Deng Heng, Xu Xianchen, Zhang Cheng, Su Jheng-Wun, Huang Guoliang, Lin Jian
Department of Mechanical and Aerospace Engineering, University of Missouri, Columbia, Missouri 65211, United States.
Department of Electrical Engineering and Computer Science, University of Missouri, Columbia, Missouri 65211, United States.
ACS Appl Mater Interfaces. 2020 Mar 18;12(11):13378-13385. doi: 10.1021/acsami.0c01115. Epub 2020 Mar 5.
We reported a soft-stiff hybridized polymeric film that can self-morph to dedicated three-dimensional (3D) structures for application in acoustic metamaterials. The hybridized film was fabricated by laterally adhering a soft and responsive poly(-isopropylacrylamide) (PNIPAM) hydrogel to stiff and passive SU-8 patterns. Upon thermal stimulation, deformation of the tough PNIPAM hydrogel was locally constrained by the stiff SU-8 patterns, thereby causing laterally nonuniform strain to their interfaces for mechanically buckling the hybridized films to 3D structures. Combined with finite element analysis, we demonstrated that the stiff SU-8 patterns effectively alleviated the uncontrollability and uncertainty during the self-morphing process, which was caused by unexpected mutual deformation between the active and passive domains in the self-morphing materials. Therefore, deterministic self-buckling to dedicated 3D structures was physically realized such as a wave-shaped peak-valley structure, 3D checkerboard patterns, and Gaussian curved surfaces from the hybridized polymeric films. Finally, we demonstrated that the self-morphed 3D structures with predesigned patterns can be used as acoustic materials for subwavelength noise control. This transformative way of constructing 3D structures by self-morphing of the hybridized polymeric films will be a substantial progress in fabricating smart and multifunctional materials for widespread applications in metamaterials, soft robotics, and 3D electronics.
我们报道了一种柔软-刚性杂化聚合物薄膜,它可以自变形为特定的三维(3D)结构,用于声学超材料。这种杂化薄膜是通过将柔软且有响应性的聚(N-异丙基丙烯酰胺)(PNIPAM)水凝胶横向粘附到刚性且被动的SU-8图案上制成的。在热刺激下,坚韧的PNIPAM水凝胶的变形受到刚性SU-8图案的局部限制,从而在它们的界面处产生横向不均匀应变,使杂化薄膜机械屈曲成3D结构。结合有限元分析,我们证明刚性SU-8图案有效地减轻了自变形过程中的不可控性和不确定性,这是由自变形材料中主动和被动区域之间意外的相互变形引起的。因此,从杂化聚合物薄膜物理上实现了向特定3D结构的确定性自屈曲,如波浪形峰谷结构、3D棋盘图案和高斯曲面。最后,我们证明具有预先设计图案的自变形3D结构可以用作亚波长噪声控制的声学材料。这种通过杂化聚合物薄膜自变形构建3D结构的变革性方法将是制造智能和多功能材料的重大进展,可广泛应用于超材料、软机器人和3D电子学领域。