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Hot Cracking Of Metal Inert Gas Arc Welded Magnesium Alloy Az91d

机译:金属惰性气体弧焊镁合金Az91d的热裂

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摘要

The microstructure and cracking characteristics of MIG welded magnesium alloy (AZ91D) joint, and the effect of welding speed on cracking susceptibility have been investigated. The welded joint consists of primary α-Mg and divorced phases (eutectic α-Mg+eutectic β-Mg_17Al_12), the latter mainly distributing along the a-Mg grain boundaries. Solidification cracking often occurred in the crater and was also observed at weld center line when welding speed was 300mm/min, which are associated with segregation of Mn, Al and Zn and high tensile stresses in the welds. Liquation cracking appeared in HAZ immediately adjacent to the fusion line when low welding speed was used (300mm/min). It is mainly related to the low welding speed resulting in increasing heat input and tensile stresses in the HAZ. It is favorable to decrease heat input for improving the susceptibility of hot cracking during MIG welding of magnesium alloys.
机译:研究了MIG焊接镁合金(AZ91D)接头的组织和开裂特性,以及焊接速度对开裂敏感性的影响。焊接接头由初生α-Mg和离婚相组成(共晶α-Mg+共晶β-Mg_17Al_12),后者主要沿a-Mg晶界分布。当焊接速度为300mm / min时,在焊缝中经常发生凝固裂纹,并且在焊缝中心线处也观察到,这与Mn,Al和Zn的偏析以及焊缝中的高拉应力有关。当使用低焊接速度(300mm / min)时,在与熔合线相邻的热影响区中出现液化裂纹。这主要与低焊接速度有关,从而导致热影响区的热量输入和拉伸应力增加。减少热量输入以改善镁合金的MIG焊接期间的热裂纹敏感性是有利的。

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