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激光增材制造Nb合金化GH4169合金组织分析
Microstructure of Nb Alloyed GH4169 Superalloy Prepared by Laser Additive Manufacturing
【摘要】 采用球磨合金化的方式,在常规GH4169合金粉末中添加Nb元素。利用激光增材制造技术成形了具有不同Nb含量的GH4169合金试样,研究了Nb含量对激光增材制造GH4169合金组织的影响。结果表明:激光增材制造Nb合金化GH4169合金显微晶粒结构仍为粗大柱状晶组织;随着Nb含量的增加,合金粉末在熔池中合金化反应放热量增多,使得柱状晶的生长方向由偏离激光束中心向外生长逐渐变为朝向激光束中心向内生长。由于熔池中溶质浓度和粉末熔化放热量的增加,使得枝晶间γ+Laves共晶组织的数量增多,逐渐形成连续网状的共晶组织;DSC分析结果发现,随着Nb元素添加量的增加,共晶Laves相的初熔点升高,枝晶干γ相的熔点略有降低。另外,合金化改变了初生γ相的成分,枝晶干Nb元素最高质量分数达到7.5%,合金固溶强化作用得到加强。
【Abstract】 The element of Nb in GH4169 alloy powder was adjusted by ball milling alloying combined with laser additive manufacturing(LAM) technology.The effect of the composition adjustment on microstructure evolution of GH4169 superalloy by LAM was studied.The results show that the typical microstructure of as-deposited GH4169 superalloy consists of γ columnar dendrites growing epitaxially along the deposition direction.According to the theoretical results,the mixing enthalpy of the alloy powder during LAM increases with the increase of Nb content,which makes the growth direction of columnar crystal gradually change from the deviation of the laser beam to the inward of the laser beam.The increase of solute concentration and the mixing enthalpy of alloy powder during LAM promotes the precipitation of γ+Laves interdendritic eutectics,and the morphology of γ+Laves interdendritic eutectics gradually becomes net-like.With the increase of Nb addition,the initial melting point of Laves phase increases,and the initial melting point of dendrite core γ phase decreases by DSC.The LAM alloyed GH4169 changes the composition of the primary γ phase,increasing the content of Nb element in the dendrite core.The highest concentration of Nb can reach 7.5 wt%.Therefore,the solid solution strengthening function of Nb is enhanced.
【Key words】 LAM; nickel based superalloy; alloying; microstructure evolution; mechanical property;
- 【文献出处】 稀有金属材料与工程 ,Rare Metal Materials and Engineering , 编辑部邮箱 ,2019年10期
- 【分类号】V252
- 【被引频次】5
- 【下载频次】399