Yang Sun
United States Department of Energy
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Featured researches published by Yang Sun.
Journal of Applied Physics | 2016
Yang Sun; Yue Zhang; Feng Zhang; Zhuo Ye; Zejun Ding; C.Z. Wang; Kai-Ming Ho
The atomic structure of Al90Sm10 metallic glass is studied using molecular dynamics simulations. By performing a long sub-Tg annealing, we developed a glass model closer to the experiments than the models prepared by continuous cooling. Using the cluster alignment method, we found that “3661” cluster is the dominating short-range order in the glass samples. The connection and arrangement of “3661” clusters, which define the medium-range order in the system, are enhanced significantly in the sub-Tg annealed sample as compared with the fast cooled glass samples. Unlike some strong binary glass formers such as Cu64.5Zr35.5, the clusters representing the short-range order do not form an interconnected interpenetrating network in Al90Sm10, which has only marginal glass formability.
Journal of Physics: Condensed Matter | 2015
Feng Zhang; Yang Sun; Zhuo Ye; Yue Zhang; C.Z. Wang; Mikhail I. Mendelev; Ryan Ott; Matthew J. Kramer; Z. J. Ding; Kai-Ming Ho
We have performed molecular dynamics simulations on a typical Al-based alloy Al90Sm10. The short-range and medium-range correlations of the system are reliably produced by ab initio calculations, whereas the long-range correlations are obtained with the assistance of a semi-empirical potential well-fitted to ab initio data. Our calculations show that a prepeak in the structure factor of this system emerges well above the melting temperature, and the intensity of the prepeak increases with increasing undercooling of the liquid. These results are in agreement with x-ray diffraction experiments. The interplay between the short-range order of the system originating from the large affinity between Al and Sm atoms, and the intrinsic repulsion between Sm atoms gives rise to a stronger correlation in the second peak than the first peak in the Sm-Sm partial pair correlation function (PPCF), which in turn produces the prepeak in the structure factor.
Applied Physics Letters | 2015
Zhuo Ye; Feng Zhang; Yang Sun; Mikhail I. Mendelev; Ryan Ott; E. Park; M. F. Besser; M.J. Kramer; Z. J. Ding; C.Z. Wang; Kai-Ming Ho
We present an efficient genetic algorithm, integrated with experimental diffraction data, to solve a nanoscale metastable Al20Sm4 phase that evolves during crystallization of an amorphous magnetron sputtered Al90Sm10 alloy. The excellent match between calculated and experimental X-ray diffraction patterns confirms an accurate description of this metastable phase. Molecular dynamic simulations of crystal growth from the liquid phase predict the formation of disordered defects in the devitrified crystal.
Scripta Materialia | 2018
Yang Sun; Feng Zhang; Lin Yang; Zhuo Ye; Huajing Song; Mikhail I. Mendelev; Cai-Zhuang Wang; Kai-Ming Ho
Abstract The effect of Sm doping on the fcc-Al nucleation was investigated in Al-Sm liquids with low Sm concentrations (xSm) with molecular dynamics simulations. The nucleation in the moderately undercooled liquid is achieved by the recently developed persistent-embryo method. Systematically computing the nucleation rate with different xSm (xSm = 0%, 1%, 2%, 3%, 5%) at 700 K, we found Sm dopant reduces the nucleation rate by up to 25 orders of magnitudes with only 5% doping concentration. This effect is mostly associated with the increase in the free energy barrier with minor contribution from suppression of the attachment to the nucleus caused by Sm doping.
Philosophical Magazine Letters | 2018
Xiaobao Lv; Zhuo Ye; Yang Sun; Feng Zhang; Lin Yang; Zijing Lin; C.Z. Wang; Kai-Ming Ho
Abstract The Al–Sm system is selected as a model system to study the transition process from liquid and amorphous to crystalline states. In recent work, we have shown that, in addition to long-range translational periodicity, crystal structures display well-defined short-range local atomic packing motifs that transcends liquid, amorphous and crystalline states. In this paper, we investigate the longer range spatial packing of these short-range motifs by studying the interconnections of Sm–Sm networks in different amorphous and crystalline samples obtained from molecular dynamics simulations. In our analysis, we concentrate on Sm–Sm distances in the range ~5.0–7.2 Å, corresponding to Sm atoms in the second and third shells of Sm-centred clusters. We discover a number of empirical rules characterising the evolution of Sm networks from the liquid and amorphous states to associated metastable crystalline phases experimentally observed in the initial stages of devitrification of different amorphous samples. As direct simulation of glass formation is difficult because of the vast difference between experimental quench rates and what is achievable on the computer, we hope these rules will be helpful in building a better picture of structural evolution during glass formation as well as a more detailed description of phase selection and growth during devitrification.
Journal of Chemical Physics | 2018
Mikhail I. Mendelev; Feng Zhang; Huajing Song; Yang Sun; Congjun Wang; K. M. Ho
We developed a Tb embedded atom method potential which properly reproduces the liquid structure obtained from the ab initio molecular dynamics simulation, the hexagonal close packed (hcp)-body-centered cubic (bcc) phase transformation, and melting temperatures. At least three crystal phases [hcp, face-centered cubic (fcc), and bcc] described by this potential can coexist with the liquid phase. Thus, the developed potential provides an excellent test bed for studies of the completive phase nucleation and growth in a single component system. The molecular dynamics simulation showed that all crystal phases can grow from the liquid phase close to their melting temperatures. However, in the cases of the hcp and fcc growth from the liquid phase at very large supercoolings, the bcc phase forms at the solid-liquid interface in the close packed orientations in spite of the fact that both hcp and fcc phases are more stable than the bcc phase at these temperatures. This bcc phase closes the hcp and fcc phase from the liquid such that the remaining liquid solidifies into the bcc phase. The initial hcp phase then slowly continues growing in expense of the bcc phase.
Acta Materialia | 2017
L.H. Xiong; X.D. Wang; Qian Yu; Hao Zhang; Feng Zhang; Yang Sun; Q.P. Cao; Honglan Xie; Tiqiao Xiao; D.X. Zhang; C.Z. Wang; Kai-Ming Ho; Yang Ren; Jianfei Jiang
Computational Materials Science | 2014
Liang Gao; H.Y. Song; Yang Sun; Y.G. Zhang
Acta Materialia | 2014
Feng Zhang; Min Ji; Xiao-Wei Fang; Yang Sun; Cai-Zhuang Wang; Mikhail I. Mendelev; M.J. Kramer; Ralph E. Napolitano; Kai-Ming Ho
Physical Review Letters | 2018
Yang Sun; Huajing Song; Feng Zhang; Lin Yang; Zhuo Ye; Mikhail I. Mendelev; Cai-Zhuang Wang; Kai-Ming Ho