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Direct-Write 3D Printing of Composite Materials with Magnetically Aligned Discontinuous Reinforcement

机译:具有磁对准不连续增强的复合材料的直接写入3D打印

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Three-dimensional (3D) printing of fiber reinforced composites represents an enabling technology that may bring toughness and specific strength to complex parts. Recently, direct-write 3D printing has been offered as a promising route to manufacturing fiber reinforced composites that show high specific strength. These approaches primarily rely on the use of shear-alignment during the extrusion process to align fibers along the printing direction. Shear alignment prevents fibers from being oriented along principle stress directions of the final designed part. This paper describes a new direct-write style 3D printing system that incorporates magnetic fields to actively control the orientation of reinforcing fibers during the printing of fiber reinforced composites. Such a manufacturing system is fraught with complications from the high shear dominated alignment experienced by the fibers during extrusion to the slow magnetic alignment dynamics of fibers in viscous media. Here we characterize these issues and suggest effective operating windows in which magnetic alignment is a viable approach to orienting reinforcing particles during direct-write 3D printing.
机译:纤维增强复合材料的三维(3D)打印代表了一种使复杂零件具有韧性和比强度的技术。最近,直接写入3D打印已成为制造具有高比强度的纤维增强复合材料的有前途的途径。这些方法主要依靠在挤出过程中使用剪切对准来使纤维沿印刷方向对准。剪切对准可防止纤维沿最终设计零件的主应力方向定向。本文介绍了一种新型直写式3D打印系统,该系统结合了磁场以在纤维增强复合材料的打印过程中主动控制增强纤维的方向。这样的制造系统充满了复杂性,从挤出过程中纤维经历的高剪切支配取向到粘性介质中纤维的慢磁取向动力学。在这里,我们对这些问题进行了描述,并提出了有效的操作窗口,其中磁对准是在直接写入3D打印期间定向增强粒子的可行方法。

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