焼入れ鋼を対象とした駆動型ロータリ加工の高能率化に関する研究(高速条件下におけるAl含有量と切削環境の違いが工具寿命に及ぼす影響)

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Published in日本機械学会論文集 Vol. 89; no. 928; p. 23-00154
Main Authors 梅田, 隼太朗, 村, 尚則, 加藤, 秀治, 酒井, 裕幸
Format Journal Article
LanguageJapanese
Published 一般社団法人 日本機械学会 2023
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Online AccessGet full text
ISSN2187-9761
DOI10.1299/transjsme.23-00154

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Author 村, 尚則
加藤, 秀治
酒井, 裕幸
梅田, 隼太朗
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  fullname: 加藤, 秀治
  organization: 金沢工業大学
– sequence: 1
  fullname: 酒井, 裕幸
  organization: 本田技研工業(株)
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Copyright 2023 一般社団法人日本機械学会
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References 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
Kato, H., Takase, N., Watanabe, K., Shikimura, T. and Kubota, K.,Cutting Performance of Coated Cemented Carbide Tool in Driven Rotary Cutting of Hardened Steel, International Journal of Automation Technology, Vol.13, No.1 (2019), pp. 49-57.
Shintani, K. and Fujimura, Y., Influence of CBN Tool Geometry on Finishing of Hardened Steel by Turning, Journal of the Japan Society of Precision Engineering, Vol.61, No.6 (1995), pp.809-813 (in Japanese).
Iwasaki, T., Aiso, T. and Watari, K., Effect of Workpiece Material on Tool Wear in Hard Turning, Tetsu-to-Hagane, Vol.104, No.4 (2018), pp.22-31 (in Japanese).
Narutaki, N., Yamane, Y. and Takeuchi, M., Wear of CBN cutting Tools, Journal of the Japan Society of Precision Engineering, Vol.45, No.530 (1979), pp.201-207 (in Japanese).
Kasei, S., Masuda, M. and Yoshikawa, K., Research on Turning with Positively Driven Rotary Cutting Tool (1st Report) -Chip Formation-, Journal of the Japan Society of Precision Engineering, Vol.43, No.513 (1977), pp.1037-1043 (in Japanese).
Yamamoto, H., Satake, K., Sasahara, H., Narita, T., Tsutsumi, M. and Muraki, T., Effect of MQL in High Efficiency Machining of Difficult-to-cut Materials by Driven Rotary Cutting -Tool Surface Temperatures and Chip Adhesions-, Journal of the Japan Society of Precision Engineering, Vol.77, No.3 (2011), pp.316-321 (in Japanese).
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).
Kato, H., Shikimura, T., Morimoto, Y., Shintani, K., Kubota, K. and Nakagaki,K., Study on High-Efficiency Finish Turning of Carburized Hardened Steel with Driven Rotary Cutting, International Journal of Automation Technology, Vol.7, No.3 (2013), pp.321-328.
Itakura, K., Kuroda, M., Myouji, T., Itani, H., Tsukamoto, H. and Ariura, Y., More Effect Cutting Difficult-to-Machine Materials by Rotary Tool, Journal of the Japan Society of Precision Engineering, Vol.66, No.6 (2000), pp.886-890 (in Japanese).
Zhu, Y., Kinoshita, H. and Sakamoto, Y., PVD Coated Tool, Journal of the Japan Society of Precision Engineering, Vol.86, No.11 (2020), pp.853-857 (in Japanese).
Kasei, S., Hara, T. and Masuda, M., Research on Turning with Self-propelled Rotary Cutting Tool (Part 3) -Mechanism of Chip Formation-, Journal of the Japan Society of Precision Engineering, Vol.37, No.441 (1971a), pp.723-728 (in Japanese).
Shibasaka, T., Harun, S., Eda, N. and Moriwaki, T., Effect of Cutting Tool Sliding on Cutting Phenomena (1st Report) -Influence on Chip Formation and Cutting Force-, Journal of the Japan Society of Precision Engineering, Vol.75, No12 (2009), pp.1413-1417 (in Japanese).
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).
Kasei, S., Hara, T. and Masuda, M., Research on Turning with Self-propelled Rotary Cutting Tool (Part 4) -Measurement of Cutting Temperature-, Journal of the Japan Society of Precision Engineering, Vol.37, No.443 (1971b), pp.855-860 (in Japanese).
Shaw, M.C., Smith, P.A. and Cook, N.H., The Rotary Cutting Tool, Transactions of the ASME, Vol.74 (1952), pp.1065-1076.
Yamada, Y., Aoki, T., Tanaka, Y. and Wakihira, K., Cutting Performance Coated Carbide Tools for Hard Work Materials, Transactions of the Japan Society of Mechanical Engineers, Series C, Vol.60, No.577 (1994), pp.14-18 (in Japanese).
