Title of article :
Formation mechanism of atomic cluster structures in Al–Mg alloy during rapid solidification processes Original Research Article
Author/Authors :
Feng-xiang Liu، نويسنده , , Rang-su Liu، نويسنده , , Zhao-yang Hou، نويسنده , , Hai-Rong Liu، نويسنده , , Ze-an Tian، نويسنده , , C. Lili Zhou Shi، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Abstract :
The rapid solidification processes of Al50Mg50 liquid alloy consisting of 50,000 atoms have been simulated by using molecular dynamics method based on the effective pair potential derived from the pseudopotential theory. The formation mechanisms of atomic clusters during the rapid solidification processes have been investigated adopting a new cluster description method—cluster-type index method (CTIM). The simulated partial structure factors are in good agreement with the experimental results. And Al–Mg amorphous structure characterized with Al-centered icosahedral topological short-range order (SRO) is found to form during the rapid solidification processes. The icosahedral cluster plays a key role in the microstructure transition. Besides, it is also found that the size distribution of various clusters in the system presents a magic number sequence of 13, 19, 23, 25, 29, 31, 33, 37, …. The magic clusters are more stable and mainly correspond to the incompact arrangements of linked icosahedra in the form of rings, chains or dendrites. And each magic number point stands correspondingly for one certain combining form of icosahedra. This magic number sequence is different from that generated in the solidification structure of liquid Al and those obtained by methods of gaseous deposition and ionic spray, etc.
Keywords :
Rapid solidification process , Magic number sequence , molecular dynamics simulation , Al–Mg liquid alloy , Atomic cluster
Journal title :
Annals of Physics
Journal title :
Annals of Physics