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Functionally graded composites are FGM with metal and ceramic constituents, which are one of the most potential and prominent system for the design and fabrication of components and structures with gradient properties. They have superior capabilities for materials design and development of advanced engineering components. This report discusses on various processing methods of FGM and their applications emphasizing the aerospace sector. Graded SiC preform is synthesized by varying the concentration of inorganic salt mixture and using Al as the binder. The microstructure analysis indicates the…mehr

Produktbeschreibung
Functionally graded composites are FGM with metal and ceramic constituents, which are one of the most potential and prominent system for the design and fabrication of components and structures with gradient properties. They have superior capabilities for materials design and development of advanced engineering components. This report discusses on various processing methods of FGM and their applications emphasizing the aerospace sector. Graded SiC preform is synthesized by varying the concentration of inorganic salt mixture and using Al as the binder. The microstructure analysis indicates the graded distribution of SiC particle and the melt has infiltrated completely throughout the preform to form functionally graded materials. The influence of preform and mold temperature, liquid metal superheat, squeeze pressure, and its rate of application plays major role on solidification microstructures and properties of the composites.
Autorenporträt
Dr.P.Narayanasamy, pós-graduado pela Faculdade Nacional de Engenharia, obteve o seu doutoramento na Universidade Anna na área da Metalurgia do Pó. Ingressou como professor assistente no departamento de Engenharia Mecânica, Faculdade de Engenharia e Tecnologia de Kamaraj, Tamilnadu, Índia, em 2014.