参考文章(11)
Walter Edward Littmann, The influence of the grinding process on the structure of hardened steel Massachusetts Institute of Technology. ,(1954)
S. Malkin, N. Joseph, Minimum energy in abrasive processes Wear. ,vol. 32, pp. 15- 23 ,(1975) , 10.1016/0043-1648(75)90201-X
S. Ramanath, M. C. Shaw, Abrasive Grain Temperature at the Beginning of a Cut in Fine Grinding Journal of Engineering for Industry. ,vol. 110, pp. 15- 18 ,(1988) , 10.1115/1.3187835
S. Malkin, N. H. Cook, The Wear of Grinding Wheels: Part 1—Attritious Wear Journal of Engineering for Industry. ,vol. 93, pp. 1120- 1128 ,(1971) , 10.1115/1.3428051
W.J. Tomlinson, L.A. Blunt, S. Spraggett, The effect of workpiece speed and grinding-wheel condition on the thickness of white layers formed on EN. 24 ground surfaces Journal of Materials Processing Technology. ,vol. 25, pp. 105- 110 ,(1991) , 10.1016/0924-0136(91)90105-N
T.-C. Jen, A. S. Lavine, A Variable Heat Flux Model of Heat Transfer in Grinding: Model Development Journal of Heat Transfer-transactions of The Asme. ,vol. 117, pp. 473- 478 ,(1995) , 10.1115/1.2822546
K. Brach, D. M. Pai, E. Ratterman, M. C. Shaw, Grinding Forces and Energy Journal of Engineering for Industry. ,vol. 110, pp. 25- 31 ,(1988) , 10.1115/1.3187838
S. Kohli, C. Guo, S. Malkin, Energy Partition to the Workpiece for Grinding with Aluminum Oxide and CBN Abrasive Wheels Journal of Engineering for Industry. ,vol. 117, pp. 160- 168 ,(1995) , 10.1115/1.2803290
K. Neailey, Surface integrity of machined components: microstructural aspects Metals and Materials. ,vol. 4, pp. 93- 96 ,(1988)