Physical Intelligence Department, Max Planck Institute for Intelligent Systems, 70569, Stuttgart, Germany.
Department of Electronics and Information Engineering, Korea University, Sejong, 30019, Republic of Korea.
Adv Mater. 2021 Oct;33(40):e2103826. doi: 10.1002/adma.202103826. Epub 2021 Aug 15.
Bioinspired elastomeric structural adhesives can provide reversible and controllable adhesion on dry/wet and synthetic/biological surfaces for a broad range of commercial applications. Shape complexity and performance of the existing structural adhesives are limited by the used specific fabrication technique, such as molding. To overcome these limitations by proposing complex 3D microstructured adhesive designs, a 3D elastomeric microstructure fabrication approach is implemented using two-photon-polymerization-based 3D printing. A custom aliphatic urethane-acrylate-based elastomer is used as the 3D printing material. Two designs are demonstrated with two combined biological inspirations to show the advanced capabilities enabled by the proposed fabrication approach and custom elastomer. The first design focuses on springtail- and gecko-inspired hybrid microfiber adhesive, which has the multifunctionalities of side-surface liquid super-repellency, top-surface liquid super-repellency, and strong reversible adhesion features in a single fiber array. The second design primarily centers on octopus- and gecko-inspired hybrid adhesive, which exhibits the benefits of both octopus- and gecko-inspired microstructured adhesives for strong reversible adhesion on both wet and dry surfaces, such as skin. This fabrication approach could be used to produce many other 3D complex elastomeric structural adhesives for future real-world applications.
仿生弹性体结构胶可以在干燥/湿润和合成/生物表面提供可逆和可控的附着力,适用于广泛的商业应用。现有结构胶的形状复杂性和性能受到所使用的特定制造技术的限制,例如模制。为了通过提出复杂的 3D 微结构胶设计来克服这些限制,采用基于双光子聚合的 3D 打印来实现 3D 弹性体微结构制造方法。使用定制的脂肪族聚氨酯丙烯酸酯弹性体作为 3D 打印材料。展示了两种设计,它们结合了两种生物灵感,以展示所提出的制造方法和定制弹性体所带来的先进功能。第一种设计专注于弹跳虫和壁虎启发的混合微纤维胶,它在单个纤维阵列中具有多功能性,包括侧表面液体超疏水性、顶表面液体超疏水性和强可逆附着力。第二种设计主要集中在章鱼和壁虎启发的混合胶上,它结合了章鱼和壁虎启发的微结构胶的优点,在湿表面和干表面(如皮肤)上都具有很强的可逆附着力。这种制造方法可用于生产许多其他用于未来实际应用的 3D 复杂弹性体结构胶。