Ab initio study of stacking faults and deformation mechanism in C15 Laves phases Cr2X (X = Nb, Zr, Hf)
Author:
Publisher
Elsevier BV
Subject
Condensed Matter Physics,General Materials Science
Reference38 articles.
1. Role of crystal defects on brittleness of C15 Cr2Nb Laves phase
2. Microstructure characterization and mechanical properties of a Laves-phase alloy based on Cr2Nb
3. Microstructural evolution and interfacial crystallography in Cr–Cr2Ta
4. First-principles studies of defects, mechanical properties and electronic structure of Cr-based Laves phases
5. Ab initiostudy of ground-state properties of the Laves phase compoundsTiCr2,ZrCr2, andHfCr2
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1. Microstructure and mechanical properties of TiNbV0.5Ta0.5Cr (x=0, 0.1, 0.2, 0.5) refractory high-entropy alloys;Journal of Materials Science & Technology;2025-03
2. Comprehensive DFT exploration of structural, electronic, magnetic and elastic properties of HfM2 (M = Cr, Mn, and Fe) intermetallic compounds;Physica B: Condensed Matter;2024-02
3. Revealing complex planar defects and their interactions at atomic resolution in a Laves phase containing Co-base superalloy;Acta Materialia;2024-01
4. Off-stoichiometric softening and polytypic transformations in the plastic deformation of the C14 Fe2Nb Laves phase;Acta Materialia;2023-11
5. Effects of pre-existing twins on the mechanical properties of Laves phase V2Hf-based alloy;Materials Characterization;2023-01
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