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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Rheological study of carbon nanofiber induced physical gelation in polyolefin nanocomposite melt
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Rheological study of carbon nanofiber induced physical gelation in polyolefin nanocomposite melt

机译:碳纳米纤维在聚烯烃纳米复合熔体中诱导物理胶凝的流变学研究

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The rheological behavior of nanocomposites based on elastomeric ethylene-propylene (EP) random copolymer (84.3 wt% P) and well-dispersed modified carbon nanofibers (MCNFs) with concentrations from 0.5 to 20 wt% were studied by oscillatory-shear rheometry at varying temperatures.At relatively low temperatures,the entanglement density of the polymer chains appeared to increase with filler concentration,ensuring strong MCNF-polymer interactions.At elevated temperatures,pronounced deviations from the ideal melt behavior in the low frequency domain (i.e.positive slopes of the tan delta(omega) curves) were observed,indicating the formation of a three-dimensional percolated network.Following the Winter-Chambon criterion,the transition from pseudo-solid-like to liquid-like behavior (i.e.the critical gel point) upon cooling was determined.The physical gelation induced by MCNFs is a thermo-reversible phenomenon and its origin can be traced to the interactions of nanofillers,where the percolation temperature decreases with filler concentration.Abrupt changes in the critical gelation temperature,the stiffness of the gel and the relaxation exponent were observed in nanocomposites with MCNF loading above 10 wt%.This behavior indicates a change of the mechanism of physical gelation at high MCNF loadings that can be explained by the concept of bridge formation of polymer segments between two adjacent nanofillers in concentrated nanocomposites.
机译:通过振荡剪切流变法在不同温度下研究了基于弹性乙烯-丙烯(EP)无规共聚物(84.3 wt%P)和浓度为0.5至20 wt%的分散良好的改性碳纳米纤维(MCNFs)的纳米复合材料的流变行为。在相对较低的温度下,聚合物链的缠结密度似乎随填料浓度的增加而增加,从而确保了较强的MCNF-聚合物相互作用。观察到δ(Ω)曲线,表明形成了三维渗滤网络。按照Winter-Chambon准则,冷却后从拟固体行为转变为液体行为(即临界凝胶点)为MCNFs诱导的物理胶凝是一种热可逆现象,其起源可以追溯到纳米填料的相互作用,其中渗滤温度随填料浓度的降低而降低。在MCNF负载量大于10 wt%的纳米复合材料中,观察到临界胶凝温度,凝胶的刚度和弛豫指数突然变化。此行为表明在高MCNF负载下物理胶凝机理发生了变化。这可以通过浓缩纳米复合材料中两个相邻纳米填料之间的聚合物链段桥形成的概念来解释。

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