首页> 外文会议>International Welding/Joining Conference-Korea; 20070510-12; Seoul(KR) >Residual stresses of friction stir welded 2024-T4 joints
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Residual stresses of friction stir welded 2024-T4 joints

机译:搅拌摩擦焊接2024-T4接头的残余应力

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Friction stir welding (FSW) is a solid-state joining technique which can produce high-quality joints efficiently. The residual stresses in FSW are generated due to the effect of both the uneven temperature field and of the tool force, which is different from that in fusion welding. In this study the residual stresses of 3mm-thick 2024-T4 aluminum alloy FSW joints have been investigated by using the Hole-drilling method. To reduce the influence of drilling upon the experimental results, annealed stress-free 2024 aluminum alloy plates were drilled; the relieved strains were measured and were subtracted from the total strains measured from the joints. The results showed that the longitudinal residual stresses in the joint were much larger than the transverse residual stresses; high longitudinal tensile residual stresses were concentrated near the tool shoulder direct affected zone and asymmetrically distributed at the different sides of the weld line; i-e, high at the advancing side and relatively low at the retreating side. Outside the tool shoulder direct affected zone, the longitudinal residual stresses decreased rapidly and became compressive residual stresses away from the weld line; the peak of the longitudinal residual stresses was 164.5MPa.The mechanism of the generation of the residual stresses was analyzed preliminarily.
机译:搅拌摩擦焊(FSW)是一种固态连接技术,可以有效地生产高质量的接头。 FSW中的残余应力是由于温度场不均匀和工具力的影响而产生的,这与熔焊不同。在这项研究中,通过钻孔方法研究了3mm厚的2024-T4铝合金FSW接头的残余应力。为了减少钻孔对实验结果的影响,对退火后的无应力2024铝合金板进行了钻孔;测量释放的应变,并从关节测得的总应变中减去。结果表明,接头的纵向残余应力远大于横向残余应力。高的纵向拉伸残余应力集中在刀肩直接影响区附近,并且不对称地分布在焊接线的不同侧面。即,在前进侧较高,而在后退侧相对较低。在工具肩部直接影响区之外,纵向残余应力迅速减小,并变成远离焊接线的压缩残余应力;纵向残余应力的峰值为164.5MPa。初步分析了残余应力的产生机理。

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