Impact of Basalt Filler on Thermal and Mechanical Properties, as Well as Fire Hazard, of Silicone Rubber Composites, Including Ceramizable Composites. 2019

Przemysław Rybiński, and Bartłomiej Syrek, and Witold Żukowski, and Dariusz Bradło, and Mateusz Imiela, and Rafał Anyszka, and Anke Blume, and Wouter Verbouwe
Institute of Chemistry, The Jan Kochanowski University, Żeromskiego 5, 25-369 Kielce, Poland. przemyslaw.rybinski@ujk.kielce.pl.

This article illustrates the impact of basalt filler, both in the form of basalt flakes and basalt fibers, on thermal and mechanical properties, as well as on the fire hazard, of silicone rubber (SR) composites, including ceramizable composites. In addition to basalt filler, ceramizable composites contain mineral fillers in their composition in the form of silica and calcium carbonate, inorganic fluxes such as zinc borate and glass frit, and melamine cyanurate as a flame retardant. The obtained composites were analyzed from the point of view of their morphology, rheological and thermal properties, flammability, and mechanical properties before and after the ceramization process. The obtained research results indicate that the basalt filler has an unambiguous impact on the improvement of thermal properties and the reduction of flammability in the analyzed composites. The results of morphological analyses of ceramizable composites before and after the process of their ceramization indicate a definite impact of the basalt filler on the structure of the formed ceramic layer. An increase in its homogeneity exerts a direct impact on the improvement of its mechanical parameters.

UI MeSH Term Description Entries

Related Publications

Przemysław Rybiński, and Bartłomiej Syrek, and Witold Żukowski, and Dariusz Bradło, and Mateusz Imiela, and Rafał Anyszka, and Anke Blume, and Wouter Verbouwe
November 1993, Biomaterials,
Przemysław Rybiński, and Bartłomiej Syrek, and Witold Żukowski, and Dariusz Bradło, and Mateusz Imiela, and Rafał Anyszka, and Anke Blume, and Wouter Verbouwe
July 2023, Polymers,
Przemysław Rybiński, and Bartłomiej Syrek, and Witold Żukowski, and Dariusz Bradło, and Mateusz Imiela, and Rafał Anyszka, and Anke Blume, and Wouter Verbouwe
April 2023, Polymers,
Przemysław Rybiński, and Bartłomiej Syrek, and Witold Żukowski, and Dariusz Bradło, and Mateusz Imiela, and Rafał Anyszka, and Anke Blume, and Wouter Verbouwe
April 2018, Polymers,
Przemysław Rybiński, and Bartłomiej Syrek, and Witold Żukowski, and Dariusz Bradło, and Mateusz Imiela, and Rafał Anyszka, and Anke Blume, and Wouter Verbouwe
February 2016, Materials (Basel, Switzerland),
Przemysław Rybiński, and Bartłomiej Syrek, and Witold Żukowski, and Dariusz Bradło, and Mateusz Imiela, and Rafał Anyszka, and Anke Blume, and Wouter Verbouwe
December 2013, Applied spectroscopy,
Przemysław Rybiński, and Bartłomiej Syrek, and Witold Żukowski, and Dariusz Bradło, and Mateusz Imiela, and Rafał Anyszka, and Anke Blume, and Wouter Verbouwe
August 2020, Polymers,
Przemysław Rybiński, and Bartłomiej Syrek, and Witold Żukowski, and Dariusz Bradło, and Mateusz Imiela, and Rafał Anyszka, and Anke Blume, and Wouter Verbouwe
August 2020, Materials (Basel, Switzerland),
Przemysław Rybiński, and Bartłomiej Syrek, and Witold Żukowski, and Dariusz Bradło, and Mateusz Imiela, and Rafał Anyszka, and Anke Blume, and Wouter Verbouwe
May 2023, Polymers,
Przemysław Rybiński, and Bartłomiej Syrek, and Witold Żukowski, and Dariusz Bradło, and Mateusz Imiela, and Rafał Anyszka, and Anke Blume, and Wouter Verbouwe
March 2021, Polymers,
Copied contents to your clipboard!