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Numerically Based Phase Transformation Maps for Dissimilar Aluminum Alloys Joined by Friction Stir-Welding

机译:用摩擦搅拌焊接连接的不同铝合金的数值基于相变图

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摘要

Sheets of aluminum 2017A-T451 and 7075-T651 were friction stir-welded in a butt-weld configuration. An existing computational model of the welding process for temperature distribution and material flow was adapted to estimate the phase transformations that occur across the weld zone. Near the weld center, process temperatures are sufficient to fully dissolve the equilibrium η phase in 7075 and partially dissolve the equilibrium S phase in 2017A. Upon cooling, Guinier–Preston (GP) and Guinier–Preston–Bagaryatsky (GPB) zones re-precipitate, and hardness recovers. Due to the more complete dissolution of the equilibrium phase in 7075, the hardness recovery skews toward whichever side of the weld, i.e., the advancing or retreating side, represents the 7075 workpiece. Phase transformation maps generated by the numerical simulation align not only with the hardness profiles taken across the weld zone, but also with positron lifetimes obtained through positron annihilation lifetime spectroscopy (PALS). Boundaries between the aluminum matrix and the secondary phases provide open volumes to trap positrons; therefore, positron lifetimes across the weld correspond with the phase transformations that occur in 7075 and 2017A during processing.
机译:2017A-T451和7075-T651的铝板在对接构造中摩擦搅拌焊接。用于温度分布和材料流程的焊接过程的现有计算模型适于估计焊接区穿过的相变。在焊接中心附近,工艺温度足以在7075中完全溶解平衡η相,并在2017A中部分溶解平衡的相位。冷却后,Guinier-Preston(GP)和Guinier-Preston-Bagryatsky(GPB)区重新沉淀,硬度恢复。由于7075中的平衡相更完全溶解,硬度回收偏斜朝向焊缝的任何侧面,即推进或后退侧,代表7075工件。由数值模拟产生的相变图不仅对焊接区穿过焊接区的硬度轮廓,而且与通过正电子湮没寿命谱(PAL)获得的正电子寿命。铝基矩阵与二次相之间的界限提供开放的卷来捕获正积卷;因此,焊缝上的正电子寿命对应于在加工期间在7075和2017A中发生的相变。

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