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Dive into the research topics where Yunfei Mo is active.

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Featured researches published by Yunfei Mo.


Physical Chemistry Chemical Physics | 2018

Topologically close-packed characteristic of amorphous Tantalum

Zhizhou Wu; Yunfei Mo; Lin Lang; Aibing Yu; Quan Xie; Rang-Su Liu; Zean Tian

The structural evolution of tantalum (Ta) during rapid cooling was investigated by molecular dynamics simulation, in terms of the system energy, the pair distribution function and the largest standard cluster analysis. It was found that the critical cooling rate for vitrification was about R ≥ 0.25 K ps-1, two orders lower than other metals (such as Au, Ag, Al, Zr and Zn) and that the meta-stable σ phase (β-Ta) not only appears on the pathway from liquid to the stable body-centred cubic crystal, but is also easily obtained at room temperature as a long-lived metastable phase with some probability. The most interesting point is that the liquid, amorphous and β-Ta phases share a nontrivial structural homology; the intrinsic topologically close-packed (TCP) structures in liquids are inherited and developed in different ways, resulting in amorphous or crystalline solids, respectively. With highly local packing fractions and geometrical incompatibility with the global close-packed (such as hcp, fcc and bcc) crystals, TCP structures inevitably result in structural heterogeneity and favour vitrification. As a superset of icosahedrons, TCP structures are ubiquitous in metallic melts, and just before the onset of crystallization reach their maximal number, which is much bigger in Ta than in other poor-GFA metals; so we argue that the strong forming ability of TCP local structures significantly enhances the glass forming ability of pure metals. These findings open up a new perspective that could have a profound impact on the research into metallic glasses.


Journal of Alloys and Compounds | 2014

Influence of icosahedral order on the second peak splitting of pair distribution function for Mg70Zn30 metallic glass

Yong-Chao Liang; Rang-Su Liu; Yunfei Mo; Hairong Liu; Zean Tian; Hai-Tao Zhang; Li-li Zhou; Zhao-Yang Hou; Ping Peng


Computational Materials Science | 2014

Local atomic structures in grain boundaries of bulk nanocrystalline aluminium: A molecular dynamics simulation study

Zhao-Yang Hou; Zean Tian; Yunfei Mo; Rang-Su Liu


Computational Materials Science | 2015

Formation and evolution of nano-clusters in a large-scale system of Cu–Zr alloy during rapid solidification process

Yunfei Mo; Rang-Su Liu; Yong-Chao Liang; Hai-Tao Zhang; Zean Tian; Zhao-Yang Hou; Hairong Liu; Li-Li Zhou; Ping Peng; Tinghong Gao


Journal of Alloys and Compounds | 2016

Molecular dynamics study on microstructural evolution during crystallization of rapidly supercooled zirconium melts

Yunfei Mo; Zean Tian; Rang-Su Liu; Zhao-Yang Hou; Li-li Zhou; Ping Peng; Hai-Tao Zhang; Yong-Chao Liang


Computational Materials Science | 2015

Atomic dynamics of grain boundaries in bulk nanocrystalline aluminium: A molecular dynamics simulation study

Zhao-Yang Hou; Zean Tian; Yunfei Mo; Rang-Su Liu; Jin-Guo Wang; X.M. Shuai; Kejun Dong


Physica B-condensed Matter | 2015

Non-linear effects of initial melt temperatures on microstructures and mechanical properties during quenching process of liquid Cu46Zr54 alloy

Yunfei Mo; Rang-Su Liu; Zean Tian; Yong-Chao Liang; Hai-Tao Zhang; Zhao-Yang Hou; Hairong Liu; Ai-long Zhang; Li-li Zhou; Ping Peng; Zhong Xie


Journal of Alloys and Compounds | 2017

Molecular dynamics simulation on structural evolution during crystallization of rapidly super-cooled Cu50Ni50 alloy

Li-li Zhou; Run-yu Yang; Zean Tian; Yunfei Mo; Rang-Su Liu


Physical Chemistry Chemical Physics | 2017

A novel crystallization pathway for SiGe alloy rapid cooling

Xiao-Tian Guo; Zean Tian; Tinghong Gao; Quan Xie; Yong-Chao Liang; Yunfei Mo; Wanjun Yan


Journal of Alloys and Compounds | 2019

The effect of Mo addition on structure and glass forming ability of Ni-Zr alloys

Lin Lang; Huiqiu Deng; Zean Tian; Fei Gao; Wangyu Hu; Dadong Wen; Yunfei Mo

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Li-li Zhou

University of New South Wales

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