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Comparison of Design Guidelines for Hot-Rolled I-Shaped Steel Compression Members according to AISC 360-16 and EC3

机译:根据AISC 360-16和EC3的热轧I形钢制压缩构件设计指南的比较

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Thirty-six years after its publication, Turkish Building Code for Steel Structures was replaced with a more rational specification, Specification of Design and Construction of Steel Structures (SDCSS), which was prepared almost entirely based on the current American steel design specification (AISC 360-16). European steel design specification (EC3) is also widely used in Turkey for the design of steel structures constructed with the collaboration of Turkish and European companies. It is essential for a steel designer using both SDCSS and EC3 to comprehend the basic differences between these specifications. This study aims to compare the design guidelines defined in AISC 360-16 (so in SDCSS) and EC3 for rolled I-shaped steel members subjected to axial compression thoroughly. For various steel grades, member lengths, and 153 different European I/H sections, design buckling resistances and design compressive strengths are computed and compared. It is shown that there are at most 3% difference between the effective areas computed using both specifications. It is highly recommended that the change of cross section class be allowed while calculating design buckling resistances. For the studied sections and steel grades, the resistance-to-strength ratios are found to be as high as 1.24 but not smaller than 0.907.
机译:出版后三十六年,钢结构的土耳其建筑规范被更合理的规格,设计和钢结构(SDCS)的构建规格,几乎完全基于当前的美国钢设计规范(AISC 360 -16)。欧洲钢铁设计规范(EC3)也广泛用于土耳其,为土耳其和欧洲公司合作构建的钢结构设计。使用SDCS和EC3的钢设计器至关重要,以了解这些规范之间的基本差异。本研究旨在比较AISC 360-16(SDCSS)中定义的设计指南,EC3用于彻底承受轴向压缩的轧制I形钢构件。对于各种钢等级,成员长度和153个不同的欧洲I / H段,设计屈曲电阻和设计抗压强度进行了比较。结果表明,在使用这两个规范计算的有效区域之间存在最多3%的差异。强烈建议在计算设计屈曲电阻时允许横截面级的变化。对于研究的部分和钢等级,发现抗强度比率高达1.24但不小于0.907。

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