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Three-dimensional nucleation and growth of deformation twins in magnesium

Title: Three-dimensional nucleation and growth of deformation twins in magnesium
Authors: Lee, Sangwon; Pilipchuk, Michael; Yildirim, Can; Greeley, Duncan; Shi, Qianying; Berman, Tracy D.; Creuziger, Adam; Rust, Evan; Detlefs, Carsten; Sundararaghavan, Veera; Allison, John E.; Bucsek, Ashley
Source: Science 389, 632-636(2025)
Publication Year: 2024
Subject Terms: Materials Science
Description: At two-thirds the weight of aluminum, magnesium alloys have the potential to significantly reduce the fuel consumption of transportation vehicles. These advancements depend on our ability to optimize the desirable versus undesirable effects of deformation twins: three dimensional (3D) microstructural domains that form under mechanical stresses. Previously only characterized using surface or thin-film measurements, here, we present the first 3D in-situ characterization of deformation twinning inside an embedded grain over mesoscopic fields of view using dark-field X-ray microscopy supported by crystal plasticity finite element analysis. The results reveal the important role of triple junctions on twin nucleation, that twin growth behavior is irregular and can occur in several directions simultaneously, and that twin-grain and twin-twin junctions are the sites of localized dislocation accumulation, a necessary precursor to crack initiation.
Document Type: Working Paper
DOI: 10.1126/science.adv3460
Access URL: http://arxiv.org/abs/2412.16640
Accession Number: edsarx.2412.16640
Database: arXiv