Improvement of magnetic performance of hot-deformed Nd-Fe-B magnets by secondary deformation process after Nd-Cu eutectic diffusion
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Lanting Zhang | Boping Hu | Z. Zou | F. Lu | Tieqiao Zhang | Zihan Wang | Fugang Chen | Jing Wang
[1] Lanting Zhang,et al. Hot-deformed Nd-Fe-B magnets fabricated by dynamic loading with a high maximum energy product , 2016 .
[2] A. Yan,et al. The magnetization behavior and open recoil loops of hot-deformed Nd-Fe-B magnets infiltrated by low melting point PrNd-Cu alloys , 2015 .
[3] H. Sepehri-Amin,et al. Microstructure and temperature dependent of coercivity of hot-deformed Nd–Fe–B magnets diffusion processed with Pr–Cu alloy , 2015 .
[4] Toshimasa Suzuki,et al. Observations of Magnetic Domain Structure Change in Nd 2 Fe 14 B Magnets at Elevated Temperature with External Magnetic Field by Lorentz Microscopy , 2015 .
[5] Jun Liu,et al. Grain size dependence of coercivity of hot-deformed Nd–Fe–B anisotropic magnets , 2015 .
[6] T. Schrefl,et al. Grain-size dependent demagnetizing factors in permanent magnets , 2014, 1603.08239.
[7] H. Sepehri-Amin,et al. Micromagnetic simulations on the grain size dependence of coercivity in anisotropic Nd–Fe–B sintered magnets , 2014 .
[8] Jinzhi Wang,et al. Impact of Nd–Cu diffusion on microstructure and coercivity in hot-pressed and die-upset nanocomposite magnets , 2014 .
[9] T. G. Woodcock,et al. Atomic-scale features of phase boundaries in hot deformed Nd–Fe–Co–B–Ga magnets infiltrated with a Nd–Cu eutectic liquid , 2014 .
[10] Jun Liu,et al. High-coercivity hot-deformed Nd–Fe–B permanent magnets processed by Nd–Cu eutectic diffusion under expansion constraint , 2014 .
[11] Jun Liu,et al. Low temperature diffusion process using rare earth-Cu eutectic alloys for hot-deformed Nd-Fe-B bulk magnets , 2014 .
[12] T. G. Woodcock,et al. Impact of different Nd-rich crystal-phases on the coercivity of Nd–Fe–B grain ensembles , 2014 .
[13] Jun Liu,et al. Enhancement of coercivity of hot-deformed Nd–Fe–B anisotropic magnet by low-temperature grain boundary diffusion of Nd60Dy20Cu20 eutectic alloy , 2013 .
[14] 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 .
[15] L. Schultz,et al. Electrical and magnetic properties of hot-deformed Nd-Fe-B magnets with different DyF3 additions , 2013 .
[16] Thomas Schrefl,et al. Effect of Nd content on the microstructure and coercivity of hot-deformed Nd–Fe–B permanent magnets , 2013 .
[17] M. Hayashi,et al. Coercivity enhancement of rapidly solidified Nd–Fe–B magnet powders , 2013 .
[18] S. Lee,et al. A study on the Nd-rich phase evolution in the Nd-Fe-B sintered magnet and its mechanism during post-sintering annealing , 2012 .
[19] H. Sepehri-Amin,et al. Strategy for high-coercivity Nd–Fe–B magnets , 2012 .
[20] Yingchang Yang,et al. Improvement of coercivity and thermal stability of anisotropic Nd13Fe79.4B7Nb0.3Ga0.3 powders by diffusion of Pr-Cu alloys , 2012 .
[21] H. Sepehri-Amin,et al. Grain boundary and interface chemistry of an Nd–Fe–B-based sintered magnet , 2012 .
[22] Christina H. Chen,et al. Magnetic Materials and Devices for the 21st Century: Stronger, Lighter, and More Energy Efficient , 2011, Advanced materials.
[23] H. Sepehri-Amin,et al. Coercivity enhancement of hydrogenation–disproportionation–desorption–recombination processed Nd–Fe–B powders by the diffusion of Nd–Cu eutectic alloys , 2010 .
