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Sai Tang
Sai Tang
Central South University of China
Verified email at csu.edu.cn
Title
Cited by
Cited by
Year
Kinetic pathways and mechanisms of two-step nucleation in crystallization
C Guo, J Wang, J Li, Z Wang, S Tang
The journal of physical chemistry letters 7 (24), 5008-5014, 2016
592016
Three-dimensional phase-field crystal modeling of fcc and bcc dendritic crystal growth
S Tang, R Backofen, J Wang, Y Zhou, A Voigt, YM Yu
Journal of crystal growth 334 (1), 146-152, 2011
542011
Phase-field-crystal simulation of nonequilibrium crystal growth
S Tang, YM Yu, J Wang, J Li, Z Wang, Y Guo, Y Zhou
Physical Review E 89 (1), 012405, 2014
522014
Orientation selection process during the early stage of cubic dendrite growth: A phase-field crystal study
S Tang, Z Wang, Y Guo, J Wang, Y Yu, Y Zhou
Acta materialia 60 (15), 5501-5507, 2012
522012
Competitive bcc and fcc crystal nucleation from non-equilibrium liquids studied by phase-field crystal simulation
S Tang, JC Wang, B Svendsen, D Raabe
Acta Materialia 139, 196-204, 2017
402017
Molecular dynamics investigation of the local structure in iron melts and its role in crystal nucleation during rapid solidification
Q Zhang, J Wang, S Tang, Y Wang, J Li, W Zhou, Z Wang
Physical Chemistry Chemical Physics 21 (8), 4122-4135, 2019
362019
Phase field simulation of the phase separation in the TiC-ZrC-WC system
Z Luo, Y Du, Y Liu, S Tang, Y Pan, H Mao, Y Peng, W Liu, Z Liu
Calphad 63, 190-195, 2018
312018
Short-range ordering governs brittleness and ductility in W-Ta solid solution: Insights from Pugh's shear-to-bulk modulus ratio
H Liu, S Tang, Y Ma, W Liu, C Liang
Scripta Materialia 204, 114136, 2021
252021
Modified phase-field-crystal model for solid-liquid phase transitions
C Guo, J Wang, Z Wang, J Li, Y Guo, S Tang
Physical Review E 92 (1), 013309, 2015
142015
Atomistic mechanism underlying nucleation in Al–Cu alloys with different compositions and cooling rates
Q Zhang, J Li, S Tang, Z Wang, J Wang
The Journal of Physical Chemistry C 125 (6), 3480-3494, 2021
132021
Phase field crystal modeling of grain rotation with small initial misorientations in nanocrystalline materials
Y Guo, J Wang, Z Wang, S Tang, Y Zhou
Computational materials science 88, 163-169, 2014
132014
Phase field modeling the growth of Ni3Al layer in the β/γ diffusion couple of Ni–Al binary system
S Tang, J Wang, G Yang, Y Zhou
Intermetallics 19 (3), 229-233, 2011
122011
Atomic-scale study of compositional and structural evolution of early-stage grain boundary precipitation in Al–Cu alloys through phase-field crystal simulation
X Shuai, ZJ Wang, H Mao, S Tang, Y Kong, Y Du
Journal of Materials Science 56 (22), 12700-12715, 2021
112021
Strain mapping in nanocrystalline grains simulated by phase field crystal model
Y Guo, J Wang, Z Wang, J Li, S Tang, F Liu, Y Zhou
Philosophical Magazine 95 (9), 973-984, 2015
112015
Growth modes of grain boundary precipitate in aluminum alloys under different lattice misfits
X Shuai, H Mao, S Tang, Y Kong, Y Du
Journal of Materials Science, 1-14, 2022
102022
Phase field crystal model for the effect of colored noise on homogenerous nucleation
YL Guo, JC Wang, ZJ Wang, S Tang, YH Zhou
Wuli Xuebao/Acta Physica Sinica 61 (14), 146401, 2012
102012
Examination of dendritic growth and microsegregation during solidification of Al–Li binary alloy using the phase-field simulation coupling CALPHAD data
Q Chen, L Zhang, S Tang, C Liang, Y Ma, W Liu
Calphad 74, 102271, 2021
92021
Phase-field simulation of solidification microstructure in Ni and Cu–Ni alloy using the Wheeler, Boettinger and McFadden model coupled with the CALPHAD data
VB Rajkumar, Y Du, Y Zeng, S Tang
Calphad 68, 101691, 2020
92020
Phase-field-crystal investigation of the morphology of a steady-state dendrite tip on the atomic scale
S Tang, J Wang, J Li, Z Wang, Y Guo, C Guo, Y Zhou
Physical Review E 95 (6), 062803, 2017
92017
Unique visualization of multiply oriented lattice structures using a continuous wavelet transform
Z Wang, J Li, Y Guo, S Tang, J Wang
Computer Physics Communications 184 (11), 2489-2493, 2013
72013
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Articles 1–20