论文标题

水力发生:柔软,坚韧,高度肿胀的复合材料

Hydroelastomers: soft, tough, highly swelling composites

论文作者

Moser, Simon, Feng, Yanxia, Yasa, Oncay, Heyden, Stefanie, Kessler, Michael, Amstad, Esther, Dufresne, Eric R., Katzschmann, Robert K., Style, Robert W.

论文摘要

受植物组织的细胞设计的启发,我们提出了一种新的方法,可以制造多功能,坚韧,高水隔离的复合材料。我们将高度肿胀的水凝胶颗粒嵌入坚固,可渗透的弹性矩阵中。我们称之为\ emph {hydroelastomers}的所得复合材料在膨胀时几乎没有变软,并且具有出色的断裂特性,可与表现最好的坚硬水凝胶相匹配。我们的复合材料是基于商业材料的简单制造,并且可以轻松地模制或挤出以形成具有复杂肿胀几何形状的形状。此外,有一个可用的设计空间可用于制造水力持续体,因为可以将任何水凝胶用作复合材料中的分散相,包括具有刺激性反应性的水凝胶。这些功能应使水力发生用于软机器人和基于肿胀的致动或形状变形材料的优秀候选物,同时也可以作为其他广泛领域的水凝胶替代品可用。

Inspired by the cellular design of plant tissue, we present a new approach to make versatile, tough, highly water-swelling composites. We embed highly swelling hydrogel particles inside tough, water-permeable, elastomeric matrices. The resulting composites, which we call \emph{hydroelastomers}, show little softening as they swell, and have excellent fracture properties that match those of the best-performing, tough hydrogels. Our composites are straightforward to fabricate, based on commercial materials, and can easily be molded or extruded to form shapes with complex swelling geometries. Furthermore, there is a large design space available for making hydroelastomers, since one can use any hydrogel as the dispersed phase in the composite, including hydrogels with stimuli-responsiveness. These features should make hydroelastomers excellent candidates for use in soft robotics and swelling-based actuation, or as shape-morphing materials, while also being useful as hydrogel replacements in a wide range of other fields.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源