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Control and modelling of capillary flow of epoxy resin in aligned carbon nanotube forests

机译:排列碳纳米管林中环氧树脂毛细流的控制和建模

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摘要

This paper examines the mechanism of infiltration by capillary flow of epoxy resin into vertically-aligned carbon nanotube forests. The resin viscosity during curing was characterized by rheometry. Carbon nanotube forests were brought into contact with resin at a range of times during curing, therefore at a range of viscosities. The penetration of the resin into the forests was measured using electron microscopy, X-ray micro-computed tomography and energy-dispersive X-ray spectroscopy, the latter relying on a chromium-complex dye additive which acts as a marker for the presence of resin. Experimental results were compared to a simulation based on the Implicit Lucas–Washburn equation for capillary flow. It was found that prior to the resin gel point, the resin penetrates through the full height of the forest. Close to the gel point, the flow into the forest ceases, leaving unwetted regions of nanotubes. Understanding the relationship between resin flow in nanotube structures and the resin viscosity and curing has important application in the fabrication of nanocomposite materials. This “partial wetting” effect is a key requirement for a previously proposed method for the fabrication of carbon nanotube composites by additive manufacture (AM) which would provide strong interlayer reinforcement combined with the versatility of AM.
机译:本文研究了环氧树脂通过毛细管流动进入垂直排列的碳纳米管森林的渗透机理。通过流变学表征固化期间的树脂粘度。碳纳米管森林在固化期间的一定时间范围内与树脂接触,因此在一定的粘度范围内。使用电子显微镜,X射线计算机断层扫描和能量色散X射线光谱法测量树脂渗透到森林中的能力,后者依靠铬络合物染料添加剂作为树脂存在的标志物。将实验结果与基于隐式Lucas-Washburn方程的毛细管流动模拟进行了比较。已经发现,在树脂胶凝点之前,树脂会穿透森林的整个高度。接近凝胶点,流入森林的流停止,剩下未润湿的纳米管区域。理解纳米管结构中树脂流动与树脂粘度和固化之间的关系在纳米复合材料的制造中具有重要的应用。这种“部分润湿”效应是先前提出的通过增材制造(AM)制造碳纳米管复合材料的方法的关键要求,该方法将提供强大的层间增强以及AM的多功能性。

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