2015年美国土木工程师学会。

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