The George W. Woodruff School of Mechanical Engineering , Georgia Institute of Technology , Atlanta , Georgia 30332 , United States.
State Key Laboratory for Turbulence and Complex Systems, College of Engineering , Peking University , Beijing 100871 , P. R. China.
ACS Appl Mater Interfaces. 2018 Jun 13;10(23):19932-19939. doi: 10.1021/acsami.8b02444. Epub 2018 May 29.
Swelling-induced shape transformation has been widely investigated and applied to the design and fabrication of smart polymer devices, such as soft robotics, biomedical devices, and origami patterns. Previous shape-shifting designs using soft hydrogels have several limitations, including relatively small actuation force, slow responsive speed, and relatively complicated fabrication process. In this paper, we develop a novel hydrophilic/hydrophobic composite structure by using photopolymers. The rubbery nature of the materials used in this composite provides desirable actuation speed and actuation force. The photocurable polymer system could be easily patterned by using the digital light processing technique. Experiments and theoretical analysis were conducted to study the actuation process. We also fabricated several three-dimensional water-responsive shape-shifting structures, including structures with sequential actuation behavior. Finally, the directional bending behavior of the hydrophilic/hydrophobic bilayer plate was investigated.
肿胀诱导的形状转变已被广泛研究,并应用于智能聚合物器件的设计和制造,如软机器人、生物医学器件和折纸图案。以前使用软水凝胶的形状变换设计有几个局限性,包括相对较小的致动力、响应速度慢以及相对复杂的制造工艺。在本文中,我们通过使用光聚合剂开发了一种新型的亲水/疏水复合结构。该复合材料中使用的橡胶状材料提供了理想的致动力和致动力。光固化聚合物系统可以很容易地使用数字光处理技术进行图案化。进行了实验和理论分析来研究致动过程。我们还制造了几个三维水响应形状变换结构,包括具有顺序致动行为的结构。最后,研究了亲水/疏水双层板的定向弯曲行为。