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Manufacturing of Three-dimensionally Microstructured Nanocomposites through Microfluidic Infiltration

机译:通过微流体渗透制造三维微结构纳米复合材料

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摘要

Microstructured composite beams reinforced with complex three-dimensionally (3D) patterned nanocomposite microfilaments are fabricated via nanocomposite infiltration of 3D interconnected microfluidic networks. The manufacturing of the reinforced beams begins with the fabrication of microfluidic networks, which involves layer-by-layer deposition of fugitive ink filaments using a dispensing robot, filling the empty space between filaments using a low viscosity resin, curing the resin and finally removing the ink. Self-supported 3D structures with other geometries and many layers (e.g. a few hundreds layers) could be built using this method. The resulting tubular microfluidic networks are then infiltrated with thermosetting nanocomposite suspensions containing nanofillers (e.g. single-walled carbon nanotubes), and subsequently cured. The infiltration is done by applying a pressure gradient between two ends of the empty network (either by applying a vacuum or vacuum-assisted microinjection). Prior to the infiltration, the nanocomposite suspensions are prepared by dispersing nanofillers into polymer matrices using ultrasonication and three-roll mixing methods. The nanocomposites (i.e. materials infiltrated) are then solidified under UV exposure/heat cure, resulting in a 3D-reinforced composite structure. The technique presented here enables the design of functional nanocomposite macroscopic products for microengineering applications such as actuators and sensors.
机译:通过复杂的3D互连微流体网络的纳米复合材料过滤,制成了带有复杂的三维(3D)图案化纳米复合材料微丝的微结构复合梁。增强梁的制造始于微流体网络的制造,其中包括使用分配机器人逐层沉积短效油墨丝,使用低粘度树脂填充丝间的空白,固化树脂,最后去除墨。使用此方法可以构建具有其他几何形状和许多层(例如几百层)的自支撑3D结构。然后将所得的管状微流体网络浸入含有纳米填料(例如单壁碳纳米管)的热固性纳米复合悬浮液中,然后进行固化。通过在空网络的两端之间施加压力梯度(通过施加真空或真空辅助的微量注射)来完成渗透。在渗透之前,通过使用超声和三辊混合方法将纳米填料分散到聚合物基质中来制备纳米复合物悬浮液。纳米复合材料(即渗透的材料)然后在紫外线曝光/热固化下固化,从而形成3D增强的复合结构。此处介绍的技术可以设计用于微工程应用的功能性纳米复合宏观产品,例如致动器和传感器。

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