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Resistance of cold-formed built-up stainless steel columns - Part I: Experiment

机译:冷成型不锈钢组合柱的阻力-第一部分:实验

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Nowadays, the codified procedure for design of centrically compressed cold-formed stainless steel (CFSS) builtup members is absent in Europe. Besides, there are no published research information and experimental data in this structural area. This paper focuses on a comprehensive experimental investigation of closely spaced CFSS built-up columns and addresses their flexural buckling capacity about the minor principal axis. Two series with a total of 36 built-up members were assembled, each formed by two discontinuously and directly connected channel chords oriented back-to-back to form an I-section. The chords were press-braked from flat strips of austenitic stainless steel EN 1,4301 as non-slender channel sections. The chords were uniformly interconnected by bolts or by welds. To identify the effects of interconnection spacing on chords' composite action, the overall and chord slenderness ratios were varied. Material properties, cross-section response and initial imperfections were quantified before testing. As a result, the overall flexural buckling without any local-overall interactions was observed as the dominant failure mode. All findings were used in the accompanying paper [1] to establish qualitative data base through numerical simulations of flexural buckling tests. Additionally, a quantitative accuracy assessment of the design methods for carbon steel built-up columns provided in Eurocode and American Specification was reported on the basis of their ability to predict flexural buckling resistances of the tested columns. This enabled numerical parametric studies and proposing design rules for CFSS built-up columns with non-slender sections that capture interconnection shear stiffness, overall and chord slenderness ratio and strain hardening effects. (C) 2017 Elsevier Ltd. All rights reserved.
机译:如今,在欧洲,没有统一的程序来设计中心压缩冷弯不锈钢(CFSS)构件。此外,该结构领域尚无公开的研究信息和实验数据。本文着重于对紧密排列的CFSS组合柱进行全面的实验研究,并探讨它们围绕短主轴的挠曲屈曲能力。组装了两个系列,总共36个组合构件,每个组合由两个不连续且直接连接的背对背定向的通道弦组成,形成一个I型截面。弦杆由扁平的奥氏体不锈钢EN 1,4301条作为非细长通道部分压制而成。这些弦通过螺栓或焊接均匀地互连。为了确定互连间距对和弦的复合作用的影响,改变了总体和弦的细长率。在测试之前,对材料特性,横截面响应和初始缺陷进行了量化。结果,没有任何局部-整体相互作用的整体挠曲屈曲被认为是主要的破坏模式。随附的论文[1]中使用了所有发现,通过弯曲屈曲测试的数值模拟来建立定性数据库。另外,根据欧洲规范和美国规范提供的碳钢组合柱设计方法的定量准确性评估报告,是基于它们预测被测柱的抗挠曲屈曲性的能力。这样就可以进行数值参数研究,并为具有非细长截面的CFSS组合柱提出设计规则,以捕获互连的剪切刚度,整体和弦的细长比以及应变硬化效果。 (C)2017 Elsevier Ltd.保留所有权利。

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