Articles | Volume 16, issue 1
https://doi.org/10.5194/ms-16-41-2025
https://doi.org/10.5194/ms-16-41-2025
Research article
 | 
22 Jan 2025
Research article |  | 22 Jan 2025

Pneumatic gripping system based on airflow proximity sensing and a self-feedback principle

Yixiao Ni, Jiabin Yang, Qing Ouyang, and Jiahui Peng

Related authors

Research on the smooth velocity control of a driving switching process of a new pneumatic electric hybrid actuator
Jiabin Yang and Xiaoning Li
Mech. Sci., 12, 971–982, https://doi.org/10.5194/ms-12-971-2021,https://doi.org/10.5194/ms-12-971-2021, 2021
Short summary

Related subject area

Subject: Mechanisms and Robotics | Techniques and Approaches: Synthesis
Structural analysis of traditional Chinese puzzle boxes
Jian-Liang Lin, Hsin-Te Wang, Ting-Fang Cheng, and Kuo-Hung Hsiao
Mech. Sci., 15, 645–651, https://doi.org/10.5194/ms-15-645-2024,https://doi.org/10.5194/ms-15-645-2024, 2024
Short summary
Task-driven geometric synthesis method of a bistable compliant mechanism for the rigid guidance problem
Jingyu Jiang, Song Lin, and Hanchao Wang
Mech. Sci., 15, 515–529, https://doi.org/10.5194/ms-15-515-2024,https://doi.org/10.5194/ms-15-515-2024, 2024
Short summary
Design and motion analysis of a new wheeled rolling robot
Hui Bian, Zihan Li, and Chang-Qian Meng
Mech. Sci., 15, 431–444, https://doi.org/10.5194/ms-15-431-2024,https://doi.org/10.5194/ms-15-431-2024, 2024
Short summary
Assembly of reconfigurable Bricard-like mechanisms to form a multimode deployable arch
Ruiming Li, Xianhong Zhang, Shuo Zhang, Ran Liu, and Yan-an Yao
Mech. Sci., 14, 387–398, https://doi.org/10.5194/ms-14-387-2023,https://doi.org/10.5194/ms-14-387-2023, 2023
Short summary
Design and error compensation of a 3-degrees-of-freedom cable-driven hybrid 3D-printing mechanism
Sen Qian, Xiao Jiang, Yong Liu, Shuaikang Wang, Xiantao Sun, and Huihui Sun
Mech. Sci., 14, 371–386, https://doi.org/10.5194/ms-14-371-2023,https://doi.org/10.5194/ms-14-371-2023, 2023
Short summary

Cited articles

Dou, M.: Design and Research of Gas Induced Soft Gripper, Nanjing University of Science and Technology, https://doi.org/10.27241/d.cnki.gnjgu.2023.002319, 2023 (in Chinese). 
Makino, Y., Asamura, N., and Shinoda, H.: A Cutaneous Feeling Display Using Suction Pressure, SICE 2003 Annual Conference, Fukui, Japan, 4–6 August 2003, IEEE, 2096–2099, https://ieeexplore.ieee.org/document/1323846 (last access: 21 January 2025)​​​​​​​, 2003. 
Ning, H., Du, M., Gong, J., and Li, H.: Analysis of the Flow Field in the Lord and Measuring Nozzles and Parameter Optimization of the Differential Pressure Pneumatic Gauge Based on the CFD, Machine Tool & Hydraulics, 40, 36–39, https://doi.org/10.3969/j.issn.1001-3881.2012.11.011, 2012 (in Chinese). 
Pal, A., Goswami, D., and Martinez, R.: Elastic energy storage enables rapid and programmable actuation in soft machines, Adv. Funct. Mater., 30, 1906603, https://doi.org/10.1002/adfm.201906603, 2020. 
Partridge, A. and Conn, A.: Passive, reflex response units for reactive soft robotic systems, IEEE Robotics and Automation Letters, 5, 4014–4020, https://doi.org/10.1109/LRA.2020.2985618, 2020. 
Download
Short summary
The current closed-loop control of pneumatic systems relies on electronic sensors and controllers. In this work, we have developed an airflow-sensing device and applied it to a pneumatic gripping system. The gripper can automatically sense the distance to objects and achieve active grasping. Our research results provide new solutions for intelligent control of pneumatic systems, freeing them from dependence on electronic devices.