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Effect of micro morphology in different zones on mechanical properties of 2060 Al-Li alloy laser welded joints

机译:不同区域微观形貌对2060 Al-Li合金激光焊接接头力学性能的影响

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摘要

Al-Li alloys have been applied in modern aerospace manufacturing fields due to their excellent properties. In this investigation, 2-mm-thick 2060 Al-Li alloy laser beam welding was carried out under different heat input by KUKA Robot. The macro profile and micro morphology characteristics of weld seam cross section were observed. For further investigating the effect of micro morphology in different zones on mechanical properties of welded joints, micro-hardness test and tensile test were carried out and the experimental results were analyzed. It was found that the micro-hardness distribution was corresponding to the grain morphology distribution. The average value of micro hardness in the weld seam center was the smallest because of the biggest grain size. During the tensile test process, there was no obvious necking phenomenon observed in the fracture section and the displacement of tensile specimen was extremely small. According to the analysis of fracture morphology, the bigger and deeper dimple in fracture contributed to better tensile performance. Besides, the strengthening phases were rich in Cu element that was considered as the result of elements redistribution during laser beam welding process.
机译:Al-Li合金由于其优异的性能已被应用于现代航空航天制造领域。在这项研究中,库卡机器人在不同的热量输入下进行了2mm厚的2060 Al-Li合金激光束焊接。观察到焊缝横截面的宏观轮廓和微观形态特征。为进一步研究不同区域的微观形貌对焊接接头力学性能的影响,进行了显微硬度试验和拉伸试验,并对实验结果进行了分析。发现显微硬度分布与晶粒形态分布相对应。焊缝中心的显微硬度平均值最小,因为其晶粒最大。在拉伸试验过程中,在断裂部分没有观察到明显的颈缩现象,并且拉伸试样的位移非常小。根据断裂形态的分析,断裂中更大和更深的凹坑有助于更好的拉伸性能。此外,强化阶段富含铜元素,这被认为是激光束焊接过程中元素重新分布的结果。

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