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A Perspective on Mg/Al Laminated Metal Composites
1National Engineering Research Center for Magnesium Alloy & National Key Laboratory of Advanced Casting Technologies, College of Materials Science and Engineering, Chongqing University, Chongqing 400044, China.
This study reviews magnesium/aluminum laminated metal composites (LMCs), highlighting challenges in interfacial reactions and mechanical properties. It explores advanced interfacial design and artificial intelligence for developing high-performance lightweight LMCs.
Area of Science:
- Materials Science
- Metallurgy
- Composite Materials
Background:
- Magnesium/aluminum laminated metal composites (LMCs) offer lightweighting potential by combining Mg and Al alloys.
- Direct bonding leads to brittle Al-Mg intermetallic compounds (IMCs), degrading mechanical properties.
- Challenges include deformation mismatch and interfacial reactions hindering practical applications.
Purpose of the Study:
- To systematically review Mg/Al LMCs, focusing on interfacial reactions and fabrication.
- To explore the shift from IMC suppression to active interfacial-phase design.
- To identify opportunities and challenges for AI-driven development of lightweight LMCs.
Main Methods:
- Review of historical development and fabrication routes of Mg/Al LMCs.
- Analysis of thermodynamics and kinetics of interfacial reactions.
- Exploration of artificial intelligence applications in materials design.
Main Results:
- Direct bonding of Mg/Al alloys results in detrimental Al-Mg IMCs.
- Active interfacial-phase design offers a promising alternative to IMC suppression.
- AI presents emerging opportunities for optimizing LMC design and manufacturing.
Conclusions:
- Overcoming interfacial challenges is crucial for Mg/Al LMC applications.
- Future research should focus on process-interface-property correlations and AI-driven design.
- Development of high-performance lightweight LMCs requires integrated approaches.
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