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HERO ID
4722804
Reference Type
Journal Article
Title
Ionic elastomers based on carboxylated nitrile rubber (XNBR) and magnesium aluminum layered double hydroxide (hydrotalcite)
Author(s)
Laskowska, A; Zaborski, M; Boiteux, G; Gain, O; Marzec, A; Maniukiewicz, W
Year
2014
Is Peer Reviewed?
Yes
Journal
Express Polymer Letters
ISSN:
1788-618X
Volume
8
Issue
6
Page Numbers
374-386
DOI
10.3144/expresspolymlett.2014.42
Web of Science Id
WOS:000333958000002
Abstract
The presence of carboxyl groups in carboxylated nitrile butadiene rubber (XNBR) allows it to be cured with different agents. This study considers the effect of crosslinking of XNBR by magnesium aluminum layered double hydroxide (MgAl-LDH), known also as hydrotalcite (HT), on rheometric, mechano-dynamical and barrier properties. Results of XNBR/HT composites containing various HT loadings without conventional curatives are compared with XNBR compound crosslinked with commonly used zinc oxide. Hydrotalcite acts as an effective crosslinking agent for XNBR, as is particularly evident from rheometric and Fourier transform infrared spectroscopy (FTIR) studies. The existence of ionic crosslinks was also detected by dynamic mechanical analysis (DMA) of the resulting composites. DMA studies revealed that the XNBR/HT composites exhibited two transitions - one occurring at low temperature is associated to the T-g of elastomer and the second at high temperature corresponds to the ionic transition temperature T-i. Simultaneous application of HT as a curing agent and a filler may deliver not only environmentally friendly, zinc oxide-free rubber product but also ionic elastomer composite with excellent mechanical, barrier and transparent properties.
Keywords
rubber; mechanical properties; carboxylated nitrile rubber; crosslinking; ionic elastomers
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