Open Access
Issue
Wuhan Univ. J. Nat. Sci.
Volume 30, Number 4, August 2025
Page(s) 343 - 354
DOI https://doi.org/10.1051/wujns/2025304343
Published online 12 September 2025
  1. Lu C F. Research on Post-Weld Inspection Technology Based on Laser Vision Sensing[D]. Harbin: Harbin Institute of Technology, 2007(Ch). [Google Scholar]
  2. He Z X. Appearance quality inspection of steel structure welds[J]. Architectural Engineering Technology and Design, 2016, 14(2): 1668(Ch). [Google Scholar]
  3. Ministry of Construction of China. Standard for Test Methods of Steel Bar Welding Joints: JGJ/T27-2001 J140-2001[M]. Beijing: China Architecture & Building Press, 2001 (Ch). [Google Scholar]
  4. Ministry of Construction of China. Code for Acceptance of Steel Bar Welding: JGJ18-2012, Code for Acceptance of Steel Bar Welding[M]. Beijing: China Build Ind Press, 2012(Ch). [Google Scholar]
  5. Wu C T, Wang D L, Li H Q. Research and application of weld seam dimension calculation formula[J]. Coal Mine Mach, 2002, 2(5):42-43(Ch). [Google Scholar]
  6. Wang C X, Wang L, Sun C L, et al. Phased array B-scan acoustic field simulation of aluminum extrudate FSW welds with complex shapes[C]//2014 IEEE Far East Forum on Nondestructive Evaluation/Testing. New York: IEEE, 2014: 89-92. [Google Scholar]
  7. Wu S K. Research on X-Radiographic Test and Ultrasonic Test of the Fusion-Butt Welds of Polyethylene Gas Pipe[D]. Guangzhou: South China University of Technology, 2014(Ch). [Google Scholar]
  8. Gu X P. Study on Ultrasonic Testing for Laser Welded Lap Joint of Thin Stainless-Steel Sheet[D]. Jilin: Jilin University, 2013(Ch). [Google Scholar]
  9. Yang G F. Research on Intelligent Analysis Method for Welding Quality Based on X-Ray Imaging[D]. Daqing: Northeast Petroleum University, 2014(Ch). [Google Scholar]
  10. Wang Y G, He H T, Liu S, et al. Application of visual inspection technology in weld detection[J]. Modern Machinery, 2005, 30(2): 63-64, 67(Ch). [Google Scholar]
  11. Wang P. Research on Key Technologies of Linear Structured Light 3D Automatic Scanning System[D]. Tianjin: Tianjin University, 2008(Ch). [Google Scholar]
  12. Zhao S. Research on 3D Scanning Detection Technology and Evaluation Method of Steel Bar Weld Seam[D]. Xi’an: Chang’an University, 2019(Ch). [Google Scholar]
  13. White R A, Lucas J, Smith J S. Vision-based gauge for online weld profile metrology[J]. IEE Proceedings—Science, Measurement and Technology, 1994, 141(6): 521-526. [Google Scholar]
  14. Cook G E, Barnett R J, Andersen K, et al. Automated visual inspection and interpretation system for weld quality evaluation[C]//IAS’95: Conference Record of the 1995 IEEE Industry Applications Conference 30th IAS Annual Meeting. New York: IEEE, 1995: 1809-1816. [Google Scholar]
  15. Noruk J. Visual weld inspection enters the new millennium[J]. Sensor Review, 2001, 21(4): 278-282. [Google Scholar]
  16. Lee J, Im P, Park Y, et al. Welding bead and chamfer inspection by means of laser vision[C]//Proceedings of SPIE—The International Society for Optical Engineering. Boston: SPIE, 2001: 41-50. [Google Scholar]
  17. Jablonski R, Turbowski M, Szewczyk R. Recent Advances in Mechatronics[M]. Berlin: Springer-Verlag, 2007: 258-262. [Google Scholar]

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