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Multimaterial Microfluidic 3D Printing of Textured Composites with Liquid Inclusions

机译:含液体夹杂物的复合材料的多材料微流体3D打印

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摘要

3D printing with a high degree of spatial and compositional precision could open new avenues to the design and fabrication of functional composites. By combining the direct ink writing and microfluidics, a multimaterial 3D printing system for fabricating textured composites with liquid inclusions of programmable spatial distribution and compositions is reported here. Phase diagrams for the rational selection of desired printing parameters are determined through a combination of simple theoretical analysis and experimental studies. 1D, 2D, and 3D structures programmed with desired inclusion patterns and compositions are fabricated. Moreover, the versatility of this 3D printing framework in fabricating layered composite beams of tunable thermal property and self‐healing materials is demonstrated. The proposed multimaterial microfluidic 3D printing framework could be broadly applicable for structural composites and soft robotic devices.
机译:具有高度空间和组成精度的3D打印可以为功能性复合材料的设计和制造开辟新途径。通过将直接墨水书写和微流体技术相结合,本文报道了一种多材料3D打印系统,该系统可用于制造具有纹理的复合材料,并具有可编程的空间分布和成分的液体夹杂物。通过简单的理论分析和实验研究,确定合理选择所需打印参数的相图。制作了用所需的夹杂物图案和成分编程的1D,2D和3D结构。此外,还演示了此3D打印框架在制造可调节热特性和自修复材料的分层复合梁中的多功能性。所提出的多材料微流体3D打印框架可广泛应用于结构复合材料和软机器人设备。

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