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3D 打印具有空间可编程向列序的液晶弹性体致动器。

3D Printing of Liquid Crystal Elastomeric Actuators with Spatially Programed Nematic Order.

机构信息

John A. Paulson School of Engineering and Applied Sciences and Wyss Institute for Biologically Inspired Engineering, Harvard University, Cambridge, MA, 02138, USA.

Air Force Research Laboratory, Materials and Manufacturing Directorate, Wright-Patterson Air Force Base, OH, 45433, USA.

出版信息

Adv Mater. 2018 Mar;30(10). doi: 10.1002/adma.201706164. Epub 2018 Jan 15.

Abstract

Liquid crystal elastomers (LCEs) are soft materials capable of large, reversible shape changes, which may find potential application as artificial muscles, soft robots, and dynamic functional architectures. Here, the design and additive manufacturing of LCE actuators (LCEAs) with spatially programed nematic order that exhibit large, reversible, and repeatable contraction with high specific work capacity are reported. First, a photopolymerizable, solvent-free, main-chain LCE ink is created via aza-Michael addition with the appropriate viscoelastic properties for 3D printing. Next, high operating temperature direct ink writing of LCE inks is used to align their mesogen domains along the direction of the print path. To demonstrate the power of this additive manufacturing approach, shape-morphing LCEA architectures are fabricated, which undergo reversible planar-to-3D and 3D-to-3D' transformations on demand, that can lift significantly more weight than other LCEAs reported to date.

摘要

液晶弹性体(LCE)是一种能够实现大幅可逆形状变化的软材料,可能会作为人工肌肉、软体机器人和动态功能结构得到应用。在这里,我们报道了一种具有空间可编程向列序的 LCE 致动器(LCEA)的设计和增材制造,它表现出大的、可重复的、高比功的收缩。首先,通过氮杂迈克尔加成创建了一种光聚合、无溶剂的主链 LCE 墨水,具有适合 3D 打印的适当粘弹性。接下来,采用高温直接墨水书写 LCE 墨水,使其介晶域沿打印路径方向排列。为了展示这种增材制造方法的威力,制造了形状变形的 LCEA 结构,它们可以按需进行可逆的平面到 3D 和 3D 到 3D'的转换,比迄今为止报道的其他 LCEA 能举起更重的重量。

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