Micromagnetic Simulation of Increased Coercivity of (Sm, Zr)(Co, Fe, Cu)z Permanent Magnets

被引:1
作者
Zheleznyi, Mark V. [1 ,2 ,3 ]
Kolchugina, Natalia B. [1 ,2 ]
Kurichenko, Vladislav L. [3 ]
Dormidontov, Nikolay A. [1 ,2 ]
Prokofev, Pavel A. [2 ]
Milov, Yuriy V. [1 ]
Andreenko, Aleksandr S. [1 ]
Sipin, Ivan A. [1 ]
Dormidontov, Andrey G. [1 ]
Bakulina, Anna S. [2 ]
机构
[1] LLC Magnitoelectromechan, Ul Tvardovskogo 8,Build 1, Moscow 123458, Russia
[2] Russian Acad Sci, Baikov Inst Met & Mat Sci, Leninskii Pr 49, Moscow 119334, Russia
[3] Natl Univ Sci & Technol MISiS, Leninskii Pr 4, Moscow 119991, Russia
基金
俄罗斯科学基金会;
关键词
high-energy permanent magnets; (Sm; Zr)(Co; Cu; Fe)(z); alloys; as-cast state; coherent 1:5 phase; micromagnetic simulation; sandwich model; MuMax3; PHASE-TRANSFORMATION; HIGH-TEMPERATURE; MICROSTRUCTURE; SM2CO17; CU;
D O I
10.3390/cryst13020177
中图分类号
O7 [晶体学];
学科分类号
0702 ; 070205 ; 0703 ; 080501 ;
摘要
The finite element micromagnetic simulation is used to study the role of complex composition of 2:17R-cell boundaries in the realization of magnetization reversal processes of (Sm, Zr)(Co, Cu, Fe)(z) alloys intended for high-energy permanent magnets. A modified sandwich model is considered for the combinations of 2:7R/1:5H phase and 5:19R/1:5H phase layers as the 2:17R-cell boundaries in the alloy structure. The results of the simulation represented in the form of coercive force vs. total width of cell boundary showed the possibility of reaching the increased coercivity at the expense of 180 degrees-domain wall pinning at the additional barriers within cell boundaries. The phase and structural states of the as-cast Sm1-xZrx(Co0.702Cu0.088Fe0.210)(z) alloy sample with x = 0.13 and z = 6.4 are studied, and the presence of the above phases in the vicinity of the 1:5H phase was demonstrated.
引用
收藏
页数:10
相关论文
共 21 条
[1]   Preparation, Characterization, and Modeling of Ultrahigh Coercivity Sm-Co Thin Films [J].
Akdogan, O. ;
Sepehri-Amin, H. ;
Dempsey, N. M. ;
Ohkubo, T. ;
Hono, K. ;
Gutfleisch, O. ;
Schrefl, T. ;
Givord, D. .
ADVANCED ELECTRONIC MATERIALS, 2015, 1 (05)
[2]   INTERMETALLIC COMPOUNDS OF RARE-EARTH AND 3D TRANSITION-METALS [J].
BUSCHOW, KHJ .
REPORTS ON PROGRESS IN PHYSICS, 1977, 40 (10) :1179-1256
[3]   Giant elastocaloric effect with wide temperature window in an Al-doped nanocrystalline Ti-Ni-Cu shape memory alloy [J].
Chen, Hong ;
Xiao, Fei ;
Liang, Xiao ;
Li, Zhenxing ;
Li, Zhu ;
Jin, Xuejun ;
Fukuda, Takashi .
ACTA MATERIALIA, 2019, 177 :169-177
[4]   Structure of Alloys for (Sm,Zr)(Co,Cu,Fe)z Permanent Magnets: III. Matrix and Phases of the High-Coercivity State [J].
Dormidontov, Andrey G. ;
Kolchugina, Natalia B. ;
Dormidontov, Nikolay A. ;
Zheleznyi, Mark V. ;
Bakulina, Anna S. ;
Prokofev, Pavel A. ;
Andreenko, Aleksandr S. ;
Milov, Yury V. ;
Sysoev, Nikolay N. .
MATERIALS, 2021, 14 (24)
[5]   Structure of Alloys for (Sm,Zr)(Co,Cu,Fe)z Permanent Magnets: II. Composition, Magnetization Reversal, and Magnetic Hardening of Main Structural Components [J].
Dormidontov, Andrey G. ;
Kolchugina, Natalia B. ;
Dormidontov, Nikolay A. ;
Milov, Yury, V ;
Andreenko, Alexander S. .
MATERIALS, 2020, 13 (23) :1-17
[6]   Structure of Alloys for (Sm,Zr)(Co,Cu,Fe)ZPermanent Magnets: First Level of Heterogeneity [J].
Dormidontov, Andrey G. ;
Kolchugina, Natalia B. ;
Dormidontov, Nikolay A. ;
Milov, Yury, V .
MATERIALS, 2020, 13 (17)
[7]   INVESTIGATIONS OF THE MAGNETIC-PROPERTIES AND DEMAGNETIZATION PROCESSES OF AN EXTREMELY HIGH COERCIVE SM(CO, CU, FE, ZR)7.6 PERMANENT-MAGNET .2. THE COERCIVITY MECHANISM [J].
DURST, KD ;
KRONMULLER, H ;
ERVENS, W .
PHYSICA STATUS SOLIDI A-APPLIED RESEARCH, 1988, 108 (02) :705-719
[8]   Micromagnetism and the microstructure of high-temperature permanent magnets [J].
Goll, D ;
Kronmüller, H ;
Stadelmaier, HH .
JOURNAL OF APPLIED PHYSICS, 2004, 96 (11) :6534-6545
[9]   Samarium-cobalt 2:17 magnets: Analysis of the coercive field of Sm2(CoFeCuZr)17 high-temperature permanent magnets [J].
Goll, D. ;
Stadelmaier, H. H. ;
Kronmueller, H. .
SCRIPTA MATERIALIA, 2010, 63 (02) :243-245
[10]   Micromagnetic analysis of pinning-hardened nanostructured, nanocrystalline Sm2Co17 based alloys [J].
Kronmüller, H ;
Goll, D .
SCRIPTA MATERIALIA, 2002, 47 (08) :545-550