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Effect of aging conditions and rubber waste content on the mechanical properties and structure of montmorillonite/acrylonitrile butadiene rubber nanocomposites

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dc.title Effect of aging conditions and rubber waste content on the mechanical properties and structure of montmorillonite/acrylonitrile butadiene rubber nanocomposites en
dc.contributor.author Bakar, Mohammed
dc.contributor.author Przybyłek, Małgorzata
dc.contributor.author Białkowska, Anita
dc.contributor.author Żurowski, Wojciech
dc.contributor.author Hanulíková, Barbora
dc.contributor.author Masař, Milan
dc.relation.ispartof Journal of Macromolecular Science, Part B: Physics
dc.identifier.issn 0022-2348 Scopus Sources, Sherpa/RoMEO, JCR
dc.date.issued 2021
dc.type article
dc.language.iso en
dc.publisher Bellwether Publishing, Ltd.
dc.identifier.doi 10.1080/00222348.2021.1885115
dc.relation.uri https://www.tandfonline.com/doi/full/10.1080/00222348.2021.1885115
dc.subject aging en
dc.subject mechanical properties en
dc.subject morphology en
dc.subject rubber nanocomposites en
dc.subject rubber waste en
dc.description.abstract The research described in the present work investigated the effect of thermal and photoaging and rubber waste content on the properties of acrylonitrile–butadiene rubber modified with montmorillonite (MMT). The MMT was mixed with plasticizer before the compounding in two roll mills. The modulus at 300% strain of samples without scrap maximally increased by 50% and 30% after thermal and photoaging, respectively, most probably due to an increase in the crosslink density. The maximum increases of the modulus, measured at 300% strain, of the unaged and aged rubber nanocomposite were exhibited by samples which each contained 10 wt.% of rubber waste. The MMT nanoparticles, well dispersed in the matrix, combined with good interfacial interaction between the different components, led to relative retention of the thermal and photo-oxidation aging coefficients and the large shape retention coefficient of the tested samples. Fourier transform infrared spectra showed that the crosslinking of the rubber nanocomposites containing waste occurred through the nitrile groups and C = C double bonds under the influence of aging. Scanning electron microscopy micrographs indicated that the MMT nanoparticles were uniformly embedded and well dispersed in the matrix. The rough and homogeneous fracture surfaces of the nanocomposite samples were not affected by incorporated waste. As a result of UV irradiation and thermal heating, aggregates were less visible and the fracture surfaces more homogeneous and compact. © 2021 Taylor & Francis Group, LLC. en
utb.faculty University Institute
dc.identifier.uri http://hdl.handle.net/10563/1010253
utb.identifier.obdid 43882494
utb.identifier.scopus 2-s2.0-85102456825
utb.identifier.wok 000627264600001
utb.identifier.coden JMAPB
utb.source j-scopus
dc.date.accessioned 2021-03-23T11:20:49Z
dc.date.available 2021-03-23T11:20:49Z
utb.ou Centre of Polymer Systems
utb.contributor.internalauthor Hanulíková, Barbora
utb.contributor.internalauthor Masař, Milan
utb.wos.affiliation [Bakar, M.; Przybylek, M.; Bialkowska, A.] Univ Technol & Humanities, Fac Chem Engn, Chrobrego 27, PL-26600 Radom, Poland; [Zurowski, W.] Univ Technol & Humanities, Fac Mech Engn, Radom, Poland; [Hanulikova, B.; Masar, M.] Tomas Bata Univ, Ctr Polymer Syst, Zlin, Czech Republic
utb.scopus.affiliation Faculty of Chemical Engineering, University of Technology and Humanities, Radom, Poland; Faculty of Mechanical Engineering, University of Technology and Humanities, Radom, Poland; Centre of Polymer Systems, Tomas Bata University, Zlin, Czech Republic
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