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Influence of Cu/Li ratio on the microstructure evolution of bobbin-tool friction stir welded Al–Cu–Li alloys

机译:Cu / Li比对骨架工具搅拌摩擦焊接Al-Cu-Li合金组织演变的影响

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Two modern aluminum lithium alloys were welded by semi-stationary bobbin tool friction stir welding. The influence of the Cu/Li ratio on precipitation phenomena under process heat impact was investigated by comparing the response of low Cu/Li alloy 2196-T8 and high Cu/Li alloy 2060-T8. Identical process parameters with a weld pitch of one rotation per mm were used to conduct flawless weldments. The thermal history and microstructural features were studied and correlated to the resulting mechanical properties of the welds. Analysis of microstructure using differential scanning calorimetry and high energy X-ray diffraction technique showed significant differences in the precipitation sequence of the base metal and in the welded samples of the two alloys of interest. A low Cu/Li ratio led to a higher softening resulting in a reduction of 43% of base metal yield strength while the high Cu/Li ratio alloy AA 2060 could demonstrate more thermal stability (38% reduction). Severe dissolution of the T1 precipitate and presence of equilibrium phases were confirmed for the stirred zone of both alloys. The heat affected zone suffered dissolution and overaging reactions leading to a mechanically unfavorable microstructure. The low Cu/Li alloy 2196 developed a higher process temperatures and exhibited a more evolved precipitation sequence.
机译:通过半固定式线轴工具摩擦搅拌焊焊接了两种现代铝锂合金。通过比较低Cu / Li合金2196-T8和高Cu / Li合金2060-T8的响应,研究了Cu / Li比对过程热冲击下析出现象的影响。使用相同的焊接间距为每毫米一转的焊接工艺参数进行无缺陷的焊接。研究了热历史和微观结构特征,并将其与焊缝的最终机械性能相关联。使用差示扫描量热法和高能X射线衍射技术进行的显微组织分析显示,母材和两种目标合金的焊接样品的析出顺序存在显着差异。低的Cu / Li比导致较高的软化,导致贱金属屈服强度降低43%,而高Cu / Li比的AA 2060合金则表现出更高的热稳定性(降低38%)。两种合金的搅拌区都证实了T1沉淀的严重溶解和平衡相的存在。热影响区遭受溶解和过度老化反应,从而导致机械上不利的微观结构。低Cu / Li合金2196的加工温度更高,并且析出序列更趋于均匀。

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