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Influence of free volume and medium-range order on the deformation response of rapidly solidified and bulk Zr-based (Zr52Ti6Al10Cu18Ni14) metallic glass
Authors:B Vishwanadh  SK Sharma  PK Pujari  R Kishore  GK Dey  R Tewari
Institution:1. Materials Science Division, Bhabha Atomic Research Centre , Mumbai , 400 085 , India visubathula@gmail.com bvisu@barc.gov.in;3. Radio Chemistry Division, Bhabha Atomic Research Centre , Mumbai , 400 085 , India;4. Mechanical Metallurgy Division, Bhabha Atomic Research Centre , Mumbai , 400 085 , India;5. Materials Science Division, Bhabha Atomic Research Centre , Mumbai , 400 085 , India
Abstract:Free volume and medium-range order (MRO) present in rapidly solidified ribbons (RSRs) and bulk metallic glasses (BMGs) of Zr52Ti6Al10Cu18Ni14 have been probed by high resolution electron microscopy, fluctuation microscopy, positron annihilation and differential scanning calorimetry. In the as-solidified condition, RSRs showed higher free volume and lower MRO in comparison to BMGs. Within BMGs, the central regions showed higher MRO and lower free volume than the peripheral regions. Uniform deformation of BMGs and RSRs modified their structures, where in, free volume increased in the former and reduced in the latter. These changes in structures led to work hardening in RSRs and work softening in BMGs. Such behaviour could be explained by invoking a concept of critical free volume in the glass phase. For samples (in as-solidified condition) having free volume higher than the critical value, free volume decreased with deformation and showed work-hardening behaviour. In contrast, the work softening behaviour was noticed in samples having free volume lower than the critical free volume.
Keywords:metallic glass  free volume  medium-range order  nanoindentation  plastic deformation
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