Fusaomi Nagata, Takanori Mizobuchi, Keigo Watanabe, Maki K. Habib, Tetsuo Hase, Zenku Haga, and Masaaki Omoto
[1] M.J. Tsai, J.L. Chang, and J.F. Haung, Development of an automatic mold polishing system, Proc. 2003 IEEE International Conference on Robotics & Automation, 2003, 3517–3522. [2] M.J. Tsai, J.J. Fang, and J.L. Chang, Robotic path planning for an automatic mold polishing system, International Journal of Robotics & Automation, 19 (2), 2004, 81–89. [3] M.J. Tsai, J.F. Huang, and W.L. Kao, Robotic polishing of precision molds with uniform material removal control, International Journal of Machine Tools and Manufacture,49 (11), 2009, 885–895. [4] G. Chai, C. Lu, and D. Wen, Path generation and posture angle control of tool for robotic polishing system, Advanced Materials Research, 102–104, 2010, 568–572. [5] Y. Mizugaki, M. Sakamoto, K. Kamijo, and N. Taniguchi, Development of metal-mold polishing robot system with contact pressure control using CAD/CAM data, CIRP Annals –Manufacturing Technology, 39 (1), 1990, 523–526. [6] Y. Mizugaki, M. Sakamoto, and K. Kamijo, Fractal path application in a metal mold polishing robot system, Proc. International Conference on Advanced Robotics, 1991, 431–436. [7] Y. Mizugaki, M. Sakamoto, and T. Sata, Fractal path generation for a metal-mold polishing robot system and its evaluation by the operability, CIRP Annals – Manufacturing Technology, 41 (1), 1992, 531–534. [8] C. Brecher, R. Tuecks, R. Zunke, and C. Wenzel, Development of a force controlled orbital polishing head for free form surface finishing, Production Engineering, 4 (2–3), 2010, 269–277. [9] J.D. Kim, and I.H. Noh, Magnetic polishing of three dimensional die and mold surfaces, The International Journal of Advanced Manufacturing Technology, 33 (1–2), 2007, 18–23. [10] H. Suzuki, T. Moriwaki, T. Okino, and Y. Ando, Development of ultrasonic vibration assisted polishing machine for micro aspheric die and mold, CIRP Annals – Manufacturing Technology, 55 (1), 2006, 385–388. [11] H. Suzuki, S. Hamada, T. Okino, M. Kondo, Y. Yamagata, and T. Higuchi, Ultraprecision finishing of micro-aspheric surface by ultrasonic two-axis vibration assisted polishing, CIRP Annals – Manufacturing Technology, 59 (1), 2010, 347–350. [12] H. Hocheng, Y.H. Sun, S.C. Lin, and P.S. Kao, A material removal analysis of electrochemical machining using flat-end cathode, Journal of Materials Processing Technology, 140 (1–3), 2003, 264–268. [13] Y. Uehara, H. Ohmori, W. Lin, Y. Ueno, T. Naruse, N.Mitsuishi, S. Ishikawa, and T. Miura, Development of spherical lens ELID grinding system by desk-top 4-axes machine tool, Proceedings of International Conference on Leading Edge Manufacturing in 21st Century, 2005, 247–252. [14] H. Ohmori, and Y. Uehara, Development of a desktop machine tool for mirror surface grinding, International Journal of Automation Technology, 4 (2), 2010, 88–96. [15] T. Kurita, and M. Hattori, Development of new-concept desk top size machine tool, International Journal of Machine Tools and Manufacture, 45 (7–8), 2005, 959–965. [16] R. Gurbuz, Mechatronics approach for desk-top CNC milling machine design, Solid State Phenomena, 144, 2008, 175–180. [17] H. Hocheng, and K.L. Kuo, Fundamental study of ultrasonic polishing of mold steel, International Journal of Machine Tools and Manufacture, 42 (1), 2002, 7–13. [18] F. Nagata, T. Hase, Z. Haga, M. Omoto, and K. Watanabe, Intelligent desktop NC machine tool with compliant motion capability, Artificial Life and Robotics, 13 (2), 2009, 423–427. [19] F. Nagata, T. Hase, Z. Haga, M. Omoto, and K. Watanabe, CAD/CAM–based position/force controller for a mold polishing robot, Mechatronics, 17 (4–5), 2007, 207–216. [20] F. Nagata, T. Mizobuchi, T. Hase, Z. Haga, K. Watanabe, and M.K. Habib, CAD/CAM–based force controller using a neural network–based effective stiffness estimator, Artificial Life and Robotics, 15 (1), 2010, 101–105. [21] F. Nagata, T. Mizobuchi, S. Tani, T. Hase, Z. Haga, K.Watanabe, M.K. Habib, and K. Kiguchi, Desktop orthogonal–type robot with abilities of compliant motion and stick-slip motion for lapping of LED lens molds, Procs. 2010 IEEE International Conference on Robotics and Automation, 2010, 2095–2100. [22] F. Nagata, T. Mizobuchi, S. Tani, T. Hase, Z. Haga, K.Watanabe, and M.K. Habib, Stick–slip motion control based on cutter location data for an orthogonal–type robot, Artificial Life and Robotics, 15 (1), 2010, 106–110.
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