+Advanced Search
Molecular Dynamics Simulation of High-Nitrogen Stainless Steel Brazed by AgCuNi Filler Metal
Author:
Affiliation:

1.Henan International Joint Laboratory of High-Efficiency Special Green Welding, North China University of Water Resources and Electric Power, Zhengzhou 450045, China;2.State Key Laboratory of Advanced Welding and Joining, Harbin Institute of Technology, Harbin 150001, China;3.Harbin Welding Institute Co., Ltd, Harbin 150028, China;4.Jinhua Polytechnic, Jinhua 321017, China;5.Xi'an Research Institute Co., Ltd, China Coal Technology Engineering Group, Xi'an 710077, China;6.State Key Laboratory of Advanced Brazing Filler Metals and Technology, Zhengzhou Research Institute of Mechanical Engineering Co., Ltd, Zhengzhou 450001, China

Clc Number:

TG454

Fund Project:

National Natural Science Foundation of China (51975150, 52071165); Natural Science Foundation Excellent Youth Project of Henan Province (202300410268); China Postdoctoral Science Foundation (2019M651280, 2019M662011); Open Fund of State Key Laboratory of Advanced Brazing Filler Metals and Technology (SKLABFMT201901); Open Fund of State Key Laboratory of Advanced Welding and Joining (AWJ-21M11)

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

    The element diffusion process of the binary systems (Fe-Cu and Fe-Ni) in the vacuum brazing of high-nitrogen stainless steel with AgCuNi filler was investigated by Lammps software for molecular dynamics simulation analysis. Results show that the mutual diffusion phenomena of Fe-Cu and Fe-Ni binary systems are obvious, and the thickness of the diffusion layer is increased with increasing the diffusion time. In the Fe-Cu diffusion process, only the mutual atom diffusion occurs; whereas not only the mutual atom diffusion, but also the formation of mesophase occurs in the Fe-Ni diffusion process. In the Fe-Cu binary system, the mean square displacement (MSD) and diffusion coefficient of Fe atom are greater than those of Cu atom, so the diffusion ability of Fe atom is better than that of Cu atom. Similarly, in the Fe-Ni binary system, MSD and diffusion coefficient of Fe atom are greater than those of Ni atom, so the diffusion ability of Fe atom is also better than that of Ni atom. With increasing the diffusion temperature, MSD and diffusion coefficient of atoms are increased, and their diffusion ability is enhanced.

    Reference
    Related
    Cited by
Get Citation

[Wang Xingxing, Chang Jiashuo, Gao Di, Fang Naiwen, Zhang Shuye, Yang Xiaohong, Wen Guodong, Wu Shengjin, Long Weimin, He Peng. Molecular Dynamics Simulation of High-Nitrogen Stainless Steel Brazed by AgCuNi Filler Metal[J]. Rare Metal Materials and Engineering,2022,51(9):3223~3229.]
DOI:10.12442/j. issn.1002-185X.20210687

Copy
Article Metrics
  • Abstract:
  • PDF:
  • HTML:
  • Cited by:
History
  • Received:August 02,2021
  • Revised:December 05,2021
  • Adopted:January 29,2022
  • Online: September 30,2022
  • Published: September 27,2022