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Investigating the mechanical, morphological, and thermal behavior of PA-6/SAN/MWCNT blends: Application of Taguchi experimental design

机译:研究PA-6 / SAN / MWCNT混合物的机械,形态和热行为:TAGUCHI实验设计的应用

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摘要

This work presents the study of morphology, melting and crystallization characteristics, and mechanical properties of the PA-6/SAN blends reinforced with multiwalled carbon nanotubes (MWCNTs). The Taguchi method was employed to design the experiments based on the three varying parameters (ie, blend composition, nanofiller content, and sequence of blending) to obtain the optimized mechanical properties of the nanocomposites. In addition, localization of nanotubes was studied in terms of thermodynamic and kinetic prospects. It was observed that, due to the preferential tendency for localization of the carbon nanotubes toward the PA-6 matrix, mixing protocol had an important role in determining the performance of the nanocomposites. Incorporation of an optimum weight percent of the MWCNT provided a good dispersion of the nanotubes and also an appropriate morphology for the blend. According to the analysis based on the Taguchi method, the optimum mixing protocol, blend composition, and MWCNT loading were M2, 80/20, and 0.5 wt%, respectively.
机译:该工作介绍了与多壁碳纳米管(MWCNT)加固的PA-6 / SAN共混物的形态,熔化和结晶特性的研究,以及加强的PA-6 / SAN混合物。使用Taguchi方法基于三个不同参数(即,共混组合物,纳米填充物含量和混合序列)来设计实验,以获得纳米复合材料的优化机械性能。此外,在热力学和动力学前景方面研究了纳米管的定位。观察到,由于碳纳米管朝向PA-6基质定位的优先倾向,混合方案在确定纳米复合材料的性能方面具有重要作用。掺入最佳重量百分比MWCNT,提供了纳米管的良好分散,以及混合物的适当形态。根据基于Taguchi方法的分析,最佳混合方案,共混物组合物和MWCNT负载分别为M2,80/20和0.5wt%。

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