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Abnormal macropore formation during double-sided gas tungsten arc welding of magnesium AZ91D alloy

机译:镁AZ91D合金双面钨极氩弧焊过程中异常大孔形成

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One of the major concerns during gas tungsten arc (GTA) welding of cast magnesium alloys is the presence of large macroporosity in weldments, normally thought to occur from the presence of gas in the castings. In this study, a double-sided GTA welding process was adopted to join wrought magnesium AZ91D alloy plates. Micropores were formed in the weld zone of the first side that was welded, due to precipitation of H_2 as the mushy zone freezes. When the reverse side was welded, the heat generated caused the mushy zone in the initial weld to reform. The micropores in the initial weld then coalesced and expanded to form macropores by means of gas expansion through small holes that are present at the grain boundaries in the partially melted zone. Macropores in the partially melted zone increase with increased heat input, so that when a filler metal is used the macropores are smaller in number and in size.
机译:铸造镁合金的气体钨极电弧(GTA)焊接过程中,主要关注的问题之一是焊件中存在大的大孔,通常认为这是由于铸件中存在气体引起的。在这项研究中,采用双面GTA焊接工艺来接合变形镁AZ91D合金板。由于在糊状区域冻结时H_2的沉淀,在被焊接的第一面的焊接区域中形成了微孔。焊接背面时,产生的热量使初始焊缝中的糊状区重新形成。初始焊缝中的微孔然后通过气体膨胀穿过小孔而聚结并膨胀以形成大孔,该小孔存在于部分熔融区域的晶界处。随着热量输入的增加,部分熔融区域中的大孔会增加,因此,当使用填充金属时,大孔的数量和尺寸会更小。

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