Guohua Cui, Haimiao Wu, Kangkang Cui, and Dan Zhang
[1] S.W. Hu, J. Shen, D.L. Wang, et al., Analysis and experimental study on prestressed concrete cylinder pipe structure with superlarge diameter pre-existing cracks, Journal of Hydraulic Engineering, 41(07), 2010, 876–882. [2] H. Xiong, P.H. Li, and Q.B. Li, FE model for simulating wire-wrapping during prestressing of an embedded prestressed concrete cylinder pipe, Simulation Modelling Practice and Theory, 18(5), 2010, 624–636. [3] Y.M. Zhu, X.Y. Sun, X.G. Wang, Locomotion system design and dynamics analysis of a new telescopic miniature in-pipe robot, International Journal of Robotics and Automation, 31(2), 2016, 111–117. [4] D. Jayakumar, R. Jaganath, and R. Selvarasu, Defect identification in pipelines using inspection robot, Online International Conf. on Green Engineering & Technologies, Coimbatore, India, 2016, 1–5. [5] L. Liang, P.H. Tang, B. Chen, et al., Dynamical modelling and structural parameter optimization of a novel spiral inpipe robot, International Journal of Robotics and Automation, 31(1), 2016, 16–25. [6] Y. Pei, Research and application of piping inside grinding robots in nuclear power plant, Energy Procedia, 127, 2017, 54–59. [7] D.W. Tang, Q.K. Li, S.Y. Jiang, et al., Design and analysis of a pipeline robot with the function of differential movement, Journal of Mechanical Engineering, 47(13), 2011, 1–8. [8] C. Zhu, In-pipe robot for inspection and sampling tasks, Industrial Robot – An International Journal, 34(1), 2007, 39–45. [9] M.R.A.M. Zin, K.S.M. Sahari, J.M. Saad, et al., Development of a low cost small sized in-pipe robot, Procedia Engineering, 41, 2012, 1469–1475. [10] W.G. Fan, Y.M. Liu, W.X. Wang, et al., Research on modelling method of material removal for rail grinding by abrasive belt based on elastic Hertzian contact, Journal of Mechanical Engineering, 54(15), 2018, 191–198. [11] W.G. Fan, J.F. Cheng, H.B. Lv, et al., Research on timevarying contact behavior and simulation for waved rail surface grinding by abrasive belt, Journal of Mechanical Engineering, 54(04), 2018, 87–92. [12] W.X. Wang, J.Y. Li, W.G. Fan, et al., Grinding power prediction model for abrasive bet rail grinding based on Hertzian contact, China Railway Science, 38(03), 2017, 25–30. [13] W. Shang, Effects of grinding rotational speed on grinding behaviors in rail grinding based on virtual grinding wheel modelling, (Cheng Du: Southwest Jiaotong University, 2017), 78–90. [14] W. Shang, S.Y. Zhang, J. Guo, et al., Simulation study on material removal of rail grinding based on virtual grinding wheel modelling, Journal of Mechanical Engineering, 54(04), 2018, 30–36. [15] H. Tang, Z.H. Deng, Y.S. Guo, et al., Research on constant grinding depth model for cam grinding, International Journal of Advanced Manufacturing Technology, 74(1–4), 351–359. [16] G.H. Cui, Y.W. Zhang, Y.S. Zhang, et al., Configuration design and analysis of a new 3-SPS/S spatial rotation parallel manipulator, Journal of Jilin University, 39(S1), 2009, 200– 205. [17] I. Piotrowska, C. Brandt, H.R. Karimi, et al., Mathematical model of micro turning process. International Journal of Advanced Manufacturing Technology, 45(1–2), 2009, 33–40. [18] Y.J. Li, Q.Y. Liu, Y.H. Chen, et al., Helical-contact deformation measuring method in oil–gas pipelines, International Journal of Robotics and Automation, 32(1), 2017, 55–62. [19] B. Zi, H.H. Sun, D. Zhang, Design analysis and control of a winding hybrid-driven cable parallel manipulator, Robotics and Computer-Integrated Manufacturing, 48, 2017, 196–208. [20] T. Li, S.G. Ma, B. Li, et al., Design and motion mechanism of a screw drive in-pipe robot with adaptability to in-pipe environment Journal of Mechanical Engineering, 52(9), 2016, 9–17. [21] Y.J. Wang, H. Huang, Y.X. Chen, et al., Model of abrasive belt grinding surface removal contour and its application, International Journal of Advanced Manufacturing Technology, 82(9–12), 2016, 2113–2122. [22] Y.M. Mei, Z.H. Yu, Z.S. Yang, Numerical investigation of the evolution of grit fracture and its impact on cutting performance in single grit grinding, International Journal of Advanced Manufacturing Technology, 89(9–12), 2017, 3271–3284. [23] X. Li, T. Yang, J. Zhang, et al., Rail wear on the curve of a heavy haul line – Numerical simulations and comparison with field measurements, Wear, 366–367(15), 2016, 131–138.
Important Links:
Go Back