Soft Pneumatic Actuator from 3D-Printed TPU: Fabrication and Grasping Force Characterization
Ken Kanate Wichiramala, Siwakorn Opasjirawiroj, Nattawat Chongpita, Ronnapee Chaichaowarat
- 发表年份
- 2023
- 引用次数
- 8
摘要
Soft pneumatic actuators providing infinite passive degrees of freedom are widely applied for safe physical human–robot interaction and fulfilling the limitation of conventional rigid structures. This paper presents a design of the soft actuator with pneumatic chamber enabling the control of bending and contact force. The actuator is solely fabricated from the thermoplastic polyurethane (TPU 95A) by using the fused deposition modeling (FDM) 3D printing. Several printing setups were performed for trial and error to prevent the air leak. The experimental setup was prepared for measuring the contact force in both vertical and horizontal directions. The grasping force varying against the input pressure ranged from 0 to 58 psi was studied at three contacting points along the longitudinal axis of the actuator with three different bending conditions. The stiffness of the actuator is related to the input pressure by considering the increase of total contacting force at different bending deformations. The results of this study can be applied to the stiffness control of soft pneumatic actuators.
关键词
相关论文
Real-Time Obstacle Avoidance for Manipulators and Mobile Robots
Oussama Khatib
1986
A Mathematical Introduction to Robotic Manipulation
Richard M. Murray, Zexiang Li, Shankar Sastry
2017
A review of shape memory alloy research, applications and opportunities
Jaronie Mohd Jani, Martin Leary, Aleksandar Subic 等 4 位作者
2013
Robot dynamics and control
Mark W. Spong
1989