Experimental Investigation of the Heat Flux Distribution in Grinding of Titanium Alloy
Author:
Publisher
Elsevier BV
Subject
Applied Mathematics
Reference7 articles.
1. T. Jin, D.J. Stephenson, Heat flux distributions and convective heat transfer in deep grinding, International Journal of Machine Tools and Manufacture, Volume 46, Issue 14, November 2006, Pages 1862-1868, ISSN 0890-6955, http://dx.doi.org/10.1016/j.ijmachtools.2005.11.004.
2. Changfeng Yao, Ting Wang, Wei Xiao, Xinchun Huang, Junxue Ren, Experimental study on grinding force and grinding temperature of Aermet 100 steel in surface grinding, Journal of Materials Processing Technology, Volume 214, Issue 11, November 2014, Pages 2191-2199, ISSN 0924-0136
3. A. Lefebvre, P. Vieville, P. Lipinski, C. Lescalier, Numerical analysis of grinding temperature measurement by the foil/workpiece thermocouple method, International Journal of Machine Tools and Manufacture, Volume 46, Issue 14, November 2006, Pages 1716-1726, ISSN 0890-6955
4. Mohammadjafar Hadad, Banafsheh Sadeghi, Thermal analysis of minimum quantity lubrication-MQL grinding process, International Journal of Machine Tools and Manufacture, Volume 63, December 2012, Pages 1-15, ISSN 0890-6955
5. B. Kirsch, J.C. Aurich, Influence of the Macro-topography of Grinding Wheels on the Cooling Efficiency and the Surface Integrity, Procedia CIRP, Volume 13, 2014, Pages 8-12, ISSN 2212-8271
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