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Effect of Processing Technique on the Dispersion of Carbon Nanotubes Within Polypropylene Carbon Nanotube-Composites and Its Effect on Their Mechanical Properties

机译:加工工艺对碳纳米管在聚丙烯碳纳米管复合材料中分散的影响及其对力学性能的影响

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Carbon nanotube-reinforced polymer composites are being investigated as promising new materials having enhanced physical and mechanical properties. With regards to mechanical behavior, the enhancements reported thus far by researchers are lower than the theoretical predictions. One of the key requirements to attaining enhanced behavior is a uniform dispersion of the nanotubes within the polymer matrix. Although solvent mixing has been used extensively, there are concerns that any remaining solvent within the composite may degrade its mechanical properties. In this work, a comparison is carried out between solvent and "solvent-free" dry mixing for dispersing multiwall carbon nanotubes in polypropylene before further melt mixing by extrusion. Various weight fractions of carbon nanotubes (CNTs) are added to the polymer and their effect on the mechanical properties of the resulting composites is investigated. Enhancements in yield strength, hardness, and Young's modulus when compared with the neat polymer, processed under similar conditions, are observed. Differences in mechanical properties and strain as a function of the processing technique (solvent or dry) are also clearly noted. In addition, different trends of enhancement of mechanical properties for the solvent and dry-mixed extrudates are observed. Dry mixing produces composites with the highest yield strength, hardness, and modulus at 0.5 wt% CNT, whereas solvent mixing produces the highest mechanical properties at CNT contents of 1 wt%. It is believed that this difference is primarily dependent on the dispersion of CNTs within the polymer matrix which is influenced by the processing technique. Field emission scanning electron microscopy analysis shows the presence of clusters in large wt% CNT samples produced by dry mixing. Samples produced by solvent mixing are found to contain homogeneously distributed CNTs at all CNT wt fractions. CNT pull-out is observed and may explain the limited enhancement in mechanical properties.
机译:碳纳米管增强的聚合物复合材料正在被研究为具有增强的物理和机械性能的有前途的新材料。关于机械行为,到目前为止,研究人员报告的增强作用低于理论预测。获得增强性能的关键要求之一是纳米管在聚合物基质中的均匀分散。尽管溶剂混合已被广泛使用,但是人们担心复合物中残留的任何溶剂都可能降低其机械性能。在这项工作中,在通过挤出进一步熔融混合之前,将溶剂和“无溶剂”干混进行了比较,以将多壁碳纳米管分散在聚丙烯中。将各种重量分数的碳纳米管(CNT)添加到聚合物中,并研究它们对所得复合材料机械性能的影响。与在类似条件下加工的纯聚合物相比,屈服强度,硬度和杨氏模量得到了提高。还明确指出了机械性能和应变随加工技术(溶剂或干法)变化的差异。另外,观察到溶剂和干混挤出物的机械性能提高的不同趋势。干混合生产的复合材料在CNT含量为0.5 wt%时具有最高的屈服强度,硬度和模量,而溶剂混合在CNT含量为1 wt%时具有最高的机械性能。据信,这种差异主要取决于CNT在聚合物基质内的分散,这受加工技术的影响。场发射扫描电子显微镜分析表明,在通过干混生产的大重量%CNT样品中存在簇。发现通过溶剂混合产生的样品在所有CNT重量分数下均包含均匀分布的CNT。观察到CNT拔出,可能解释了机械性能的有限提高。

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