+Advanced Search
Mechanical properties of alumina ceramic/AgCuTi/GH99 superalloy brazed joints
DOI:
Author:
Affiliation:

Nuclear Power Institute of China

Clc Number:

Fund Project:

  • Article
  • |
  • Figures
  • |
  • Metrics
  • |
  • Reference
  • |
  • Related
  • |
  • Cited by
  • |
  • Materials
  • |
  • Comments
    Abstract:

    The Al2O3 ceramic was brazed to GH99 superalloy using AgCuTi filler alloy, The influence of the process parameters on the mechanical property of the joints was studied and the fracture location of joints under different process parameters was analysed. The results show that, With the increasing of brazing temperature, the shear strength of joints decreased after increasing to a maximum, The maximum was obtained at 900℃,Which is 127.24MPa. When the brazing temperature is lower, the fracture is mostly in Al2O3/filler side, With the increasing of brazing temperature, The TiNi3 reaction layer is gradually thickening and then parts of the fracture is in the TiNi3 reaction layer/filler interface; At 900℃, With the extension of the holding time, The shear strength of joint gradually decreased. The joints is mainly fractured in the Al2O3 ceramic/filler interface when the holding time is short. When the holding time is too long, the reaction layer extends into the middle of the solder and the thickness of TiNi3 layer is greatly increased, and the micro crack is produced in the reaction layer, Which cause the strength of the joint greatly reduced, And then the joint is partly fractured in the filler metal and TiNi3 reaction layer.

    Reference
    Related
    Cited by
Get Citation

[Ye Xiaofeng, Wang Yu, Zhang Hengquan, Fan Baoquan, Ma Xinguang, Fan Yongming. Mechanical properties of alumina ceramic/AgCuTi/GH99 superalloy brazed joints[J]. Rare Metal Materials and Engineering,2018,47(11):3564~3570.]
DOI:[doi]

Copy
Article Metrics
  • Abstract:
  • PDF:
  • HTML:
  • Cited by:
History
  • Received:January 24,2017
  • Revised:October 11,2017
  • Adopted:November 09,2017
  • Online: December 19,2018
  • Published: