材料科学
焊接
压痕硬度
微观结构
液化
极限抗拉强度
高温合金
体积分数
冶金
热影响区
复合材料
Laves相
激光束焊接
电子束焊接
粒度
金属间化合物
阴极射线
量子力学
电子
合金
物理
作者
Qian Ran,Song Xiang,Yuanbiao Tan,Shuang Hu
标识
DOI:10.1088/2053-1591/ac1eca
摘要
Abstract Co-based superalloy GH159 and Ni-based superalloy GH4169 have been successfully joined by laser beam welding and the effect of heat input on microstructure and properties of dissimilar joints were investigated systematically. The results showed that weld seams exhibited a nail shape and full penetration was attained at all dissimilar joints. Increasing grain size towards the fusion zone (FZ) were observed in the heat affected zone (HAZ) on the GH159 side while an increasing dissolution of γ ′ and γ ′ towards the FZ was attained at the HAZ on the GH4169 side. These resulted in decreasing microhardness towards FZ. Tensile failure was found in the FZ with the lowest microhardness. Meanwhile, the ultimate tensile strength (UTS) of the dissimilar joints increased with the decreasing of heat input. The high UTS of dissimilar joint with low heat input can be ascribed to the lower volume fraction of the Laves phase and the smaller dendrite arm spacing.
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