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Experimental and numerical studies of fixed-ended cold-formed stainless steel equal-leg angle section columns

机译:固定端冷弯不锈钢等肢角型截面柱的试验和数值研究

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The flexural-torsional buckling behaviour of fixed-ended cold-formed stainless steel equal-leg angle section columns was experimentally and numerically investigated in this paper. The testing programme was conducted on two press-braked austenitic stainless steel equal-leg angle sections, and involved material testing, initial imperfection measurements and sixteen fixed-ended column tests. The test setup and procedure, together with the key experimental results, load-mid-height torsional rotation histories and flexural-torsional buckling failure modes, were fully reported. Finite element models were then developed to simulate the fixed-ended cold-formed stainless steel equal-leg angle section column tests, and the numerical structural responses and failure modes were shown to match well with the corresponding experimental observations. The validated finite element models were then utilised to carry out parametric studies to generate an extensive pool of numerical data on fixed-ended cold-formed stainless steel equal-leg angle section columns susceptible to flexural-torsional buckling. The load-carrying capacities derived from both the experiments and FE modelling were compared with the resistance predictions from the established design standards in Europe, America, and Australia/New Zealand and a recently proposed direct strength method. The comparison results generally indicated that the existing design codes unduly underestimate the flexural-torsional buckling resistances of fixed-ended cold-formed stainless steel equal-leg angle section columns, while the direct strength method substantially improves the design accuracy on average, but with many overpredicted resistances, indicating that further improvements are generally required.
机译:本文通过实验和数值研究了固定端冷弯不锈钢等边角截面型材的弯扭屈曲行为。测试程序在两个压弯奥氏体不锈钢等边角钢截面上进行,涉及材料测试,初始缺陷测量和16个固定端柱测试。完整报告了测试设置和程序,以及关键的实验结果,中高载荷扭转旋转历史和弯曲扭转​​屈曲破坏模式。然后建立了有限元模型,以模拟固定端冷弯不锈钢等边角截面的圆柱试验,并显示出数值结构响应和破坏模式与相应的实验观察结果非常吻合。然后,利用经过验证的有限元模型进行参数研究,以生成易受挠曲-屈曲屈曲的固定端冷弯不锈钢等肢角截面截面柱的大量数值数据。将实验和有限元建模得出的承载能力与欧洲,美国和澳大利亚/新西兰的既定设计标准以及最近提出的直接强度方法的阻力预测值进行了比较。比较结果通常表明,现有的设计规范过分低估了固定端冷弯不锈钢等肢角型截面柱的抗弯扭屈曲性,而直接强度法平均可以显着提高设计精度,但是在很多方面过度预测的阻力,表明通常需要进一步的改进。

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