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Ga2O3对Ag30CuZnSn药芯银钎料钎缝组织及钎焊接头性能的影响

Translated title of the contribution: Effect of Ga2O3 on of microstructure and properties of brazed joints obtained by Ag30CuZnSn flux cored brazing filler metal and brass
  • Juan Pu
  • , Songbai Xue
  • , Mingfang Wu
  • , Weimin Long
  • , Shuiqing Wang
  • , Tiesong Lin
  • Nanjing University of Aeronautics and Astronautics
  • Jiangsu University of Science and Technology
  • China Innovation Academy of Intelligent Equipment Co.,Ltd.
  • Zhejiang Xinrui Welding Technology Co., Ltd

Research output: Contribution to journalArticlepeer-review

Abstract

The effect of Ga2O3 on the microstructure and properties of brazed joints formed by Ag30CuZnSn flux cored brazing filler metal brazed brass was studied when adding Ga2O3 into flux cored brazing powders. The results showed that the micro amount of Ga2O3 additions can significantly improve the wettability of Ag30CuZnSn flux cored brazing filler metal and reduce the flux additions. When the content of Ga2O3 was 0.4 %, the wettability of Ag30CuZnSn flux cored brazing filler metal and the shear strength of brazed joint was up to the optimum. This was attributed to the fact that Ga2O3 was a surfactant, which can significantly reduce the interfacial tension between the molten brazing filler metal and the base metal, to improve the effect of removing oxide film of flux powders. Finally, the wettability of Ag30CuZnSn flux cored brazing filler metal was improved. In the process of flame brazing, when Ga2O3 addition was 0.4 %, the shear strength of brazed joint was increased by more than 11% owing to the microstructure refinement of brazing seam and the increase of brazed rate (the brazed rate was increased to more than 95%). The fracture morphology of the brazed joint proved the above results.

Translated title of the contributionEffect of Ga2O3 on of microstructure and properties of brazed joints obtained by Ag30CuZnSn flux cored brazing filler metal and brass
Original languageChinese (Traditional)
Pages (from-to)46-52
Number of pages7
JournalHanjie Xuebao/Transactions of the China Welding Institution
Volume41
Issue number7
DOIs
StatePublished - 25 Jul 2020

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