Department of Engineering Mechanics, Zhejiang University, Hangzhou 310027, China.
Key Laboratory of Soft Machines and Smart Devices of Zhejiang Province, Zhejiang University, Hangzhou 310027, China.
Sci Adv. 2017 Apr 5;3(4):e1602045. doi: 10.1126/sciadv.1602045. eCollection 2017 Apr.
Soft robots driven by stimuli-responsive materials have unique advantages over conventional rigid robots, especially in their high adaptability for field exploration and seamless interaction with humans. The grand challenge lies in achieving self-powered soft robots with high mobility, environmental tolerance, and long endurance. We are able to advance a soft electronic fish with a fully integrated onboard system for power and remote control. Without any motor, the fish is driven solely by a soft electroactive structure made of dielectric elastomer and ionically conductive hydrogel. The electronic fish can swim at a speed of 6.4 cm/s (0.69 body length per second), which is much faster than previously reported untethered soft robotic fish driven by soft responsive materials. The fish shows consistent performance in a wide temperature range and permits stealth sailing due to its nearly transparent nature. Furthermore, the fish is robust, as it uses the surrounding water as the electric ground and can operate for 3 hours with one single charge. The design principle can be potentially extended to a variety of flexible devices and soft robots.
刺激响应材料驱动的软体机器人相对于传统刚性机器人具有独特的优势,尤其是在适应野外探索和与人类无缝交互方面。其主要挑战在于实现具有高机动性、环境适应性和长续航能力的自供电软体机器人。我们能够开发出一种具有完全集成的内置电源和远程控制功能的软体电子鱼。这条鱼没有任何电机,仅由一个由介电弹性体和离子导电水凝胶制成的软电活性结构驱动。这条电子鱼可以以 6.4 厘米/秒(0.69 体长/秒)的速度游动,比以前报道的由软响应材料驱动的无约束软体机器人鱼要快得多。这条鱼在很宽的温度范围内表现出一致的性能,并且由于其几乎透明的性质,允许它进行隐形航行。此外,这条鱼非常坚固,因为它使用周围的水作为电接地,并且可以在单次充电后运行 3 小时。该设计原理可潜在应用于各种柔性设备和软体机器人。