Automatic teaching of a robotic remote laser 3D processing system based on an integrated laser-triangulation profilometry
One of the key challenges in robotic remote laser 3D processing (RL3DP) is to achieve high accuracy for the laser’s working trajectory relative to the features of the workpiece. This paper presents a novel RL3DP system with an automatic 3D teaching functionality for a precise and rapid determination...
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Faculty of Mechanical Engineering in Slavonski Brod, Faculty of Electrical Engineering in Osijek, Faculty of Civil Engineering in Osijek
2017-01-01
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Online Access: | https://hrcak.srce.hr/file/257836 |
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doaj-0b71097c9feb4b2cb12820d4c277689f2020-11-24T21:43:41ZengFaculty of Mechanical Engineering in Slavonski Brod, Faculty of Electrical Engineering in Osijek, Faculty of Civil Engineering in Osijek Tehnički Vjesnik1330-36511848-63392017-01-012418995Automatic teaching of a robotic remote laser 3D processing system based on an integrated laser-triangulation profilometryMatija Jezeršek0Matjaž Kos1Hubert Kosler2Janez Možina3University of Ljubljana, Faculty of Mechanical Engineering, Aščkerčeva 6, 1000 Ljubljana, SloveniaUniversity of Ljubljana, Faculty of Mechanical Engineering, Aščkerčeva 6, 1000 Ljubljana, SloveniaYaskawa Slovenija, Lepovče 23, 1310 Ribnica, SloveniaUniversity of Ljubljana, Faculty of Mechanical Engineering, Aščkerčeva 6, 1000 Ljubljana, SloveniaOne of the key challenges in robotic remote laser 3D processing (RL3DP) is to achieve high accuracy for the laser’s working trajectory relative to the features of the workpiece. This paper presents a novel RL3DP system with an automatic 3D teaching functionality for a precise and rapid determination of the working trajectory which comprises a robot manipulator, 3D scanning head, fibre laser and an off-axis positioned camera. The 3D measurement is based on laser triangulation with laser-stripe illumination using the laser’s pilot beam and scanning head. The experimental results show that the system has a precision better than 70 μm and 120 μm along lateral and vertical direction respectively inside the measuring range of 100 × 100 mm. The teaching time is 30-times shorter compared to a visual teaching procedure. Therefore, such a system can lead to large cost reductions for modern production lines that have constant changes to the products’ geometries and functionalities.https://hrcak.srce.hr/file/257836edge detectionlaser triangulationremote laser processingrobot teachingthree-dimensional measurement |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Matija Jezeršek Matjaž Kos Hubert Kosler Janez Možina |
spellingShingle |
Matija Jezeršek Matjaž Kos Hubert Kosler Janez Možina Automatic teaching of a robotic remote laser 3D processing system based on an integrated laser-triangulation profilometry Tehnički Vjesnik edge detection laser triangulation remote laser processing robot teaching three-dimensional measurement |
author_facet |
Matija Jezeršek Matjaž Kos Hubert Kosler Janez Možina |
author_sort |
Matija Jezeršek |
title |
Automatic teaching of a robotic remote laser 3D processing system based on an integrated laser-triangulation profilometry |
title_short |
Automatic teaching of a robotic remote laser 3D processing system based on an integrated laser-triangulation profilometry |
title_full |
Automatic teaching of a robotic remote laser 3D processing system based on an integrated laser-triangulation profilometry |
title_fullStr |
Automatic teaching of a robotic remote laser 3D processing system based on an integrated laser-triangulation profilometry |
title_full_unstemmed |
Automatic teaching of a robotic remote laser 3D processing system based on an integrated laser-triangulation profilometry |
title_sort |
automatic teaching of a robotic remote laser 3d processing system based on an integrated laser-triangulation profilometry |
publisher |
Faculty of Mechanical Engineering in Slavonski Brod, Faculty of Electrical Engineering in Osijek, Faculty of Civil Engineering in Osijek |
series |
Tehnički Vjesnik |
issn |
1330-3651 1848-6339 |
publishDate |
2017-01-01 |
description |
One of the key challenges in robotic remote laser 3D processing (RL3DP) is to achieve high accuracy for the laser’s working trajectory relative to the features of the workpiece. This paper presents a novel RL3DP system with an automatic 3D teaching functionality for a precise and rapid determination of the working trajectory which comprises a robot manipulator, 3D scanning head, fibre laser and an off-axis positioned camera. The 3D measurement is based on laser triangulation with laser-stripe illumination using the laser’s pilot beam and scanning head. The experimental results show that the system has a precision better than 70 μm and 120 μm along lateral and vertical direction respectively inside the measuring range of 100 × 100 mm. The teaching time is 30-times shorter compared to a visual teaching procedure. Therefore, such a system can lead to large cost reductions for modern production lines that have constant changes to the products’ geometries and functionalities. |
topic |
edge detection laser triangulation remote laser processing robot teaching three-dimensional measurement |
url |
https://hrcak.srce.hr/file/257836 |
work_keys_str_mv |
AT matijajezersek automaticteachingofaroboticremotelaser3dprocessingsystembasedonanintegratedlasertriangulationprofilometry AT matjazkos automaticteachingofaroboticremotelaser3dprocessingsystembasedonanintegratedlasertriangulationprofilometry AT hubertkosler automaticteachingofaroboticremotelaser3dprocessingsystembasedonanintegratedlasertriangulationprofilometry AT janezmozina automaticteachingofaroboticremotelaser3dprocessingsystembasedonanintegratedlasertriangulationprofilometry |
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1725912553853288448 |