Advancing the Mechanical Performance of Glasses: Perspectives and Challenges.

Lothar Wondraczek, Eran Bouchbinder, Allen Ehrlicher, John C Mauro, Roman Sajzew, Morten M Smedskjaer

Journal: Advanced materials (Deerfield Beach, Fla.) 2022;34(14):e2109029

PMID: 34870862

Abstract

Glasses are materials that lack a crystalline microstructure and long-range atomic order. Instead, they feature heterogeneity and disorder on superstructural scales, which have profound consequences for their elastic response, material strength, fracture toughness, and the characteristics of dynamic fracture. These structure-property relations present a rich field of study in fundamental glass physics and are also becoming increasingly important in the design of modern materials with improved mechanical performance. A first step in this direction involves glass-like materials that retain optical transparency and the haptics of classical glass products, while overcoming the limitations of brittleness. Among these, novel types of oxide glasses, hybrid glasses, phase-separated glasses, and bioinspired glass-polymer composites hold significant promise. Such materials are designed from the bottom-up, building on structure-property relations, modeling of stresses and strains at relevant length scales, and machine learning predictions. Their fabrication requires a more scientifically driven approach to materials design and processing, building on the physics of structural disorder and its consequences for structural rearrangements, defect initiation, and dynamic fracture in response to mechanical load. In this article, a perspective is provided on this highly interdisciplinary field of research in terms of its most recent challenges and opportunities.

© 2022 The Authors. Advanced Materials published by Wiley-VCH GmbH.

Address: Otto Schott Institute of Materials Research, Friedrich Schiller University Jena, Fraunhoferstrasse 6, 07743, Jena, Germany.; Center of Energy and Environmental Chemistry Jena (CEEC Jena), Friedrich Schiller University Jena, Philosophenweg 7, 07743, Jena, Germany.; Chemical and Biological Physics Department, Weizmann Institute of Science, Rehovot, 7610001, Israel.; Department of Bioengineering, McGill University, Montreal, H3A 2A7, Canada.; Department of Materials Science and Engineering, The Pennsylvania State University, University Park, PA, 16802, USA.; Otto Schott Institute of Materials Research, Friedrich Schiller University Jena, Fraunhoferstrasse 6, 07743, Jena, Germany.; Department of Chemistry and Bioscience, Aalborg University, Aalborg, 9220, Denmark.

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