Internal coolant circulation-based tool design to reduce the temperature and heat spreading when turning SUS304 Stainless Steel
Author:
Affiliation:
1. Department of Mechanical Systems Engineering, Tokyo University of Agriculture and Technology
2. Machining Technology Center, Mitsubishi Materials Corporation
Publisher
Japan Society of Mechanical Engineers
Link
https://www.jstage.jst.go.jp/article/jamdsm/18/4/18_2024jamdsm0035/_pdf
Reference12 articles.
1. Abukhshim, N.A., Mativenga, P.T. and Sheikh, M.A. Heat generation and temperature prediction in metal cutting: A review and implications for high speed machining, International Journal of Machine Tools and Manufacture, Vol. 46, No. 7–8 (2006), pp. 782–800. DOI:10.1016/j.ijmachtools.2005.07.024.
2. ASM Handbook Committee (ed.) Properties and Selection: Irons, Steels, and High-Performance Alloys (1990), ASM International. DOI:10.31399/asm.hb.v01.9781627081610.
3. El Baradie, M.A. Cutting fluids: Part I. Characterisation, Journal of Materials Processing Technology, Vol. 56, No. 1–4 (1996), pp. 786–797. DOI:10.1016/0924-0136(95)01892-1.
4. Ferri, C., Minton, T., Bin Che Ghani, S. and Cheng, K. Efficiency in contamination-free machining using microfluidic structures, CIRP Journal of Manufacturing Science and Technology, Vol. 7, No. 2 (2014), pp. 97–105. DOI:10.1016/j.cirpj.2013.12.001.
5. Grzesik, W. Experimental investigation of the cutting temperature when turning with coated indexable inserts, International Journal of Machine Tools and Manufacture, Vol. 39, No. 3 (1999), pp. 355–369. DOI:10.1016/S0890-6955(98)00044-3.
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