Growth mechanism of an icosahedral quasicrystal and solute partitioning in a Mg-rich Mg-Zn-Y alloy

被引:8
|
作者
Geng, Jiwei [1 ]
Teng, Xinying [1 ]
Zhou, Guorong [1 ]
Zhao, Degang [1 ]
Leng, Jinfeng [1 ]
机构
[1] Univ Jinan, Sch Mat Sci & Engn, Jinan 250022, Peoples R China
基金
中国国家自然科学基金;
关键词
growth mechanism; solute partitioning; microstructure; icosahedral quasicrystal; Mg-Zn-Y alloy; AS-CAST; PHASE; MICROSTRUCTURE; STRENGTH; BEHAVIOR; ZR; TRANSFORMATIONS;
D O I
10.1557/jmr.2014.81
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The growth mechanism of an icosahedral quasicrystal and solute partitioning in a Mg-rich Mg-Zn-Y alloy were investigated. It is found that the preferred growth directions of the icosahedral quasicrystalline phase (I-phase) are along 5-fold axes and the planes perpendicular to the 5-fold axes grow in a facet manner. Due to the local compositional change at the solid/liquid interface, the planar growth is gradually replaced by cellular growth. During the nucleation of the primary I-phase, on a microscale, the distribution of the Y element is changed and concentrated along 5-fold directions in the remaining liquid. If the cooling rate is relatively slow, there will be more Y element in the remaining liquid after the formation of the primary I-phase. It causes that (I-phase + alpha-Mg) eutectic structures form around the primary I-phase. Almost all the Y element is exhausted after this stage. Especially, under a relatively slow cooling rate, the solute partitioning occurs during the growth process of the primary I-phase, which leads to the microshrinkage cavity and crack defects at the edge of the primary I-phase.
引用
收藏
页码:942 / 949
页数:8
相关论文
共 50 条
  • [21] Effect of Mn on solidification microstructure morphology of quasicrystal phase in Mg-Zn-Y alloy
    Zhang Jinshan
    Du Hongwei
    Liang Wei
    Li Tianbao
    Xu Chunxiang
    Wang Hongxia
    RARE METAL MATERIALS AND ENGINEERING, 2007, 36 (03) : 381 - 385
  • [22] Quasicrystal dissolution and performance of isothermally heat-treated Mg-Zn-Y alloy
    Wan, Di-Qing
    Luo, Xian
    Liu, Ya-Juan
    Yu, Tian
    RARE METALS, 2015, 34 (07) : 452 - 456
  • [23] Precipitation of Icosahedral Qusicrystal Phase in Mg-Zn-Y(ZW61) alloy
    Kwak, Ho Yeon
    Lee, Kap Ho
    KOREAN JOURNAL OF MATERIALS RESEARCH, 2011, 21 (03): : 168 - 173
  • [24] Formation of icosahedral quasicrystal in Zn-Mg-Se alloy
    Kaneko, Y
    Ishimasa, T
    PRICM 4: FORTH PACIFIC RIM INTERNATIONAL CONFERENCE ON ADVANCED MATERIALS AND PROCESSING, VOLS I AND II, 2001, : 2523 - 2526
  • [25] Phonon dispersion curve of icosahedral Mg-Zn-Y quasicrystals
    Brand, RA
    Voss, J
    Hippert, F
    Krisch, M
    Sterzel, R
    Assmus, W
    Fisher, IR
    JOURNAL OF NON-CRYSTALLINE SOLIDS, 2004, 334 : 207 - 209
  • [26] (Icosahedral phase + α-Mg) two phase microstructures in the Mg-Zn-Y ternary system
    Yi, S
    Park, ES
    Ok, JB
    Kim, WT
    Kim, DH
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2001, 300 (1-2): : 312 - 315
  • [27] First Principles Calculations of Solute Sweeping and Stacking Faults in Mg-Zn-Y Alloy
    Sakamoto, Yuichi
    Shirayama, Chihori
    Yamamoto, Yosuke
    Kubo, Rika
    Kiyohara, Motoyuki
    Nishitani, Shigeto R.
    MATERIALS TRANSACTIONS, 2015, 56 (07) : 933 - 936
  • [28] Effect of yttrium on microstructure and quasicrystal's formation in as-cast Mg-Zn-Y alloy
    Shi, F
    Guo, XF
    Zhang, ZM
    RARE METAL MATERIALS AND ENGINEERING, 2005, 34 (11) : 1726 - 1729
  • [29] Triacontahedral growth morphology in icosahedral Zn-Mg-Y alloy
    Tamura, N
    Beyss, M
    Urban, K
    PHILOSOPHICAL MAGAZINE LETTERS, 1996, 74 (02) : 89 - 97
  • [30] Heat Treatment and Morphology Study of Mg-Zn-Y Quasicrystal Alloys
    Wang, Zhifeng
    Zhao, Weimin
    Li, Haipeng
    Wang, Yuemei
    MANUFACTURING PROCESS TECHNOLOGY, PTS 1-5, 2011, 189-193 : 3824 - 3827