Metal Packaging: From Monolithic Containers to Hybrid Architectures
Leonardo Pagnotta

TL;DR
This review explores metal packaging materials and their evolving designs to improve performance, safety, and sustainability.
Contribution
The paper provides a unified framework linking materials design, processing, and sustainability in metal-based packaging systems.
Findings
Hybrid metal-polymer and metal-paper laminates are gaining importance for functional and sustainable packaging.
Transition from BPA-based linings to BPA-free and nano-structured coatings is a key trend in metal packaging.
Recycling infrastructures for aluminum and steel are well-established, but coated and multilayer materials pose challenges.
Abstract
Metal packaging materials remain fundamental across food, beverage, pharmaceutical, cosmetic, and technical sectors owing to their combination of mechanical robustness, total light and gas barrier performance, thermal resistance, and established recyclability. Aluminum alloys, tinplate, tin-free steel (TFS/ECCS), stainless steels, metal–matrix composites (MMCs), and metal–polymer or metal–paper laminates define distinct metal-based packaging architectures whose metallurgical and interfacial design governs forming behaviour, corrosion and migration pathways, coating integrity, and mechanical reliability. In this review, these architectures are examined from a materials- and systems-oriented perspective, linking composition, microstructure, processing routes, and surface engineering to functional performance across rigid, semi-rigid, and flexible formats. The analysis also considers the…
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Taxonomy
TopicsPolymer Science and PVC · Electronic Packaging and Soldering Technologies · Material Properties and Processing
