Comments on “The absence of a stable hexagonal Laves phase modification (NbCr2) in the Nb–Cr system”
Author:
Publisher
Elsevier BV
Subject
Condensed Matter Physics,General Materials Science,Mechanics of Materials,Metals and Alloys,Mechanical Engineering
Reference20 articles.
1. The absence of a stable hexagonal Laves phase modification (NbCr2) in the Nb–Cr system
2. Structural stability of the Laves phase Cr2Ta in a two-phase Cr–Cr2Ta alloy
3. Microstructural and crystallographic relationships in directionally solidified NbCr2Nb and CrCr2Nb eutectics
4. High temperature mechanical properties of C15 Laves phase Cr2Nb intermetallics
5. An experimental evaluation of the phase relationships and solubilities in the NbCr system
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1. A first step towards understanding thermomechanical behavior of the Nb-Cr system through interatomic potential development and molecular dynamics simulations;Scientific Reports;2024-06-22
2. Experimental measurement and modeling of lattice thermal expansion and specific heat capacity of C15-Cr2Nb Laves phase intermetallic compound;Journal of Alloys and Compounds;2024-03
3. High-temperature phase stability and phase transformations of Niobium-Chromium Laves phase: Experimental and first-principles calculation studies;Materials & Design;2023-12
4. Isothermal sections of the Co–Mn–Nb and Co–Mn–Ta phase diagrams at 1200 K;Calphad;2022-03
5. Formation of complex intermetallic phases in novel refractory high-entropy alloys NbMoCrTiAl and TaMoCrTiAl: Thermodynamic assessment and experimental validation;Journal of Alloys and Compounds;2020-11
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