Support and Positioning Mechanism of a Detection Robot inside a Spherical Tank

Abstract Large pressure equipment needs to be tested regularly to ensure safe operation; wall-climbing robots can carry the necessary tools to inspect spherical tanks, such as cameras and non-destructive testing equipment. However, a wall-climbing robot inside a spherical tank cannot be accurately p...

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Main Authors: Chunlei Tu, Shanshan Jin, Kai Zheng, Xingsong Wang, Sichong Sun
Format: Article
Language:English
Published: SpringerOpen 2021-01-01
Series:Chinese Journal of Mechanical Engineering
Subjects:
Online Access:https://doi.org/10.1186/s10033-020-00522-7
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spelling doaj-6f1ba5d5b194431e95cb02878b217a492021-01-10T12:23:26ZengSpringerOpenChinese Journal of Mechanical Engineering1000-93452192-82582021-01-0134111010.1186/s10033-020-00522-7Support and Positioning Mechanism of a Detection Robot inside a Spherical TankChunlei Tu0Shanshan Jin1Kai Zheng2Xingsong Wang3Sichong Sun4College of Mechanical Engineering, Southeast UniversityCollege of Mechanical Engineering, Southeast UniversitySpecial Equipment Safety Supervision Inspection Institute of Jiangsu ProvinceCollege of Mechanical Engineering, Southeast UniversityCollege of Power Engineering, Chongqing UniversityAbstract Large pressure equipment needs to be tested regularly to ensure safe operation; wall-climbing robots can carry the necessary tools to inspect spherical tanks, such as cameras and non-destructive testing equipment. However, a wall-climbing robot inside a spherical tank cannot be accurately positioned owing to the particularity of the spherical tank structure. This paper proposes a passive support and positioning mechanism fixed in a spherical tank to improve the adsorption capacity and positioning accuracy of the inspection robot. The main body of the mechanism was designed as a truss composed of carbon fiber telescopic rods and can work in spherical tanks with diameters of 4.6‒15.7 m. The structural strength, stiffness, and stability of the mechanism are analyzed via force and deformation simulations. By constructing a mathematical model of the support and positioning mechanism, the influence of structural deformation on the supporting capacity is analyzed and calculated. The robot positioning method based on the support and positioning mechanism can effectively locate the robot inside a spherical tank. Experiments verified the support performance and robot positioning accuracy of the mechanism. This research proposes an auxiliary support and positioning mechanism for a detection robot inside a spherical tank, which can effectively improve the positioning accuracy of the robot and meet the robotic inspection requirements.https://doi.org/10.1186/s10033-020-00522-7Support mechanismInspection of the spherical tankAnsys simulationRobot positioning
collection DOAJ
language English
format Article
sources DOAJ
author Chunlei Tu
Shanshan Jin
Kai Zheng
Xingsong Wang
Sichong Sun
spellingShingle Chunlei Tu
Shanshan Jin
Kai Zheng
Xingsong Wang
Sichong Sun
Support and Positioning Mechanism of a Detection Robot inside a Spherical Tank
Chinese Journal of Mechanical Engineering
Support mechanism
Inspection of the spherical tank
Ansys simulation
Robot positioning
author_facet Chunlei Tu
Shanshan Jin
Kai Zheng
Xingsong Wang
Sichong Sun
author_sort Chunlei Tu
title Support and Positioning Mechanism of a Detection Robot inside a Spherical Tank
title_short Support and Positioning Mechanism of a Detection Robot inside a Spherical Tank
title_full Support and Positioning Mechanism of a Detection Robot inside a Spherical Tank
title_fullStr Support and Positioning Mechanism of a Detection Robot inside a Spherical Tank
title_full_unstemmed Support and Positioning Mechanism of a Detection Robot inside a Spherical Tank
title_sort support and positioning mechanism of a detection robot inside a spherical tank
publisher SpringerOpen
series Chinese Journal of Mechanical Engineering
issn 1000-9345
2192-8258
publishDate 2021-01-01
description Abstract Large pressure equipment needs to be tested regularly to ensure safe operation; wall-climbing robots can carry the necessary tools to inspect spherical tanks, such as cameras and non-destructive testing equipment. However, a wall-climbing robot inside a spherical tank cannot be accurately positioned owing to the particularity of the spherical tank structure. This paper proposes a passive support and positioning mechanism fixed in a spherical tank to improve the adsorption capacity and positioning accuracy of the inspection robot. The main body of the mechanism was designed as a truss composed of carbon fiber telescopic rods and can work in spherical tanks with diameters of 4.6‒15.7 m. The structural strength, stiffness, and stability of the mechanism are analyzed via force and deformation simulations. By constructing a mathematical model of the support and positioning mechanism, the influence of structural deformation on the supporting capacity is analyzed and calculated. The robot positioning method based on the support and positioning mechanism can effectively locate the robot inside a spherical tank. Experiments verified the support performance and robot positioning accuracy of the mechanism. This research proposes an auxiliary support and positioning mechanism for a detection robot inside a spherical tank, which can effectively improve the positioning accuracy of the robot and meet the robotic inspection requirements.
topic Support mechanism
Inspection of the spherical tank
Ansys simulation
Robot positioning
url https://doi.org/10.1186/s10033-020-00522-7
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AT shanshanjin supportandpositioningmechanismofadetectionrobotinsideasphericaltank
AT kaizheng supportandpositioningmechanismofadetectionrobotinsideasphericaltank
AT xingsongwang supportandpositioningmechanismofadetectionrobotinsideasphericaltank
AT sichongsun supportandpositioningmechanismofadetectionrobotinsideasphericaltank
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