Investigation of thermal shock behaviour of MgO–C refractories by incorporation of pyrolytic liquid as a binder
Author:
Funder
TUBITAK
Publisher
Elsevier BV
Subject
Condensed Matter Physics,General Materials Science
Reference23 articles.
1. Microstructure and mechanical properties of MgO-C refractories containing graphite oxide nanosheets (GONs);Tianbin;Ceram. Int.,2013
2. Tensile behaviour of magnesia carbon refractories;Schmitt;J. Eur. Ceram. Soc.,2000
3. Oxidation kinetics of MgO–C refractory bricks;Faghihi-Sani;Ceram. Int.,2002
4. Effect of ceramic bonding phases on the thermo-mechanical properties of Al2O3–C refractories;Boquan;Ceram. Int.,2013
5. Preparation and strength of SiC refractories with in situ β-SiC whiskers as bonding phase;Wang;Ceram. Int.,2016
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3. Phase evolution of Al–Al2O3–ZrO2 refractories at 1300 °C under N2 flowing;Ironmaking & Steelmaking: Processes, Products and Applications;2024-07-23
4. Impact of in-situ SiC whisker growth on MgO–Al2O3–C unfired refractories;Ceramics International;2024-03
5. Improved slag corrosion resistance of MgO–C refractories with calcium magnesium aluminate aggregate and silicon carbide: Corrosion behavior and thermodynamic simulation;Journal of the European Ceramic Society;2024-01
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