A Mechanistic Model of Material Removal in Magnetorheological Finishing (MRF)

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Abstract:

According to the sharp rheological characteristics of magnetorheological fluid in the magnetic field, the principle and mechanism of magnetorheological finishing is analyzed. Based on the Preston equation, the Reynolds equation and its boundary conditions, the two-dimensional material removal model is built and simulated. Furthermore, a series of MRF experiments are carried out, and the influence of the immersed depth and material kinds on material removal rate are clarified respectively. The experimental results are compared with the modeling results of material removal rate to confirm the mechanistic model validity.

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Key Engineering Materials (Volumes 359-360)

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384-388

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November 2007

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© 2008 Trans Tech Publications Ltd. All Rights Reserved

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[1] I.V. Prokhorov and W.I. Kordonski: OSA OF&T Workshop Digest, Vol. 24 (1992), pp.134-136.

Google Scholar

[2] W.I. Kordonski: Proc. 3rd Int. Conf, Adaptive Struct (San Diego, CA, 1992), pp.13-27.

Google Scholar

[3] S.H. Yin, H. Ohmori and W.M. Lin: Int. Conf. on Leading Edge Manufacturing in 21st Century (LEM21) (Japan, 2005), pp.727-732.

Google Scholar

[4] G.W. Kang, F.H. Zhang and S. Dong: Optical Technique, Vol. 30 (2004) No. 3, pp.354-356. (In Chinese).

Google Scholar

[5] F. Zhang, J.C. Yu and X. J Zhan: Optics and Precision Engineering, Vol. 5 (1999) No. 5, pp.1-7. (In Chinese).

Google Scholar

[6] W.I. Kordonski and S.D. Jacobs: International Journal of Modern Physics B, (1996) No. 10, pp.2837-2848.

Google Scholar

[7] D.Y. Liu, S.L. Xu and S.C. Zhang: Chinese Science Bulletin, Vol. 48 (2003) No. 9, pp.981-987. (In Chinese).

Google Scholar

[8] D. Golini, S. Jacobs and W. Kordonski: Advanced Materials for Optics and Precision Structures, Vol. 67, pp.253-258.

Google Scholar

[9] F.W. Preston: Glass Technology, (1927) No. 11, pp.277-281.

Google Scholar

[10] H.B. Chen, Z.J. Feng and Y.W. Wang: Chinese Science Bulletin, Vol. 50 (2005) No. 9, pp.85-87. (In Chinese).

Google Scholar

[11] J. Lambropoulos, F. Yang and S.D. Jacobs: OSA OF&T Workshop Digest, Vol. 7 (1996), pp.146-149.

Google Scholar