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Welding of 3D-printed carbon nanotube–polymer composites by locally induced microwave heating

机译:通过局部感应微波加热焊接3D打印的碳纳米管-聚合物复合材料

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摘要

Additive manufacturing through material extrusion, often termed three-dimensional (3D) printing, is a burgeoning method for manufacturing thermoplastic components. However, a key obstacle facing 3D-printed plastic parts in engineering applications is the weak weld between successive filament traces, which often leads to delamination and mechanical failure. This is the chief obstacle to the use of thermoplastic additive manufacturing. We report a novel concept for welding 3D-printed thermoplastic interfaces using intense localized heating of carbon nanotubes (CNTs) by microwave irradiation. The microwave heating of the CNT-polymer composites is a function of CNT percolation, as shown through in situ infrared imaging and simulation. We apply CNT-loaded coatings to a 3D printer filament; after printing, microwave irradiation is shown to improve the weld fracture strength by 275%. These remarkable results open up entirely new design spaces for additive manufacturing and also yield new insight into the coupling between dielectric properties and radio frequency field response for nanomaterial networks.
机译:通过材料挤压进行的增材制造(通常称为三维(3D)打印)是一种用于制造热塑性部件的新兴方法。但是,在工程应用中3D打印的塑料零件面临的主要障碍是连续的灯丝痕迹之间的焊接较弱,这通常会导致脱层和机械故障。这是使用热塑性增材制造的主要障碍。我们报告了一种新颖的概念,用于通过微波辐照对碳纳米管(CNT)进行强烈的局部加热来焊接3D打印的热塑性塑料界面。 CNT聚合物复合材料的微波加热是CNT渗滤的函数,如通过原位红外成像和模拟所示。我们将负载CNT的涂料应用于3D打印机灯丝;印刷后,显示微波辐射可使焊缝断裂强度提高275%。这些非凡的成果为增材制造开辟了全新的设计空间,也使人们对纳米材料网络的介电性能和射频场响应之间的耦合有了新的认识。

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