Effect of hydrogen pressure on hydrogenation and pulverization behavior of Sm(CoFeCuZr)z ingot and strip casting flake
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M. Yue | Dongtao Zhang | Weiqiang Liu | Chengzhen Meng | Jianjun Yang | Hong Wang | Z. Shang | Hongguo Zhang
[1] M. V. Zheleznyi,et al. Structural Constituents and Phases in High-Coercivity (Sm,Zr)(Co,Cu,Fe)z Alloys for Permanent Magnets , 2022, Russian Metallurgy (Metally).
[2] T. Ma,et al. Role of nanoscale interfacial defects on magnetic properties of the 2:17-type Sm–Co permanent magnets , 2020 .
[3] Xiangyi Zhang,et al. Heterostructures: new opportunities for functional materials , 2019, Materials Research Letters.
[4] B. Dong,et al. Effect of hydrogen pressure on hydrogen absorption of waste Nd-Fe-B sintered magnets , 2019, Journal of Magnetism and Magnetic Materials.
[5] Shiqiang Liu. Sm–Co high-temperature permanent magnet materials , 2019, Chinese Physics B.
[6] Anas Eldosouky,et al. Hydrogen Reaction with SmCo Compounds: Literature Review , 2018, Journal of Sustainable Metallurgy.
[7] A. A. Lukin,et al. Magnetic Properties of the Sm(Co0.45Fe0.15Cu0.40)5 Alloy Prepared by Strip Casting , 2018, Inorganic Materials: Applied Research.
[8] G. Burkhanov,et al. Effect of sintering in a hydrogen atmosphere on the density and coercivity of (Sm,Zr)(Co,Cu,Fe)Z permanent magnets , 2018 .
[9] Xiaohong Li,et al. Controllably Manipulating Three-Dimensional Hybrid Nanostructures for Bulk Nanocomposites with Large Energy Products. , 2017, Nano letters.
[10] A. Yan,et al. Effect of Mn on Hydrogenation Behavior of Sm(Cobal.Fe0.2MnxCu0.08Zr0.025)7.2 Alloys , 2017, IEEE Transactions on Magnetics.
[11] Qian Zhang,et al. Novel Bimorphological Anisotropic Bulk Nanocomposite Materials with High Energy Products , 2017, Advanced materials.
[12] Xiaohong Li,et al. Three-Dimensional Self-Assembly of Core/Shell-Like Nanostructures for High-Performance Nanocomposite Permanent Magnets. , 2016, Nano letters.
[13] Chengbao Jiang,et al. Single crystal growth and magnetic properties of 2:17-type SmCo magnets , 2015 .
[14] A. Yan,et al. Effect of Fe and Annealing Treatment on Hydrogenation Behavior of Sm(CobalFexCu 0.068Zr0.034)7.33 ( \(\mathbf {{\textit {x}} = 0.237,0.251,0.265}\) ) Alloys , 2014, IEEE Transactions on Magnetics.
[15] A. Yan,et al. Effect of Strip Casting on Microstructure and Magnetic Properties of 2:17 Type Sm-Co Sintered Magnets , 2014, IEEE Transactions on Magnetics.
[16] Wei Li,et al. Development of crystal texture in Nd-lean amorphous Nd9Fe85B6 under hot deformation , 2009 .
[17] I. R. Harris,et al. Multiple recycling of NdFeB-type sintered magnets , 2009 .
[18] Y. Matsuura. Recent development of Nd–Fe–B sintered magnets and their applications , 2006 .
[19] I. R. Harris,et al. Hydrogen Decrepitation and Recycling of NdFeB-type Sintered Magnets , 2006 .
[20] W. Pan,et al. Effect of Heavy Rare Earth Dopants on Hydrogen Incorporation in SmCo 2:17 Type Magnet , 2006 .
[21] M. Kubiś,et al. Hydrogenation disproportionation desorption recombination in Sm–Co alloys by means of reactive milling , 1998 .
[22] I. R. Harris,et al. Study of Sm(Co,Fe,Cu,Zr)7.1 magnets produced using a combination of hydrogen decrepitation and ball milling , 1991 .
[23] I. R. Harris,et al. A study of Nd-Fe-B magnets produced using a combination of hydrogen decrepitation and jet milling , 1989 .
[24] I. R. Harris,et al. The use of hydrogen in the production and characterization of NdFeB magnets , 1988 .
[25] I. R. Harris. The potential of hydrogen in permanent magnet production , 1987 .
[26] I. R. Harris,et al. The hydrogen decrepitation of an Ndi15Fe77B8 magnetic alloy , 1985 .
[27] I. R. Harris,et al. The hydrogenation behaviour of the phases Sm2Co17 and Pr2Co17 , 1985 .
[28] I. R. Harris,et al. Hydrogen decrepitation as a method of powder preparation of a 2:17-type, Sm(Co, Cu, Fe, Zr)8.92 magnetic alloy , 1985 .