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Pattern formation during deformation of metallic nanolaminates

Adrien Gola, Ruth Schwaiger, Peter Gumbsch, Lars Pastewka

2020Physical Review Materials20 citationsDOIOpen Access PDF

Abstract

We used nonequilibrium molecular dynamics simulations to study the shear deformation of metallic composites composed of alternating layers of Cu and Au. Our simulations reveal the formation of ``vortices'' or ``swirls'' if the bimaterial interfaces are atomically rough and if none of the ${111}$ planes that accommodate slip in fcc materials are exactly parallel to this interface. We trace the formation of these patterns back to grain rotation, induced by hindering dislocations from crossing the bimaterial interface. The instability is accompanied by shear softening of the material. These calculations shed light on recent observations of pattern formation in plastic flow, mechanical mixing of materials, and the common formation of a tribomutation layer in tribologically loaded systems.

Topics & Concepts

Materials scienceSofteningVortexComposite materialSlip (aerodynamics)Shear (geology)InstabilityMetalCondensed matter physicsMolecular dynamicsPlasticityMechanicsMetallurgyThermodynamicsChemistryComputational chemistryPhysicsMicrostructure and mechanical propertiesIon-surface interactions and analysisForce Microscopy Techniques and Applications
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