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Ye, Y., Zhou, T., & Du, J. (2023). Robot-assisted immersive kinematic experience transfer for welding training. Journal of Computing in Civil Engineering, 37(2), 04023002.Search in Google Scholar
Zhang, Q., Xiao, R., Liu, Z., Duan, J., & Qin, J. (2023). Process simulation and optimization of arc welding robot workstation based on digital twin. Machines, 11(1), 53.Search in Google Scholar
Zheng, Z., Ma, Y., Zheng, H., Gu, Y., & Lin, M. (2018). Industrial part localization and grasping using a robotic arm guided by 2D monocular vision. Industrial Robot: An International Journal, 45(6), 794-804.Search in Google Scholar
Chaturvedi, R., Islam, A., Sharma, A., Sharma, K., & Sharma, R. (2020). Design and analysis of mechanical gripper of aristo-robot for welding. Test Eng Managem, 83, 23202-23209.Search in Google Scholar
Huda, M. A. N., Susilo, S. H., & Adhi, P. M. (2022). Implementation of inverse kinematic and trajectory planning on 6-DOF robotic arm for straight-flat welding movement. Logic: Jurnal Rancang Bangun dan Teknologi, 22(1), 51-61.Search in Google Scholar
Castro, A. F., Silva, M. F., & Silva, F. J. G. (2017). Designing a robotic welding cell for bus body frame using a sustainable way. Procedia Manufacturing, 11, 207-214.Search in Google Scholar
Ali, M. H. M., & Atia, M. R. (2022). A lead through approach for programming a welding arm robot using machine vision. Robotica, 40(3), 464-474.Search in Google Scholar
Lijin, F., & Longfei, S. (2017). Design of a novel robotic arm with non-backlash driving for friction stir welding process. The International Journal of Advanced Manufacturing Technology, 93, 1637-1650.Search in Google Scholar
Yao, P., Zhou, K., Lin, Y., & Tang, Y. (2019). Light-weight topological optimization for upper arm of an industrial welding robot. Metals, 9(9), 1020.Search in Google Scholar
Patil, V., Patil, I., Kalaichelvi, V., & Karthikeyan, R. (2019, April). Extraction of weld seam in 3d point clouds for real time welding using 5 dof robotic arm. In 2019 5th International Conference on Control, Automation and Robotics (ICCAR) (pp. 727-733). IEEE.Search in Google Scholar
Li, X., Shao, H., Li, G., Liu, W., & Liu, C. (2018, August). Static simulation and structure optimization of key parts of joint welding robots. In 2018 IEEE International Conference on Mechatronics and Automation (ICMA) (pp. 282-287). IEEE.Search in Google Scholar
Ong, S. K., Nee, A. Y. C., Yew, A. W. W., & Thanigaivel, N. K. (2020). AR-assisted robot welding programming. Advances in Manufacturing, 8(1), 40-48.Search in Google Scholar
Yu Hang,Liu Xintian,Yang Genhua,Zhang Xiaoying,Lai Jiafeng & Wei Yuwei.(2024).An improved Manson–Coffin model for fatigue life prediction of large crude oil storage tanks via environment temperature and surface roughness.Journal of the Brazilian Society of Mechanical Sciences and Engineering(4),Search in Google Scholar
Zhou Feng.(2019).Numerical Simulation of Large Crude Oil Storage Tank Fire under Various Wind Speeds.Journal of Physics: Conference Series012003-012003.Search in Google Scholar
Young Jun Park & Chang Yong Yi.(2024).Time of Flight Distance Sensor–Based Construction Equipment Activity Detection Method.Applied Sciences(7),Search in Google Scholar