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Micromechanical scribing and indentation behavior of injection-molded polymeric carbon nanotube (CNT) nanocomposites

机译:注塑成型碳纳米管(CNT)纳米复合材料的微机械刻划和压痕行为

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摘要

Polymeric carbon nanotube (CNT) nanocomposites have unique mechanical, electrical, and thermal properties. Anisotropy can be induced depending on the alignment of the CNT fillers within polymeric composites, which is known to affect material properties. In order to investigate the effects of CNT alignments in micromechanical scribing using a single crystal diamond tool, a micro-indenter-scriber system was developed. Multiwalled carbon nanotube-polystyrene (MWCNT-PS) samples with varying CNT concentrations were prepared through a microinjection molding process, where the injection enables the partial alignment of CNTs in the flow direction through high shear stress. A mechanistic scribing force model was proposed based on the material properties that could be obtained using the microindentation techniques. Scribing experiments were performed in the parallel and perpendicular directions to the CNT alignment. Forces in three axes were measured and analyzed to identify three unknown parameters - the shearing, plowing, and adhesion friction coefficients. The resulting coefficients for scribing perpendicular to the CNT alignment showed distinguishable trends from scribing parallel to the CNT alignment as the CNT loadings increased. Their linear trends in relation to the material properties identified from indentation techniques can be used to predict microscribing parameters and resulting cutting forces, in combination with the proposed mechanistic model.
机译:聚合碳纳米管(CNT)纳米复合材料具有独特的机械,电和热性能。取决于聚合物复合材料中CNT填料的排列,会引起各向异性,这已知会影响材料性能。为了研究在使用单晶金刚石工具的微机械划刻中CNT排列的影响,开发了一种微压头划线系统。通过微注射成型工艺制备了具有变化的CNT浓度的多壁碳纳米管-聚苯乙烯(MWCNT-PS)样品,其中注射能够通过高剪切应力使CNT在流动方向上部分对准。基于材料特性,提出了一种机械刻划力模型,该材料可以使用微压痕技术获得。在与CNT排列平行和垂直的方向上进行划线实验。测量并分析了三个轴上的力,以识别三个未知参数-剪切,耕作和粘附摩擦系数。垂直于CNT排列的划线所产生的系数显示出随着CNT负载增加而平行于CNT排列的划线所呈现的明显趋势。与压痕技术确定的材料特性相关的线性趋势可以与建议的机械模型结合起来用于预测微划痕参数和产生的切削力。

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