Design of a small-scale lightweight underwater DE-driven pump
Abstract
Soft fluid actuators (SFAs) are crucial in the design of underwater systems, providing essential deformation capabilities for various applications. However, their power sources are typically rigid and bulky mechanical pumps, which significantly restrict their flexibility and environmental adaptability. To address this issue, we propose a magnetically enhanced, small-scale, lightweight dielectric elastomer (DE) pump for underwater applications. This novel pump achieves a maximum underwater driving pressure of 2.18 kPa and a maximum average flow rate of 81 ml/min. A dynamic model, based on the uniform deformation of the DE film, was developed to describe the driving behavior of the magnet-DE actuator. Utilizing the proposed DE pump, we designed balloon-type and gripper-type flexible actuators, capable of underwater grasping complex-shaped objects, thereby verifying the pump’s efficacy in driving SFAs underwater.
Article Details
Journal Info
Journal of Applied Physics
American Institute of Physics
Authors (9)
Dongrui Ruan
Jiangshan Zhuo
Center for X-Mechanics, Zhejiang University 2 , Hangzhou 310027,
Xunuo Cao
Center for X-Mechanics, Zhejiang University 2 , Hangzhou 310027,
Haijun Wang
Yunnan Key Laboratory of Ecological Protection and Resource Utilization of River-lake Networks, International Joint Laboratory for Yunnan River and Lake Ecosystem Restoration Green Technology, Institute for Ecological Research and Pollution Control of Plateau Lakes, School of Ecology and Environmental Science, Yunnan University
Letian Gan
YiMing Hu
Fanghao Zhou
Ye Shi
MOE Key Laboratory of Macromolecular Synthesis and Functionalization, Zhejiang University 4 , Hangzhou 310027,
Tiefeng Li