Self-energy and interaction energy of stacking fault in fcc metals calculated by embedded-atom method

被引:0
|
作者
何刚
戎咏华
徐祖耀
机构
关键词
EAM; stacking fault energy; twin energy; interaction energy;
D O I
暂无
中图分类号
TG111 [金属物理学];
学科分类号
0702 ; 070205 ;
摘要
The stacking fault energies of five fcc metals (Cu, Ag, Au, Ni and Al) with various quan-tivalences have been calculated by embedded-atom method (EAM). It indicated that the stacking fault energy is mainly determined by the metallic bond-energy and the lattice constant. Thus, monovalent fcc metals should have different stacking fault energies, contrary to Attree’s conclusion. The interaction energy between stacking faults one I 111 I layer apart in a fcc metal is found to be 1/40-1/250 of its self-energy, while it becomes zero when the two stacking faults are two layers apart. The twin energy is just half of the energy of intrinsic stacking fault energy without the consideration of lattice relaxation and the energy of a single intrinsic stacking fault is almost the same as that of extrinsic stacking fault, which are consistent with the results from the calculation of Lennard-Jones force between atoms, but differ from Attree’s result.
引用
收藏
页码:146 / 153
页数:8
相关论文
共 50 条
  • [41] APPLICATION OF THE EMBEDDED-ATOM METHOD TO LIQUID TRANSITION-METALS
    FOILES, SM
    PHYSICAL REVIEW B, 1985, 32 (06): : 3409 - 3415
  • [42] Influence of grain size and stacking-fault energy on deformation twinning in fcc metals
    Ehab El-Danaf
    Surya R. Kalidindi
    Roger D. Doherty
    Metallurgical and Materials Transactions A, 1999, 30 : 1223 - 1233
  • [43] Scaling of stacking fault energy and deformation temperature on strain hardening of FCC metals and alloys
    Liang, Xin
    PHILOSOPHICAL MAGAZINE LETTERS, 2014, 94 (09) : 556 - 563
  • [44] STACKING-FAULT ENERGY INFLUENCE ON LOGARITHMIC TRANSITION CREEP OF METALS WITH FCC LATTICE
    BARINOV, SM
    YUDIN, AA
    FIZIKA METALLOV I METALLOVEDENIE, 1975, 40 (04): : 845 - 848
  • [45] DEVELOPMENT OF ROLLING TEXTURE OF FCC METALS DEPENDENT ON RELATIVE STACKING-FAULT ENERGY
    MUCKLICH, A
    TOBISCH, J
    KLEINSTUCK, K
    KRISTALL UND TECHNIK-CRYSTAL RESEARCH AND TECHNOLOGY, 1978, 13 (09): : 1067 - 1076
  • [46] Influence of grain size and stacking-fault energy on deformation twinning in fcc metals
    El-Danaf, E
    Kalidindi, SR
    Doherty, RD
    METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 1999, 30 (05): : 1223 - 1233
  • [47] Role of stacking fault energy in strengthening due to cryo-deformation of FCC metals
    Sarma, V. Subramanya
    Wang, J.
    Jian, W. W.
    Kauffmann, A.
    Conrad, H.
    Freudenberger, J.
    Zhu, Y. T.
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2010, 527 (29-30): : 7624 - 7630
  • [48] STACKING-FAULT ENERGY AND DELAMINATION WEAR OF SINGLE-PHASE FCC METALS
    SUH, NP
    SAKA, N
    WEAR, 1977, 44 (01) : 135 - 143
  • [49] Role of Stacking Fault Energy on Symmetric and Asymmetric Cyclic Deformation Behavior of FCC Metals
    Mahato, Jayanta Kumar
    De, Partha Sarathi
    Kundu, Amrita
    Chakraborti, Pravash Chandra
    STRUCTURAL INTEGRITY ASSESSMENT, ICONS 2018, 2020, : 691 - 702
  • [50] EFFECT OF STACKING-FAULT ENERGY ON THERMALLY ACTIVATED DISLOCATION GLIDE IN FCC METALS
    SAGAR, V
    DAVIES, CKL
    STEVENS, RN
    INDIAN JOURNAL OF TECHNOLOGY, 1973, 11 (11): : 516 - 522