Oxidation resistance and emissivity of diboride-based composites containing tantalum disilicide in air plasma up to 2600 K for space applications
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Surfaces, Coatings and Films,Process Chemistry and Technology,Ceramics and Composites,Electronic, Optical and Magnetic Materials
Reference21 articles.
1. Oxidation resistance of Zr- and Hf-diboride composites containing SiC in air plasma up to 2600 K for aerospace applications;Pellegrini;Ceram. Int.,2022
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3. Oxidation of ZrB2 - and HfB2 -based ultra-high temperature ceramics: effect of Ta additions;Opila;J. Mater. Sci.,2004
4. In-situ determination of the HfO2 –Ta2O5 temperature phase diagram up to 3000°C;McCormack;J. Am. Ceram. Soc.,2019
5. Physical characterization and arcjet oxidation of hafnium-based ultra high temperature ceramics fabricated by hot pressing and field-assisted sintering;Gasch;J. Eur. Ceram. Soc.,2010
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1. Thermodynamic modeling of the Hf-Ta-O system for the design of oxidation resistant HfC-TaC ceramics;Open Ceramics;2024-09
2. Oxidation resistance up to 2600 K under air plasma of (Zr/Hf)B2 composites containing 20 vol% AlN for hypersonic applications;Ceramics International;2023-10
3. Radiation heat transfer during hypersonic flight: A review of emissivity measurement and enhancement approaches of ultra‐high temperature ceramics;International Journal of Ceramic Engineering & Science;2023-02-13
4. Strong high-entropy diboride ceramics with oxide impurities at 1800°C;Science China Materials;2023-01-10
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