This article is cited in 6 scientific papers (total in 6 papers)
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Atomic disordering and BCC $\to$ FCC transformation in the Heusler compound Ni$_{54}$Mn$_{20}$Fe$_{1}$Ga$_{25}$ subject to high-pressure torsional megaplastic deformation
Abstract:
The Heusler compound with the $L$2$_1$ Ni$_{54}$Mn$_{20}$Fe$_{1}$Ga$_{25}$ structure subject to high-pressure torsional megaplastic deformation was first systematically studied by in situ methods of X-ray phase analysis and transmission and scanning electron microscopy. It was established that the torsional shear deformation at room temperature reduces the polycrystalline structure of the compound to a nanocrystalline and partially amorphous state. It was revealed that, as the pressure increases from 3 to 5 GPa and the degree of deformation increases from 2 to 5 revolutions, total atomic disordering and sequential structural-phase transformation according to the scheme $B$2(BCC) $\to$$A$2(BCC) $\to$$A$1(FCC) occur. It is shown that annealing at a temperature of 570 K and below causes devitrification of the amorphous phase and annealing at a temperature of 620 K and above causes the restoration of the $L$2$_1$ structure. The dimensional effect of suppressing the thermoelastic martensitic transformation is revealed in the nanostructured austenitic $L$2$_1$ alloy with grains smaller than 80 nm when cooled to 120 K. The capability of the thermoelastic martensitic transformation and of the shape memory is restored in a submicrocrystalline ultrafine-grained alloy after its recrystallization annealing at temperatures above 600 K.
The research was carried out within the state assignment of Ministry of Science and Higher Education of the Russian Federation (theme “Structure” no. AAAA-A18-118020190116-6) and of the Joint Laboratory of the Mikheev Institute of Metal Physics, Ural Branch, Russian Academy of Sciences and of the Yeltsin Ural Federal University.
Citation:
V. G. Pushin, N. N. Kuranova, E. B. Marchenkova, A. V. Pushin, “Atomic disordering and BCC $\to$ FCC transformation in the Heusler compound Ni$_{54}$Mn$_{20}$Fe$_{1}$Ga$_{25}$ subject to high-pressure torsional megaplastic deformation”, Zhurnal Tekhnicheskoi Fiziki, 90:4 (2020), 627–636; Tech. Phys., 65:4 (2020), 602–611
This publication is cited in the following 6 articles:
I.I. Musabirov, R.Y. Gaifullin, A.B. Gadjiev, A.M. Aliev, E.T. Dilmieva, S. Krämer, Yu.S. Koshkid'ko, “Influence of multiaxial isothermal forging on magnetocaloric effect and magnetostructural transition in Ni-Mn-Ga-Si alloy”, Journal of Magnetism and Magnetic Materials, 594 (2024), 171892
Ruslan Gaifullin, Irek Musabirov, “Influence of thermal treatment on the microstructure and martensitic transformation in an as-cast Ni45Mn36In14Co5 alloy”, Materials Today Communications, 40 (2024), 109603
R. Yu. Gaifullin, A. B. Gadzhiev, A. M. Aliev, S. V. Taskaev, I, I. Musabirov, “Magnetocaloric Effect in a Ni2.25Mn0.75Ga0.93Si0.07 Alloy”, Radiotekhnika i elektronika, 68:4 (2023), 346
R. Yu. Gaifullin, A. B. Gadzhiev, A. M. Aliev, S. V. Taskaev, I. I. Musabirov, “Magnetocaloric Effect in a Ni2.25Mn0.75Ga0.93Si0.07 Alloy”, J. Commun. Technol. Electron., 68:4 (2023), 407
Vladimir Pushin, Alexander Korolyov, Nataliya Kuranova, Elena Marchenkova, Yurii Ustyugov, “New Metastable Baro- and Deformation-Induced Phases in Ferromagnetic Shape Memory Ni2MnGa-Based Alloys”, Materials, 15:6 (2022), 2277
I. I. Musabirov, I. M. Safarov, R. M. Galeyev, D. D. Afonichev, R. Y. Gaifullin, V. S. Kalashnikov, E. T. Dilmieva, V. V. Koledov, S. V. Taskaev, R. R. Mulyukov, “Influence of Multi-Axial Isothermal Forging on the Stability of Martensitic Transformation in a Heusler Ni-Mn-Ga Alloy”, Trans Indian Inst Met, 74:10 (2021), 2481