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Experimental and Analytical Study of High-Strength Steel RHS X-Joints under Axial Compression

机译:轴向压缩下高强度钢RHS X型接头的实验与分析研究

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The use of high-strength steels for tubular structures has been forbidden or permitted with some joint-strength reduction in most representative international standards. Six rectangular hollow section (RHS) X-joint specimens were tested under axial compression to investigate inelastic joint behavior. The key test parameters included brace-to-chord width ratio and grade of steels. All high-strength steel specimens exhibited sufficient strength compared with current European standards' strength criteria; their strengths were even higher than the standard's prescribed unreduced nominal strength. Significantly different postyielding behavior was observed depending upon the brace-to-chord width ratio and the grade of steels. It was also observed that the formulation of sidewall buckling strength in the current European standard tends to predict overly conservative results and requires further examination. A new design formula for RHS X-joints subjected to sidewall buckling was proposed in this paper based on a more realistic buckling shape. When the normalized plate slenderness ratio newly defined in this study is used in conjunction with the column curve c of the European standard, both accuracy and consistency of strength predictions were significantly improved compared with those of the strength formulas currently available.
机译:在大多数有代表性的国际标准中,已禁止或允许将高强度钢用于管状结构,并降低部分联合强度。在轴向压缩下测试了六个矩形空心截面(RHS)X形接头样品,以研究非弹性接头行为。关键测试参数包括支撑与弦的宽度比和钢的等级。与当前欧洲标准的强度标准相比,所有高强度钢样品均显示出足够的强度。其强度甚至高于标准规定的未降低的标称强度。根据支撑与弦的宽度比和钢的等级,观察到明显不同的后屈服行为。还观察到,当前欧洲标准中的侧壁屈曲强度的公式倾向于预测过于保守的结果,需要进一步检查。基于更真实的屈曲形状,本文提出了一种新的RHS X形接头承受侧壁屈曲的设计公式。当本研究中新定义的归一化板长细比与欧洲标准的柱曲线c结合使用时,与目前可用的强度公式相比,强度预测的准确性和一致性都得到了显着提高。

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