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Contactless reversible 4D-printing for 3D-to-3D shape morphing

机译:非接触式可逆4D印刷3D-3D形状变形

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摘要

4D printing provides a means to create dynamic structures for self-actuating devices fabricated by additive manufacturing techniques. Most existing 4D printing processes are only capable of one-way shape morphing using a single mechanism for stimulation. In the limited successful reversible 4D-printing studies, most only demonstrate 2D-to-3D shape morphing. This study introduces a contactless shape setting mechanism to empower reversible 4D printing using a combination of stimuli. The forward shape programming is realised by asymmetric swelling with heated ethanol, and the shape recovery is accomplished by dry heating. The shape morphing can be predicted using a simulation model. Several designs are 4D-printed to achieve different forms of morphing to obtain 3D-to-3D shape morphing. The entire shape morphing cycle could be completed within as short as 3 min. The capability of 3D-to-3D shape morphing and reversibility of our 4D-printing process promise great potential for different applications such as biomimetics and soft robotics.
机译:图4D打印提供了一种为通过添加制造技术制造的自动装置产生动态结构的方法。大多数现有的4D打印过程仅能够使用单个机制进行一次刺激的单向形状。在有限的成功可逆4D印刷研究中,最重要的是仅展示了2D-3D形状的变形。本研究介绍了一种非接触式形状设定机制,以使用刺激的组合来赋予可逆4D印刷。通过使用加热乙醇的不对称膨胀来实现前向形状编程,并且通过干加热完成形状回收。可以使用模拟模型来预测形状变形。几种设计是4D印刷,以实现不同形式的变形,以获得3D到3D形状的变形。整个形状的变形周期可以在短至3分钟内完成。 3D-3D形状变形的能力和我们的4D印刷过程的可逆性承诺对诸如生物体和软机器人等不同应用的巨大潜力。

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