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Featured researches published by Y.H. Hou.


AIP Advances | 2018

Effects of intergranular phase on the coercivity for MnBi magnets prepared by spark plasma sintering

J. Cao; Y.L. Huang; Y.H. Hou; G.Q. Zhang; Z. Q. Shi; Zhenchen Zhong; Z.W. Liu

MnBi magnets with a high content of low temperature phase (LTP) and excellent magnetic properties were prepared by spark plasma sintering (SPS) using ball milling powders as precursors without magnetic purification. A complicated intergranular phase, which contains Mn phase, Bi phase, MnO phase, and even amorphous phase in MnBi magnets, was characterized and reported systematically. It was found that the formation of intergranular phase which was contributed by ball milling precursors and sintering mechanism, jointly, had important influence on the magnetic properties. The appropriate content of intergranular phase was beneficial in improving the coercivity due to the strong magnetic isolation effects. The optimum magnetic properties with Mr=26.0 emu/g, Hci= 7.11 kOe and (BH)max=1.53 MGOe at room temperature, and a maximum value Hci= 25.37 kOe at 550 K can be obtained. Strongly favorable magnetic properties make SPSed MnBi magnets an attractive candidate material for small permanent magnets used in high-temperature applications.MnBi magnets with a high content of low temperature phase (LTP) and excellent magnetic properties were prepared by spark plasma sintering (SPS) using ball milling powders as precursors without magnetic purification. A complicated intergranular phase, which contains Mn phase, Bi phase, MnO phase, and even amorphous phase in MnBi magnets, was characterized and reported systematically. It was found that the formation of intergranular phase which was contributed by ball milling precursors and sintering mechanism, jointly, had important influence on the magnetic properties. The appropriate content of intergranular phase was beneficial in improving the coercivity due to the strong magnetic isolation effects. The optimum magnetic properties with Mr=26.0 emu/g, Hci= 7.11 kOe and (BH)max=1.53 MGOe at room temperature, and a maximum value Hci= 25.37 kOe at 550 K can be obtained. Strongly favorable magnetic properties make SPSed MnBi magnets an attractive candidate material for small permanent magnets used in high-t...


Journal of Alloys and Compounds | 2017

Tuning the magnetic transition and magnetocaloric effect in Mn1-xCrxCoGe alloy ribbons

K. Liu; Shengcan Ma; L. Zhang; Y.L. Huang; Y.H. Hou; G.Q. Zhang; W.B. Fan; Y.L. Wang; Y. Wang; J. Cao; K.X. Guo; Zhenchen Zhong


Journal of Magnetism and Magnetic Materials | 2017

Structural, electronic and magnetic properties of RE3+-doping in CoFe2O4: A first-principles study

Y.H. Hou; Y.L. Huang; S.J. Hou; S.C. Ma; Z.W. Liu; Y.F. Ouyang


Journal of Magnetism and Magnetic Materials | 2013

Differences of the magnetic hysteresis behaviors in the magnetostructural transformation Mn1−xVxCoGe alloys

S.C. Ma; Z.C. Zhong; D. H. Wang; H. Ke; Q. Q. Cao; Y.L. Huang; Junming Luo; J.L. Xu; Y.H. Hou; Y. W. Du


Journal of Alloys and Compounds | 2014

Ferromagnetism and double magnetic phase transitions in rapidly solidified Mn1.13Ni1.03Fe0.23Ge0.61 ribbons

S.C. Ma; Y. Wu; Y.L. Huang; Y.Y. Gong; Y.H. Hou; Junfei Ou; Z.C. Zhong; D. H. Wang; Y. W. Du


Journal of Alloys and Compounds | 2014

Microstructure and magnetic properties in melt-spun and annealed Mn0.89Cu0.11CoGe ribbons

Z.C. Zhong; D. Hou; S.C. Ma; Y.L. Huang; Y. Su; Y.H. Hou; G. Song; J. Zhou


Journal of Magnetism and Magnetic Materials | 2017

Effects of intrinsic defects on the electronic structure and magnetic properties of CoFe2O4: A first-principles study

Y.L. Huang; W.B. Fan; Y.H. Hou; K.X. Guo; Y.F. Ouyang; Z.W. Liu


European Physical Journal B | 2013

The magnetocaloric effect in the vicinity of compensation temperature of ferrimagnetic DyCo4Al alloy

S.C. Ma; Z.C. Zhong; Dunhui Wang; Junming Luo; J.L. Xu; Y.L. Huang; Y.H. Hou; Jun He; Q. Q. Cao; Youwei Du


Journal of Physics D | 2018

Grain boundary diffusion of Dy films prepared by magnetron sputtering for sintered Nd–Fe–B magnets

W Chen; J M Luo; Y W Guan; Y.L. Huang; M Chen; Y.H. Hou


Journal of Physics D | 2018

Microstructure and improved magnetocaloric properties: a LaFeSi/LaAl magnets prepared by spark plasma sintering technique

Wenbing Fan; Y.H. Hou; Xianjin Ge; Y.L. Huang; Junmin Luo; Z.C. Zhong

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Y.L. Huang

Nanchang Hangkong University

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Z.C. Zhong

Nanchang Hangkong University

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Z.W. Liu

South China University of Technology

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Zhenchen Zhong

Jiangxi University of Science and Technology

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G.Q. Zhang

Nanchang Hangkong University

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J. Cao

Nanchang Hangkong University

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J.L. Xu

Nanchang Hangkong University

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Junming Luo

Nanchang Hangkong University

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