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Atomistic study of metallurgical bonding upon the high velocity impact of fcc core-shell particles

LM Pereira, S. Rahmati, Alejandro Zúñiga, B. Jodoin, Roberto Gomes de Aguiar Veiga

2020Computational Materials Science27 citationsDOI

Topics & Concepts

BrittlenessMaterials scienceParticle (ecology)Composite materialBreakageSubstrate (aquarium)Shell (structure)MetallurgyGeologyOceanographyParticle Dynamics in Fluid FlowsHigh-Velocity Impact and Material BehaviorEngineering and Material Science Research
Atomistic study of metallurgical bonding upon the high velocity impact of fcc core-shell particles | Litcius