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Yunzhi Wang
Yunzhi Wang
Professor of Materials Science and Engineering, Ohio State University
Verified email at osu.edu - Homepage
Title
Cited by
Cited by
Year
Three-dimensional field model and computer modeling of martensitic transformations
Y Wang, AG Khachaturyan
Acta materialia 45 (2), 759-773, 1997
5441997
Phase field modeling of defects and deformation
Y Wang, J Li
Acta Materialia 58 (4), 1212-1235, 2010
4472010
Kinetics of strain-induced morphological transformation in cubic alloys with a miscibility gap
Y Wang, LQ Chen, AG Khachaturyan
Acta Metallurgica et Materialia 41 (1), 279-296, 1993
3631993
Field kinetic model and computer simulation of precipitation of L12 ordered intermetallics from fcc solid solution
Y Wang, D Banerjee, CC Su, AG Khachaturyan
Acta materialia 46 (9), 2983-3001, 1998
3601998
Microtwinning and other shearing mechanisms at intermediate temperatures in Ni-based superalloys
L Kovarik, RR Unocic, J Li, P Sarosi, C Shen, Y Wang, MJ Mills
Progress in Materials Science 54 (6), 839-873, 2009
3452009
Development of low-alloyed and rare-earth-free magnesium alloys having ultra-high strength
H Pan, G Qin, Y Huang, Y Ren, X Sha, X Han, ZQ Liu, C Li, X Wu, H Chen, ...
Acta Materialia 149, 350-363, 2018
3122018
Three-dimensional phase field model and simulation of martensitic transformation in multilayer systems under applied stresses
A Artemev, Y Wang, AG Khachaturyan
Acta Materialia 48 (10), 2503-2518, 2000
2462000
Giant strain with low hysteresis in A-site-deficient (Bi0. 5Na0. 5) TiO3-based lead-free piezoceramics
T Li, X Lou, X Ke, S Cheng, S Mi, X Wang, J Shi, X Liu, G Dong, H Fan, ...
Acta Materialia 128, 337-344, 2017
2352017
Role of ω phase in the formation of extremely refined intragranular α precipitates in metastable β-titanium alloys
Y Zheng, REA Williams, D Wang, R Shi, S Nag, P Kami, JM Sosa, ...
Acta Materialia 103, 850-858, 2016
2262016
Characterization of Materials, 2 Volume Set
EN Kaufmann
Characterization of Materials, 1392, 2003
2132003
Grain growth in anisotropic systems: comparison of effects of energy and mobility
A Kazaryan, Y Wang, SA Dregia, BR Patton
Acta Materialia 50 (10), 2491-2502, 2002
2102002
Phase field modeling of simultaneous nucleation and growth by explicitly incorporating nucleation events
JP Simmons, C Shen, Y Wang
Scripta materialia 43 (10), 935-942, 2000
2102000
Quantitative phase field modeling of diffusion-controlled precipitate growth and dissolution in Ti–Al–V
Q Chen, N Ma, K Wu, Y Wang
Scripta Materialia 50 (4), 471-476, 2004
2052004
Shape instability during precipitate growth in coherent solids
Y Wang, AG Khachaturyan
Acta metallurgica et materialia 43 (5), 1837-1857, 1995
1961995
The continuum field approach to modeling microstructural evolution
LQ Chen, Y Wang
Jom 48, 13-18, 1996
1931996
Shape memory effect and superelasticity in a strain glass alloy
Y Wang, X Ren, K Otsuka
Physical review letters 97 (22), 225703, 2006
1922006
Large magnetostriction from morphotropic phase boundary in ferromagnets
S Yang, H Bao, C Zhou, Y Wang, X Ren, Y Matsushita, Y Katsuya, ...
Physical review letters 104 (19), 197201, 2010
1892010
Incorporation of γ-surface to phase field model of dislocations: simulating dislocation dissociation in fcc crystals
C Shen, Y Wang
Acta Materialia 52 (3), 683-691, 2004
1832004
In situ design of advanced Ti-alloy with concentration modulations by additive manufacturing
CL T. Zhang, Z. Huang, T. Yang, H. Kong, J. Luan, A. Wang, D. Wang, Y. Wang
Science 374, 478-482, 2021
181*2021
Boundary mobility and energy anisotropy effects on microstructural evolution during grain growth
M Upmanyu, GN Hassold, A Kazaryan, EA Holm, Y Wang, B Patton, ...
Interface Science 10, 201-216, 2002
1782002
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