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Surface roughness modelling in finish face milling under MQL and dry cutting conditions

  • Symposium MS09: Machining and cutting
  • Published:
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ABSTRACT

The effect of lubrication-cooling condition on surface roughness in finish face milling operations has been widely investigated. Different cutting speeds and lubrication cooling conditions (dry, wet and MQL), in finish face milling of AISI 420 B stainless steel, have been considered. The evolution of the surface finish and tool wear with cutting time have been monitored. Analytical and artificial neural networkmodels, able to predict the surface roughness under different machining conditions, have been proposed.

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REFERENCES

  1. A.E. Diniz, J.R. Ferreira and F.T. Filho, Influence of refrigeration/lubrication condition on SAE 52100 hardened steel turning at several cutting speeds. International Journal of Machine Tools and Manufacture 43 (2003) 317–326.

    Google Scholar 

  2. K. Weinert, I. Inasaki, J.W. Sutherland and Wakabayashi, Dry machining and minimum quantity lubrication. Annals of the CIRP. 53/2 (2004) 1–27.

  3. J.M. Vieira, A.R. Machado and E.O. Ezugwu, Performance of cutting fluids during face milling of steels, Journal of Material Processing Technology, 116 (2001) 244–251.

    Google Scholar 

  4. N. Liu, C. Han, H. Yang, Y. Xu, M. Shi, S. Chao, F. Xie, The milling performances of TiC-based cermet tools with TiN nanopowders addition against normalized medium carbon steel AISI1045, Wear, 258 (2005) 1688–1695.

  5. M. Rahman, A. S. Kumar, M.U. Salam, Experimental evaluation on the effect of minimal quantities of lubricant in milling, International Journal of Machine Tools & Manufacture, 42 (2002) 539–547.

    Google Scholar 

  6. Y.S. Liao, H.M. Lin, Y.C. Chen, Feasibility study of the minimum quantity lubrication in high-speed end milling of NAK80 hardened steel by coated carbide tool. International Journal of Machine Tools & Manufacture, 47 (2007) 1667–1676.

    Google Scholar 

  7. C. Bruni, L. d’Apolito, A. Forcellese, F. Gabrielli, L.Gobbi, M. Simoncini, Finish milling operations of AISI 420 B stainless steel under dry and wet conditions, In: Proc. of the 10th CIRP International Workshop on Modelling of Machining Operations, Eds, F. Micari and L. Filice, Reggio Calabria, Italy (2007) 275–279.

  8. B. Ozcelik and M. Bayramoglu, The statistical modelling of surface roughness in high-speed flat end milling. International Journal of Machine Tools & Manufacture, 46 (2006) 1395–1402.

    Google Scholar 

  9. P.G. Bernardos, G.-C. Vosniakos, Predicting surface roughness in machining: a review. International Journal of Machine Tools & Manufacture, 43 (2003) 833–844.

    Google Scholar 

  10. M.-Y. Wang, H.-Y. Chang, Experimental study of surface roughness in slot end milling AL2014-T6. International Journal of Machine Tools & Manufacture, 44 (2004) 51–57.

    Google Scholar 

  11. Sandvik Coromant, 2007, Insert Technical Data (http://www.coromant.sandvik.com).

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Correspondence to C. Bruni.

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Bruni, C., d’Apolito, L., Forcellese, A. et al. Surface roughness modelling in finish face milling under MQL and dry cutting conditions. Int J Mater Form 1 (Suppl 1), 503–506 (2008). https://doi.org/10.1007/s12289-008-0151-8

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  • DOI: https://doi.org/10.1007/s12289-008-0151-8

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