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The contour method for residual stress determination applied to an A6082-T6 friction stir butt weld

机译:用于A6082-T6摩擦搅拌对接焊缝的残余应力确定轮廓方法

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Residual stresses parallel to the welding direction on a cross-section of a 3 mm thick friction stir butt-welded aluminum alloy AA6082-T6 plate were determined using the contour method. A full contour map of longitudinal residual stresses on a weld cross section was determined in this way, revealing detailed information on the residual stress distribution in the inside of a friction stir weld, especially in the nugget zone. The typical M-shape, usually described for the residual stress distribution in friction stir welds, was found. The maximum residual stresses are below the yield strength of the material in the shoulder region and, outside of the welding region, low tensile and compressive residual stresses are responsible for the necessary stress equilibrium on the plane of interest.A comparison was made with the established incremental hole drilling technique on an equivalent plate for validation and good agreement of both techniques was obtained. The distribution, as well as the magnitude of the residual stresses measured by both techniques, is very similar, thus validating both the experimental and numerical procedures used for the contour method application, presented and discussed in the present paper.
机译:使用轮廓法确定在3 mm厚的摩擦搅拌对接焊接铝合金AA6082-T6的横截面上平行于焊接方向的残余应力。通过这种方式确定了焊缝横截面上的纵向残余应力的完整轮廓图,从而揭示了搅拌摩擦焊缝内部,特别是在熔核区域内残余应力分布的详细信息。找到典型的M形,通常描述为搅拌摩擦焊缝中的残余应力分布。最大残余应力低于肩部区域材料的屈服强度,而在焊接区域之外,低拉伸残余应力和压缩残余应力是引起目标平面上必要的应力平衡的原因。在等效板上进行了渐进式孔钻技术的验证,并获得了两种技术的良好一致性。两种技术所测量的分布以及残余应力的大小都非常相似,从而验证了本文提出和讨论的用于轮廓法应用的实验和数值程序。

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