Improved thermal shock resistance of low-carbon Al2O3–C refractories fabricated with C/MgAl2O4 composite powders
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Surfaces, Coatings and Films,Process Chemistry and Technology,Ceramics and Composites,Electronic, Optical and Magnetic Materials
Reference28 articles.
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3. Effect of graphite content and heating temperature on carbon pick-up of ultra-low-carbon steel from magnesia-carbon refractory using CFD modelling [J];Wang;Int. J. Heat Mass Tran.,2018
4. Characterization of alumina-magnesia-carbon refractory bricks containing aluminium and silicon [J];Calvo;Ceram. Int.,2018
5. Thermomechanical and thermophysical characteristics of alumina-carbon monolithic refractory containing surface-modified graphites in matrix [J];Mukhopadhyay;Ceram. Int.,2018
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1. Influence of Cr2AlC on the thermal shock and corrosion resistance of low carbon Al2O3-C refractory;Journal of the European Ceramic Society;2024-10
2. Micromechanical properties of Al2O3–C refractories with aggregate/matrix interfacial layer by nanoindentation;Journal of the American Ceramic Society;2024-08-23
3. Effect of h-BN rods on high-temperature properties of alumina–carbon refractory;Journal of Iron and Steel Research International;2024-08-12
4. Phase evolution of Al–Al2O3–ZrO2 refractories at 1300 °C under N2 flowing;Ironmaking & Steelmaking: Processes, Products and Applications;2024-07-23
5. Properties and corrosion mechanism of Al2O3–SiC–C refractories for hot metal ladle with high FeOx: Effect of in-situ MgAl2O4;Ceramics International;2024-06
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