[24] J.H. Yu,et al. Texture Studies on Die-Upset Nd-Lean Nd-Fe-(Cu)-Ga-B Alloy , 2009, IEEE Transactions on Magnetics.
[25] M. Sagawa,et al. The origin of coercivity decrease in fine grained Nd-Fe-B sintered magnets , 2009 .
[26] S. Hirosawa,et al. Influence of Nd/Nd2Fe14B interface microstructure on the coercivity of surface Nd2Fe14B grains in Nd-sputtered Nd–Fe–B sintered magnets , 2008 .
[27] Jian-sheng Wu,et al. Dependence of the crystal structure of the Nd-rich phase on oxygen content in an Nd–Fe–B sintered magnet , 2008 .
[28] G. Hadjipanayis,et al. Effect of Cu and Ga additions on the anisotropy of R2Fe14B/α-Fe nanocomposite die-upset magnets (R=Pr, Nd) , 2006 .
[29] D. Shindo,et al. Electron holography on remanent magnetization distribution of melt-spun Nd-Fe-B magnets. , 2004, Journal of electron microscopy.
[30] Akira Takeuchi,et al. Calculations of mixing enthalpy and mismatch entropy for ternary amorphous alloys : Special issue on bulk amorphous, nano-crystalline and nano-quasicrystalline alloys , 2000 .
[31] G. Hadjipanayis. Nanophase hard magnets , 1999 .
[32] Y. Syono,et al. The development of high performance Nd–Fe–Co–Ga–B die upset magnets , 1998 .
[33] H. Okamoto. Cu-Nd (copper-neodymium) , 1998 .
[34] H. Engelmann,et al. Microstructure and magnetic effects of small Cu additions to (Nd,Dy)FeB magnets , 1997 .
[35] Yimei Zhu,et al. Ferromagnetic grain boundary signature in die-upset Re-Fe-B magnets , 1995 .
[36] J. Bernardi,et al. Preparation and transmission electron microscope investigation of sintered Nd15.4Fe75.7B6.7Cu1.3Nb0.9 magnets , 1994 .
[37] L. H. Lewis,et al. Evidence for reversal by nucleation in RE‐Fe‐B die‐upset magnets , 1994 .
[38] J. Bernardi,et al. Transmission electron microscope characterization of cast and hot‐worked R‐Fe‐B:Cu(R=Nd,Pr) permanent magnets , 1991 .
[39] F. Pinkerton,et al. A strong pinning model for the coercivity of die-upset Pr-Fe-B magnets , 1991 .
[40] R. Mishra. Electron microscopy and the study of microstructure and domain structure of magnetic materials , 1991 .
[41] S. Hirosawa,et al. Current status of Nd-Fe-B permanent magnet materials , 1990 .
[42] W. Wallace,et al. Magnetic properties of Ga-added die-upset Nd-Fe-B magnets , 1989, International Magnetics Conference.
[43] R. Ramesh,et al. Magnetization reversal in nucleation controlled magnets. I. Theory , 1988 .
[44] M. Sagawa,et al. Effects of Co addition on the temperature dependence of the intrinsic coercivity in Pr-Fe-B sintered magnets , 1988 .
[45] A. Chamberod,et al. Texture in NdFeB magnets analysed on the basis of the determination of Nd2Fe14B single crystals easy growth axis , 1987 .
[46] Satoshi Hirosawa,et al. Nd–Fe–B Permanent Magnet Materials , 1987 .
[47] F. Pinkerton,et al. Magnetization process in rapidly solidified neodymium‐iron‐boron permanent magnet materials , 1986 .
[48] Satoshi Hirosawa,et al. Magnetization and magnetic anisotropy of R2Fe14B measured on single crystals , 1986 .
[49] D. Givord,et al. DETERMINATION OF THE DEGREE OF CRYSTALLITES ORIENTATION IN PERMANENT MAGNETS BY X-RAY SCATTERING AND MAGNETIC MEASUREMENTS , 1985 .
[50] Robert W. Lee,et al. Hot‐pressed neodymium‐iron‐boron magnets , 1985 .