Strength-ductility synergy of reduced graphene oxide/2024Al matrix composites by heterogeneous structure design and hybrid nanoparticles optimized interface
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference60 articles.
1. Mechanical properties of graphene platelet-reinforced alumina ceramic composites;Liu;Ceram. Int.,2013
2. The effect of sintering time, temperature, and graphene addition on the hardness and microstructure of aluminum composites;Gürbüz;J. Compos. Mater.,2018
3. Effect of graphene nanoparticles on the physical and mechanical properties of the Al2024-graphene nanocomposites fabricated by powder metallurgy;AbuShanab;Results Phys.,2020
4. GNPs/Al nanocomposites with high strength and ductility and electrical conductivity fabricated by accumulative roll-compositing;Chen;Rare Met.,2021
5. Al–TiO2–Gr powder metallurgy hybrid composites with cold upset forging;Ravichandran;Rare Met.,2014
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