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Improving performance of low-temperature hydrogenated acrylonitrile butadiene rubber nanocomposites by using nano-clays

机译:利用纳米黏土改善低温氢化丙烯腈丁二烯橡胶纳米复合材料的性能

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摘要

The modifications of low-temperature rubbers have received little attention for a long time despite of their importance in the field of gas or fluid sealing. In this article, the compounding of low-temperature-grade hydrogenated acrylonitrile butadiene rubber (LTG-HNBR) with organically modified montmo-rillonite (OMMT) clays was fabricated for the purpose of improving bulk properties. Heat mixing is found the first step to achieve high performance of the composites due to its advantages in increasing disper-sivity of OMMTs. The results of SAXS and TEM show that the OMMTs are partially exfoliated and intercalated in the matrix. The addition of OMMTs barely affects glassy temperature of matrix, but improves its low-temperature elasticity. The amount of 10 phr organoclays is believed the optimum one to exploit the clay networks where strong interactions with rubber cause dramatic reinforcement. Tensile strength of its nanocomposites is even comparable to that with 35 phr carbon black. Moreover, the incorporation of organoclays reduces the oil-swelling of the bulk and improves its thermal stability. Therefore, we expect that LTG-HNBR nanocomposites may be used to sever the oil-sealing applications at a low temperature.
机译:尽管低温橡胶的改性在气体或流体密封领域很重要,但长期以来很少受到关注。在本文中,为了提高整体性能,制备了低温级氢化丙烯腈丁二烯橡胶(LTG-HNBR)与有机改性蒙脱土(OMMT)粘土的复合材料。由于热混合具有增加OMMT分散性的优势,因此被认为是实现复合材料高性能的第一步。 SAXS和TEM的结果表明OMMT被部分剥落并插入基质中。 OMMT的添加几乎不影响基质的玻璃化温度,但是改善了其低温弹性。据信10份有机粘土的用量是开发粘土网络的最佳方法,在该网络中,与橡胶的强烈相互作用会引起显着的增强作用。其纳米复合材料的拉伸强度甚至可以与35 phr炭黑相媲美。此外,有机粘土的加入减少了块体的油溶胀并改善了其热稳定性。因此,我们期望LTG-HNBR纳米复合材料可用于切断低温下的油封应用。

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