Chen Rui, Zhang Zhuo, Guo Jianglong, Liu Fuyou, Leng Jinsong, Rossiter Jonathan
State Key Laboratory of Mechanical Transmissions, Chongqing University, Chongqing, China.
School of Science, Harbin Institute of Technology (Shenzhen), Shenzhen, China.
Soft Robot. 2022 Dec;9(6):1074-1082. doi: 10.1089/soro.2021.0083. Epub 2021 Dec 10.
Soft adhesion is capable of attaching and bonding to rough surfaces and gripping nonplanar materials. It is preferable for material handling applications where safe interactions with external environments and enhanced adaptability to changing conditions are required. Soft electroadhesion (EA) is an emerging controllable adhesion technology that is especially suited to soft adhesion applications, but is prone to contact peeling that causes unwanted de-adhesion and cannot lift heavy objects unless the lifting force is applied parallel to the surface. Variable stiffness electroadhesion (VSEA) can be used to overcome these issues. Here a VSEA solution is developed by integrating electrostatic layer jamming and soft EA into a monolithic electrically controllable structure. The VSEA pad can achieve rapid response (within 1 s) and significant stiffness change (2200%), resist over four times the peeling force under a weight of 70 g, and generate 24.2%, 34.8%, and 49.3% greater adhesive forces on flat, convex, and concave surfaces, respectively. The promising gripping performance of the VSEA gripper was demonstrated by lifting and moving curved and flat objects. The VSEA concept and solution shown in this work may pave the way for the ready integration of EA into soft robotic systems and promote the broad application of EA technologies.
软粘附能够附着并粘结到粗糙表面上,还能抓取非平面材料。对于需要与外部环境进行安全交互以及增强对变化条件适应性的材料处理应用而言,它是较为理想的选择。软电粘附(EA)是一种新兴的可控粘附技术,特别适用于软粘附应用,但容易出现接触剥离现象,这会导致不必要的脱粘,并且除非提升力平行于表面施加,否则无法举起重物。可变刚度电粘附(VSEA)可用于克服这些问题。在此,通过将静电层阻塞和软电粘附集成到一个整体式电控结构中,开发出了一种VSEA解决方案。该VSEA垫能够实现快速响应(在1秒内)和显著的刚度变化(2200%),在70克重物作用下能抵抗超过四倍的剥离力,并且在平面、凸面和凹面上分别产生比普通情况大24.2%、34.8%和49.3%的粘附力。通过举起和移动弯曲及平面物体,展示了VSEA夹具出色的抓取性能。本文展示的VSEA概念和解决方案可能为将电粘附技术顺利集成到软机器人系统中铺平道路,并推动电粘附技术的广泛应用。