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Web Crippling of Cold-Formed High Strength Steel Square and Rectangular Hollow Sections under Two-Flange Loading Conditions

机译:两法兰载荷条件下冷弯高强度钢方型和矩形空心型材的腹板起皱

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The web crippling behavior of cold-formed high strength steel (HSS) square and rectangular hollow sections under End-Two-Flange and Interior-Two-Flange loading conditions is studied. The cold-formed HSS tubular sections had nominal 0.2% proof stresses of 700 and 900 MPa. Finite element (FE) models were developed and validated against test results, showing the capability of replicating the experimental web crippling strengths, failure modes and load-deformation histories. Upon validation of the FE models, an extensive parametric study comprised 112 FE analyses was performed. The web crippling strengths obtained from the experimental and numerical investigations were compared with the nominal strengths calculated from the North American Specification, Australian/New Zealand Standard and European Code for cold-formed steel structures. The comparison results show that the nominal strengths predicted by the existing codified web crippling design provisions are either unconservative or overly conservative. Hence, new design rules are proposed for cold-formed HSS square and rectangular hollow sections by means of Direct Strength Method (DSM). It is shown that the modified DSM is able to provide reasonably good predictions.
机译:研究了冷成型高强度钢(HSS)方形和矩形中空型材在端部两法兰和内件两法兰载荷条件下的腹板瘫痪行为。冷成型的HSS管状截面的标称0.2%屈服极限应力为700和900 MPa。开发了有限元(FE)模型,并针对测试结果进行了验证,显示了复制实验性腹板压溃强度,破坏模式和载荷变形历史的能力。在验证有限元模型后,进行了包含112个有限元分析的广泛参数研究。将通过实验和数值研究获得的腹板抗折强度与根据北美规范,澳大利亚/新西兰标准和欧洲冷弯钢结构规范计算出的标称强度进行比较。比较结果表明,现有编纂纤网致残设计规定所预测的名义强度要么不保守,要么过于保守。因此,通过直接强度法(DSM)提出了冷弯高速钢方形和矩形空心截面的新设计规则。结果表明,修改后的DSM能够提供合理的良好预测。

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