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5A90铝锂合金Nd:YAG激光焊缝组织的晶粒形态与晶粒取向
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航空科学基金项目(20125475002);北京市教委科技创新平台项目(JJ009012201201)


Grain Shapes and Grain Orientations in Laser Welds of 5A90 Al-Li Alloys
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    摘要:

    采用Nd:YAG激光进行了5A90铝锂合金3 mm 厚薄板对接接头的激光焊接试验,采用电子背散射衍射(EBSD)技术对水平面和横截面焊缝组织的晶粒形态及晶粒取向进行了研究。结果表明,5A90铝锂合金激光焊缝金属在熔合线附近形成了非常狭窄的等轴非枝晶区(non-dendritic equiaxed grain zone,EQZ),在焊缝的其余区域形成了晶粒取向随机分布的等轴枝晶组织。由于焊缝熔合线附近EQZ的存在,焊缝金属晶粒没有继承母材晶粒的取向而外延生长,而是形成了一种非联生结晶生长的模式。焊缝区等轴枝晶的非均匀形核质点来源于平衡四方相β(Al3Zr)粒子,等轴枝晶的形态取决于固液相前沿较高的成分过冷,5A90铝锂合金的成分及激光焊接工艺特点促进了非均匀形核

    Abstract:

    Butt joints of 3.0 mm thick sheets of 5A90 Al-Li alloys have been produced using Nd:YAG laser welding. Grain shapes and grain orientations in the horizontal and transversal welds were studied using electron back scattered diffraction (EBSD). The results show that a narrow band of non-dendritic equiaxed grain zone (EQZ) is formed along the fusion boundary. The weld metals exhibit equiaxed dendritic microstructures with random orientations. The non-epitaxial growth mode occurs in the weld metal grains, which does not follow special orientation relationships with the base metal grains due to the presence of the EQZ. The equiaxed dendritic grains are resulted from heterogeneous nucleation aided by equilibrium A13Zr phases as well as the high degree of constitutional supercooling occurring in the advancing solidification front of welding pool during the solidification. A combination of the chemical compositions of 5A90 Al-Li alloys and Nd:YAG laser welding processes accelerate heterogeneous nucleation

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崔 丽,李晓延,贺定勇,陈 俐,巩水利.5A90铝锂合金Nd:YAG激光焊缝组织的晶粒形态与晶粒取向[J].稀有金属材料与工程,2013,42(10):2112~2116.[Cui Li, Li Xiaoyan, He Dingyong, Chen Li, Gong Shuili. Grain Shapes and Grain Orientations in Laser Welds of 5A90 Al-Li Alloys[J]. Rare Metal Materials and Engineering,2013,42(10):2112~2116.]
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  • 收稿日期:2012-09-01
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