Atomistic simulations of phase transformation of copper precipitation and its effect on obstacle strength in α-iron

被引:0
|
作者
Tsuru T. [1 ]
Yosuke A.B.E. [1 ]
Kaji Y. [1 ]
Tsukada T. [1 ]
Jitsukawa S. [1 ]
机构
[1] Japan Atomic Energy Agency, Naka-gun, Ibaraki
关键词
α-iron; Cu precipitation; Edge dislocation; Obstacle strength; Phase transformation; Self-guided molecular dynamics;
D O I
10.2472/jsms.59.583
中图分类号
学科分类号
摘要
The size- and spacing- dependent obstacle strength due to the Cu precipitation in α-Fe is investigated by atomistic simulations, in which the effect on phase transformation of Cu precipitation is considered by a conventional selfguided molecular dynamics (SGMD) method that has an advantage to enhance the conformational sampling efficiency in MD simulations. A sequence of molecular statics simulations of the interaction between a pure edge dislocation and spherical Cu precipitation are performed to investigate the obstacle strength associated with phase transformation. It was shown that the SGMD method can accelerate calculating the bcc to 9R structure transformation of a small precipitate, enabling the transformation without introducing any excess vacancies. Such metallographic structures increase the obstacle strength through strong pinning effects as a result of the complicated atomic rearrangement within the Cu precipitation. © 2010 The Society of Materials Science,.
引用
收藏
页码:583 / 588
页数:5
相关论文
共 50 条
  • [21] Effect of CaO on Copper Loss and Phase Transformation in Copper Slag
    Haipei Zhang
    Bo Li
    Yonggang Wei
    Hua Wang
    Yindong Yang
    Metallurgical and Materials Transactions B, 2022, 53 : 1538 - 1551
  • [22] Effect of CaO on Copper Loss and Phase Transformation in Copper Slag
    Zhang, Haipei
    Li, Bo
    Wei, Yonggang
    Wang, Hua
    Yang, Yindong
    METALLURGICAL AND MATERIALS TRANSACTIONS B-PROCESS METALLURGY AND MATERIALS PROCESSING SCIENCE, 2022, 53 (03): : 1538 - 1551
  • [23] STRENGTH OF AUSTENITE AND ITS EFFECT ON MARTENSITE TRANSFORMATION
    ANKARA, A
    JOURNAL OF THE IRON AND STEEL INSTITUTE, 1970, 208 : 819 - &
  • [24] Effect of Alloying Elements on the α-γ Phase Transformation in Iron
    Meiser, Jerome
    Urbassek, Herbert M.
    MATERIALS, 2019, 12 (08):
  • [25] Effect of copper/tungsten heterophase interface on radiation resistance: Insights from atomistic simulations
    Chen, Wen
    Li, Min
    Fu, Bao-Qin
    Chen, Tun
    Cui, Jie-Chao
    Hou, Qing
    CHINESE PHYSICS B, 2025, 34 (04)
  • [26] Precipitation and phase transformation of copper particles in low alloy ferritic and martensitic steels
    Maruyama, N
    Sugiyama, M
    Hara, T
    Tamehiro, H
    MATERIALS TRANSACTIONS JIM, 1999, 40 (04): : 268 - 277
  • [27] Atomistic simulation of stress-induced phase transformation and recrystallization at the crack tip in bcc iron
    Guo, Ya-Fang
    Wang, Yue-Sheng
    Zhao, Dong-Liang
    ACTA MATERIALIA, 2007, 55 (01) : 401 - 407
  • [28] Microstructural and mechanical analysis on the shock-induced spalling with structural transformation in single crystal iron: Atomistic simulations
    Yu, Jinmin
    Shao, Jianli
    Shu, Hua
    Huang, Xiuguang
    Fu, Sizu
    MATERIALS TODAY COMMUNICATIONS, 2024, 39
  • [29] New Approach to Study Iron Sulfide Precipitation Kinetics, Solubility, and Phase Transformation
    Liu, Ya
    Zhang, Zhang
    Bhandari, Narayan
    Dai, Zhaoyi
    Yan, Fei
    Ruan, Gedeng
    Lu, Alex Y.
    Deng, Guannan
    Zhang, Fangfu
    Al-Saiari, Hamad
    Kan, Amy T.
    Tomson, Mason B.
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2017, 56 (31) : 9016 - 9027
  • [30] An atomistic study on shape-memory effect by shear deformation and phase transformation
    Uehara, T
    Tamai, T
    MECHANICS OF ADVANCED MATERIALS AND STRUCTURES, 2006, 13 (02) : 197 - 204