Retained-austenite transformation precedes grain fragmentation in carbon-partitioned QP1180 steel
Authors: Resendiz, L.R., Naeem, M., Amigo, V., Reinhard, C., Michalik, S., Langdon, T.G. and Huang, Y.
Journal: Scripta Materialia
Volume: 271
ISSN: 1359-6462
DOI: 10.1016/j.scriptamat.2025.117024
Abstract:Understanding the mechanistic interplay between phase transformation and grain fragmentation is critical for microstructural control in advanced structural steels subjected to severe shear. Here, we investigate the activation sequence of retained-austenite transformation and grain fragmentation along the radial strain gradient of a single QP1180 steel disk processed by high-pressure torsion. Synchrotron-based high-energy X-ray diffraction and microscopy reveal a pronounced austenite (γ) → martensite (α′/α) transformation that saturates at a critical equivalent von Mises strain ε‾
Source: Scopus
Retained-austenite transformation precedes grain fragmentation in carbon-partitioned QP1180 steel
Authors: Resendiz, L.R., Naeem, M., Amigo, V., Reinhard, C., Michalik, S., Langdon, T.G. and Huang, Y.
Journal: SCRIPTA MATERIALIA
Volume: 271
eISSN: 1872-8456
ISSN: 1359-6462
DOI: 10.1016/j.scriptamat.2025.117024
Source: Web of Science (Lite)
Retained-austenite transformation precedes grain fragmentation in carbon-partitioned QP1180 steel
Authors: Romero Resendiz, L., Naeem, M., Amigo, V., Reinhard, C., Michalik, S., Langdon, T.G. and Huang, Y.
Journal: Scripta Materialia
Volume: 271
Pages: 117024(1)-117024(6)
Publisher: Pergamon Press Ltd.
eISSN: 1872-8456
ISSN: 1359-6462
DOI: 10.1016/j.scriptamat.2025.117024
Source: Manual