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Interactive Effects between Carbon Allotropes on the Mechanical Reinforcement of Nanocomposites based on Poly(1,4-cis-isoprene)

机译:基于聚(1,4-顺式 - 异戊二烯)的纳米复合材料机械加固碳异滴的互动效应

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Interactive effects of carbon allotropes on the mechanical reinforcement of polymer nanocomposites were investigated by using, as the polymer matrix, poly(1,4-cis-isoprene) (PI) samples from industrial synthesis and from natural sources. Carbon nanotubes (CNT) and nano-graphite with high shape anisotropy (nanoG) were melt blended with PI, as the only fillers or in combination with carbon black (CB), measuring the shear modulus at low strain amplitudes. The nanofiller was found to increase the low amplitude storage modulus of the matrix, with or without CB, by a factor depending on nanofiller type and content. The filler-polymer interfacial area was able to correlate modulus data of composites with CNT, CB and with the hybrid filler system, leading to the construction of a common master curve. The filler networking phenomenon was found to be affected by type and amount of low molecular mass products of PI from natural sources. The correlation between chemical composition, dynamic mechanical and ultimate properties of nanocomposites was investigated. In particular, it was found that low molecular mass components control the ability of elastomeric nano-composites to store or dissipate energy.
机译:通过使用工业合成的聚合物基质和来自工业合成的聚合物基质和来自天然来源的聚合物基质,聚合物基质,聚(1,4-CIS-异戊二烯)(PI)样品研究了碳异滴对聚合物纳米复合材料的机械加固的互动效应。具有高形各向异性(NANOG)的碳纳米管(CNT)和纳米石墨用PI熔融混合,作为唯一的填料或与炭黑(CB)组合,测量低应变幅度的剪切模量。发现纳米填充物通过根据纳米填充型和含量的因子增加基质的低振幅储存模量,有或没有CB。填料 - 聚合物界面区域能够将复合材料的模量数据与CNT,CB和混合填料系统相关,导致常见的主曲线的构造。发现填料网络现象受到来自天然来源的PI的低分子量产物的类型和量的影响。研究了化学成分,动态机械和纳米复合材料的终极性能的相关性研究。特别地,发现低分子质量组分控制弹性体纳米复合材料储存或散发能量的能力。

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