Near coincidence grain boundary in alumina

被引:2
|
作者
Lartigue-Korinek, S
Hagège, S
机构
[1] Univ Paris 11, Lab Etud Mat Hors Equilibre, F-91405 Orsay, France
[2] Ctr Etud Chim Met, CNRS, UPR 2801, F-94407 Vitry Sur Seine, France
来源
INTERGRANULAR AND INTERPHASE BOUNDARIES IN MATERIALS, IIB98 | 1999年 / 294-2卷
关键词
alumina; twin boundary; near coincidence orientation; intrinsic dislocations; TEM; HREM;
D O I
10.4028/www.scientific.net/MSF.294-296.281
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The rhombohedral twin orientation in alumina has been obtained by diffusion bonding and studied by transmission electron microscopy. It corresponds to a Sigma 7 near coincidence orientation with a grain boundary plane parallel to (01 (1) over bar 2). The grain boundary contains two arrays of dislocations with the same line direction and alternately distributed Burgers vectors which are translation vectors of the DSC lattice. The associated step vectors are large, up to 1.75 nm. Starting from symmetry considerations on the various dichromatic complexes, all possible unrelaxed atomic configurations are constructed. Oxygen terminated grain boundary structures as well as those passing through non occupied aluminium sites are selected on the basis of optimal compacity at the interface. Correlations between simulated and experimental high resolution images favor the structures based on empty octahedral sites at the interface. The most probable structure has a two fold screw axis at the interface and leaves Al-O bonds with very little distorsions from the perfect coordination in alumina.
引用
收藏
页码:281 / 284
页数:4
相关论文
共 50 条
  • [41] Atomic structural environment of grain boundary segregated Y and Zr in creep resistant alumina from EXAFS
    Wang, CM
    Cargill, GS
    Harmer, MP
    Chan, HM
    Cho, J
    ACTA MATERIALIA, 1999, 47 (12) : 3411 - 3422
  • [42] Observation of Cu-rich grain boundary nanoparticles and complexions in Cu/Ti-doped alumina
    Marvel, C. J.
    Kracum, M. R.
    Yu, Z.
    Harmer, M. P.
    Chan, H. M.
    SCRIPTA MATERIALIA, 2018, 157 : 34 - 38
  • [43] ANISOTROPY OF GRAIN-GROWTH IN ALUMINA
    RODEL, J
    GLAESER, AM
    JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 1990, 73 (11) : 3292 - 3301
  • [44] Abnormal grain growth mechanism in alumina
    Bang, Hee-Gon
    Song, Jun-Ho
    Park, Sang-Yeup
    ECO-MATERIALS PROCESSING & DESIGN VII, 2006, 510-511 : 474 - 477
  • [45] Atomistic simulation of grain boundaries in alumina
    Exner, M
    Finnis, MW
    INTERGRANULAR AND INTERPHASE BOUNDARIES IN MATERIALS, PT 1, 1996, 207- : 225 - 228
  • [46] A model for time-dependent grain boundary diffusion of ions and electrons through a film or scale, with an application to alumina
    Tautschnig, M. P.
    Harrison, N. M.
    Finnis, M. W.
    ACTA MATERIALIA, 2017, 132 : 503 - 516
  • [47] Investigation of grain boundary sliding during superplastic deformation of a fine-grained alumina by atomic force microscopy
    Clarisse, L
    Bataille, A
    Pennec, Y
    Crampon, J
    Duclos, R
    CERAMICS INTERNATIONAL, 1999, 25 (04) : 389 - 394
  • [48] Wear of yttria-doped alpha-alumina: effects of grain-boundary composition and machine stiffness
    Krefetz, SB
    Fischer, TE
    WEAR, 1997, 211 (01) : 141 - 145
  • [49] TEM Characterization of Near Sub-Grain Boundary Dislocations in Directionally Solidified Multicrystalline Silicon
    Kivambe, Maulid
    Stokkan, Gaute
    Ervik, Torunn
    Ryningen, Birgit
    Lohne, Otto
    GETTERING AND DEFECT ENGINEERING IN SEMICONDUCTOR TECHNOLOGY XIV, 2011, 178-179 : 307 - +
  • [50] EFFECT OF GRAIN-BOUNDARY DOPANTS AND MEAN GRAIN-SIZE ON TRIBOMECHANICAL BEHAVIOR OF HIGHLY PURIFIED ALPHA-ALUMINA IN THE MILD WEAR REGIME
    HAH, SR
    FISCHER, TE
    GRUFFEL, P
    CARRY, C
    WEAR, 1995, 181 : 165 - 177