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Effect of acrylonitrile content on compatibility and damping properties of hindered phenol AO-60itrile-butadiene rubber composites: molecular dynamics simulation

机译:丙烯腈含量对受阻酚AO-60 /丁腈橡胶复合材料相容性和阻尼性能的影响:分子动力学模拟

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摘要

The effect of the acrylonitrile content in nitrile-butadiene rubber (NBR) on the compatibility and damping properties of AO-60/NBR was investigated by molecular dynamics (MD) simulation and experimental methods. The hindered phenol AO-60 had poor compatibility with NBR with an acrylonitrile content of 41% (denoted by N220S), but had good compatibility with NBR with an acrylonitrile content of 34% (denoted by N230S). The AO-60/N230S composite had larger H-bonds and higher binding energy than the AO-60/N220S composite at the same AO-60 content, both indicating stronger interactions between N230S and AO-60 and better damping performance of AO-60/N230S. Moreover, SEM, DSC, and DMA were used to evaluate the compatibility and damping of AO-60/NBR composites. Phase separation occurred between N220S and AO-60, but a fine dispersion of AO-60 in N230S was obtained. The present study hopes to provide theoretical guidance to the design of damping rubber materials.
机译:通过分子动力学(MD)模拟和实验方法研究了丁腈橡胶(NBR)中丙烯腈含量对AO-60 / NBR相容性和阻尼性能的影响。受阻酚AO-60与NBR的相容性差,丙烯腈含量为41%(以N220S表示),但与NBR的相容性良好,其丙烯腈含量为34%(以N230S表示)。在相同的AO-60含量下,AO-60 / N230S复合材料比AO-60 / N220S复合材料具有更大的氢键和更高的结合能,均表明N230S和AO-60之间的相互作用更强,并且AO-60的阻尼性能更好。 / N230S。此外,SEM,DSC和DMA用于评估AO-60 / NBR复合材料的相容性和阻尼。 N220S和AO-60之间发生了相分离,但AO-60在N230S中获得了良好的分散性。本研究希望为阻尼橡胶材料的设计提供理论指导。

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