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        Polylactic acid effectively reinforced with reduced graphitic oxide

        Fecha
        2022-09-01
        Registro en:
        De La Cruz Natera, A., Cordero García, A., Restrepo Betancourt, J., Arias Tapia, M. & Vargas Ceballos, O. (2022). Polylactic acid effectively reinforced with reduced graphitic oxide. Journal of Polymer Engineering, 42(8), 736-743. https://doi.org/10.1515/polyeng-2021-0363
        https://hdl.handle.net/20.500.12585/12365
        10.1515/polyeng-2021-0363
        Universidad Tecnológica de Bolívar
        Repositorio Universidad Tecnológica de Bolívar
        https://repositorioslatinoamericanos.uchile.cl/handle/2250/8682728
        Autor
        De La Cruz Natera, Alejandra
        Cordero García, Adriana
        Restrepo Betancourt, Juan
        Arias Tapia, Mary Judith
        Institución
        • Universidad Tecnológica de Bolivar UTB (Colombia)
        Resumen
        The present study was developed to reinforce a thermoplastic matrix with carbonaceous material to improve its thermal and mechanical properties. Composite materials formed from the homogenization of polylactic acid (PLA) and reduced graphitic oxide (RGO) were synthesized and characterized, reinforcement of the polymer's thermomechanical properties and the adequate homogeneity ratio in the dispersion of the composite material were studied. Graphitic oxide (GO) was synthesized by the modified Hummers method, followed by thermal exfoliation. The chemical composition and the structure of RGO were studied by infrared (FT-IR) and Raman spectroscopies, respectively. PLA composites with different RGO contents (2 and 3% by weight) were prepared and compared in terms of distribution of RGO in the matrix and morphology, using scanning electron microscopy. The thermal stability of the composites was determined through thermogravimetric analysis. Torque of the different composites was measured, which increased at 21%; the tensile test showed an improvement in the mechanical parameters of the composites because the RGO favors the rigidity of the composite. In addition, the oxygenated functional groups present in the RGO allowed a more significant interaction with the PLA matrix, which results in an effective reinforcement of the mechanical properties of the composite material
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        Red de Repositorios Latinoamericanos
        + de 8.000.000 publicaciones disponibles
        500 instituciones participantes
        Dirección de Servicios de Información y Bibliotecas (SISIB)
        Universidad de Chile
        Ingreso Administradores
        Colecciones destacadas
        • Tesis latinoamericanas
        • Tesis argentinas
        • Tesis chilenas
        • Tesis peruanas
        Nuevas incorporaciones
        • Argentina
        • Brasil
        • Colombia
        • México
        Dirección de Servicios de Información y Bibliotecas (SISIB)
        Universidad de Chile
        Red de Repositorios Latinoamericanos | 2006-2018