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Original Articles

The Effect of Argon-Enriched Environment in High-Speed Machining of Titanium Alloy

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Pages 18-23 | Received 17 May 2004, Published online: 25 Mar 2008

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Van-Hai Nguyen, Tien-Thinh Le, Minh Vuong Le, Hoang Dao Minh & Anh-Tu Nguyen. (2023) Multi-objective optimization based on machine learning and non-dominated sorting genetic algorithm for surface roughness and tool wear in Ti6Al4V turning. Machining Science and Technology 27:4, pages 380-421.
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V. S. Balaji & S. Kumaran. (2015) Dry Sliding Wear Behavior of Titanium–(TiB+TiC) in situ Composite Developed by Spark Plasma Sintering. Tribology Transactions 58:4, pages 698-703.
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Q.L. Niu, X.H. Zheng, W.W. Ming & M. Chen. (2013) Friction and Wear Performance of Titanium Alloys against Tungsten Carbide under Dry Sliding and Water Lubrication. Tribology Transactions 56:1, pages 101-108.
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Jakub Matuszak, Kazimierz Zaleski & Andrzej Zyśko. (2023) Investigation of the Impact of High-Speed Machining in the Milling Process of Titanium Alloy on Tool Wear, Surface Layer Properties, and Fatigue Life of the Machined Object. Materials 16:15, pages 5361.
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Davide Campanella, Gianluca Buffa, Andrea El Hassanin, Antonino Squillace, Francesco Gagliardi, Luigino Filice & Livan Fratini. (2022) Mechanical and microstructural characterization of titanium gr.5 parts produced by different manufacturing routes. The International Journal of Advanced Manufacturing Technology 122:2, pages 741-759.
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A.A. Burkov, S.V. Nikolenko, P.G. Chigrin, M.A. Kulik, V.O. Krutikova & A.A. Karpenko. (2021) Liquid-phase hydrothermal deposition of MoS2 into TiAl coatings on Ti6Al4V alloy. Surface and Coatings Technology 421, pages 127379.
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A. A. Burkov. (2021) Improvement of Ti6Al4V-Alloy Wear Resistance by Electric-Spark Hafnium Carbide Coatings. Journal of Friction and Wear 41:6, pages 543-548.
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Yingjun Song, Binguo Fu, Tianshun Dong, Guolu Li, Fei Wang, Xuebo Zhao & Jinhai Liu. (2020) Effect of vacuum annealing treatment on dry sliding wear behavior of TiC/Ti-1100-0.5Nb composite under different operating temperatures. Materials Today Communications 23, pages 101136.
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Emmanuel O. Ezugwu, Rosemar B. da Silva, John Bonney, Eder S. Costa, Wisley F. Sales & Alisson R. Machado. (2019) Evaluation of Performance of Various Coolant Grades When Turning Ti-6Al-4V Alloy With Uncoated Carbide Tools Under High-Pressure Coolant Supplies. Journal of Manufacturing Science and Engineering 141:1.
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Rosemar B. Da Silva, Wisley F. Sales, Eder S. Costa, Emmanuel O. Ezugwu, John Bonney, Márcio B. Da Silva & Álisson R. Machado. (2017) Surface integrity and tool life when turning of Ti-6Al-4V with coolant applied by different methods. The International Journal of Advanced Manufacturing Technology 93:5-8, pages 1893-1902.
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Jerry P. Byers. 2017. Metalworking Fluids, Third Edition. Metalworking Fluids, Third Edition 1 18 .
Ramesh Kuppuswamy & Kapui Mubita. (2015) Electro-polishing of tungsten carbide ball nose end mill to improve tool life. Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering 231:4, pages 667-675.
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Szymon Wojciechowski, Damian Przestacki & Tadeusz Chwalczuk. (2017) The Evaluation of Surface Integrity During Machining of Inconel 718 with Various Laser Assistance Strategies. MATEC Web of Conferences 136, pages 01006.
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Emmanuel O. Ezugwu, Rosemar Batista Da Silva, Wisley Falco Sales & Alisson Rocha Machado. 2017. Encyclopedia of Sustainable Technologies. Encyclopedia of Sustainable Technologies 487 506 .
S. Osman Yilmaz, Tanju Teker & Selçuk Karataş. (2016) Wear behavior of iron boride coating on AISI 4140. Protection of Metals and Physical Chemistry of Surfaces 52:1, pages 119-127.
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Pei Xia, Zhihong Li, Weijie Wu, Yumei Zhu & Dandan Feng. (2014) Effects of AlN on the thermal and mechanical properties of vitrified bond and vitrified CBN composites. Ceramics International 40:8, pages 12759-12764.
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Z. Wang & M. Rahman. 2014. Comprehensive Materials Processing. Comprehensive Materials Processing 221 253 .
Seyed Ali Niknam, Raid Khettabi & Victor Songmene. 2014. Machining of Titanium Alloys. Machining of Titanium Alloys 1 30 .
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A. Shokrani, V. Dhokia & S.T. Newman. (2012) Environmentally conscious machining of difficult-to-machine materials with regard to cutting fluids. International Journal of Machine Tools and Manufacture 57, pages 83-101.
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Syed H. Imran Jaffery & Paul T. Mativenga. (2011) Wear mechanisms analysis for turning Ti-6Al-4V—towards the development of suitable tool coatings. The International Journal of Advanced Manufacturing Technology 58:5-8, pages 479-493.
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Christian Machai & Dirk Biermann. (2011) Machining of β-titanium-alloy Ti–10V–2Fe–3Al under cryogenic conditions: Cooling with carbon dioxide snow. Journal of Materials Processing Technology 211:6, pages 1175-1183.
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Emmanuel O. Ezugwu, John Bonney, Rosemar B. Da Silva & O. Çakir. (2007) Surface integrity of finished turned Ti–6Al–4V alloy with PCD tools using conventional and high pressure coolant supplies. International Journal of Machine Tools and Manufacture 47:6, pages 884-891.
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Mustafizur RAHMAN, Zhi-Gang WANG & Yoke-San WONG. (2006) A Review on High-Speed Machining of Titanium Alloys. JSME International Journal Series C 49:1, pages 11-20.
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E.O. Ezugwu. (2005) Key improvements in the machining of difficult-to-cut aerospace superalloys. International Journal of Machine Tools and Manufacture 45:12-13, pages 1353-1367.
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