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Design and analysis of a wall-climbing robot with passive compliant mechanisms to adapt variable curvatures walls

Yifeng Song, Zhi‐Fa Yang, Yong Chang, Hui Yuan, Lin Song

Year
2024
Citations
9

Abstract

Abstract Motivated by practical applications of inspection and maintenance, we have developed a wall-climbing robot with passive compliant mechanisms that can autonomously adapt to curved surfaces. At first, this paper presents two failure modes of the traditional wall-climbing robot on the variable curvature wall surface and further introduces the designed passive compliant wall-climbing robot in detail. Then, the motion mechanism of the passive compliant wall-climbing robot on the curved surface is analyzed from stable adsorption conditions, parameter design process, and force analysis. At last, a series of experiments have been carried out on load capability and curved surface adaptability based on a developed principle prototype. The experimental results indicated that the wall-climbing robot with passive compliant mechanisms can effectively promote both adsorption stability and adaptability to variable curvatures.

Keywords

RobotVariable (mathematics)ClimbingComputer scienceEngineeringStructural engineeringArtificial intelligenceMathematics

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