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基于多材料多喷嘴的体素软物质 3D 打印技术。

Voxelated soft matter via multimaterial multinozzle 3D printing.

机构信息

Harvard John A. Paulson School of Engineering and Applied Sciences, Harvard University, Cambridge, MA, USA.

Wyss Institute for Biologically Inspired Engineering, Harvard University, Cambridge, MA, USA.

出版信息

Nature. 2019 Nov;575(7782):330-335. doi: 10.1038/s41586-019-1736-8. Epub 2019 Nov 13.

Abstract

There is growing interest in voxelated matter that is designed and fabricated voxel by voxel. Currently, inkjet-based three-dimensional (3D) printing is the only widely adopted method that is capable of creating 3D voxelated materials with high precision, but the physics of droplet formation requires the use of low-viscosity inks to ensure successful printing. By contrast, direct ink writing, an extrusion-based 3D printing method, is capable of patterning a much broader range of materials. However, it is difficult to generate multimaterial voxelated matter by extruding monolithic cylindrical filaments in a layer-by-layer manner. Here we report the design and fabrication of voxelated soft matter using multimaterial multinozzle 3D (MM3D) printing, in which the composition, function and structure of the materials are programmed at the voxel scale. Our MM3D printheads exploit the diode-like behaviour that arises when multiple viscoelastic materials converge at a junction to enable seamless, high-frequency switching between up to eight different materials to create voxels with a volume approaching that of the nozzle diameter cubed. As exemplars, we fabricate a Miura origami pattern and a millipede-like soft robot that locomotes by co-printing multiple epoxy and silicone elastomer inks of stiffness varying by several orders of magnitude. Our method substantially broadens the palette of voxelated materials that can be designed and manufactured in complex motifs.

摘要

人们对通过逐个体素设计和制造的体素化物质越来越感兴趣。目前,基于喷墨的三维(3D)打印是唯一广泛采用的方法,能够以高精度创建 3D 体素化材料,但液滴形成的物理特性要求使用低粘度的墨水以确保成功打印。相比之下,基于挤出的 3D 打印方法直接喷墨打印能够对更广泛的材料进行图案化。然而,通过逐层挤出整体圆柱形细丝来生成多材料体素化物质是很困难的。在这里,我们报告了使用多材料多喷嘴 3D(MM3D)打印设计和制造体素化软物质的方法,其中材料的组成、功能和结构在体素尺度上进行编程。我们的 MM3D 打印喷头利用了多个粘弹性材料在交界处汇聚时出现的二极管行为,从而能够在多达八种不同材料之间无缝、高频切换,以创建体积接近喷嘴直径立方的体素。作为范例,我们制造了一个三叶折纸图案和一个类似千足虫的软体机器人,它通过共打印多个刚度相差几个数量级的环氧树脂和硅酮弹性体墨水来实现运动。我们的方法大大拓宽了可以以复杂图案设计和制造的体素化材料的范围。

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