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Experimental and numerical studies of S960 ultra-high strength steel welded I-section columns

机译:S960超高强度钢焊接I型柱的实验性和数值研究

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The present paper reports a thorough experimental and numerical study of the structural behaviour and resistances of 5960 ultra-high strength steel welded I-section columns failing by flexural buckling about the minor principal axis. A testing programme, including initial geometric imperfection measurements and ten pin-ended column tests, was conducted. The testing programme was accompanied by a numerical modelling programme, where finite element models were firstly developed and validated against the test results, and then employed to perform parametric studies to generate further numerical data. The existing codes in Europe, America and Australia only cover the design of steel structures with nominal material yield stresses less than or equal to 700 MPa (or 690 MPa), and design of 5960 ultra-high strength steel welded I-section columns is therefore out of their application scopes. The obtained test and numerical results were adopted to assess the applicability of the relevant codified design buckling curves for 5700 (or 5690) high strength steel welded I-section columns failing by minor-axis flexural buckling to their 5960 ultra-high strength steel counterparts. The assessment results indicated that the design buckling curves in both the European code and Australian standard yield rather conservative resistance predictions when used for 5960 ultra-high strength steel welded I-section columns failing by minor-axis flexural buckling, while the design buckling curve in American specification results in overall accurate and consistent flexural buckling resistance predictions, though the predicted resistances are marginally conservative for those relatively short 5960 ultra-high strength steel welded I-section columns with member non-dimensional slendernesses from 0.6 to 1.0. Finally, a revised Eurocode design buckling curve was proposed and shown to yield substantially more accurate and consistent resistance predictions for 5960 ultra-high strength steel welded I-section columns failing by minor-axis flexural buckling than the original Eurocode design buckling curve.
机译:本文报告了通过弯曲弯曲围绕小主轴的弯曲屈曲,彻底的实验和数值研究,对5960超高强度钢焊接I型柱失效的结构行为和电阻。进行测试程序,包括初始几何不完美测量和十个引脚结束的列测试。测试程序伴随着数值建模程序,其中首先开发有限元模型并针对测试结果验证,然后用于执行参数研究以产生进一步的数值数据。欧洲,美国和澳大利亚的现有代码仅涵盖钢结构的设计,标称材料屈服应力小于或等于700MPa(或690MPa),因此设计为5960超高强度钢焊接I型柱是出于应用范围。采用所得的试验和数值结果来评估相关的编纂设计屈曲曲线适用于5700(或5690)的高强度钢焊接I型柱,其通过次轴弯曲弯曲与其5960超高强度钢对应物的较低强度钢焊接I形柱。评估结果表明,欧洲代码和澳大利亚标准产量的设计屈曲曲线适用于5960超高强度钢焊接I型柱的较小轴弯曲弯曲,而设计屈曲曲线美国规范导致总体准确和一致的弯曲屈曲阻力预测,尽管预测的电阻对于那些相对短的5960超高强度钢焊接I型柱,其具有从0.6至1.0的成员非尺寸纤维的焊接I型柱略微保守。最后,提出了一种修订的欧洲码设计屈曲曲线,并显示出对5960超高强度钢焊接I型截面柱的大幅度更准确和一致的电阻预测,而不是由额外的Eurocode设计屈曲曲线的次轴弯曲屈曲失效。

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