Publication | Closed Access
Revealing flow behaviors of metallic glass based on activation of flow units
12
Citations
46
References
2016
Year
EngineeringGlass-forming LiquidFluid MechanicsMechanical EngineeringGlass MaterialAtomic Level FlowSoft MatterAmorphous MaterialsFlow UnitsStructural MaterialsGlass-ceramicGlass TransitionFunctional GlassMaterials ScienceHomogeneous FlowSolid MechanicsMultiphase FlowPlasticityMicrostructureAmorphous MetalMicrofabricationMetallic GlassApplied PhysicsElastic MatrixMechanics Of MaterialsFlow Behaviors
Atomic level flow plays a critical role in the mechanical behavior of metallic glass (MG) while the connection between the flow and the heterogeneous microstructure of the glass remains unclear. We describe the heterogeneity of MGs as the elastic matrix with “inclusions” of nano-scale liquid-like flow units, and the plastic flow behavior of MGs is considered to be accommodated by the flow units. We show that the model can explain the various deformation behaviors, the transformation from inhomogeneous deformation to homogeneous flow upon strain rate or temperature, and the deformation map in MGs, which might provide insights into the flow mechanisms in glasses and inspiration for improving the plasticity of MGs.
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