Remote laser welding with in-line adaptive 3D seam tracking

被引:0
|
作者
Matjaž Kos
Erih Arko
Hubert Kosler
Matija Jezeršek
机构
[1] University of Ljubljana,Faculty of Mechanical Engineering, Laboratory for Laser Techniques
[2] Yaskawa Slovenija d.o.o.,undefined
关键词
Remote laser welding; In-line 3D adaptive laser beam positioning, easy teaching; Triangulation feedback;
D O I
暂无
中图分类号
学科分类号
摘要
Remote laser welding systems can usually focus a laser beam to diameters of 0.1 mm. Therefore, high quality clamping and precise teaching is needed in order to achieve appropriate process tolerance for a sound weld. This brings reservation in the field of small series and user-customized manufacturing, where product individualization requires flexible and adaptive systems as workpiece geometry is not exact due to manufacturing tolerances and thermal deformations during welding. The preparation for welding is therefore often time-consuming. To solve this, we have developed an innovative system, which enables in-line adaptive 3D seam tracking. The system consists of an industrial robot (Yaskawa MC2000), a scanning head (HighYag RLSK; working area 200 mm × 300 mm × 200 mm) with optical triangulation feedback and a fiber laser (IPG, YRL-400-AC; 400 W). A feed-forward loop was used to achieve positioning accuracy of under 0.05 mm during on-the-fly welding. Experimental results show that between welding speeds of 25 and 150 cm/min, average tracking deviations are 0.043 mm and 0.276 mm in y and z directions, respectively. Moreover, teaching times for a specified seam can be shortened for more than 10 times due to the fact that only rough seam teaching is required. The proposed system configuration could be adapted to other classical welding processes.
引用
收藏
页码:4577 / 4586
页数:9
相关论文
共 50 条
  • [31] Development of Combined Seam Tracking and Process Monitoring for Laser Welding
    Allen, C.
    Wallner, A.
    Wikstrom, N.
    Johansson, J.
    LASERS IN ENGINEERING, 2020, 46 (5-6) : 329 - 342
  • [32] Seam Tracking with Adaptive Image Capture for Fine-tuning of a High Power Laser Welding Process
    Lahdenoja, Olli
    Santti, Tero
    Paasio, Ari
    Laiho, Mika
    Poikonen, Jonne
    SEVENTH INTERNATIONAL CONFERENCE ON MACHINE VISION (ICMV 2014), 2015, 9445
  • [33] Investigation of Laser Welding Seam Tracking Based on Visual Sensing
    Huang, Yougai
    Gao, Xiangdong
    You, Deyong
    Li, Zhenshi
    PROCEEDINGS OF THE 2ND INTERNATIONAL CONFERENCE ON ELECTRONIC & MECHANICAL ENGINEERING AND INFORMATION TECHNOLOGY (EMEIT-2012), 2012, 23
  • [34] A study on the welding seam tracking by using Laser Vision Sensor
    Kim, Taewook
    Lee, Seungbeom
    Baek, Seunghwan
    Boo, Kwangsuck
    INTERNATIONAL CONFERENCE ON CONTROL, AUTOMATION AND SYSTEMS (ICCAS 2010), 2010, : 779 - 782
  • [35] Optical Coherence Tomography for 3D Weld Seam Localization in Absorber-Free Laser Transmission Welding
    Maiwald, Frederik
    Roider, Clemens
    Schmidt, Michael
    Hierl, Stefan
    APPLIED SCIENCES-BASEL, 2022, 12 (05):
  • [36] 3D polymer weld seam characterization based on optical coherence tomography for laser transmission welding applications
    Schmitt, Robert
    Mallmann, Guilherme
    Devrient, Martin
    Schmidt, Michael
    8TH INTERNATIONAL CONFERENCE ON LASER ASSISTED NET SHAPE ENGINEERING (LANE 2014), 2014, 56 : 1305 - 1314
  • [37] Remote Gaze Tracking System for 3D Environments
    Liu, Congcong
    Herrup, Karl
    Shi, Bertram E.
    2017 39TH ANNUAL INTERNATIONAL CONFERENCE OF THE IEEE ENGINEERING IN MEDICINE AND BIOLOGY SOCIETY (EMBC), 2017, : 1768 - 1771
  • [38] A System for In-Line 3D Inspection without Hidden Surfaces
    Perez-Cortes, Juan-Carlos
    Perez, Alberto J.
    Saez-Barona, Sergio
    Guardiola, Jose-Luis
    Salvador, Ismael
    SENSORS, 2018, 18 (09)
  • [39] In-line activation of cementitious materials for 3D concrete printing
    Ramakrishnan, Sayanthan
    Kanagasuntharam, Sasitharan
    Sanjayan, Jay
    CEMENT & CONCRETE COMPOSITES, 2022, 131
  • [40] In-line activation of geopolymer slurry for concrete 3D printing
    Muthukrishnan, Shravan
    Ramakrishnan, Sayanthan
    Sanjayan, Jay
    CEMENT AND CONCRETE RESEARCH, 2022, 162