References
- Olsen, K. V., "Surface Roughness on Turned Steel Componented and the Relevant Mathematical Analysis", Prod. Engr. 47, pp. 595-606, 1968.
- Petropoulos, P. G., "The Effect of Feed Rate and Tool Nose Radious on Roughness of Oblique Finish Turned Surface", Vol. 23, No. 3, pp. 299-310, 1973. https://doi.org/10.1016/0043-1648(73)90019-7
- Tobias, S. A. and Fisheick, W., "The Chatter of Lathe Tools under Orthogonal Cutting Conditions", Trans. ASME, Vol. 170, pp. 232-264, 1956.
- Ramaswami., R., "The Effect of the Built-up Edge on the Wear of Cutting Tools", Wear 18, pp. 1-10, 1971. https://doi.org/10.1016/0043-1648(71)90059-7
- Trigger, K. J. and Chao., B. T. "An Analytical Evaluation of Metal-Cutting Temperatures", Trans. ASME, pp. 57-66., 1951.
- Cook, N. H., Nayak., P. N., "The Thermal Mechanics of Tool Wear", Trans. ASME, pp. 93-100, 1966.
- Cook, N. H., "Tool Wear and Tool Life", Trans. ASME, pp. 931-937, 1973.
- Shaw, M. C., Pigott, J. D. and Richardson, L. P., "The effect of the Cutting Fluid upon Chip-Tool Interface Temperature", Trans. ASME, Jan., pp. 45-56, 1951.
- Kececioglu, D., Sorensen, A. S., "Comparative Effect of Land and Crater Wear on Tool Life when Dry Cutting, Mist Cooling and Flood Cooling", Trans. ASME, pp. 49-52, 1962.
- Ramaiyengar, H. S., Salmon., T., Rice, W. B., "Some Effects of Cutting Fluid on chip Formation in Metal Cutting", Trans. ASME, Fev., pp. 36-38., 1965.
- Konig, W., Diederich, N., "Cutting Fluid Improve Tool-Life of Carbide Tools by chemical Teactions", CIPP, Vol. XVII, pp. 17-28., 1969.
- Kwon, D. K., Wang, D. H., "A Statistical Study on the Blasting Conditions when Micro Blasting for Rotating Aluminum Rodl," Journal of the Korean Society of Manufacturing Process Engineers, Vol. 16, No. 2, pp. 135-141, 2017 https://doi.org/10.14775/ksmpe.2017.16.2.0135
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