Shen Zequn, Chen Feifei, Zhu Xiangyang, Yong Ken-Tye, Gu Guoying
Robotics Institute, School of Mechanical Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.
School of Electrical and Electronic Engineering, Nanyang Technological University, Singapore 639798, Singapore.
J Mater Chem B. 2020 Sep 9. doi: 10.1039/d0tb01585g.
Functional materials have spurred the advancement of soft robotics with the potential to perform safe interactions and adaptative functions in unstructured environments. The responses of functional materials under external stimuli lend themselves to programmable actuation and sensing, opening up new possibilities of robot design with built-in mechanical intelligence and unlocking new applications. Here, we review the development of stimuli-responsive functional materials particularly used for soft robotic systems. This review covers five representative types of soft stimuli-responsive functional materials, namely (i) dielectric elastomers, (ii) hydrogels, (iii) shape memory polymers, (iv) liquid crystal elastomers, and (v) magnetic materials, with focuses on their inherent material properties, working mechanisms, and design strategies for actuation and sensing. We also highlight the state-of-the-art applications of soft stimuli-responsive functional materials in locomotion robots, grippers and sensors. Finally, we summarize the current challenges and map out future trends for engineering next-generation functional materials for soft robotics.
功能材料推动了软机器人技术的发展,使其有潜力在非结构化环境中进行安全交互并实现自适应功能。功能材料在外部刺激下的响应有助于实现可编程驱动和传感,为具有内置机械智能的机器人设计开辟了新的可能性,并开启了新的应用领域。在此,我们综述了特别用于软机器人系统的刺激响应型功能材料的发展。本综述涵盖了五种具有代表性的软刺激响应型功能材料,即(i)介电弹性体,(ii)水凝胶,(iii)形状记忆聚合物,(iv)液晶弹性体,以及(v)磁性材料,重点介绍了它们的固有材料特性、工作机制以及驱动和传感的设计策略。我们还突出了软刺激响应型功能材料在移动机器人、夹具和传感器方面的前沿应用。最后,我们总结了当前面临的挑战,并规划了用于软机器人技术的下一代功能材料的未来发展趋势。