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3D-Printing of Meso-structurally Ordered Carbon Fiber/Polymer Composites with Unprecedented Orthotropic Physical Properties

机译:具有前所未有的正交各向异性物理性能的介观结构有序的碳纤维/聚合物复合材料的3D打印

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摘要

Here we report the first example of a class of additively manufactured carbon fiber reinforced composite (AMCFRC) materials which have been achieved through the use of a latent thermal cured aromatic thermoset resin system, through an adaptation of direct ink writing (DIW) 3D-printing technology. We have developed a means of printing high performance thermoset carbon fiber composites, which allow the fiber component of a resin and carbon fiber fluid to be aligned in three dimensions via controlled micro-extrusion and subsequently cured into complex geometries. Characterization of our composite systems clearly show that we achieved a high order of fiber alignment within the composite microstructure, which in turn allows these materials to outperform equivalently filled randomly oriented carbon fiber and polymer composites. Furthermore, our AM carbon fiber composite systems exhibit highly orthotropic mechanical and electrical responses as a direct result of the alignment of carbon fiber bundles in the microscale which we predict will ultimately lead to the design of truly tailorable carbon fiber/polymer hybrid materials having locally programmable complex electrical, thermal and mechanical response.
机译:在这里,我们报告一类增材制造的碳纤维增强复合材料(AMCFRC)的第一个示例,该材料是通过使用潜在的热固化芳香族热固性树脂系统,通过改写直接墨水书写(DIW)3D打印而实现的技术。我们已经开发出一种印刷高性能热固性碳纤维复合材料的方法,该方法可以通过控制的微挤压使树脂和碳纤维流体的纤维成分在三个维度上对齐,然后固化成复杂的几何形状。我们的复合材料系统的特征清楚地表明,我们在复合材料的微结构内实现了较高的纤维排列,这反过来又使这些材料的性能优于同等填充的随机取向的碳纤维和聚合物复合材料。此外,我们的AM碳纤维复合材料系统表现出高度正交各向异性的机械和电响应,这是碳纤维束在微观尺度上对准的直接结果,我们预测这最终将导致设计出真正可定制的具有本地可编程性的碳纤维/聚合物混合材料复杂的电气,热和机械响应。

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