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Jose, S.A.; John, M.; Menezes, P.L. Cermet Systems: Synthesis, Properties, and Applications. Ceramics 2022, 5, 210-236. https://doi.org/10.3390/ceramics5020018
Jose SA, John M, Menezes PL. Cermet Systems: Synthesis, Properties, and Applications. Ceramics. 2022; 5(2):210-236. https://doi.org/10.3390/ceramics5020018
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Jose SA, John M, Menezes PL. Cermet Systems: Synthesis, Properties, and Applications. Ceramics. 2022; 5(2):210-236. https://doi.org/10.3390/ceramics5020018
Feature papers are submitted upon individual invitation or recommendation by the scientific editors and must receive positive feedback from the reviewers.
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Jose, S. A., John, M., & Menezes, P. L. (2022). Cermet Systems: Synthesis, Properties, and Applications. Ceramics, 5(2), 210-236. https://doi.org/10.3390/ceramics5020018
Abstract: Cermet is an advanced class of material consisting of a hard ceramic phase along with a metallic binding phase with the combined advantages of both the ceramic and the metal phase. The superior properties of this class of materials are particularly useful in high-temperature, tribological, and machining applications. This review paper seeks to provide a comprehensive overview of the various cermet systems. More specifically, the most commonly used cermet systems based on tungsten carbide (WC), titanium carbide (TiC), titanium carbonitride (TiCN), and aluminum oxide (Al2O3) are discussed based on their development, properties, and applications. The effect of different metallic binders and their composition on the tribological and mechanical properties of these cermet systems is elaborated. The most common processing techniques for cermet systems, such as powder metallurgy (PM), reaction synthesis (RS), thermal spray (TS), cold spray (CS), and laser-based additive manufacturing techniques are discussed. The influence of the processing parameters in each case is evaluated. Finally, the applications and challenges of cermet systems are summarized. Keywords: cermet; self-lubrication; cold spray; microstructure; wear resistance
Jose, Subin Antony, Merbin John, and Pradeep L. Menezes. 2022. "Cermet Systems: Synthesis, Properties, and Applications" Ceramics 5, no. 2: 210-236. https://doi.org/10.3390/ceramics5020018
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Jose, Subin Antony, Merbin John, and Pradeep L. Menezes. 2022. "Cermet Systems: Synthesis, Properties, and Applications" Ceramics 5, no. 2: 210-236. https://doi.org/10.3390/ceramics5020018
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Jose, S. A., John, M., & Menezes, P. L. (2022). Cermet Systems: Synthesis, Properties, and Applications. Ceramics, 5(2), 210-236. https://doi.org/10.3390/ceramics5020018
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Jose, S.A.; John, M.; Menezes, P.L. Cermet Systems: Synthesis, Properties, and Applications. Ceramics 2022, 5, 210-236. https://doi.org/10.3390/ceramics5020018