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Microstructure Evolution during Friction Stir Welding of Mill-Annealed Ti-6Al-4V

机译:轧制退火Ti-6Al-4V搅拌摩擦焊接过程中的组织演变

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摘要

In this study, mill-annealed Ti-6Al-4V plates were successfully friction stir welded over a wide range of processing parameters using a tungsten-1 pct La2O3 tool. Two K-type thermocouples embedded in the tool indicated that approximately 25 pct of the heat generated during welding was transferred out of the workpiece and into the tool. The thermocouple data, combined with observations of the microstructure, indicated that the stir zone of all welds exceeded the β transus. The microstructure and texture of two representative welds made just above and high above the β transus were investigated with scanning electron microscopy and electron backscatter diffraction (EBSD). The β phase orientations were reconstructed with a fully automated technique from the as-collected α phase data through knowledge of the Burgers orientation relationship. The results suggest that the fine β grains in the stir zone are formed from the base material ahead of the advancing tool by dissolution of secondary and primary α phase, and there is no further recrystallization. These grains subsequently deform by slip and rotate toward the orientations that are most stable with respect to the shear deformation induced by the tool. In the highest temperature weld, diffusion tool wear in the form of periodically spaced bands provided an internal marker of the tool/workpiece interface during welding. The flow patterns evident within the tungsten-enriched bands suggest that flow is considerably more chaotic on the advancing side than in the central stir zone.
机译:在这项研究中,使用钨1 pct La 2 O 3 工具在广泛的加工参数上成功地对搅拌退火的Ti-6Al-4V板进行了摩擦搅拌焊接。 。嵌入在工具中的两个K型热电偶表明,焊接过程中产生的大约25%的热量从工件转移到工具中。热电偶数据与显微组织的观察结果相结合,表明所有焊缝的搅拌区都超过了β瞬时值。用扫描电子显微镜和电子背散射衍射(EBSD)研究了在β瞬变正上方和正上方的两个代表性焊缝的组织和织构。通过掌握Burgers取向关系,从收集的α相数据中使用全自动技术重建β相的取向。结果表明,在搅拌区域中,细的β晶粒是由基料在前进工具之前通过第二相和第一相的溶解而形成的,并且没有进一步的重结晶。这些晶粒随后因滑动而变形,并朝着相对于工具引起的剪切变形最稳定的方向旋转。在最高温度的焊接中,扩散工具的磨损呈周期性间隔的带状,在焊接过程中成为工具/工件界面的内部标记。富钨带中明显的流动模式表明,前进侧的流动比中央搅拌区的流动大得多。

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