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Polyamide/carbonaceous particles nanocomposites fibers: Morphology and performances

机译:聚酰胺/碳质颗粒纳米复合纤维:形态和性能

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In this work, the influence of carbonaceous particles with different sizes and shapes on the morphology and mechanical performances of polyamide (PA)-based fibers was investigated. Graphene nanoplatelets (GNP) are compared with spherical and rod-like carbon fillers such as carbon black (CB) and multiwall carbon nanotubes (CNTs). The increments of the complex viscosity as well as elastic and loss moduli, in the melt state, assessed by rheological analysis, are reduced by modifying polyamide (PA) matrix with nanofillers in a following order: CNTs>GNP>CB. All the nanocomposites, however, show viscosity and moduli higher than those of neat PA. The CB loading causes a mere increase of the viscosity without altering the relaxation spectrum of PA macromolecules, differently, both GNP and CNTs generate significant rheological alteration suggesting a good dispersion into PA and probable formation of semi-three-dimensional network. The increase of rigidity of the neat PA and all the three investigated nanocomposites fibers as a function of the cold draw follows the same trend observed by the rheological investigation. The morphology changes of PA achieved upon extensional flow and nanofillers adding have been investigated through transmission electron microscopy observations. Furthermore, the variation of the crystalline PA phase due to filler loading and stretching is also detected by thermal analysis and nuclear magnetic resonance analysis in the solid state. The different morphologies of the particles control and determine their dispersion and alignment in PA fibers upon elongational flow and play a key role in structure-property relationships. POLYM. COMPOS., 36:1020-1028, 2015. (c) 2015 Society of Plastics Engineers
机译:在这项工作中,研究了不同尺寸和形状的碳质颗粒对聚酰胺(PA)基纤维的形态和机械性能的影响。将石墨烯纳米片(GNP)与球形和棒状碳填料(例如炭黑(CB)和多壁碳纳米管(CNT))进行比较。通过流变学分析评估的熔融状态下的复数粘度以及弹性模量和损耗模量的增加,可以通过按以下顺序用纳米填料改性聚酰胺(PA)基质来减少:CNTs> GNP> CB。但是,所有纳米复合材料的粘度和模量均高于纯PA。 CB负载仅引起粘度增加而不会改变PA大分子的弛豫谱,不同的是,GNP和CNT均会产生明显的流变学变化,这表明向PA中的分散性良好,并可能形成半三维网络。纯PA和所有三种研究的纳米复合纤维的刚性随冷拔强度的增加遵循流变学研究观察到的相同趋势。已经通过透射电子显微镜观察研究了在延伸流动和添加纳米填料时PA的形态变化。此外,还通过固体状态下的热分析和核磁共振分析来检测由于填充剂填充和拉伸引起的结晶PA相的变化。颗粒的不同形态控制并确定其在伸长流动时在PA纤维中的分散和排列,并在结构-性质关系中起关键作用。 POLYM。 COMPOS。,36:1020-1028,2015.(c)2015年塑料工程师学会

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