MECHANICAL CHARACTERIZATION OF POLYMERIC FILMS BASED ON COPOLYMERS OF STYRENE AND BUTYL ACRYLATE OBTAINED BY HETEROGENEOUS POLYMERIZATION IN SEMICONTINUOUS

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The aim of this work was to synthesize copolymers of styrene (St) and butyl acrylate (AB) cross-linked with allyl methacrylate by semicontinuous heterogeneous polymerization in order to study the mechanical properties of the polymeric films prepared from the latexes obtained. Copolymer latexes were...

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Detalles Bibliográficos
Autores: Neira Velázquez, M. Guadalupe, Puca Pacheco, Mercedes, Canché Escamilla, Gonzalo
Formato: artículo
Fecha de Publicación:2021
Institución:Sociedad Química del Perú
Repositorio:Revista de la Sociedad Química del Perú
Lenguaje:español
OAI Identifier:oai:rsqp.revistas.sqperu.org.pe:article/318
Enlace del recurso:https://revistas.sqperu.org.pe/index.php/revistasqperu/article/view/318
Nivel de acceso:acceso abierto
Materia:Poliestireno
películas poliméricas
propiedades mecánicas
semicontinuo
polimerización
Polystyrene
polymeric films
mechanical properties
semicontinuous
polymerization
Descripción
Sumario:The aim of this work was to synthesize copolymers of styrene (St) and butyl acrylate (AB) cross-linked with allyl methacrylate by semicontinuous heterogeneous polymerization in order to study the mechanical properties of the polymeric films prepared from the latexes obtained. Copolymer latexes were stable and nanoparticles with spherical morphology were observed by Transmission Electron Microscopy (TEM). The latexes had final conversions between 92,5 and 97,0%, which were determined by the gravimetric method, and a solids content close to 20%. The nanoparticles of latex had an average diameter of 59,1; 55,1 and 49,0 nm for monomer dosing rates of 0,75; 0,45 and 0,15 g/min, respectively. By means of mechanical characterization of the polymeric films and according to the statistical analysis, it was found that when the monomer dosage rate decreased in the synthesis, the mean particle diameter and molecular weight also decreased, and with it a decrease in its Young's Modulus (MPa).
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