2019•Materials Research ExpressOpen access

Carbon nano-materials coating over hollow glass microspheres and its composite foam

Mohammed Imran, Ariful Rahaman, Soumen Pal

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Abstract

Efficient dispersion of carbon nanomaterials (CNMs) in syntactic foams enhances engineering properties of the composites. CNMs were grown over hollow glass microspheres (HGM) at different temperatures (500 °C–700 °C). SEM images show a uniform growth of CNMs over the periphery of HGM. Graphitization of CNM is obtained through Raman spectroscopy and TEM images indicate that CNM structure has higher graphitization at higher temperatures. Composite foam were fabricated using CNM coated HGM as reinforcement in epoxy and their compressive strengths were examined with respect to CNM growing temperatures.

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Efficient dispersion of carbon nanomaterials (CNMs) in syntactic foams enhances engineering properties of the composites. CNMs were grown over hollow glass microspheres (HGM) at different temperatures (500 °C–700 °C). SEM images show a uniform growth of CNMs over the periphery of HGM. Graphitization of CNM is obtained through Raman spectroscopy and TEM images indicate that CNM structure has higher graphitization at higher temperatures. Composite foam were fabricated using CNM coated HGM as reinforcement in epoxy and their compressive strengths were examined with respect to CNM growing temperatures.

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Available abstract

Efficient dispersion of carbon nanomaterials (CNMs) in syntactic foams enhances engineering properties of the composites. CNMs were grown over hollow glass microspheres (HGM) at different temperatures (500 °C–700 °C). SEM images show a uniform growth of CNMs over the periphery of HGM. Graphitization of CNM is obtained through Raman spectroscopy and TEM images indicate that CNM structure has higher graphitization at higher temperatures. Composite foam were fabricated using CNM coated HGM as reinforcement in epoxy and their compressive strengths were examined with respect to CNM growing temperatures.

Key concepts: Glass microsphere, Materials science, Composite material, Composite number, Raman spectroscopy, Syntactic foam, Epoxy, Coating

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