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Resistance of cold-formed built-up stainless steel columns - Part Ⅱ: Numerical simulation

机译:冷弯组合式不锈钢柱的阻力-第二部分:数值模拟

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In parallel with an experimental investigation of the flexural buckling behaviour of built-up stainless steel columns presented in the accompanying paper (Dobric et al., submitted for publication), a detailed Finite Element Analysis (FEA) has been performed to simulate the experiment and identify the key factors affecting the buckling response. The FEA entailed realistic geometry, measured geometric imperfections and material properties of the specimens. Very good agreement was obtained between the experiment and FEA, which proved the capability of the computational approach to replicate experimental results and predict ultimate buckling loads. In the absence of explicit design rules for flexural buckling resistance of stainless steel closely spaced built-up members, the experimental results were compared with design predictions according to the existing European Standard and American Specification for carbon steel structures. The findings indicate that the mentioned design standards may be very conservative regarding the buckling resistance of stainless steel built-up members; this under-prediction may be associated with the impact assessment of chord slenderness and interconnection stiffness on the buckling response. The main purpose of this research is to establish a qualitative data base reliable for the further quantitative numerical parameter analysis and for the development of new design rules for compressed stainless steel cold-formed built-up members. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在随附论文(Dobric等人,已提交出版)中对组合式不锈钢柱的弯曲屈曲行为进行实验研究的同时,还进行了详细的有限元分析(FEA)以模拟实验并确定影响屈曲响应的关键因素。 FEA要求具有逼真的几何形状,测量的几何缺陷和样品的材料特性。实验与有限元分析之间取得了很好的一致性,证明了该计算方法具有复制实验结果并预测最终屈曲载荷的能力。在没有明确的设计规则来对紧密间隔的不锈钢构件进行抗挠曲屈曲的研究时,根据现有的欧洲标准和美国碳钢结构规范,将实验结果与设计预测进行了比较。研究结果表明,上述设计标准对于不锈钢组合构件的抗屈曲性可能非常保守。这种低估可能与弦长和互连刚度对屈曲响应的影响评估有关。这项研究的主要目的是建立一个可靠的定性数据库,该数据库可用于进一步的定量数值参数分析以及用于开发压缩不锈钢冷弯组合构件的新设计规则。 (C)2017 Elsevier Ltd.保留所有权利。

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