A study on improving the efficiency of driven rotary machining of hardened steel (Effect of Al content and cutting environment on tool life under high-speed conditions)
Author:
Affiliation:
1. Kanazawa Institute of Technology
2. NSK LTD. FUJISAWA PLANT
3. HONDA MOTOR CO., LTD.
4. MOLDINO Tool Engineering, Ltd.
Publisher
Japan Society of Mechanical Engineers
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/transjsme/89/928/89_23-00154/_pdf
Reference20 articles.
1. Chen, P. and Hoshi, T., Characteristics of Self-propelled Rotary Tools in Machining High-performance Materials, Journal of the Japan Society of Precision Engineering, Vol.57, No.10 (1991), pp.1792-1796 (in Japanese).
2. Egawa, T., Ichikizaki, T., Kuroda, M., Hiasa, Y. and Tsukamoto, H., Wear Mechanism of cBN Tool in Cutting of Hardened Steel, Journal of the Japan Society of Precision Engineering, Vol.61, No.6 (1995), pp.809-813 (in Japanese).
3. Harun, S., Shibasaka, T. and Moriwaki, T., Cutting Temperature Measurement in Turning with Actively Driven Rotary Tool, Key Engineering Materials, Vols.389-390 (2009), pp.138-143.
4. Ikeda, T., and Satoh, H., High-Temperature Oxidation and Wear Resistance of Ti-Al-N Hard Coatings Formed by PVD Method, Journal of the Japan Society of Mechanical Engineers, Vol.57, No.8(1993), pp.919-925 (in Japanese).
5. Ishikawa, T., Obata, F. and Inoue, K., Wear Mechanism of TiSiN-Coated Tools on High-Speed Cutting of Hardened Die Steel, Journal of the Japan Society of Precision Engineering, Vol.75, No.12 (2009), pp.1439-1443 (in Japanese).
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