Recent Advances in Metallic Glasses
Silvia Bonfanti, Ralf Busch, Jesper Byggm\"astar, Jeppe C. Dyre, J\"urgen Eckert, Spencer Fajardo, Michael L. Falk, Isabella Gallino, Jamie J. Kruzic, Jiayin Lu, Giulio Monaco, Misaki Ozawa, Anshul D. S. Parmar, Chris H. Rycroft, Srikanth Sastry

TL;DR
This review summarizes recent progress in metallic glasses, emphasizing experimental techniques, additive manufacturing, multiscale modeling, and machine learning applications that enhance understanding and design of these complex materials.
Contribution
It provides a comprehensive overview of recent experimental, manufacturing, and computational advances, highlighting the integration of machine learning in metallic glass research.
Findings
Advances in experimental characterization techniques like fast chip calorimetry.
Progress in additive manufacturing, especially laser powder-bed fusion.
Development of machine learning models for predicting properties and designing metallic glasses.
Abstract
This paper reviews recent advances in the field of metallic glasses, focusing on the development of novel experimental techniques and in silico models. We discuss progress in experimental characterization, additive manufacturing, multiscale modeling approaches, and the growing role of machine learning in understanding and designing these complex materials. On the experimental side, we highlight measurements of thermophysical properties of supercooled liquids via fast chip calorimetry and enhancements in mechanical properties through rejuvenation treatments. This work underscores the crucial role of short-range order and medium-range order in controlling metallic glass mechanical properties. Recent progress in structural probes allows in situ observations of deformation mechanisms, positioning the field well to further advance our understanding of mechanical properties. Additive…
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Taxonomy
TopicsMetallic Glasses and Amorphous Alloys · Material Dynamics and Properties · Thermodynamic and Structural Properties of Metals and Alloys
