Mechanism of grain refinement during equal-channel angular pressing in an Al-Mg-Sc alloy

被引:0
|
作者
机构
[1] Malopheyev, S.
[2] Kulitskiy, V.
[3] Gazizov, M.
[4] Kaibyshev, R.
来源
Malopheyev, S. (malofeev@bsu.edu.ru) | 1600年 / Institute for Problems in Mechanical Engineering, Russian Academy of Sciences卷 / 47期
关键词
Grain size and shape - Dynamic recrystallization - Equal channel angular pressing - Zirconium alloys - Aluminum alloys - Magnesium alloys - Manganese alloys - Scandium alloys - Ternary alloys;
D O I
暂无
中图分类号
学科分类号
摘要
The mechanism of grain refinement of an Al-5.4Mg-0.4Mn-0.2Sc-0.09Zr alloy subjected to equal-channel angular pressing (ECAP) with a back pressure (BP) for up to 12 passes via route BC at 573K (300 °C) was studied. New grains form through a specific mechanism of continuous dynamic recrystallization (CDRX). The formation of microshear bands (MSB) enclosed by a pair of geometrically necessary boundaries (GNBs) and the splitting of initial boundaries to pairs of mutually parallel boundaries plays a vital role in initiation of recrystallization process. Transformation of the 2D lamellar structure to 3D crystallites occurs through the intersection of primary MSBs by secondary MSBs, mainly. Upon further deformation the GNBs evolve to planar sub-boundaries and then to high-angle boundaries. The formation of primary MSBs is associated with the appearance of texture α-fiber, and the appearance of a new type of shear texture, which is an axial {112} texture of orientation around the transverse direction accompanies the formation of ultra-fine grains. © 2016 Advanced Study Center Co. Ltd.
引用
收藏
页码:1 / 2
相关论文
共 50 条
  • [1] MECHANISM OF GRAIN REFINEMENT DURING EQUAL-CHANNEL ANGULAR PRESSING IN AN Al-Mg-Sc ALLOY
    Malopheyev, S.
    Kulitskiy, V.
    Gazizov, M.
    Kaibyshev, R.
    REVIEWS ON ADVANCED MATERIALS SCIENCE, 2016, 47 (1-2) : 26 - 41
  • [2] Evolution of the microstructure of the Al-Mg-Sc alloy upon equal-channel angular pressing
    Mazurina, I.A.
    Sitdikov, O.Sh.
    Kajbyshev, R.O.
    2002, Nauka, Ekaterinburg (94):
  • [3] Evolution of the microstructure of the Al-Mg-Sc alloy upon equal-channel angular pressing
    Mazurina, IA
    Sitdikov, OS
    Kaybyshev, RO
    PHYSICS OF METALS AND METALLOGRAPHY, 2002, 94 (04): : 413 - 420
  • [4] Al-Mg-Sc ALLOYS PROCESSED BY EQUAL-CHANNEL ANGULAR PRESSING
    Slapakova, Michaela
    Krivska, Barbora
    Bajer, Jan
    Grydin, Olexandr
    Cieslar, Miroslav
    METAL 2017: 26TH INTERNATIONAL CONFERENCE ON METALLURGY AND MATERIALS, 2017, : 1501 - 1506
  • [5] Grain refinement in an Al-Mg-Sc alloy: Equal channel angular pressing versus friction-stir processing
    Kulitskiy, Vladislav
    Malopheyev, Sergey
    Mironov, Sergey
    Kaibyshev, Rustam
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2016, 674 : 480 - 490
  • [6] Grain boundary structure in Al-Mg and Al-Mg-Sc alloys after equal-channel angular pressing
    Oh-ishi, K
    Horita, Z
    Smith, DJ
    Langdon, TG
    JOURNAL OF MATERIALS RESEARCH, 2001, 16 (02) : 583 - 589
  • [7] Superplasticity in an ultrafine-grained Al-Mg-Sc alloy produced by equal-channel angular pressing
    Komura, S
    Berbon, PB
    Utsunomiya, A
    Furukawa, M
    Horita, Z
    Nemoto, M
    Langdon, TG
    HOT DEFORMATION OF ALUMINUM ALLOYS II, 1999, : 125 - 138
  • [8] Microstructural and texture changes during equal channel angular pressing of an Al-Mg-Sc alloy
    Sitdikov, Oleg
    Avtokratova, Elena
    Sakai, Taku
    JOURNAL OF ALLOYS AND COMPOUNDS, 2015, 648 : 195 - 204
  • [9] Fatigue life of fine-grain Al-Mg-Sc alloys produced by equal-channel angular pressing
    Vinogradov, A
    Washikita, A
    Kitagawa, K
    Kopylov, VI
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2003, 349 (1-2): : 318 - 326
  • [10] Effect of Temperature on the Formation of a Microstructure upon Equal-Channel Angular Pressing of the Al-Mg-Sc 1570 Alloy
    Sitdikov, O. Sh.
    Avtokratova, E. V.
    Babicheva, R. I.
    PHYSICS OF METALS AND METALLOGRAPHY, 2010, 110 (02): : 153 - 161