Phase evolution and thermal stability of 2 Mg-Cu alloys processed by mechanical alloying

被引:7
|
作者
Martinez, C. [1 ]
Ordonez, S. [1 ]
Guzman, D. [2 ]
Serafini, D. [3 ]
Iturriza, I. [4 ]
Bustos, O. [1 ]
机构
[1] Univ Santiago Chile, Dept Ingn Metalurg, Fac Ingn, Santiago 10233, Chile
[2] Univ Atacama, Dept Ingn Metalurgia, Fac Ingn, Copiapo, Chile
[3] Univ Santiago Chile, Fac Ciencia, Dept Fis, Santiago, Chile
[4] CEIT, San Sebastian 20018, Spain
关键词
Nanostructured materials; Mechanical alloying; Magnesium; Copper; Mg2Cu amorphous precursor; AMORPHOUS PRECURSOR; HYDROGEN SORPTION; MG2NI; MAGNESIUM; ENERGY; NI; HYDRIDES; STORAGE; MG2CU;
D O I
10.1016/j.jallcom.2013.07.064
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
Phase evolution during mechanical alloying (MA) of elemental Mg and Cu powders and their subsequent heat treatment is studied. Elemental Mg and Cu powders in a 2:1 atomic ratio were mechanically alloyed in a SPEX 8000D mill using a 10:1 ball-to-powder ratio. X-ray diffraction (XRD) shows that the formation of the intermetallic Mg2Cu takes place between 3 and 4 h of milling, although traces of elemental Cu are still present after 10 h of milling. The thermal behavior of different powder mixtures was evaluated by differential scanning calorimetry (DSC). The combination of DSC, heat treatment and XRD has shown a sequence of phase transformations that results in the intermetallic Mg2Cu from an amorphous precursor. This amorphous phase is converted into Mg2Cu by heating at low temperature (407 K). Short MA times and the formation of the amorphous precursor, together with its subsequent transformation into Mg2Cu at low temperatures; represent an advantageous alternative route for its preparation. (c) 2013 Elsevier B.V. All rights reserved.
引用
收藏
页码:241 / 245
页数:5
相关论文
共 50 条
  • [41] Development of Mg based hydrogen absorbing alloys prepared by mechanical alloying
    Nobuki, Tohru
    Kanekawa, Shohei
    Hatate, Minoru
    Takenaka, Hiroyasu
    Kuji, Toshiro
    JOURNAL OF ALLOYS AND COMPOUNDS, 2013, 580 : S259 - S263
  • [42] Thermal stability of amorphous Ti-Cu-Ni-Snprepared by mechanical alloying
    Oanh, N. T. H.
    Choi, P. P.
    Kim, J. S.
    Kwon, D. H.
    Kwon, Y. S.
    PROGRESS IN POWDER METALLURGY, PTS 1 AND 2, 2007, 534-536 : 233 - +
  • [43] Evaluating the Thermal Stability of a Cu – 50% Cr Composite Obtained by Mechanical Alloying
    A. S. Prosviryakov
    Metal Science and Heat Treatment, 2013, 55 : 309 - 312
  • [44] Mechanical alloying and milling of Al-Mg alloys
    Scudino, S.
    Sakaliyska, M.
    Surreddi, K. B.
    Eckert, J.
    JOURNAL OF ALLOYS AND COMPOUNDS, 2009, 483 (1-2) : 2 - 7
  • [45] Development of high strength Mg alloys by mechanical alloying
    Yoshimoto, S
    Matsuda, M
    Yamasaki, M
    Kawamura, Y
    MAGNESIUM ALLOYS 2003, PTS 1 AND 2, 2003, 419-4 : 763 - 768
  • [46] Effect of Al substitution on phase evolution in synthesized Mg2Cu nanoparticles
    Mohseni-Sohi, Elham
    Bozorg, Farshid Kashani
    INTERNATIONAL JOURNAL OF MINERALS METALLURGY AND MATERIALS, 2023, 30 (01) : 63 - 71
  • [47] Development of biodegradable Fe-Mn-Mg alloys by mechanical alloying and spark plasma sintering
    Ueki, Kosuke
    Hirano, Ryo
    Nakai, Masaaki
    MATERIALS TODAY COMMUNICATIONS, 2023, 34
  • [48] Enhancing the Mechanical Properties of Biodegradable Mg Alloys Processed by Warm HPT and Thermal Treatments
    Mizelli-Ojdanic, Andrea
    Horky, Jelena
    Mingler, Bernhard
    Fanetti, Mattia
    Gardonio, Sandra
    Valant, Matjaz
    Sulkowski, Bartosz
    Schafler, Erhard
    Orlov, Dmytro
    Zehetbauer, Michael J.
    MATERIALS, 2021, 14 (21)
  • [49] Thermal Stability and Mechanical Properties of Extruded Mg-Zn-Y Alloys with Long-Period Stacking Order Phase
    Noda, Masafumi
    Kawamura, Yoshihito
    PRICM 7, PTS 1-3, 2010, 654-656 : 611 - +
  • [50] Microstructure and Microhardnessof the Al-10Mg Alloy Processed by the Mechanical Alloying Technique
    Sanchez-Cuevas, J. J.
    Zarate-Medina, J.
    Navarro, O.
    Mercado-Zuniga, C.
    Reynoso-Marin, F. J.
    Rosas, G.
    SCIENCE OF SINTERING, 2020, 52 (02) : 123 - 133