Back to Search Start Over

Damping and Toughening Effect of the Reinforcements on the Epoxy Modified Recycled + Devulcanized Rubber Based Composites

Authors :
Ibrahim Miskioglu
Alaeddin Burak Irez
Emin Bayraktar
Laboratoire QUARTZ (QUARTZ )
Université Paris 8 Vincennes-Saint-Denis (UP8)-SUPMECA - Institut supérieur de mécanique de Paris-Ecole Nationale Supérieure de l'Electronique et de ses Applications (ENSEA)-Ecole Internationale des Sciences du Traitement de l'Information (EISTI)
Université Paris 8 Vincennes-Saint-Denis (UP8)-Ecole Nationale Supérieure de l'Electronique et de ses Applications (ENSEA)-SUPMECA - Institut supérieur de mécanique de Paris (SUPMECA)-Ecole Internationale des Sciences du Traitement de l'Information (EISTI)
Source :
Mechanics of Composite, Hybrid and Multifunctional Materials, Volume 5 ISBN: 9783319955094, Mechanics of Composite, Hybrid and multifunctional Materials, Springer, Volume 5, Mechanics of Composite, Hybrid and multifunctional Materials, Springer, Volume 5, pp.147-158, 2018
Publication Year :
2018
Publisher :
Springer International Publishing, 2018.

Abstract

This paper discusses damping effect of the reinforcements on the epoxy modified (10, 20 and 30 wt. %) devulcanized recycled rubber based composites. Within this study, the influence of Boron, γ-alumina and hollow glass microspheres (HGM) added in the matrix as the reinforcement elements were examined. As well known, devulcanization process is an efficient method of micronized rubber that can be used as useful products in a highly valued form. In this study, a combined process (chemical treatment + microwave) was used in order to modify the structure of the scrap recycled rubber. To characterize toughening and impact behaviour, quasi static 3P bending tests and choc tests were used for obtaining the principal values KIc and GIc and also damping capacity due to the reinforcement particles. Additionally, Shore-D hardness tests were measured. Scanning Electronic microscopy (SEM) was used to check dispersion quality and fracture surfaces, in scanning mode.

Details

ISBN :
978-3-319-95509-4
ISBNs :
9783319955094
Database :
OpenAIRE
Journal :
Mechanics of Composite, Hybrid and Multifunctional Materials, Volume 5 ISBN: 9783319955094, Mechanics of Composite, Hybrid and multifunctional Materials, Springer, Volume 5, Mechanics of Composite, Hybrid and multifunctional Materials, Springer, Volume 5, pp.147-158, 2018
Accession number :
edsair.doi.dedup.....44b81357f617c4d7127c87dfe37e0948
Full Text :
https://doi.org/10.1007/978-3-319-95510-0_17