A Grinding Protocol for the Fabrication of Micro/Meso Aspheric Moulds for Optic Applications

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This paper summarised our recent results on the development of grinding technologies for the fabrication of aspheric components at micro/meso scales made of cemented tungsten carbide. Based on these results, a grinding protocol was proposed for the fabrication of aspheric moulds. The protocol includes the understanding of deformation and removal mechanisms of hard and brittle materials involved in grinding, the preparation of grinding wheels, the compensation of profiling errors and the optimisation of the grinding process.

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111-116

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September 2012

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] K.L. Blaedel, J.S. Taylor and C.J. Evans: in Machining of Ceramics and Composites, edited by S. Jahanmir, M. Ramulu and P. Koshy, Marcel Dekker, Inc. (1999), p.139.

Google Scholar

[2] H. Huang, L. Yin and L. Zhou: J. Mater. Proc. Technol. Vol. 141 (2003), p.329.

Google Scholar

[3] T.G. Bifano, T. Dow and R.O. Scattergood: Trans. of ASME: J. Eng. Ind. Vol. 113 (1991), p.184.

Google Scholar

[4] E. Brinksmeier, Y. Mutlugunes, F. Klocke, J.C. Aurich, P. Shore and H. Ohmori: CIRP Annals - Manufacturing Technology Vol. 59 (2010), p.652.

DOI: 10.1016/j.cirp.2010.05.001

Google Scholar

[5] I. Inasaki: Annals of CIRP Vol. 36/2 (1987), p.463.

Google Scholar

[6] S. Jahanmir, H.H.K. Xu and L.K. Ives: in Machining of Ceramics and Composites, edited by S. Jahanmir, M. Ramulu and P. Koshy, Marcel Dekker, Inc. (1999), p.11.

Google Scholar

[7] H. Huang and Y.C. Liu: Int. J. Mach. Tools Manuf. Vol. 43 (2003), p.811.

Google Scholar

[8] H. Huang, B.L. Wang, Y. Wang, J. Zou and L. Zhou: Mater. Sci. Eng. A Vol. 479 (2008), p.373.

Google Scholar

[9] I. Zarudi, L.C. Zhang, and D. Cockayne: J. Mater. Sci. Vol. 33 (1998), p.1639.

Google Scholar

[10] R. Irwan and H. Huang: Int. J. Surf. Sci. Eng. Vol. 2 (2008), p.29.

Google Scholar

[11] H. Huang and M.B. Bush: Mater. Sci. Eng. A Vol. 232 (1997), p.63.

Google Scholar

[12] H. Huang, M.P. Dallimore, J. Pan and P.G. McCormick: Mater. Sci. Eng. A Vol. 241 (1998), p.38.

Google Scholar

[13] R. Irwan and H. Huang: submitted to Int. J. Surf. Sci. Eng. (2012).

Google Scholar

[14] Y. Hwang, T. Kuriyagawa and S.K. Lee: Int. J. Mach. Tools Manuf. Vol. 46 (2006), p. (1929).

Google Scholar

[15] T. Kuriyagawa, J. Lee, M. Saeki and K. Syoji: in Advances in Abrasive Technology IV, Seoul, Korea, (2001), p.111.

Google Scholar

[16] W.K. Chen, T. Kuriyagawa, H. Huang and N. Yosihara: Preci. Eng. Vol. 29 (2005), p.315.

Google Scholar

[17] W.K. Chen, H. Huang and L. Yin: J. Mater. Proc. Techno. Vol. 159 (2005), p.229.

Google Scholar

[18] H. Huang, W.K. Chen and T. Kuriyagawa: Int. J. Mach. Tools Manuf. Vol. 47 (2007), p.2237.

Google Scholar

[19] F.J. Chen, S.H. Yin, H. Huang, H. Ohmori, Y. Wang, Y.F. Fan and Y.J. Zhu: Int. J. Mach. Tools Manuf. Vol. 50 (2010), p.480.

Google Scholar

[20] H. Huang: in Micro cutting: fundamentals and applications, edited by Kai Cheng, John Wiley & Sons, (2012), in press.

Google Scholar