航空学报 > 1997, Vol. 18 Issue (4): 497-500

镍基合金激光超高温度梯度定向凝固

潘清跃1, 黄卫东1, 李延民1, 周尧和1, 杨洗陈2   

  1. 1. 西北工业大学凝固技术国家重点实验室;2. 天津纺织工学院激光加工中心
  • 收稿日期:1996-07-08 修回日期:1996-12-03 出版日期:1997-08-25 发布日期:1997-08-25

ULTRA HIGH TEMPERATURE GRADIENT DIRECTIONAL SOLIDIFICATION OF Ni BASE SUPERALLOY BY LASER BEAM

Pan Qingyue1, Huang Weidong1, Li Yanmin1, Zhou Yaohe.Yang Xichen1   

  1. The State Key Laboratory of Solidification Processing, Northwestern Polytechnical University, Xi′an 710072
  • Received:1996-07-08 Revised:1996-12-03 Online:1997-08-25 Published:1997-08-25

摘要:

采用高能激光束作为定向凝固的热源,研究了镍基合金在超高温度梯度(1.0×104K/cm)定向凝固下的组织结构特征。在定向凝固组织中得到了平均一次枝晶间距仅为10.6μm的细枝晶和完全无侧向分枝的“超细胞晶”.对合金元素在不同组织中偏析行为的分析表明:传统的定向凝固组织中存在严重的微观偏析,而激光超高温度梯度定向凝固组织中,元素的微观偏析大大改善甚至完全消除。

关键词: 镍基合金, 激光定向凝固, 超细胞晶

Abstract:

A novel ultra high temperature gradient directional solidification apparatus for metal slice has been set up, in which a high energy laser beam was used as the heating source. The microstructure of a Ni base superalloy under the condition of ultra high temperature gradient (1.0×10 4K/cm) with a wide range of G/R ratio was comprehensively investigated. Both superfine dendrite with average primary spacing of 10.6μm and a novel "superfine cellular crystal", which is the extremely fine needle like cell without sidebranches, have been obtained in the laser directionally solidified microstructures. The cause for the formation of the superfine cellular crystal has been analyzed, namely, under the condition of high temperature gradient and high solidification rate, the sidebranch loses its space and time to grow and develop. The result on microsegregation shows that there exists severe microsegregation in coarse dendrite, however, the microsegregation in the laser directionally solidified microstructures is significantly improved,or even completely eliminated.

Key words: Ni base superalloys, laser directional solidification, superfine cellular crystal

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