The Effect of Cutting Speed and Feed Rate on the Surface Integrity in Dry Turning of CoCrMo Alloy
Author:
Publisher
Elsevier BV
Subject
General Medicine
Reference11 articles.
1. Nalbant, M., Altin, M., Gokkaya, H., 2007. The effect of cutting speed and cutting tool geometry on machinability properties of nickel-base Inconel 718 super alloys, Materials & Design 28, pp. 1334-1338.
2. Klocke,F., Settineri, L., Lung, D., Priarone, P.C., Arft, M., 2013. High performance cutting of gamma titanium aluminides: Influence of lubricoolant strategy on tool wear and surface integrity,Wear 302,pp. 1136-1144.
3. Ulutan, D., Ozel, T., 2011. Machining induced surface integrity in titanium and nickel alloys: A review, International Journal of Machine Tools & Manufacture 51, pp. 250-280.
4. Devillez, A., Le Coz, G., Dominiak, S., Dudzinski, D., 2011. Dry machining of Inconel 718, workpiece surface integrity, Journal of Materials Processing Technology 211, pp.1590-1598.
5. Zhou, M., Bushlya, V., Stahl, J.E., 2012. An investigation of surface damage in the high speed turning of Inconel 718 with use of whisker reinforced ceramic tools, Journal of Materials Processing Technology 212, pp.372-384.
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