Design of high T g Zr-based metallic glasses using atomistic simulation and experiment |
| |
Authors: | Xiaoyang Liu Erik Luber David Mitlin |
| |
Affiliation: | Department of Chemical and Materials Engineering , University of Alberta , Edmonton, T6G 2V4, Canada |
| |
Abstract: | In this paper, we systematically investigate local atomic structures of Zr100?x Al x (0???x???72) alloys using molecular dynamics simulations. Radial distribution functions of Zr-Al configurations at 300 K indicate that Zr-Al metallic glasses form only when the Al atomic concentration is larger than 32%. Voronoi polyhedral analysis shows that Zr40Al60 has the highest fraction of ?0,0,12,0? icosahedra around Al atoms, which are characteristic of amorphous microstructures. Variations of thermal expansion coefficient and heat capacity of Zr100?x Al x (40???x???72) metallic glasses as a function of temperature from 1100 to 800?K reveal that Zr40Al60 has the highest transition temperature of 1008?K. To confirm the simulation results, Zr-Al metallic glasses were fabricated using co-sputtering deposition; differential scanning calorimetry testing suggests the highest crystallisation-onset temperature of above 920?K is within Zr100?x Al x where 43?x?61. The experimental finding is in a good agreement with the simulation predictions. |
| |
Keywords: | Zr-Al metallic glasses atomic structure radial distribution function Voronoi polyhedral analysis thermal stability glass transition temperature crystallisation-onset temperature differential scanning calorimetry |
|
|