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Effects of Basalt and Carbon Fillers on Fire Hazard, Thermal, and Mechanical Properties of EPDM Rubber Composites

Przemysław RybińskiInstitute of Chemistry, The Jan Kochanowski University, 25-406 Kielce, PolandBartłomiej SyrekInstitute of Chemistry, The Jan Kochanowski University, 25-406 Kielce, PolandAnna MarzecInstitute of Polymer and Dye Technology, Faculty of Chemistry, Lodz University of Technology, 90-924 Lodz, PolandBolesław SzadkowskiInstitute of Polymer and Dye Technology, Faculty of Chemistry, Lodz University of Technology, 90-924 Lodz, PolandMałgorzata KuśmierekInstitute of Polymer and Dye Technology, Faculty of Chemistry, Lodz University of Technology, 90-924 Lodz, PolandMagdalena Śliwka‐KaszyńskaDepartment of Organic Chemistry, Faculty of Chemistry, Gdansk University of Technology, 80-233 Gdansk, PolandUlugbek Zakirovich MirkhodjaevDepartment of Biophysics, National University of Uzbekistan, Tashkent 700174, Vuzgorodok, Uzbekistan
Materialsjournal2021en
ABI

Аннотация

Due to growing restrictions on the use of halogenated flame retardant compounds, there is great research interest in the development of fillers that do not emit toxic compounds during thermal decomposition. Polymeric composite materials with reduced flammability are increasingly in demand. Here, we demonstrate that unmodified graphene and carbon nanotubes as well as basalt fibers or flakes can act as effective flame retardants in polymer composites. We also investigate the effects of mixtures of these carbon and mineral fillers on the thermal, mechanical, and rheological properties of EPDM rubber composites. The thermal properties of the EPDM vulcanizates were analyzed using the thermogravimetric method. Flammability was determined by pyrolysis combustion flow calorimetry (PCFC) and cone calorimetry.

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