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Effect of pre-strain path on suppression of abnormal grain growth in friction-stir welded 6061 aluminum alloy

机译:预致抗应变路径对摩擦致磨焊6061铝合金异常晶粒生长的影响

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摘要

In this work, an efficiency of various pre-strain paths for suppression of abnormal grain growth in friction-stir welded 6061-T6 aluminum alloy was studied. To this end, the produced welds were cold rolled at either 0 degrees, 45 degrees or 90 degrees to welding direction prior to the standard T6 tempering. A particular emphasis was given to elucidation of a relationship between microstructures and ductility of the post-processed welds.In all cases, the pre-strain rolling was found to be effective for inhibition of the abnormal grain growth. At relatively low rolling strains, this effect was sensitive to the strain path. Specifically, the pre-rolling along the welding direction resulted in the finest grain structure in the heat-treated joints. This result was attributed to relatively high Taylor factor as well as to low orientation stability of the stir zone texture for this particular rolling path, which enhanced recrystallization behavior during subsequent annealing.Tensile behavior of the heat-treated welds was shown to be dictated by strain localization in coarse-grained microstructural regions. It was established that appropriate microstructural control by the pre-strain rolling can provide a reasonably uniform microstructure distribution across the weld zone and thus essentially enhance weld ductility.
机译:在这项工作中,研究了用于抑制摩擦型6061-T6铝合金在摩擦搅拌6061-T6铝合金中抑制异常晶粒生长的各种预菌路径的效率。为此,在标准T6回火之前,在0度,45度或90度到焊接方向,所产生的焊接在0度,45度或90度。特别强调阐明了后处理后焊缝的微观结构和延展性之间的关系。在所有情况下,发现预菌轧制是有效的抑制异常晶粒生长。在相对低的轧制菌株中,这种效果对应变路径敏感。具体地,沿着焊接方向的预轧制导致热处理的关节中最优质的晶粒结构。该结果归因于该特定滚动路径的搅拌区纹理的相对高的泰勒因子以及搅拌区纹理的低取向稳定性,其在随后的退火过程中增强了重结晶行为。分热处理的焊接的抗凝行为被菌株决定粗粒度微观结构区域的定位。建立了通过预致阵轧制的适当微观结构控制可以在焊接区提供合理均匀的微观结构分布,从而基本上提高焊接延展性。

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