Wada, T. and Iwamoto, K., Tool Wear of Polycrystalline Cubic Boron Nitride Compact in Cutting Hardened Steel, Journal of the Japan Society of Powder Metallurgy, Vol.55, No.9 (2008), pp.623-628 (in Japanese).
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).
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).
References_xml – reference: 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.
– reference: Narutaki, N., Yamane, Y. and Takeuchi, M., Wear of CBN cutting Tools, Journal of the Japan Society of Precision Engineering, Vol.45, No.530 (1979), pp.201-207 (in Japanese).
– reference: Zhu, Y., Kinoshita, H. and Sakamoto, Y., PVD Coated Tool, Journal of the Japan Society of Precision Engineering, Vol.86, No.11 (2020), pp.853-857 (in Japanese).
– reference: Kato, H., Takase, N., Watanabe, K., Shikimura, T. and Kubota, K.,Cutting Performance of Coated Cemented Carbide Tool in Driven Rotary Cutting of Hardened Steel, International Journal of Automation Technology, Vol.13, No.1 (2019), pp. 49-57.
– reference: Kato, H., Shikimura, T., Morimoto, Y., Shintani, K., Kubota, K. and Nakagaki,K., Study on High-Efficiency Finish Turning of Carburized Hardened Steel with Driven Rotary Cutting, International Journal of Automation Technology, Vol.7, No.3 (2013), pp.321-328.
– reference: Itakura, K., Kuroda, M., Myouji, T., Itani, H., Tsukamoto, H. and Ariura, Y., More Effect Cutting Difficult-to-Machine Materials by Rotary Tool, Journal of the Japan Society of Precision Engineering, Vol.66, No.6 (2000), pp.886-890 (in Japanese).
– reference: 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).
– reference: Shibasaka, T., Harun, S., Eda, N. and Moriwaki, T., Effect of Cutting Tool Sliding on Cutting Phenomena (1st Report) -Influence on Chip Formation and Cutting Force-, Journal of the Japan Society of Precision Engineering, Vol.75, No12 (2009), pp.1413-1417 (in Japanese).
– reference: Shintani, K. and Fujimura, Y., Influence of CBN Tool Geometry on Finishing of Hardened Steel by Turning, Journal of the Japan Society of Precision Engineering, Vol.61, No.6 (1995), pp.809-813 (in Japanese).
– reference: Wada, T. and Iwamoto, K., Tool Wear of Polycrystalline Cubic Boron Nitride Compact in Cutting Hardened Steel, Journal of the Japan Society of Powder Metallurgy, Vol.55, No.9 (2008), pp.623-628 (in Japanese).
– reference: Yamada, Y., Aoki, T., Tanaka, Y. and Wakihira, K., Cutting Performance Coated Carbide Tools for Hard Work Materials, Transactions of the Japan Society of Mechanical Engineers, Series C, Vol.60, No.577 (1994), pp.14-18 (in Japanese).
– reference: Shaw, M.C., Smith, P.A. and Cook, N.H., The Rotary Cutting Tool, Transactions of the ASME, Vol.74 (1952), pp.1065-1076.
– reference: Yamamoto, H., Satake, K., Sasahara, H., Narita, T., Tsutsumi, M. and Muraki, T., Effect of MQL in High Efficiency Machining of Difficult-to-cut Materials by Driven Rotary Cutting -Tool Surface Temperatures and Chip Adhesions-, Journal of the Japan Society of Precision Engineering, Vol.77, No.3 (2011), pp.316-321 (in Japanese).
– reference: Kasei, S., Hara, T. and Masuda, M., Research on Turning with Self-propelled Rotary Cutting Tool (Part 3) -Mechanism of Chip Formation-, Journal of the Japan Society of Precision Engineering, Vol.37, No.441 (1971a), pp.723-728 (in Japanese).
– reference: Kasei, S., Hara, T. and Masuda, M., Research on Turning with Self-propelled Rotary Cutting Tool (Part 4) -Measurement of Cutting Temperature-, Journal of the Japan Society of Precision Engineering, Vol.37, No.443 (1971b), pp.855-860 (in Japanese).
– reference: Kasei, S., Masuda, M. and Yoshikawa, K., Research on Turning with Positively Driven Rotary Cutting Tool (1st Report) -Chip Formation-, Journal of the Japan Society of Precision Engineering, Vol.43, No.513 (1977), pp.1037-1043 (in Japanese).
– reference: 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).
– reference: 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).
– reference: Iwasaki, T., Aiso, T. and Watari, K., Effect of Workpiece Material on Tool Wear in Hard Turning, Tetsu-to-Hagane, Vol.104, No.4 (2018), pp.22-31 (in Japanese).
– reference: 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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StartPage 23-00154
SubjectTerms Cutting temperature
DIPS
Driven rotary machining
Hardened steel
Thermal crack
TiAlN coated film
Title 焼入れ鋼を対象とした駆動型ロータリ加工の高能率化に関する研究(高速条件下におけるAl含有量と切削環境の違いが工具寿命に及ぼす影響)
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