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Finite-Element Simulation and Design of Cold-Formed Steel Channels Subjected to Web Crippling

机译:腹板起皱的冷弯型钢槽钢有限元模拟与设计

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摘要

Web crippling may occur at the highly concentrated loading or reactions when there is no end stiffener or load stiffener in cold-formed, thin-walled steel members. A nonlinear finite-element analysis is earned out based on a series of laboratory tests on cold-formed steel channels subjected to web crippling under end-one-flange and interior-one-flange loading conditions as specified in the Nonh American and Australian/New Zealand specifications for cold-formed steel structures. Geometric and material nonlinearities were included in the finite-element analysis. The finite-element results demonstrate that the ultimate load-carrying capacity (web crippling strength), web crippling failure modes, and web deformation curves agree well with the tests. The verified finite-element models are then used for an extensive parametric study of different channel dimensions. It is found that the design strengths calculated from the North American Specification are generally unconservative for channel sections with unstiffened flanges having web slenderness ranging from 7.8 to 108.5 subjected to web crippling under the end-one-flange and interior-one-flange loading conditions. Therefore, the updated coefficients of the design formula in the North American Specification and new design formulas are subsequently proposed in this paper. It is demonstrated that the verified finite-element models provide an effective and time efficient means to predict web crippling strengths of cold-formed steel members.
机译:当冷成型薄壁钢构件中没有末端加劲肋或负载加劲肋时,在高度集中的负载或反作用下可能会发生腹板瘫痪。非线性有限元分析是基于一系列的实验室测试得出的,该测试对冷弯型钢通道在端部凸缘和内部凸缘的载荷条件下承受腹板的屈曲产生了影响,这是根据Nonh American和Australia / New新西兰冷弯钢结构规范。几何和材料非线性被包括在有限元分析中。有限元结果表明,最终的承载能力(腹板瘫痪强度),腹板瘫痪破坏模式和腹板变形曲线与试验吻合良好。然后将经过验证的有限元模型用于不同通道尺寸的广泛参数研究。已经发现,根据北美规范计算的设计强度对于带有未加筋凸缘的槽形截面通常是不保守的,该未加筋凸缘的腹板细长度在7.8至108.5之间,并且在端部一凸缘和内部一凸缘的载荷条件下经受了腹板的弯曲。因此,本文随后提出了北美规范中设计公式的更新系数和新的设计公式。结果表明,经过验证的有限元模型为预测冷弯型钢构件的腹板抗弯强度提供了一种有效且省时的方法。

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