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Numerical study and design of aluminium alloy channel section columns with welds

机译:铝合金槽型截面焊缝数值研究与设计

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This paper presents a numerical investigation on aluminium alloy welded columns of channel section. Non-linear finite element models were firstly developed and validated against non-welded column test results. The materials considered in this study were aluminium alloys 6063-T5 and 6061-T6. The validated finite element models were used for parametric studies to generate numerical results for columns containing welds. In the finite element models, both ends of the columns were transversely welded to aluminium alloy end plates. Finite element models of welded columns were developed by dividing the column into two part: non-welded region and heat-affected zones. Material properties of non-welded aluminium alloys and heat-affected zone were adopted in the models. A total of 100 numerical results were newly generated from the parametric study. The numerical results were compared with design strengths predicted by the existing American, Australian/New Zealand, European and Chinese standards. The column strengths were also compared with the design strengths by the direct strength method (DSM) and the continuous strength method (CSM). Modified DSM and CSM approaches with the consideration of heat-affected zone softening effects were proposed in this study. Both modified DSM and CSM approaches were found to yield more accurate and consistent predictions for aluminium alloy welded columns. In addition, reliability analyses were performed to evaluate the reliability level of all the existing and newly proposed design rules for channel section columns containing transverse welds.
机译:本文对通道截面铝合金焊接柱进行了数值研究。首先建立了非线性有限元模型,并针对非焊接柱测试结果进行了验证。本研究中考虑的材料是铝合金6063-T5和6061-T6。经过验证的有限元模型用于参数研究,以生成包含焊缝的柱的数值结果。在有限元模型中,将立柱的两端横向焊接到铝合金端板上。通过将立柱分为两部分来开发立柱的有限元模型:非焊接区域和热影响区。模型采用非焊接铝合金的材料性能和热影响区。通过参数研究,总共获得了100个数值结果。将数值结果与现有美国,澳大利亚/新西兰,欧洲和中国标准预测的设计强度进行了比较。还通过直接强度法(DSM)和连续强度法(CSM)将柱强度与设计强度进行了比较。本研究提出了考虑热影响区软化效果的改进DSM和CSM方法。发现改进的DSM和CSM方法都能对铝合金焊接柱产生更准确和一致的预测。此外,进行了可靠性分析,以评估包含横向焊缝的槽形截面立柱的所有现有和新提议设计规则的可靠性水平。

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