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首页> 外文期刊>Advanced Materials >A New 3D Printing Strategy by Harnessing Deformation, Instability, and Fracture of Viscoelastic Inks
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A New 3D Printing Strategy by Harnessing Deformation, Instability, and Fracture of Viscoelastic Inks

机译:利用粘弹性油墨的变形,不稳定性和断裂性的新3D打印策略

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Direct ink writing (DIW) has demonstrated great potential as a multimaterial multifunctional fabrication method in areas as diverse as electronics, structural materials, tissue engineering, and soft robotics. During DIW, viscoelastic inks are extruded out of a 3D printer's nozzle as printed fibers, which are deposited into patterns when the nozzle moves. Hence, the resolution of printed fibers is commonly limited by the nozzle's diameter, and the printed pattern is limited by the motion paths. These limits have severely hampered innovations and applications of DIW 3D printing. Here, a new strategy to exceed the limits of DIW 3D printing by harnessing deformation, instability, and fracture of viscoelastic inks is reported. It is shown that a single nozzle can print fibers with resolution much finer than the nozzle diameter by stretching the extruded ink, and print various thickened or curved patterns with straight nozzle motions by accumulating the ink. A quantitative phase diagram is constructed to rationally select parameters for the new strategy. Further, applications including structures with tunable stiffening, 3D structures with gradient and programmable swelling properties, all printed with a single nozzle are demonstrated. The current work demonstrates that the mechanics of inks plays a critical role in developing 3D printing technology.
机译:直接墨水书写(DIW)作为一种多材料多功能制造方法,在电子,结构材料,组织工程和软机器人等领域已显示出巨大的潜力。在DIW期间,粘弹性油墨作为打印纤维从3D打印机的喷嘴中挤出,当喷嘴移动时,它们会沉积成图案。因此,印刷纤维的分辨率通常受到喷嘴直径的限制,而印刷图案则受到运动路径的限制。这些限制严重阻碍了DIW 3D打印的创新和应用。在这里,报道了一种通过利用粘弹性油墨的变形,不稳定性和断裂来超过DIW 3D打印极限的新策略。结果表明,单个喷嘴可以通过拉伸挤出的墨水来打印分辨率比喷嘴直径细得多的纤维,并可以通过累积墨水而以笔直的喷嘴运动来打印各种增厚或弯曲的图案。构建定量相图以合理选择新策略的参数。此外,还演示了应用程序,包括具有可调性刚度的结构,具有渐变和可编程溶胀特性的3D结构,这些结构均使用单个喷嘴打印。当前的工作表明,油墨的力学在开发3D打印技术中起着至关重要的作用。

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