Effective microstructure optimization and coercivity enhancement of sintered Nd–Fe–B magnet by grain boundary diffusion of Pr60Tb13Al27 alloy
暂无分享,去创建一个
Lei Jin | Shuai Guo | G. Ding | A. Yan | Bo Zheng | Jinhao Zhu | Zhehuan Jin | Ren-jie Chen | Xincai Liu
[1] H. Sepehri-Amin,et al. Improved coercivity and squareness in bulk hot-deformed Nd–Fe–B magnets by two-step eutectic grain boundary diffusion process , 2021 .
[2] Zhenlun Song,et al. Coercivity enhancement of sintered Ce-substituted Nd-Fe-B magnets by grain boundary diffusion process of Tb , 2020 .
[3] Shuai Guo,et al. Microstructure of core-shell NdY-Fe-B sintered magnets with a high coercivity and excellent thermal stability , 2020 .
[4] X. Zhong,et al. Magnetic properties and microstructure evolution of in-situ Tb-Cu diffusion treated hot-deformed Nd-Fe-B magnets , 2020 .
[5] T. Koyama,et al. Formation mechanism of Tb-rich shell in grain boundary diffusion processed Nd–Fe–B sintered magnets , 2020 .
[6] Bin Chen,et al. Coercivity enhancement of hot-deformed (Ce,Nd,Pr)-Fe-B magnets by grain boundary diffusion of Pr-Cu alloy , 2020 .
[7] K. Hono,et al. Microstructure and coercivity of grain boundary diffusion processed Dy-free and Dy-containing Nd Fe B sintered magnets , 2019, Acta Materialia.
[8] G. Chen,et al. Modification of boundary structure and magnetic properties of Nd-Fe-B sintered magnets by diffusing Al/Cu co-added alloy ribbons , 2019, Scripta Materialia.
[9] B. Guo,et al. Significantly enhancing the coercivity of NdFeB magnets by ternary Pr-Al-Cu alloys diffusion and understanding the elements diffusion behavior , 2019, Journal of Magnetism and Magnetic Materials.
[10] H. Sepehri-Amin,et al. Coercivity and its thermal stability of Nd Fe B hot-deformed magnets enhanced by the eutectic grain boundary diffusion process , 2018, Acta Materialia.
[11] Shuai Guo,et al. Highly efficient Tb-utilization in sintered Nd-Fe-B magnets by Al aided TbH2 grain boundary diffusion , 2018, Scripta Materialia.
[12] Shuai Guo,et al. Coercivity enhancement in Dy-free sintered Nd-Fe-B magnets by effective structure optimization of grain boundaries , 2018 .
[13] H. Sepehri-Amin,et al. Coercivity enhancement of hot-deformed Ce-Fe-B magnets by grain boundary infiltration of Nd-Cu eutectic alloy , 2018 .
[14] G. Chen,et al. Boundary optimization and coercivity enhancement of high (BH)max Nd-Fe-B magnet by diffusing Pr-Tb-Cu-Al alloys , 2017 .
[15] Shuai Guo,et al. Effect of rare earth content on TbF3 diffusion in sintered Nd–Fe–B magnets by electrophoretic deposition , 2017 .
[16] Konstantin P. Skokov,et al. Grain boundary diffusion of different rare earth elements in Nd-Fe-B sintered magnets by experiment and FEM simulation , 2017 .
[17] Seok Jin Yun,et al. Anisotropic diffusion mechanism in grain boundary diffusion processed Nd–Fe–B sintered magnet , 2016 .
[18] Jiheng Li,et al. Boundary structure modification and magnetic properties enhancement of Nd–Fe–B sintered magnets by diffusing (PrDy)–Cu alloy , 2016 .
[19] G. Yan,et al. Impact of TbF3 diffusion on coercivity and microstructure in sintered Nd–Fe–B magnets by electrophoretic deposition , 2016 .
[20] T. Ohkubo,et al. Large-scale micromagnetic simulation of Nd-Fe-B sintered magnets with Dy-rich shell structures , 2016 .
[21] Lanting Zhang,et al. Coercivity enhancement of a Nd–Fe–B sintered magnet by diffusion of Nd70Cu30 alloy under pressure , 2015 .
[22] M. W. Lee,et al. Simultaneous application of Dy–X (X = F or H) powder doping and dip-coating processes to Nd–Fe–B sintered magnets , 2015 .
[23] T. Schrefl,et al. Thermally activated coercivity in core-shell permanent magnets , 2015 .
[24] C. Cui,et al. Effect of Dy2O3 intergranular addition on thermal stability and corrosion resistance of Nd–Fe–B magnets , 2014 .
[25] M. W. Lee,et al. Magnetic and microstructural characteristics of DyF3/DyHx dip-coated Nd–Fe–B sintered magnets , 2014 .
[26] Masao Yano,et al. High-coercivity ultrafine-grained anisotropic Nd–Fe–B magnets processed by hot deformation and the Nd–Cu grain boundary diffusion process , 2013 .
[27] S. Lee,et al. Magnetic and Microstructural Characteristics of a DyF$_{3}$ Dip-Coated Nd-Fe-B Sintered Magnet , 2013, IEEE Transactions on Magnetics.
[28] H. Sepehri-Amin,et al. The mechanism of coercivity enhancement by the grain boundary diffusion process of Nd–Fe–B sintered magnets , 2013 .
[29] H. Sepehri-Amin,et al. Strategy for high-coercivity Nd–Fe–B magnets , 2012 .
[30] H. Sepehri-Amin,et al. Grain boundary and interface chemistry of an Nd–Fe–B-based sintered magnet , 2012 .
[31] Jian-sheng Wu,et al. Grain boundary microstructure in DyF3-diffusion processed Nd–Fe–B sintered magnets , 2011 .
[32] Christina H. Chen,et al. Magnetic Materials and Devices for the 21st Century: Stronger, Lighter, and More Energy Efficient , 2011, Advanced materials.
[33] H. Matsui,et al. Production of thick high-performance sintered neodymium magnets by grain boundary diffusion treatment with dysprosium–nickel–aluminum alloy , 2011 .
[34] H. Nakamura,et al. Coercivity Enhancement by Grain Boundary Diffusion Process to Nd-Fe-B Sintered Magnets , 2006, INTERMAG 2006 - IEEE International Magnetics Conference.
[35] David Brown,et al. Developments in the processing and properties of NdFeb-type permanent magnets , 2002 .
[36] J. F. Herbst,et al. R 2 Fe 14 B materials: Intrinsic properties and technological aspects , 1991 .
[37] G. Schneider,et al. Analytical TEM study of Al-doped, “two-phase” Nd–Fe–B sintered magnets , 1989 .
[38] G. Schneider,et al. Al-doped Nd-Fe-B prmanent magnets: wetting and microstructural investigations , 1989, International Magnetics Conference.
[39] Satoshi Hirosawa,et al. Magnetization and magnetic anisotropy of R2Fe14B measured on single crystals , 1986 .