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Design of chord sidewall failure in RHS joints using steel grades up to S960

机译:使用钢等级高达S960的RHS关节侧壁故障设计

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It is well known that the current design rules adopted by international design codes such as ISO 14346 and design guides, e.g., the CIDECT design guide No. 3, for chord sidewall failure in mild steel rectangular hollow section (RHS) joints under brace axial compression are considerably conservative, if the RHS joints are adequately supported out-of-plane. This paper presents an investigation into chord sidewall failure in RHS joints using steel grades up to S960. Representative existing design methods for chord sidewall failure in RHS joints are reviewed, and two alternative design methods, i.e., the modified bearing?buckling method and the Lan?Kuhn method, are proposed. Up-to-date test and numerical results reported in the literature are compiled. A wide range of geometric parameters, steel grades up to S960 and loading cases of brace axial loading, brace in-plane bending and brace out-of-plane bending are covered. The existing and proposed design methods are assessed against the collated results. The effects of brace-to-chord height ratio, brace angle, steel grade and chord stress ratio are evaluated. It is shown that the proposed design methods can provide more consistent resistance predictions for chord sidewall failure in mild steel and high-strength steel RHS joints under brace axial compression. Corresponding user-friendly design rules are suggested. The design of chord sidewall failure in RHS joints under brace axial tension, brace in-plane bending and brace out-of-plane bending is discussed. Further required research on, in particular, high-strength steel RHS joints is highlighted.
机译:众所周知,国际设计代码采用的目前的设计规则,如ISO 14346和设计指南,例如Cidect设计指南3号,用于在支架轴向压缩下的温和钢矩形空心部分(RHS)接头中的Chord侧壁故障如果RHS关节被充分支持平面,则相当保守。本文使用高达S960的钢等级对RHS关节的弦侧壁衰竭进行了调查。提出了两种替代设计方法,即改进的轴承θ屈曲法和LAN方法的两种替代设计方法,以及修饰轴承的侧壁失效的代表性的现有设计方法。编译文献中报告的最新测试和数值结果。各种几何参数,钢等数高达S960和支撑轴承轴承轴承轴承架,面内弯曲和支撑外平面弯曲的套件。现有的和提出的设计方法是针对整理结果的评估。评估支架到弦高比率,支撑角,钢级和弦应力比的影响。结果表明,所提出的设计方法可以为在支架轴向压缩下的温和钢和高强度钢RHS关节中的弦侧壁故障提供更一致的电阻预测。建议相应的用户友好的设计规则。讨论了支撑轴向张力下RHS关节的弦侧壁故障的设计,围绕平面弯曲和支撑外平面弯曲。进一步要求研究,特别是高强度钢RHS关节被突出显示。

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