Automated Programming for Robotic Welding

被引:10
|
作者
Larkin, Nathan [1 ,2 ]
Short, Andrew [1 ]
Pan, Zengxi [1 ,2 ]
van Duin, Stephen [1 ,2 ]
机构
[1] Univ Wollongong, Sch Mech Mat Mechatron & Biomed Engn, Wollongong, NSW 2522, Australia
[2] Def Mat Technol Ctr, Hawthorn, Vic, Australia
关键词
Robotics; Welding; Automated programming; Motion planning; PROBABILISTIC ROADMAPS; MANIPULATION;
D O I
10.1007/978-981-10-5355-9_4
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Robotic welding automation allows manufacturers to increase quality, flexibility and reduce costs. However, the costs involved in programming welding robots for small production runs limits viability for Small and Medium Enterprises to employ arc welding automation. This paper outlines an Automated Offline Programming framework which can be used to generate robot programs directly from Computer Aided Design models with minimal human input, allowing programming costs to be drastically reduced or even eliminated. The key stages of our approach are presented and a specific implementation for welding of complex pipe structures is shown. The results demonstrate the feasibility of our method to enable truly flexible robotic welding automation.
引用
收藏
页码:48 / 59
页数:12
相关论文
共 50 条
  • [21] PROGRAMMING A ROBOTIC CELL APPLIED TO THE WELDING ACCESSORIES TO PRESSURIZED STEEL TANKS
    Cristina Majarena-Bello, Ana
    Javier Brosed-Dueso, Francisco
    Suelves-Albert, Arturo
    Santolaria-Mazo, Jorge
    DYNA, 2014, 89 (06): : 616 - 624
  • [22] Automated planning of robotic MAG welding based on adaptive gap model
    Kuss, Alexander
    Dietz, Thomas
    Spenrath, Felix
    Verl, Alexander
    10TH CIRP CONFERENCE ON INTELLIGENT COMPUTATION IN MANUFACTURING ENGINEERING - CIRP ICME '16, 2017, 62 : 612 - 617
  • [23] Automated Bead Layout Methodology for Robotic Multi-pass Welding
    Wu, Yue
    Go, Jonathan Zhen Ming
    Ahmed, Syeda Mariam
    Lu, Wen-Feng
    Chew, Chee-Meng
    Pang, Chee Khiang
    PROCEEDINGS OF 2015 IEEE 20TH CONFERENCE ON EMERGING TECHNOLOGIES & FACTORY AUTOMATION (ETFA), 2015,
  • [24] Seamless Manual-to-Autopilot Transition: An Intuitive Programming Approach to Robotic Welding
    Eto, Haruhiko
    Asada, H. Harry
    2019 28TH IEEE INTERNATIONAL CONFERENCE ON ROBOT AND HUMAN INTERACTIVE COMMUNICATION (RO-MAN), 2019,
  • [25] Automated Seam Tracking System based on Passive Monocular Vision for Automated Linear Robotic Welding Process
    Weis, Atila A.
    Mor, Jusoan L.
    Soares, Luciane B.
    Steffens, Cristiano R.
    Drews-, Paulo L. J., Jr.
    de Faria, Matheus F.
    Evald, Paulo J. D. O.
    Azzolin, Rodrigo Z.
    Filho, Nelson D.
    Botelho, Silvia S. da C.
    2017 IEEE 15TH INTERNATIONAL CONFERENCE ON INDUSTRIAL INFORMATICS (INDIN), 2017, : 305 - 310
  • [26] An intelligent hybrid system of welding parameters for robotic are welding task-level off-line programming
    Peng, P
    Tian, JS
    Wu, L
    Da, M
    INTELLIGENT SYSTEMS IN DESIGN AND MANUFACTURING III, 2000, 4192 : 440 - 445
  • [27] Current Status and Future Trends in Automated and Robotic Welding and Cutting in France.
    Panisset, J.
    Soudage et Techniques Connexes, 1985, 39 (7-8): : 278 - 287
  • [28] Automatic Trajectory Determination in Automated Robotic Welding Considering Weld Joint Symmetry
    Curiel, David
    Veiga, Fernando
    Suarez, Alfredo
    Villanueva, Pedro
    Aldalur, Eider
    SYMMETRY-BASEL, 2023, 15 (09):
  • [29] Virtual reality based programming of human-like torch operation for robotic welding
    Hu, Yijie
    Xiao, Jun
    Chen, Shujun
    Gai, Shengnan
    WELDING IN THE WORLD, 2025, : 1447 - 1458
  • [30] An object oriented multi-robotic graphic simulation environment for programming the welding tasks
    崔泽
    赵杰
    崔岩
    蔡鹤皋
    China Welding, 2002, (01) : 79 - 85