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Synthesis and characterization of polystyrene carbon nanotube nanocomposite for utilization in the displaced foam dispersion methodology

机译:用于置换泡沫分散法的聚苯乙烯碳纳米管纳米复合材料的合成与表征

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摘要

Incorporating nanostructured functional constituents within polymers has become extensive in processes and products for manufacturing composites. The conception of carbon nanotubes (CNT5) and their heralded attributes that yield property enhancements to the carrier system is leading many industries and research endeavors. Reported Displaced Foam Dispersion (DFD) methodology is a novel and effective approach to facilitating the incorporation of CNTs within fiber reinforced polymer composites (FRPC). The methodology consists of six separate solubility phases that lead to the manufacture of CNT-FRPCs. This study was primarily initiated to characterize the interaction parameters of nanomaterials (multi walled carbon nanotubes), polymers (polystyrene), and solvents (dimethyl formamide (DMF) and acetone) in the current paradigm of the DFD materials manufacture. Secondly we sought to illustrate the theoretical potential for the methodology to be used in conjunction with other nanomaterial-polymersolvent systems. Herein, the theory of Hansen's solubility parameters (HSP) is employed to explain the effectiveness of the DFD materials manufacture ratios and aid in the explanation of the experimental results. The results illustrate quantitative values for the relative energy differences between each polymer-solvent system. Transmission electron microscopy (TEM) was used to characterize the multi walled carbon nanotubes (MWCNTs) in each of the solubility stages and culminates with an indication of good dispersion. Additionally, the rate of acetone evaporation over 25 min is reported for the sorbed CNTaffy nanocomposites from 0 to approximately 60 wt percent loadings. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在制造复合材料的过程和产品中,将纳米结构功能成分掺入聚合物中已变得广泛。碳纳米管(CNT5)的概念及其具有先驱属性的特性可增强载体系统的性能,正在引领许多行业和研究工作。报道的置换泡沫分散体(DFD)方法是一种新颖且有效的方法,可促进CNT在纤维增强聚合物复合材料(FRPC)中的掺入。该方法包括六个独立的溶解相,这些相导致制造CNT-FRPC。这项研究最初是为了表征DFD材料制造的当前范例中的纳米材料(多壁碳纳米管),聚合物(聚苯乙烯)和溶剂(二甲基甲酰胺(DMF)和丙酮)的相互作用参数。其次,我们试图说明该方法与其他纳米材料-聚合物溶剂系统结合使用的理论潜力。在本文中,使用汉森溶解度参数(HSP)的理论来解释DFD材料制造比率的有效性,并有助于解释实验结果。结果说明了每种聚合物-溶剂体系之间相对能量差异的定量值。透射电子显微镜(TEM)用于表征每个溶解度阶段中的多壁碳纳米管(MWCNT),并且最终显示出良好的分散性。此外,据报道,吸附的CNTaffy纳米复合材料在0到大约60 wt%的负载量下,丙酮在25分钟内的蒸发速率。 (C)2016 Elsevier Ltd.保留所有权利。

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