Grain boundary complexions and pseudopartial wetting

被引:101
作者
Straumal, B. B. [1 ,2 ,3 ]
Mazilkin, A. A. [1 ,2 ]
Baretzky, B. [1 ]
机构
[1] Karlsruhe Inst Technol, Inst Nanotechnol, Hermann von Helmholtz Pl 1, D-76344 Eggenstein Leopoldshafen, Germany
[2] Russian Acad Sci, Inst Solid State Phys, Ac Ossipyan Str 2, Chernogolovka 142432, Moscow District, Russia
[3] Natl Univ Sci & Technol MISIS, Leninsky Prosp 4, Moscow 119991, Russia
基金
俄罗斯基础研究基金会;
关键词
Grain boundary; Complexions; Pseudopartial wetting; HIGH-PRESSURE TORSION; 2ND SOLID-PHASE; AL-ZN; INTERFACIAL PHASE; BI SEGREGATION; ALLOYS DRIVEN; LIQUID-PHASES; TRANSITIONS; FILMS; BEHAVIOR;
D O I
10.1016/j.cossms.2016.05.006
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The important class of grain boundary (GB) complexions includes the few nanometer thick layers having composition which strongly differs from that of the abutting grains. Such GB complexions are frequently called intergranular films (IGFs) and can be observed close to the lines of wetting, prewetting and premelting complexion transitions in the bulk phase diagrams. In the majority of systems, the direct transition between complete and partial GB wetting takes place (by changing temperature, pressure, etc.). However, in certain conditions the so-called pseudopartial (or pseudoincomplete, or frustrated complete) GB wetting appears in a phase diagram between complete and partial wetting. In case of pseudopartial GB wetting, the thin GB layer of a complexion (IGF or 2-D interfacial phase) can coexist with large droplets (or particles) of the wetting phase with a non-zero dihedral (contact) angle. Thus, such IGFs can be observed in the two-phase (or multiphase) fields of bulk phase diagrams, in the broad intervals of concentrations, temperature and/or pressure. The IGF5 driven by the pseudopartial GB wetting can drastically modify the properties of polycrystals. In this review, we discuss this phenomenon for the technologically important Fe-Nd-B-based hard magnetic alloys, WC-Co cemented carbides and Al-based light alloys. (C) 2016 Elsevier Ltd. All rights reserved.
引用
收藏
页码:247 / 256
页数:10
相关论文
共 129 条
  • [1] MECHANICAL-BEHAVIOR OF AN ALUMINUM-ALLOY WITH FUSIBLE GRAIN-BOUNDARIES
    BAUDELET, B
    DANG, MC
    BORDEAUX, F
    [J]. SCRIPTA METALLURGICA ET MATERIALIA, 1992, 26 (04): : 573 - 578
  • [2] First-order and critical wetting of alkanes on water
    Bertrand, E
    Dobbs, H
    Broseta, D
    Indekeu, J
    Bonn, D
    Meunier, J
    [J]. PHYSICAL REVIEW LETTERS, 2000, 85 (06) : 1282 - 1285
  • [3] ELECTRICAL AND DIELECTRIC BEHAVIOR OF A ZINC-OXIDE COMPOSITE
    BHUSHAN, B
    KASHYAP, SC
    CHOPRA, KL
    [J]. JOURNAL OF APPLIED PHYSICS, 1981, 52 (04) : 2932 - 2936
  • [4] Wetting and spreading
    Bonn, Daniel
    Eggers, Jens
    Indekeu, Joseph
    Meunier, Jacques
    Rolley, Etienne
    [J]. REVIEWS OF MODERN PHYSICS, 2009, 81 (02) : 739 - 805
  • [5] Bose A, 2011, INT J POWDER METALL, V47, P31
  • [6] SPREADING OF NONVOLATILE LIQUIDS IN A CONTINUUM PICTURE
    BROCHARDWYART, F
    DIMEGLIO, JM
    QUERE, D
    DEGENNES, PG
    [J]. LANGMUIR, 1991, 7 (02) : 335 - 338
  • [7] SnO2, ZnO and related polycrystalline compound semiconductors:: An overview and review on the voltage-dependent resistance (non-ohmic) feature
    Bueno, Paulo R.
    Varela, Jose A.
    Longo, Elson
    [J]. JOURNAL OF THE EUROPEAN CERAMIC SOCIETY, 2008, 28 (03) : 505 - 529
  • [8] CRITICAL-POINT WETTING
    CAHN, JW
    [J]. JOURNAL OF CHEMICAL PHYSICS, 1977, 66 (08) : 3667 - 3672
  • [9] Grain boundary complexions
    Cantwell, Patrick R.
    Tang, Ming
    Dillon, Shen J.
    Luo, Jian
    Rohrer, Gregory S.
    Harmer, Martin P.
    [J]. ACTA MATERIALIA, 2014, 62 : 1 - 48
  • [10] Kinetics of the Bi segregation at grain boundaries in polycrystalline Cu
    Chang, LS
    Rabkin, E
    Straumal, BB
    Baretzky, B
    Gust, W
    [J]. INTERGRANULAR AND INTERPHASE BOUNDARIES IN MATERIALS, IIB98, 1999, 294-2 : 585 - 588