[HTML][HTML] Strength–Plasticity Relationship and Intragranular Nanophase Distribution of Hybrid (GNS+ SiCnp)/Al Composites Based on Heat Treatment

J Zhang, M Qian, Z Jia, X Zhang, A Li, G Wang, L Geng - Materials, 2024 - mdpi.com
The distribution of reinforcements and interfacial bonding state with the metal matrix are
crucial factors in achieving excellent comprehensive mechanical properties for aluminum …

Strength-Plasticity Relationship and Intragranular Nanophase Distribution of Hybrid (GNS+ SiCnp)/Al Composites Based on Heat Treatment

J Zhang, M Qian, Z Jia, X Zhang, A Li… - Materials (Basel …, 2024 - pubmed.ncbi.nlm.nih.gov
The distribution of reinforcements and interfacial bonding state with the metal matrix are
crucial factors in achieving excellent comprehensive mechanical properties for aluminum …

Strength-Plasticity Relationship and Intragranular Nanophase Distribution of Hybrid (GNS+ SiCnp)/Al Composites Based on Heat Treatment.

J Zhang, M Qian, Z Jia, X Zhang, A Li… - Materials (Basel …, 2024 - europepmc.org
The distribution of reinforcements and interfacial bonding state with the metal matrix are
crucial factors in achieving excellent comprehensive mechanical properties for aluminum …

Strength–Plasticity Relationship and Intragranular Nanophase Distribution of Hybrid (GNS+ SiCnp)/Al Composites Based on Heat Treatment.

J Zhang, M Qian, Z Jia, X Zhang, A Li… - Materials (1996 …, 2024 - search.ebscohost.com
The distribution of reinforcements and interfacial bonding state with the metal matrix are
crucial factors in achieving excellent comprehensive mechanical properties for aluminum …

[HTML][HTML] Strength–Plasticity Relationship and Intragranular Nanophase Distribution of Hybrid (GNS+ SiCnp)/Al Composites Based on Heat Treatment

J Zhang, M Qian, Z Jia, X Zhang, A Li, G Wang, L Geng - Materials, 2024 - ncbi.nlm.nih.gov
The distribution of reinforcements and interfacial bonding state with the metal matrix are
crucial factors in achieving excellent comprehensive mechanical properties for aluminum …