Published April 2020 | Version v1
Journal article

Hybrid XNBR composites with carbon and aluminosilicate nanofillers

  • 1. Central Institute for Labour Protection-National Research Institute (CIOP-PIB) (Poland)
  • 2. Institute of Electronic Materials Technology (ITME) (Poland)
  • 3. Rzeszow University of Technology. Faculty of Chemistry (Poland)
  • 4. University of Bielsko-Biala (Poland)
  • 5. Lodz University of Technology. Institute of Polymer and Dye Technology (Poland)

Description

The objective of the work was to investigate the possibility of simultaneous application of different types of nanofillers: graphene oxide with carboxylic groups and modified bentonite nanoparticles to carboxylated acrylonitrile-butadiene rubber (XNBR), and to determine the effect on the structural, mechanical and barrier properties of the composites. The composites were designed for use in protective clothing and gloves. Rubber compounds were crosslinked by a hybrid set with simultaneous use of sulphur (1.5 phr) and magnesium oxide (2.5 phr). Graphene oxide and bentonite particles were characterised by BET test method. The XNBR composites with nanofillers were studied in terms of structure (WAXS) and types of chemical bonds (FTIR), barrier properties against chemical substances (mineral oil) and swelling properties, as well as mechanical properties (puncture resistance, tear resistance, cut resistance, abrasion resistance, tensile strength). Simultaneous incorporation into XNBR of two types of nanofillers, bentonite in the amount of 1.0-4.0 phr and graphene oxide with carboxylic groups in the amount of 1.0-2.0 phr, affected positively the mechanical parameters. The most significant improvement was noted for the parameter specifying the puncture resistance, almost threefold improvement from 34 ± 2 N for unfilled XNBR composite to 91 ± 5 N for XNBR composite filled with 2 phr of bentonite (XNBR Bent. 2), or one and a half to 56 ± 5 N for XNBR composite filled with 2 phr of bentonite and 2 phr of graphene oxide (XNBR Bent 2 GO 2). The composites showed equally high resistance to penetration of the selected test chemical-mineral oil. The breakthrough time for XNBR composites without the nanofiller and containing differential amounts of nanofillers was very long and similar to that obtained for the reference sample (480 min).

Additional details

Identifiers

Publishing Information

Journal Title
Polymer Bulletin
Journal Volume
77
Journal Page Range
1749-1780
ISSN
0170-0839
CODEN
POBUDR

INIS

Country of Publication
Germany
Country of Input or Organization
International Atomic Energy Agency (IAEA)
Subject category
S77: NANOSCIENCE AND NANOTECHNOLOGY; S36: MATERIALS SCIENCE;
Descriptors DEI
NANOPARTICLES; GRAPHENE; SWELLING; TENSILE PROPERTIES; ABRASION; ACRYLONITRILE; BENTONITE; GLOVES; FOURIER TRANSFORM SPECTROMETERS; BUTADIENE; INFRARED SPECTRA; CHEMICAL BONDS

Optional Information

Copyright
(c) 2019 © The Author(s) 2019