Modelling grain-boundary resistance in intergranular dislocation slip transmission

被引:2
|
作者
de Koning, M [1 ]
Miller, R
Bulatov, VV
Abraham, FF
机构
[1] Lawrence Livermore Natl Lab, Livermore, CA 94550 USA
[2] Carleton Univ, Dept Mech & Aerosp Engn, Ottawa, ON K1S 5B6, Canada
[3] IBM Corp, Almaden Res Ctr, Div Res, San Jose, CA 95120 USA
基金
加拿大自然科学与工程研究理事会;
关键词
D O I
10.1080/01418610208240050
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We investigate the resistance on the glide of lattice dislocations between adjacent crystal grains due to the presence of a grain boundary (GB). Applying a combination of molecular dynamics (MD) simulations and a line tension (LT) model we identify the geometrical parameters that are relevant in the description of this process. In the MD simulations we observe slip transmission of dislocation loops nucleated from a crack tip near a series of pure tilt GBs in Ni. The results are rationalized in terms of a LT model for the activation of a Frank-Read source in the presence of a GB. It is found that the slip transmission resistance is a function of only three variables: firstly, the ratio of resolved stress on the incoming slip system to that on the outgoing slip system, secondly, the magnitude of any residual Burgers vector content left in the GB and, thirdly, the angle between the traces of the incoming and outgoing slip planes in the GB plane. Comparison with the MD simulations and experimental data shows that the LT model captures the essential energetics of slip transmission and suggests relatively simple functional relationships between the GB geometry and loading conditions on the one hand and slip transmission resistance on the other.
引用
收藏
页码:2511 / 2527
页数:17
相关论文
共 50 条
  • [21] INTERACTION OF SLIP DISLOCATIONS WITH GRAIN-BOUNDARY STRUCTURE
    FORWOOD, CT
    CLAREBROUGH, LM
    PHILOSOPHICAL MAGAZINE A-PHYSICS OF CONDENSED MATTER STRUCTURE DEFECTS AND MECHANICAL PROPERTIES, 1978, 37 (06): : 837 - 839
  • [22] GRAIN-BOUNDARY SLIP DURING CREEP OF ALUMINIUM
    MCLEAN, D
    JOURNAL OF THE INSTITUTE OF METALS, 1953, 81 (06): : 293 - 300
  • [23] DISCRETE DISLOCATION ANALYSIS OF GRAIN-BOUNDARY ENERGIES
    JAGANNADHAM, K
    MARCINKOWSKI, MJ
    CRYSTAL LATTICE DEFECTS, 1979, 8 (02): : 81 - 94
  • [24] DISLOCATION EMISSION CRITERION - GRAIN-BOUNDARY EFFECT
    SHIUE, ST
    ZHANG, TY
    LEE, S
    JOURNAL OF MATERIALS RESEARCH, 1993, 8 (08) : 1853 - 1857
  • [25] ON THE HIERARCHY OF DISLOCATION DESCRIPTIONS OF GRAIN-BOUNDARY STRUCTURES
    NAZAROV, AA
    ROMANOV, AE
    VALIEV, RZ
    PHYSICA STATUS SOLIDI A-APPLIED RESEARCH, 1990, 122 (02): : 495 - 502
  • [26] ON THE EFFECT OF DISLOCATION SPREADING ON GRAIN-BOUNDARY DIFFUSION
    LOJKOWSKI, W
    WYRZYKOWSKI, J
    SCRIPTA METALLURGICA, 1988, 22 (01): : 17 - 20
  • [27] GRAIN-BOUNDARY INTERNAL-FRICTION AND RELATIONSHIP TO INTERGRANULAR FRACTURE
    COSANDEY, F
    JOURNAL DE PHYSIQUE, 1988, 49 (C-5): : 581 - 586
  • [28] NUCLEATION OF GRAIN-BOUNDARY VOIDS IN THE VICINITY OF AN INTERGRANULAR FATIGUE CRACK
    KIRKWOOD, B
    WEERTMAN, JR
    SCRIPTA METALLURGICA, 1982, 16 (05): : 627 - 632
  • [29] INTERGRANULAR EMBRITTLEMENT OF NICKEL BY HYDROGEN - EFFECT OF GRAIN-BOUNDARY SEGREGATION
    LATANISION, RM
    OPPERHAUSER, H
    METALLURGICAL TRANSACTIONS, 1974, 5 (02): : 483 - 492
  • [30] EFFECT OF GRAIN-BOUNDARY CHEMISTRY AND HYDROGEN ON INTERGRANULAR FRACTURE OF IRON
    SHIN, KS
    MESHII, M
    JOURNAL OF METALS, 1982, 34 (08): : 40 - 40