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大学・研究所にある論文を検索できる 「Application of Cryogenic Treatment to Extend the Life of the TiAlN-Coated Tungsten Carbide Milling Cutter」の論文概要。リケラボ論文検索は、全国の大学リポジトリにある学位論文・教授論文を一括検索できる論文検索サービスです。

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Application of Cryogenic Treatment to Extend the Life of the TiAlN-Coated Tungsten Carbide Milling Cutter

Hsiung J. -C. Wu J. -H. Kung H. -K. 関西大学

2020.03.20

概要

Cutting tools are important to the manufacturing industry since they will affect production efficiency and product quality. Cryogenic treatment can improve the material properties by decreasing residual stress, stabilizing dimensional accuracy, and increasing wear resistance. The purpose of this study is to investigate the feasibility and effect of cryogenic treatment on the performance of TiAlN-coated tungsten carbide milling cutters for machining the Inconel alloy 625 in terms of different testing methods (e.g., hardness, wear resistance, residual stress, microstructure, and tool life test). Experimental results indicate that after cryogenic treatment there is less wear, the microstructure is denser, residual stress is decreased, the adhesion of coating and tungsten carbide is improved, and the tool life is effectively improved.

参考文献

[1]V. Varghese, M. R. Ramesh, D. Chakradhar, "Influence of deep cryogenic treatment on performance of cemented carbide (WC-Co) inserts during dry end milling of maraging steel", J. Manufacturing Process, 37, 242-250 (2019).

[2]S. S. Gill, J. Singh, H. Singh, R, Singh, "Investigation on wear behavior of cryogenically treated TiAlN coated tungsten carbide inserts in turning", Int. J. Machine Tools & Manufacture, 51, 25- 33 (2011).

[3]ASTM E384-11, "Standard Test Method for Knoop and Vickers Hardness of Materials", 1969.

[4]ASTM G99-17, "Standard Test Method for Wear Testing with a Pin-on-Disk Apparatus", 1990.

[5]ISO 8688-1, "Tool Life Testing in Milling - Part 1: Face Milling", 1989.

[6]ASTM B657-11, "Standard Guide for Metallographic Identification of Microstructure in Cemented Carbides", 2011.

[7]ASM Metals Handbook Vol. 7, Powder Metallurgy, 1998.

[8]Andrew YONG, "Cryogenic Treatment of Cutting Tools", dissertation, department of mechanical engineering National University of Singapore, 2006.

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