Nanocarbon architecture-intervened interface design of Cu matrix composites towards necking-delayed fracture and toughening
Author:
Funder
National Natural Science Foundation of China
Yunnan Provincial Science and Technology Department
Publisher
Elsevier BV
Reference48 articles.
1. In-situ Al2O3-Al interface contribution towards the strength-ductility synergy of Al-CuO composite fabricated by solid-state reactive sintering;Rong;Scripta Mater.,2021
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3. Break through the strength-ductility trade-off dilemma in aluminum matrix composites via precipitation-assisted interface tailoring;Ma;Acta Mater.,2023
4. Investigations on the interface-dominated deformation mechanisms of two-dimensional MAX-phase Ti3Al(Cu)C2 nanoflakes reinforced copper matrix composites;Zhang;Acta Mater.,2022
5. Regain strain-hardening in high-strength metals by nanofiller incorporation at grain boundaries;Li;Nano Lett.,2018
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