Abstract
Atomic structure evolution and diffusivity during the cooling of Zr 50Cu 50 metallic liquid are studied by molecular dynamics (MD) simulation. Based on the theory that free volume is equal to the volume difference between the amorphous materials and their crystalline counterpart, a new method of annihilating rate of free volume has been developed and applied to predict the critical microscopic glass transition temperature. The predicted critical temperature T c was 969.5 K, which is close to the MCT (mode-coupling theory) value of 978.4 K, and the caloric glass transition temperature T g was 731 K, which is also close to the value of 725 K determined from the curve of average atomic volume with temperature. Without calculation of diffusion coefficients at a serial of specified temperatures, the developed method is more convenient than former methods to calculate T c and T g.
Original language | English |
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Pages (from-to) | 202-205+211 |
Journal | Beijing Ligong Daxue Xuebao/Transaction of Beijing Institute of Technology |
Volume | 32 |
Issue number | 2 |
Publication status | Published - Feb 2012 |
Keywords
- Free volume
- Glass transition temperature
- Molecular dynamics