Effect of Cutting Conditions on Temperature Generated in Drilling Process: a FEA Approach

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April 2011

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[1] M. Bono, J. Ni. A Model for predicting the heat flow into the workpiece in dry drilling, Manufacturing Science and Engineering, Vol. 124: (2002), pp.773-777.

Google Scholar

[2] B. Ozcelik, E. Bagci. Experimental and numerical studies on the determination of twist drill temperature in dry drilling: A new approach, Materials and Design, Vol. 27: (2006), pp.920-927.

DOI: 10.1016/j.matdes.2005.03.008

Google Scholar

[3] G. Johnson, W. Cook. Fracture Characteristics of three metals subjected to various strains, strain rates, temperatures and pressures, Engineering Fracture Mechanics, Vol. 2: (1985), pp.31-48.

DOI: 10.1016/0013-7944(85)90052-9

Google Scholar

[4] T. Umeda, K. Mimura, Numerical evaluation of measurement accuracy of non coaxial Hopkinson bar method, International Journal Series A Solid Mechanics and materials Engineering, Vol. 48: (2005), pp.215-221.

DOI: 10.1299/jsmea.48.215

Google Scholar

[5] M. Baker, J. Rosler, C. Siemers, Finite element simulation of segmented chip formation of Ti6Al4V, Journal of Manufacturing Science and Engineering (Trans ASME), Vol. 124: (2002), pp.485-488.

DOI: 10.1115/1.1459469

Google Scholar

[6] H. Fassi, L. Bousschine, A. Chaaba , A. Elharif, Numerical simulation of orthogonal cutting by incremental elasto-plastic analysis and finite element method, Journal of Materials Processing Technology, Vol. 141: (2003), pp.181-188.

DOI: 10.1016/s0924-0136(02)01018-x

Google Scholar

[7] E. Ng, T. El Wardany, M. Dumitrescu, M. Elbestawi. Physics-based simulation of high speed machining. Machining Science and Technology, Vol. 6: (2002), pp.301-329.

DOI: 10.1081/mst-120016248

Google Scholar

[8] Y. Yen, A. Jain, T. Altan, A finite element analysis of orthogonal machining using different tool edge geometries, Journal of Materials Processing Technology Vol. 146: (2004), pp.72-81.

Google Scholar

[9] G. Shi, X. Deng, C. Shet, A finite element study of the effect of friction in orthogonal metal cutting, Finite Elements in Analysis and Design, Vol. 38: (2002), pp.863-883.

Google Scholar

[10] X. Yang, C.H. Liu. A new stress-based model of friction behaviour in machining and its significant impact on residual stresses computed by finite element method. International Journal of Mechanical Sciences, Vol. 44: (2002), pp.703-723.

DOI: 10.1016/s0020-7403(02)00008-5

Google Scholar

[11] C. Liu, Y.Guo. Finite element analysis of the effect of sequential cuts and tool - chip friction on residual stresses in a machined layer, International Journal of Mechanical Sciences, 42: (2000), pp.1069-1086.

DOI: 10.1016/s0020-7403(99)00042-9

Google Scholar

[12] MSC.Marc User's Guide Version 2005. MSC Software Corporation LA.

Google Scholar

[13] B. Ozcelik, E. Bagci. Investigation of the effect of drilling conditions on the twist drill temperature during step-by-step and continuous dry drilling, Materials and Design, Vol. 27: (2006), pp.920-927.

DOI: 10.1016/j.matdes.2004.11.018

Google Scholar

[14] T. Ueda, R. Nozaki, A. Hosokawa. Temperature Measurement of Cutting Edge in Drilling- Effect of Oil Mist. Annals of the CIRP, Vol. 56: (2007), pp.446-454.

Google Scholar

[15] M. Bono, J. Ni. The effects of thermal distortions on the diameter and cylindricity of dry drilled holes. International Journal of Machine Tools and Manufacture, Vol. 41: (2001), pp.2261-2270.

DOI: 10.1016/s0890-6955(01)00047-5

Google Scholar