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- W601156904 abstract "This project is about mechanical characterization of high performance,structural composite materials. Within the context of this project, a commercial,now available epoxy resin reinforced with carbon nanotubes (CNT’s) wascompared with a high performance commercially available epoxy resin, alsousing unidirectional carbon fiber as reinforcement agent.CNT’s are a relatively new, interesting topic to study within the materialsscience, and because of the potential shown in previous studies, are of utterimportance for critical structural applications, such as those found in theaerospace industry. During this project previous references were studied andused as comparison material to design the methodological framework followedin this work.To observe CNT’s benefits, samples tailored to American Society for Testingand Materials (ASTM) standards were manufactured and tested in order toquantify the mechanical properties discussed in this. ASTM standards provideboth the sample dimension requirements and the testing procedure to befollowed in order to obtain reliable, organized, meaningful data from proposedtests. Tensile, shear and flexural strain-strength tests were performed insamples using both kinds of resins.Data collected from tests was organized, plotted and analyzed to understandmechanical behavior of the samples during the tests. Main engineering valuessuch as ultimate tensile strength, engineering stress, young’s modulus, shearstrength and so were gathered and documented in this project. CNT’sreinforced epoxy samples outperformed the common epoxy samples in general,showing a better behavior as seen in the deformation energy absorbed in thesamples in each test.It is encouraged to keep the research on the CNT’s topic as a promising andrelevant technology called to grow in use and performance in the future, as wellas to expand and improve the difficulties and limitations found in this project.This project shows that even when using a low CNT’s content as reinforcementagent within the matrix, evaluated mechanical properties are effectivelyenhanced, making the CNT’s a good candidate for future composite materialcomponents where weight saving and better structural mechanical performanceis needed." @default.
- W601156904 created "2016-06-24" @default.
- W601156904 creator A5034061618 @default.
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- W601156904 date "2011-11-01" @default.
- W601156904 modified "2023-09-23" @default.
- W601156904 title "High performance composite materials: Characterization of carbon fiber reinforced epoxy matrix composites with carbon nanotubes as reinforcement agent within the matrix" @default.
- W601156904 hasPublicationYear "2011" @default.
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