搅拌摩擦焊接6061-T6铝合金工字梁局部承压稳定性能研究

STUDY ON LOCAL BEARING STABILITY PERFORMANCE OF FRICTION STIR WELDED 6061-T6 ALUMINUM ALLOY I-BEAMS

  • 摘要: 为了研究搅拌摩擦焊接(FSW)6061-T6铝合金工字梁的局部承压稳定性能,进行了6根FSW铝合金工字梁局部承压试验研究。分析了材料力学性能、局部几何初始缺陷、焊接残余应力分布、破坏模式和局部承压稳定承载力;基于验证后的有限元模型,对腹板高宽比、荷载加载长度比、翼缘与腹板高厚比、焊缝数量与宽度等参数进行了系统的参数分析。结果表明:欧洲规范EN 1999-1-1: 2023预测结果偏于保守,非焊接、单焊缝和双焊缝试件局部承压稳定承载力分别低估89%、49%和17%,且计算结果离散性较大。基于EN 1999-1-1: 2023修正的计算公式可显著提升焊接与非焊接6061-T6铝合金工字梁局部承压稳定承载力的预测精度,计算结果的离散性明显降低。

     

    Abstract: To study the local bearing stability of friction stir welded (FSW) 6061-T6 aluminum alloy I-section beams, local pressure-bearing tests were conducted on six FSW aluminum alloy I-beams. Analyzed were material mechanical properties, initial geometric imperfections, welding residual stress distribution, failure modes, and local bearing capacity. A validated finite element model was used to perform a systematic parametric study. Parameters included web height-to-width ratio, loading length, flange and web thickness ratios, and weld number and width. Research results show that Eurocode EN 1999-1-1: 2023 gives conservative predictions. The local bearing capacity is underestimated by 89% for non-welded specimens, by 49% for single-weld specimens, and by 17% for double-weld specimens. The calculated results also show large scatter. A modified formula based on EN 1999-1-1: 2023 can significantly improve the prediction accuracy for both welded and non-welded 6061-T6 aluminum alloy I-beams, and the scatter of its calculated results is clearly reduced.

     

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