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Design resistance evaluation for steel and steel-concrete composite members

机译:钢和钢-混凝土组合构件的设计抗力评估

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This study evaluates the performance of the design equations given in the Australian/New Zealand bridge and steel structures design standards AS 5100.6, AS 4100 and NZS 3404.1 based on reliability analysis. For this evaluation, the following two methods were utilised: (i) a capacity factor calibration method to meet the target reliability level when there are a limited number of steel yield strength tests; and (ii) an inverse reliability analysis method to calculate the required minimum number of steel yield strength tests to achieve the target reliability level when using capacity factors provided in the design standards. The methods were applied to steel and composite members including I-beams, hollow section columns, CFST columns, and composite beams. To ensure the adoptability of imported steel for these members, structural steel that conforms to European, Korean, Japanese, American, Chinese and Australasian manufacturing standards were considered in the analyses. The results showed that, for an infinite range of manufacturing data, the capacity factors were insensitive to the different manufacturing tolerances. Furthermore, when a limited number of mechanical tests were available, a much larger number of results were needed to achieve the target capacity factor for composite members in comparison with non-composite members. Finally, when considering hollow sections used as columns, the current design equations were unable to deliver the target reliability levels for any of the manufacturing standards used internationally. (C) 2018 The Authors. Published by Elsevier Ltd.
机译:本研究基于可靠性分析,评估了澳大利亚/新西兰桥梁和钢结构设计标准AS 5100.6,AS 4100和NZS 3404.1中给出的设计方程的性能。为了进行评估,采用了以下两种方法:(i)当钢材屈服强度测试数量有限时,采用容量因子校准方法以满足目标可靠性水平; (ii)一种逆可靠性分析方法,当使用设计标准中提供的容量系数时,计算所需的最小钢屈服强度测试次数,以达到目标可靠性水平。该方法适用于钢和复合构件,包括工字梁,空心截面柱,CFST柱和复合梁。为了确保这些成员可采用进口钢,分析中考虑了符合欧洲,韩国,日本,美国,中国和澳大利亚制造标准的结构钢。结果表明,对于无限范围的制造数据,容量因子对不同的制造公差不敏感。此外,当有限数量的机械测试可用时,与非复合构件相比,需要大量结果才能达到复合构件的目标承载能力。最后,当考虑将空心截面用作圆柱时,当前的设计方程式无法提供国际上使用的任何制造标准的目标可靠性水平。 (C)2018作者。由Elsevier Ltd.发布

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