Development of 3D boiler header template using Webots
Offline boiler header inspection is a tedious process if done manually since the opening is very small to insert big instruments and tools while the length can range up to 20 m. The geometry can also be complex since boiler tubes are connected to these headers from different directions. Designing of...
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my.uniten.dspace-304252023-12-29T15:47:42Z Development of 3D boiler header template using Webots Basri N.M.H. Sahari K.S.M. Mohideen S.S.K. Roslin N.S. Anuar A. 55701853500 57218170038 55701570700 55701843100 13609166500 In-pipe robot Inspection robot Simulator Webots Offline boiler header inspection is a tedious process if done manually since the opening is very small to insert big instruments and tools while the length can range up to 20 m. The geometry can also be complex since boiler tubes are connected to these headers from different directions. Designing of robots to assist in offline boiler header inspections can be made easier if a simulator is available for deciding the parameters of the robot. This paper describes the development of a 3D boiler header pipe environment template for boiler header inspection robot (BHIR) using Webots. The purpose is to use it as a simulator for the development of BHIR prototypes. Firstly, 3D boiler header pipe environment is constructed by using Pro Engineer (Pro\E). Next, Virtual Reality Modeling Language or VRML97 is used to convert file from Pro\E world file to Webots world file. Finally, simulations are carried out to verify the effectiveness of the developed 3Dboiler header environment template. Results show the advantages of having the simulator for modeling and designing of BHIR prototypes. � 2012 The Authors. Final 2023-12-29T07:47:42Z 2023-12-29T07:47:42Z 2012 Conference paper 10.1016/j.proeng.2012.07.336 2-s2.0-84901047540 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84901047540&doi=10.1016%2fj.proeng.2012.07.336&partnerID=40&md5=5d630e8f0af070bf6a0c7b38591cf6ed https://irepository.uniten.edu.my/handle/123456789/30425 41 1463 1468 All Open Access; Gold Open Access Elsevier Ltd Scopus |
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In-pipe robot Inspection robot Simulator Webots Basri N.M.H. Sahari K.S.M. Mohideen S.S.K. Roslin N.S. Anuar A. Development of 3D boiler header template using Webots |
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Offline boiler header inspection is a tedious process if done manually since the opening is very small to insert big instruments and tools while the length can range up to 20 m. The geometry can also be complex since boiler tubes are connected to these headers from different directions. Designing of robots to assist in offline boiler header inspections can be made easier if a simulator is available for deciding the parameters of the robot. This paper describes the development of a 3D boiler header pipe environment template for boiler header inspection robot (BHIR) using Webots. The purpose is to use it as a simulator for the development of BHIR prototypes. Firstly, 3D boiler header pipe environment is constructed by using Pro Engineer (Pro\E). Next, Virtual Reality Modeling Language or VRML97 is used to convert file from Pro\E world file to Webots world file. Finally, simulations are carried out to verify the effectiveness of the developed 3Dboiler header environment template. Results show the advantages of having the simulator for modeling and designing of BHIR prototypes. � 2012 The Authors. |
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55701853500 |
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55701853500 Basri N.M.H. Sahari K.S.M. Mohideen S.S.K. Roslin N.S. Anuar A. |
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Conference paper |
author |
Basri N.M.H. Sahari K.S.M. Mohideen S.S.K. Roslin N.S. Anuar A. |
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Basri N.M.H. |
title |
Development of 3D boiler header template using Webots |
title_short |
Development of 3D boiler header template using Webots |
title_full |
Development of 3D boiler header template using Webots |
title_fullStr |
Development of 3D boiler header template using Webots |
title_full_unstemmed |
Development of 3D boiler header template using Webots |
title_sort |
development of 3d boiler header template using webots |
publisher |
Elsevier Ltd |
publishDate |
2023 |
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1806427661704101888 |