Pathways of structural and magnetic transition in ferromagnetic shape-memory alloys

被引:20
|
作者
Sullivan, MR [1 ]
Shah, AA [1 ]
Chopra, HD [1 ]
机构
[1] SUNY Buffalo, Dept Aerosp & Mech Engn, Mat Program, Thin Films & Nanosynth Lab, Buffalo, NY 14260 USA
来源
PHYSICAL REVIEW B | 2004年 / 70卷 / 09期
关键词
D O I
10.1103/PhysRevB.70.094428
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A fundamental question in the study of ferromagnetic shape-memory alloys is, what is the nature of the magneto-elastic coupling in these alloys and to what extent does it drive the structural transformation? This question also holds the key to developing new and optimized alloys that combine high strains at low switching field. In the present study, it is shown that the reconfiguration of the micromagnetic structure is completely enslaved to and follows the martensitic structural transformation in these alloys, using Ni-Mn-Ga and Fe-Pd systems. This is determined by developing a new high-speed electronic method to study temperature-dependent domain dynamics, called "magnetic transition spectra." The sequence of structural and magnetic transitions was found to be as follows: Cooling: structural transition followed by micromagnetic reconfiguration; Heating: micromagnetic reconfiguration followed by structural transition.
引用
收藏
页码:094428 / 1
页数:8
相关论文
共 50 条
  • [31] The efficiency of controlling the structural phase transition in Ni-Mn-Ga shape-memory alloys
    Cherechukin, AA
    Glebov, AV
    Krasnoperov, EP
    Shavrov, VG
    Takagi, T
    PRICM 4: FORTH PACIFIC RIM INTERNATIONAL CONFERENCE ON ADVANCED MATERIALS AND PROCESSING, VOLS I AND II, 2001, : 1677 - 1679
  • [32] A multiscale study of hot-extruded CoNiGa ferromagnetic shape-memory alloys
    Samothrakitis, Stavros
    Larsen, Camilla Buhl
    Woracek, Robin
    Heller, Ludek
    Kopecek, Jaromir
    Gerstein, Gregory
    Maier, Hans Juergen
    Rames, Michal
    Tovar, Michael
    Sittner, Petr
    Schmidt, Soren
    Strobl, Markus
    MATERIALS & DESIGN, 2020, 196
  • [33] Magnetic shape-memory alloys: phase transitions and functional properties
    Buchel'nikov, Vasilii D.
    Vasiliev, Alexander N.
    Koledov, V. V.
    Taskaev, S. V.
    Khovaylo, Vladimir V.
    Shavrov, Vladimir G.
    PHYSICS-USPEKHI, 2006, 49 (08) : 871 - 877
  • [34] Phase Transformations in Electrically Conductive Ferromagnetic Shape-Memory Alloys, Their Thermodynamics and Analysis
    Tomáš Roubíček
    Giuseppe Tomassetti
    Archive for Rational Mechanics and Analysis, 2013, 210 : 1 - 43
  • [35] Identification of novel compositions of ferromagnetic shape-memory alloys using composition spreads
    Takeuchi, I
    Famodu, OO
    Read, JC
    Aronova, MA
    Chang, KS
    Craciunescu, C
    Lofland, SE
    Wuttig, M
    Wellstood, FC
    Knauss, L
    Orozco, A
    NATURE MATERIALS, 2003, 2 (03) : 180 - 184
  • [36] Identification of novel compositions of ferromagnetic shape-memory alloys using composition spreads
    I. Takeuchi
    O.O. Famodu
    J.C. Read
    M.A. Aronova
    K.-S. Chang
    C. Craciunescu
    S.E. Lofland
    M. Wuttig
    F.C. Wellstood
    L. Knauss
    A. Orozco
    Nature Materials, 2003, 2 : 180 - 184
  • [37] Phase Transition of Shape-memory Effect in Glassy Shape-memory Polymers
    Lu, Haibao
    BEHAVIOR AND MECHANICS OF MULTIFUNCTIONAL MATERIALS AND COMPOSITES 2013, 2013, 8689
  • [38] Combinatorial Methods Used to Identify New Compositions of Ferromagnetic Shape-Memory Alloys
    Gopal Rao
    MRS Bulletin, 2003, 28 : 332 - 332
  • [39] Martensite Transformation in Ni-Mn-Ga Ferromagnetic Shape-Memory Alloys
    M. L. Richard
    J. Feuchtwanger
    S. M. Allen
    R. C. O’handley
    P. Lázpita
    J. M. Barandiaran
    Metallurgical and Materials Transactions A, 2007, 38 : 777 - 780