Microstructure and mechanical properties of V–Me(Cr,W)–Zr alloys as a function of their chemical–thermal treatment modes
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,Materials Science (miscellaneous),Nuclear and High Energy Physics
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1. Effect of Thermomechanical Treatment Modes on the Concentration and Diffusion Characteristics of Interstitial Atoms (C, O, N) and Elastic (Young’s) Moduli in Vanadium and Vanadium Alloys (V–4Cr–4Ti, V–W–Cr, V–Ta–Cr–Zr);Physics of Atomic Nuclei;2023-12
2. Thermal Stability of Nanosized Nonmetallic Phase Particles in Low-Activated Dispersion Hardening Vanadium Alloys;Physics of Atomic Nuclei;2023-12
3. Influence of oxygen concentration on mechanical properties and fracture features of V–Me (Cr,W)–Zr-system vanadium alloys at different temperatures;Materials Science and Engineering: A;2023-05
4. Increasing the Thermal Stability and High-Temperature Strength of Vanadium Alloys by Strengthening with Nanosized Non-Metallic Particles;Materials;2023-03-18
5. Thermomechanical treatment influence on strength properties of vanadium alloys of V-Me(Cr, W)-Zr system at different temperatures;Materials Characterization;2022-10
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