中国民航大学学报 ›› 2019, Vol. 37 ›› Issue (4): 60-64.

• 基础科学 • 上一篇    

涂覆铝膜CoCrAlY的HCPEB改性过程温度场模拟#br#

王志平,沈月,韩志勇
  

  1. (中国民航大学天津市民用航空器适航与维修重点实验室,天津300300)
  • 出版日期:2019-08-23 发布日期:2020-04-01
  • 作者简介:王志平(1963—),男,辽宁朝阳人,教授,博士,研究方向为热障涂层.
  • 基金资助:
    国家自然科学基金项目(U1333107)

Temperature field simulation of CoCrAlY coated by Al film during HCPEB modification#br#

WANG Zhiping, SHEN Yue, HAN Zhiyong#br#   

  1. (Civil Aircraft Airworthiness and Maintenance Key Lab of Tianjin, CAUC, Tianjin 300300, China)
  • Online:2019-08-23 Published:2020-04-01
  • Supported by:

摘要: 为优化强流脉冲电子束(HCPEB)改性过程的工艺参数,以获得最佳的脉冲时间和电子束能量密度,利用有限元方法,模拟了对表面涂覆铝膜的CoCrAlY 电子束轰击过程的温度场分布,分析了脉冲时间和电子束能量密度对试样表面合金化的影响。结果表明:铝膜厚度为2 μm 时,最佳脉冲时间和电子束能量密度的组合为1.5 μs,6 J/cm2,此时对应基体的熔化深度为0.2 μm。延长脉冲时间可使试样表面温度逐渐升高,热影响区逐渐增大。当能量密度为4 J/cm2 时,适当延长脉冲时间,使其介于1.5 μs 与6 μs 之间,也能达到良好的电子束改性目的,获得理想的表面合金化效果。

关键词: 强流脉冲电子束, 有限元, 温度场, 表面合金化

Abstract: To optimize the process parameters of HCPEB modification, and to obtain the optimal pulse time and electron beam energy density, FEM is used to simulate the temperature field distribution of electron beam bombardment process on CoCrAlY coated by Al film, analyzing the effects of pulse time and electron beam energy density on the surface alloying. Results show that when the thickness of aluminum film is 2 μm, the optimum combination of pulse time and electron beam energy density is 1.5 μs, 6 J/cm2, and the melting depth of the corresponding substrate is 0.2 μm. With the extension of pulse time, both the surface temperature and heat affected zone of the sample gradually increase. When the energy density is 4 J/cm2, the pulse time is appropriately extended to between 1.5 μs and 6 μs, which can achieve ideal electron beam modification and surface alloying effect.

Key words: HCPEB, FEM, temperature field, surface alloying

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