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Temperature-dependent shear band dynamics in a Zr-based bulk metallic glass
72
Citations
22
References
2010
Year
Materials ScienceHigh Temperature MaterialsEngineeringMechanical PropertiesGlass TransitionFlow SerrationsGlass-forming LiquidMechanical EngineeringApplied PhysicsGlass MaterialSolid MechanicsAmorphous MetalInhomogeneous DeformationShear Band PropagationThermomechanical ProcessingMechanics Of MaterialsMicrostructureHigh Strain Rate
Flow serrations recorded during inhomogeneous deformation of Zr52.5Ti5Cu17.9Ni14.6Al10 (Vit105) were studied during compression testing at temperatures between −40 and 60 °C. The shear band velocities determined exhibit a pronounced temperature dependence covering nearly two orders of magnitude. The velocities follow an Arrhenius-type behavior with an associated activation energy of 0.3±0.05 eV. The results demonstrate a thermally activated mechanism of shear band propagation, which is similar to the behavior of other, nonmetallic amorphous materials.
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