• Frontiers of Optoelectronics
  • Vol. 8, Issue 3, 306 (2015)
Haobo CHENG1、*, Jingshi SU1, Yong CHEN1, and Hon-Yuen TAM2
Author Affiliations
  • 1School of Optoelectronics, Joint Research Center for Optomechatronics Design and Engineering, Beijing Institute of Technology,Beijing 100081, China
  • 2Department of Mechanical and Biomedical Engineering, City University of Hong Kong, Hong Kong, China
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    DOI: 10.1007/s12200-014-0401-y Cite this Article
    Haobo CHENG, Jingshi SU, Yong CHEN, Hon-Yuen TAM. Profile and roughness of electrorheological finishing optical surfaces[J]. Frontiers of Optoelectronics, 2015, 8(3): 306 Copy Citation Text show less
    References

    [1] Golini D, KordonskiWI, Dumas P, Hogan S J. Magnetorheological finishing (MRF) in commercial precision optics manufacturing. In: Proceedings of the SPIE, Optical Manufacturing and Testing III. 1999, 3782: 80–91

    [2] Jha S, Jain V K. Design and development of the magnetorheological abrasive flow finishing (MRAFF) process. International Journal of Machine Tools & Manufacture, 2004, 44(10): 1019–1029

    [3] Shorey A B, Kordonski W, Tricard M. Magnetorheological finishing of large and lightweight optics. In: Proceedings of SPIE, Advances in Mirror Technology for X-Ray, EUV Lithography, Laser, and Other Applications II. 2004, 5533: 99–107

    [4] Umehara N, Hayashi T, Kato K. In situ observation of the behavior of abrasives in magnetic fluid grinding. Journal of Magnetism and Magnetic Materials, 1995, 149(1–2): 181–184

    [5] Mori T, Hirota K, Kawashima Y. Clarification of magnetic abrasive finishing mechanism. Journal of Materials Processing Technology, 2003, 143–144: 682–686

    [6] Kim J D, Choi M S. Study on magnetic polishing of free-form surfaces. International Journal of Machine Tools & Manufacture, 1997, 37(8): 1179–1187

    [7] Yin S, Shinmura T. A comparative study: polishing characteristics and its mechanisms of three vibration modes in vibration-assisted magnetic abrasive polishing. International Journal of Machine Tools & Manufacture, 2004, 44(4): 383–390

    [8] Kuriyagawa T, Syoji K. Development of electrorheological fluid assisted machining for 3-dimensional small parts. Journal-Japan Society for Precision Engineering, 1999, 65(1): 145–149

    [9] Kuriyagawa T, Saeki M, Syoji K. Study of electrorheological fluidassisted ultra-precision polishing for 3-dimensional small parts. In: Proceedings of the 2nd International Conference of the European Society for Precision Engineering and Nanotechnology, Turin. 2001, 738–741

    [10] Kuriyagawa T, Saeki M, Syoji K. Electrorheological fluid-assisted ultra-precision polishing for small three-dimensional parts. Precision Engineering, 2002, 26(4): 370–380

    [11] Kim W B, Lee S J, Kim Y J, Lee E S. The electromechanical principle of electrorheological fluid-assisted polishing. International Journal of Machine Tools & Manufacture, 2003, 43(1): 81–88

    [12] Kim W B, Park S J, Min B K, Lee S J. Surface finishing technique for small parts using dielectrophoretic effects of abrasive particles. Journal of Materials Processing Technology, 2004, 147(3): 377–384

    [13] Kim W B, Min B K, Lee S J. Development of a padless ultraprecision polishing method using electrorheological fluid. Journal of Materials Processing Technology, 2004, 155–156: 1293–1299

    [14] Zhang L, Kuriyagawa T, Kaku T, Zhao J. Investigation into electrorheological fluid-assisted polishing. International Journal of Machine Tools & Manufacture, 2005, 45(12–13): 1461–1467

    [15] Tanaka T. A study of basic characteristics of polishing using particle-type electro-rheological fluid. Key Engineering Materials, 2007, 329: 201–206

    [16] Kaku T, Yoshihara N, Yan J W, Kuriyagawa T, Abiko K, Mikami Y, Noguchi M. Development of a resin-coated micro polishing tool by plasma CVD method -electrorheological fluid-assisted polishing of tungsten carbide micro aspherical molding dies. Key Engineering Materials, 2007, 329: 213–218

    [17] Chen B, Cheng H, Tam H Y, Li H. Design of integrated-electrode tool for electrorheological finishing of optical glasses. Frontiers of Optoelectronics in China, 2011, 4(4): 467–471

    Haobo CHENG, Jingshi SU, Yong CHEN, Hon-Yuen TAM. Profile and roughness of electrorheological finishing optical surfaces[J]. Frontiers of Optoelectronics, 2015, 8(3): 306
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