TY - JOUR
T1 - Design and Technical Development of Wall-Climbing Robots
T2 - A Review
AU - Fang, Yi
AU - Wang, Shuai
AU - Bi, Qiushi
AU - Cui, Da
AU - Yan, Chuliang
N1 - Publisher Copyright:
© 2022, Jilin University.
PY - 2022/7
Y1 - 2022/7
N2 - Once working at heights is dangerous, it is a significant accident. These accidents brought substantial economic losses and caused a large number of casualties. Therefore, it is essential to use wall-climbing robots to replace manual work at heights. The design of the wall-climbing robot is inspired by the climbing action of insects or animals. An intelligent bionic robot device can carry special equipment to operate on the wall and perform some dangerous operations instead of firefighters or inspection personnel more efficiently. The scope of application is vast. This paper firstly summarizes the research progress of wall-climbing robots with three different moving methods: wheel-climbing, crawler-based, and leg-footed robots; summarizes the applications and breakthroughs of four adsorption technologies: negative pressure, magnetic force, bionic and electrostatic; discusses the application of motion control algorithms in wall-climbing robots. Secondly, the advantages and disadvantages of different migration modes and adsorption methods are pointed out. The distribution and advantages of the combined application of different migration modes and adsorption methods are analyzed. In addition, the future development trend of wall-climbing robots and the promoting effect of bionic technology development on wall-climbing robots are proposed. The content of this paper will provide helpful guidance for the research of wall-climbing robots.
AB - Once working at heights is dangerous, it is a significant accident. These accidents brought substantial economic losses and caused a large number of casualties. Therefore, it is essential to use wall-climbing robots to replace manual work at heights. The design of the wall-climbing robot is inspired by the climbing action of insects or animals. An intelligent bionic robot device can carry special equipment to operate on the wall and perform some dangerous operations instead of firefighters or inspection personnel more efficiently. The scope of application is vast. This paper firstly summarizes the research progress of wall-climbing robots with three different moving methods: wheel-climbing, crawler-based, and leg-footed robots; summarizes the applications and breakthroughs of four adsorption technologies: negative pressure, magnetic force, bionic and electrostatic; discusses the application of motion control algorithms in wall-climbing robots. Secondly, the advantages and disadvantages of different migration modes and adsorption methods are pointed out. The distribution and advantages of the combined application of different migration modes and adsorption methods are analyzed. In addition, the future development trend of wall-climbing robots and the promoting effect of bionic technology development on wall-climbing robots are proposed. The content of this paper will provide helpful guidance for the research of wall-climbing robots.
KW - Adsorption technology
KW - Bionic
KW - Motion control technology
KW - Walking method
KW - Wall-climbing robot
UR - https://www.scopus.com/pages/publications/85131814394
U2 - 10.1007/s42235-022-00189-x
DO - 10.1007/s42235-022-00189-x
M3 - 文献综述
AN - SCOPUS:85131814394
SN - 1672-6529
VL - 19
SP - 877
EP - 901
JO - Journal of Bionic Engineering
JF - Journal of Bionic Engineering
IS - 4
ER -