Mechanisms of oxycarbide formation on ZrC, HfC, and TaC surfaces during early oxidation: Insights from computational simulations
Author:
Funder
Defense Acquisition Program Administration
Korea Ministry of Science and ICT
Publisher
Elsevier BV
Reference61 articles.
1. Materials design for hypersonics;Peters;Nat. Commun.,2024
2. Insights into the bond behavior and mechanical properties of hafnium carbide under high pressure and high temperature;Liang;Inorg. Chem.,2021
3. The effect of extreme temperature in an oxidising atmosphere on dense tantalum carbide (TaC);Lashtabeg;J. Mater. Sci.,2013
4. Processing and properties of ZrC, ZrN and ZrCN ceramics: a review;Harrison;Adv. Appl. Ceram.,2016
5. Properties and characteristics of ZrC;Jackson;Comprehensive Nuclear Materials,2012
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