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The continuous strength method for the design of high strength steel tubular sections in compression

机译:高强度钢管受压截面设计的连续强度法

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This paper aims to extend the deformation-based design method named continuous strength method (CSM) for the design of high strength steel tubular sections in compression. The CSM employs a base curve relating the cross-section resistance to its deformation capacity and adopts an elastic, linear hardening material model. Non slender and slender circular hollow sections (CHS), elliptical hollow sections (EHS), square hollow sections (SHS) and rectangular hollow sections (RHS) were investigated in this study. Hot-finished, cold-formed and built-up steel tubular sections with yield stresses up to 1405 MPa were covered. An extensive numerical study was carried out to supplement the limited test results of high strength steel stub columns in the literature. The cross-section resistances obtained from the proposed CSM, the direct strength method (DSM), and design methods in EN 1993-1-5, EN 1993-1-6, ANSI/AISC 360-10 and AISI 5100 were compared with the experimental and numerical capacities of 742 stub columns. It is shown that the proposed CSM can produce more accurate and less scattered strength predictions than the current DSM and design codes.
机译:本文旨在将基于变形的设计方法(称为连续强度法(CSM))扩展到受压高强度钢管截面的设计中。 CSM采用了将横截面阻力与其变形能力相关联的基曲线,并采用了弹性的线性硬化材料模型。在这项研究中,研究了非细长细长圆形空心截面(CHS),椭圆空心截面(EHS),方形空心截面(SHS)和矩形空心截面(RHS)。覆盖了屈服应力高达1405 MPa的热精,冷弯和组合钢管型材。进行了广泛的数值研究,以补充文献中对高强度钢短柱的有限测试结果。比较了从建议的CSM,直接强度法(DSM)和EN 1993-1-5,EN 1993-1-6,ANSI / AISC 360-10和AISI 5100中的设计方法获得的横截面电阻。 742个短柱的实验和数值能力。结果表明,与当前的DSM和设计规范相比,所提出的CSM可以产生更准确,更分散的强度预测。

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