Improvement of toughness properties of polypropylene filled with nanobentonite using stearic acid as interface modifier

Author:

Hernandez Yarazett1,Lozano Tomas1,Morales Ana B1,Navarro-Pardo Fabiola1,Lafleur Pierre G2,Sanchez-Valdes Saul3,Martinez-Colunga Guillermo3,Morales-Zamudio Luisiana1,de Lira-Gomez Patricia4

Affiliation:

1. División de Estudios de Posgrado e Investigación, Instituto Tecnológico de Cd. Madero, Juventino Rosas y Jesús Urueta, Tamaulipas, México

2. École Polytechnique de Montréal, Chemical Engineering Department Montreal, Quebec, Canada

3. Centro de Investigación en Química Aplicada (CIQA), Saltillo, Coahuila, México

4. Universidad Automoma de Zacatecas, Unidad Academica de Ciencias de la Tierra, Calzada Universidad, Zacatecas, Mexico

Abstract

The mechanical properties of polypropylene-bentonite nanocomposites were studied in this work. In this study, stearic acid was used as both a new surface modifier of the nano bentonite and a new interface modifier during the compounding of the nanocomposites with a twin-screw extruder. Three different weight concentrations (1.5 wt.%, 2.5 wt.%, and 5.0 wt.%.) were chosen for each type of nanobentonite compounds. Fourier transform infrared spectroscopy allowed us the possibility to discard any chemical interaction between the nanobentonite and stearic acid. Nevertheless, the physical interactions between both components favored the mechanical properties, resulting in around 150% improvement in the elongation of the nanocomposites containing stearic acid as surface and interface modifier. This can be due to the good intercalation of the nanobentonite platelets as found by wide angle X-ray diffraction and this was further confirmed by scanning electron microscopy, where the fracture surface analyses of these nanocomposites showed the best dispersion and wetting of the nanoplatelets by the polymer matrix. Crystallization behavior was also modified by stearic acid incorporation and the nanocomposites with better dispersion exhibited crystallization temperatures similar to pure polypropylene.

Publisher

SAGE Publications

Subject

Materials Chemistry,Mechanical Engineering,Mechanics of Materials,Ceramics and Composites

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