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- W2907238715 abstract "Abstract The in-situ catalytic formation of nanocarbons and ceramic bonding phases in low–carbon magnesia–graphite refractories is one of the significant strategies for heightening their mechanical properties and thermal shock resistance. Here, effect of aluminum content and nickel–containing catalyst addition on microstructural evolution, mechanical and thermo-mechanical behavior of such refractories was explored. Under the function of the catalyst, addition of aluminum powders allowed the newly growth of plenty of nanocarbons (e.g., carbon nanotubes and carbon onions), and also accelerated the in–situ formation of more ceramic bonding phases (e.g., magnesia whiskers and spinel whiskers/particles, etc.) in samples. This occurrence optimized significantly the microstructure of samples, correspondingly giving rise to their superior mechanical properties and thermal shock resistance. This work might provide a path for exploring low–carbon magnesia–graphite refractories with high performances." @default.
- W2907238715 created "2019-01-11" @default.
- W2907238715 creator A5036891682 @default.
- W2907238715 creator A5067843528 @default.
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- W2907238715 date "2019-04-01" @default.
- W2907238715 modified "2023-10-17" @default.
- W2907238715 title "Heightening mechanical properties and thermal shock resistance of low–carbon magnesia–graphite refractories through the catalytic formation of nanocarbons and ceramic bonding phases" @default.
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- W2907238715 doi "https://doi.org/10.1016/j.jallcom.2018.12.310" @default.
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