首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Influence of focusing thermal effect upon AZ91D magnesium alloy weld during vacuum electron beam welding
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Influence of focusing thermal effect upon AZ91D magnesium alloy weld during vacuum electron beam welding

机译:真空电子束焊接过程中聚焦热效应对AZ91D镁合金焊接的影响

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摘要

The influence of focusing thermal effect upon the weld shape, microstructure and alloying elements distribution in the welded joints during vacuum electron beam welding on AZ91D magnesium alloy was studied. The results show that the focus state affects the offset of DOF, and further significantly affects the actual welding heat input in the process of vacuum electron beam welding. The sharp focusing state is characterized with higher welding energy density, but the welding energy density of defocusing state is lower. Therefore, the welding process with sharp focusing state and smaller calculation welding heat input can obtain the same weld penetration as the welding process is the conditions of defocusing state and larger calculation welding heat input. And the welding process of sharp focusing state and smaller calculation welding heat input can induce more strongly burning loss of Mg element than the conditions of defocusing state and larger calculation welding heat input. Then, which will affect the distribution of alloy elements in weld seam.
机译:研究了AZ91D镁合金真空电子束焊接过程中聚焦热效应对焊缝形状,组织和合金元素分布的影响。结果表明,聚焦状态影响自由度的偏移,并进一步显着影响真空电子束焊接过程中的实际焊接热量输入。急剧的聚焦状态具有较高的焊接能量密度,但散焦状态的焊接能量密度较低。因此,聚焦状态为尖峰且计算焊接热输入较小的焊接过程,由于散焦状态和计算焊接热输入较大的条件下,可获得相同的焊缝熔深。与散焦状态和计算焊接热量输入较大的条件相比,聚焦状态急剧,计算焊接热量输入较小的焊接过程会引起更大的镁元素燃烧损失。然后,这将影响焊缝中合金元素的分布。

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