Nanophase intermetallic FeAl obtained by sintering after mechanical alloying

被引:32
|
作者
D'Angelo, L. [1 ]
D'Onofrio, L. [2 ]
Gonzalez, G. [3 ]
机构
[1] UNEXPO, Dept Mecan, Luis Caballero Mejias, Charallave, Venezuela
[2] Cent Univ Venezuela, Fac Ciencias, Dpto Fis, Caracas, Venezuela
[3] Inst Venezolano Invest Cient, Ctr Tecnol, Mat Lab, Caracas 1020A, Venezuela
关键词
Intermetallic; Mechanical alloying; Sintering; NANOCRYSTALLINE FEAL; LOW-TEMPERATURE; AL; CONSOLIDATION; DIFFRACTION; DUCTILITY; PRESSURE; POWDERS; SYSTEM;
D O I
10.1016/j.jallcom.2008.07.208
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The preparation of bulk nanophase materials from nanocrystalline powders has been carried out by the application of sintering at high pressure. Fe-50 at.%Al system has been prepared by mechanical alloying for different milling periods from 1 to 50 h, using vials and balls of stainless steel and a ball-to-powder weight ratio (BPR) of 8:1 in a SPEX 8000 mill. Sintering of the 5 and 50 h milled powders was performed under high uniaxial pressure at 700 degrees C. The characterization of powders from each interval of milling was performed by X-ray diffraction, Mossbauer spectroscopy, scanning and transmission electron microscopy. After 5 h of milling formation of a nanocrystalline alpha-Fe(Al) solid solution that remains stable up to 50 h occurs. The grain size decreases to 7 nm after 50 h of milling. The sintering of the milled powders resulted in a nanophase-ordered FeAl alloys with a grain size of 16 nm. Grain growth during sintering was very small due to the effect of the high pressure applied. (C) 2008 Elsevier B.V. All rights reserved.
引用
下载
收藏
页码:154 / 158
页数:5
相关论文
共 50 条
  • [1] Effects of minor element additions to the nanocrystalline feal intermetallic alloy obtained by mechanical alloying
    Esparza, R
    Rosas, G
    Ascencio, JA
    Pérez, R
    MATERIALS AND MANUFACTURING PROCESSES, 2005, 20 (05) : 823 - 832
  • [2] Ordering and reordering of nanophase FeAl intermetallics synthesized by mechanical alloying
    Tan, Q
    CHINESE PHYSICS LETTERS, 1996, 13 (11): : 851 - 854
  • [3] Study of the synthesis and sintering of nanophase Fe73Al27 obtained by mechanical alloying
    Gonzalez, G
    D'Angelo, L
    Ochoa, J
    D'Onofrio, L
    METASTABLE, MECHANICALLY ALLOYED AND NANOCRYSTALLINE MATERIALS, ISMANAM-2000, 2001, 360-3 : 349 - 354
  • [4] Influence of milling conditions on the FeAl intermetallic formation by mechanical alloying
    Wolski, K
    LeCaer, G
    Delcroix, P
    Fillit, R
    Thevenot, F
    LeCoze, J
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 1996, 207 (01): : 97 - 104
  • [5] Manufacture of Porous FeAl Intermetallics Produced by Mechanical Alloying and Sintering
    He Yuanzhang
    Liu Jinglei
    Xu Hong
    Li Dawei
    Ye Xianyong
    AUTOMATION EQUIPMENT AND SYSTEMS, PTS 1-4, 2012, 468-471 : 2028 - 2032
  • [6] Mechanical alloying of FeAl intermetallic powder for metal injection moulding process
    Song, H. X.
    Wu, Y. X.
    Yuan, S.
    Gong, Q. M.
    Park, S. -J.
    German, Randall M.
    POWDER METALLURGY, 2010, 53 (03) : 208 - 212
  • [7] Mechanical alloying of FeAl
    Knutson-Wedel, EM
    Asberg, M
    ELECTRON MICROSCOPY AND ANALYSIS 1997, 1997, (153): : 545 - 548
  • [8] Comparative study for the formation of the NiAl, TiAl, FeAl intermetallic compounds by mechanical alloying
    D'Angelo, L
    Ochoa, J
    Gonzalez, G
    ISMANAM 2003: METASTABLE, MECHANICALLY ALLOYED AND NANOCRYSTALLINE MATERIALS, 2004, 20-21 : 231 - 236
  • [9] Microstructure evolution and mechanical properties of nanocrystalline FeAl obtained by mechanical alloying and cold consolidation
    Mhadhbi, M.
    Khitouni, M.
    Escoda, L.
    Sunol, J. J.
    Dammak, M.
    JOURNAL OF ALLOYS AND COMPOUNDS, 2011, 509 (07) : 3293 - 3298
  • [10] Nanocrystalline FeAl intermetallic produced by mechanical alloying followed by hot-pressing consolidation
    Krasnowski, M.
    Kulik, T.
    INTERMETALLICS, 2007, 15 (02) : 201 - 205