Cu clustering and Si partitioning in the early crystallization stage of an Fe73. 5Si13. 5B9Nb3Cu1 amorphous alloy K Hono, DH Ping, M Ohnuma, H Onodera Acta materialia 47 (3), 997-1006, 1999 | 488 | 1999 |
Small-angle neutron scattering and differential scanning calorimetry studies on the copper clustering stage of Fe–Si–B–Nb–Cu nanocrystalline alloys M Ohnuma, K Hono, S Linderoth, JS Pedersen, Y Yoshizawa, H Onodera Acta materialia 48 (20), 4783-4790, 2000 | 152 | 2000 |
Microstructure of Co–Al–O granular thin films M Ohnuma, K Hono, E Abe, H Onodera, S Mitani, H Fujimori Journal of applied physics 82 (11), 5646-5652, 1997 | 151 | 1997 |
Phase field simulation of grain growth in three dimensional system containing finely dispersed second-phase particles Y Suwa, Y Saito, H Onodera Scripta Materialia 55 (4), 407-410, 2006 | 132 | 2006 |
Microstructures and magnetic properties of Co–Al–O granular thin films M Ohnuma, K Hono, H Onodera, S Ohnuma, H Fujimori, JS Pedersen Journal of Applied Physics 87 (2), 817-823, 2000 | 118 | 2000 |
Optimization of the microstructure and properties of Co-substituted Fe–Si–B–Nb–Cu nanocrystalline soft magnetic alloys M Ohnuma, DH Ping, T Abe, H Onodera, K Hono, Y Yoshizawa Journal of Applied Physics 93 (11), 9186-9194, 2003 | 102 | 2003 |
Three-dimensional phase field simulation of the effect of anisotropy in grain-boundary mobility on growth kinetics and morphology of grain structure Y Suwa, Y Saito, H Onodera Computational materials science 40 (1), 40-50, 2007 | 99 | 2007 |
Thermodynamic assessment of the Cu− Pt system T Abe, B Sundman, H Onodera Journal of phase equilibria and diffusion 27, 5-13, 2006 | 99 | 2006 |
Computer simulation of phase decomposition in Fe–Cu–Mn–Ni quaternary alloy based on the phase-field method T Koyama, H Onodera Materials transactions 46 (6), 1187-1192, 2005 | 66 | 2005 |
Thermodynamic modeling of the undercooled liquid in the Cu–Zr system T Abe, M Shimono, M Ode, H Onodera Acta materialia 54 (4), 909-915, 2006 | 65 | 2006 |
Phase-field simulation of recrystallization based on the unified subgrain growth theory Y Suwa, Y Saito, H Onodera Computational materials science 44 (2), 286-295, 2008 | 64 | 2008 |
Phase-field simulation of phase transformation in Fe-Cu-Mn-Ni quaternary alloy T Koyama, K Hashimoto, H Onodera Materials transactions 47 (11), 2765-2772, 2006 | 59 | 2006 |
Molecular dynamics study on formation and crystallization of Ti–Al amorphous alloys M Shimono, H Onodera Materials Science and Engineering: A 304, 515-519, 2001 | 54 | 2001 |
Lath formation mechanisms and twinning as lath martensite substructures in an ultra low-carbon iron alloy DH Ping, SQ Guo, M Imura, X Liu, T Ohmura, M Ohnuma, X Lu, T Abe, ... Scientific reports 8 (1), 14264, 2018 | 53 | 2018 |
Cu clustering stage before the crystallization in Fe Si B Nb Cu amorphous alloys M Ohnuma, K Hono, H Onodera, JS Pedersen, S Linderoth Nanostructured Materials 12 (5-8), 693-696, 1999 | 53 | 1999 |
Phase-field simulation of microstructure changes in Ni2MnGa ferromagnetic alloy under external stress and magnetic fields T Koyama, H Onodera Materials Transactions 44 (12), 2503-2508, 2003 | 50 | 2003 |
Thermodynamic database on microsolders and copper-based alloy systems XJ Liu, I Ohnuma, CP Wang, M Jiang, R Kainuma, K Ishida, M Ode, ... Journal of electronic materials 32, 1265-1272, 2003 | 49 | 2003 |
Parallel computer simulation of three-dimensional grain growth using the multi-phase-field model Y Suwa, Y Saito, H Onodera Materials transactions 49 (4), 704-709, 2008 | 45 | 2008 |
Molecular dynamics study on liquid-to-amorphous transition in Ti–Al alloys M Shimono, H Onodera Materials Transactions, JIM 39 (1), 147-153, 1998 | 45 | 1998 |
Microstructural evolution and carbides in quenched ultra-low carbon (Fe–C) alloys D Ping, T Liu, M Ohnuma, T Ohmura, T Abe, H Onodera ISIJ International 57 (7), 1233-1240, 2017 | 39 | 2017 |