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Original Articles

Wear of Coated Carbide Tools When Machining Nickel (Inconel 718) and Titanium Base (Ti-6A1-4V) Alloys

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Pages 263-268 | Published online: 25 Mar 2008

Keep up to date with the latest research on this topic with citation updates for this article.

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Anish Nair, Somasundaram Kumanan, Chander Prakash, Dhanesh G. Mohan, Kuldeep Kumar Saxena, Sandeep Kumar & Gaurav Kumar. (2023) Research developments and technological advancements in conventional and non-conventional machining of superalloys – a review. Journal of Adhesion Science and Technology 37:22, pages 3053-3124.
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Kore Mahesh, Jibin T Philip, S N Joshi & Basil Kuriachen. (2021) Machinability of Inconel 718: A critical review on the impact of cutting temperatures. Materials and Manufacturing Processes 36:7, pages 753-791.
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Thrinadh Jadam, Saurav Datta & Manoj Masanta. (2021) Influence of cutting tool material on machinability of Inconel 718 superalloy. Machining Science and Technology 25:3, pages 349-397.
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A. Thakur, S. Gangopadhyay, K. P. Maity & S. K. Sahoo. (2016) Evaluation on Effectiveness of CVD and PVD Coated Tools during Dry Machining of Incoloy 825. Tribology Transactions 59:6, pages 1048-1058.
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A. Mohanty, S. Gangopadhyay & A. Thakur. (2016) On Applicability of Multilayer Coated Tool in Dry Machining of Aerospace Grade Stainless Steel. Materials and Manufacturing Processes 31:7, pages 869-879.
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T. Jagadesh & G. L. Samuel. (2015) Mechanistic and Finite Element Model for Prediction of Cutting Forces During Micro-Turning of Titanium Alloy. Machining Science and Technology 19:4, pages 593-629.
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Lei Shan, Yongxin Wang, Jinlong Li, Xin Jiang & Jianmin Chen. (2015) Architecture of Multilayer Cr/CrN Coatings for Wear Protection in Seawater: Cr/CrN Ratio and Total Thickness. Tribology Transactions 58:5, pages 914-923.
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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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D.G. Thakur, B. Ramamoorthy & L. Vijayaraghavan. (2012) Some Investigations on High Speed Dry Machining of Aerospace Material Inconel 718 Using Multicoated Carbide Inserts. Materials and Manufacturing Processes 27:10, pages 1066-1072.
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Articles from other publishers (23)

Tiyamike Banda, Yu-chen Liu, Ali Akhavan Farid & Chin Seong Lim. (2023) A machine learning model for flank wear prediction in face milling of Inconel 718. The International Journal of Advanced Manufacturing Technology 126:3-4, pages 935-945.
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Abdullah Altin. (2023) A Precision Analysis of Machining Incoloy 901 Aerospace Materials with Cemented Carpide Tools by the Taguchi Method. Materials Science Forum 1085, pages 133-137.
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Behzad Eskandari, Sukanta Bhowmick & Ahmet T. Alpas. (2020) Flooded drilling of Inconel 718 using graphene incorporating cutting fluid. The International Journal of Advanced Manufacturing Technology 112:1-2, pages 1-14.
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Roland Bejjani, Erik Bamford, Stefan Cedergren, Andreas Archenti & Amir Rashid. (2020) Variations in the Surface Integrity of Ti-6Al-4V by Combinations of Additive and Subtractive Manufacturing Processes. Materials 13:8, pages 1825.
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Unai Alonso Pinillos, Severo Raúl Fernández Vidal, Madalina Calamaz & Franck Andrés Girot Mata. (2019) Wear Mechanisms and Wear Model of Carbide Tools during Dry Drilling of CFRP/TiAl6V4 Stacks. Materials 12:18, pages 2843.
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Sara Saketi, Stina Odelros, Jonas Östby & Mikael Olsson. (2019) Experimental Study of Wear Mechanisms of Cemented Carbide in the Turning of Ti6Al4V. Materials 12:17, pages 2822.
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M. Chandrashekar & K.V. Sreenivasa Prasad. (2018) The Effect of Cobalt on Wear behavior of Cemented Carbide cutting tools for machining of Titanium alloy. Materials Today: Proceedings 5:2, pages 7678-7684.
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D. Arulkirubakaran, V. Senthilkumar & S. Dinesh. (2016) Effect of textures on machining of Ti-6Al-4V alloy for coated and uncoated tools: A numerical comparison. The International Journal of Advanced Manufacturing Technology 93:1-4, pages 347-360.
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Janaina Geisler Corrêa, Rolf Bertrand Schroeter & Álisson Rocha Machado. (2017) Tool life and wear mechanism analysis of carbide tools used in the machining of martensitic and supermartensitic stainless steels. Tribology International 105, pages 102-117.
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D. Arulkirubakaran & V. Senthilkumar. (2017) Performance of TiN and TiAlN coated micro-grooved tools during machining of Ti-6Al-4V alloy. International Journal of Refractory Metals and Hard Materials 62, pages 47-57.
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Abhineet Saini, BS Pabla & SS Dhami. (2016) Developments in cutting tool technology in improving machinability of Ti6Al4V alloy: A review. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 230:11, pages 1977-1989.
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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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Xin Wang, Parick Y. Kwon, Caleb Sturtevant, Dave (Dae-Wook) Kim & Jeff Lantrip. (2014) Comparative tool wear study based on drilling experiments on CFRp/Ti stack and its individual layers. Wear 317:1-2, pages 265-276.
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T. Jagadesh & G.L. Samuel. (2014) Investigations into Cutting Forces and Surface Roughness in Micro Turning of Titanium Alloy Using Coated Carbide Tool. Procedia Materials Science 5, pages 2450-2457.
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Muhammad Imran, Paul T. Mativenga, Ali Gholinia & Philip J. Withers. (2014) Comparison of tool wear mechanisms and surface integrity for dry and wet micro-drilling of nickel-base superalloys. International Journal of Machine Tools and Manufacture 76, pages 49-60.
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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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Raju Shrihari Pawade & Suhas S. Joshi. (2011) Multi-objective optimization of surface roughness and cutting forces in high-speed turning of Inconel 718 using Taguchi grey relational analysis (TGRA). The International Journal of Advanced Manufacturing Technology 56:1-4, pages 47-62.
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Shoujin Sun, James Harris, Yvonne Durandet & Milan Brandt. (2008) Effect of laser beam on machining of titanium alloys. Effect of laser beam on machining of titanium alloys.
Erween Abd. RAHIM, Kamaruddin KAMDANI & Safian SHARIF. (2008) Performance Evaluation of Uncoated Carbide Tool in High Speed Drilling of Ti6Al4V. Journal of Advanced Mechanical Design, Systems, and Manufacturing 2:4, pages 522-531.
Crossref
Y. Su, N. He, L. Li & X.L. Li. (2006) An experimental investigation of effects of cooling/lubrication conditions on tool wear in high-speed end milling of Ti-6Al-4V. Wear 261:7-8, pages 760-766.
Crossref
L. Deshayes, J. L. Evans, R. Ivester, D. G. Bhat, S. A. Batzer & E. P. Whitenton. (2005) Mechanical and Thermal Behavior for Machining Ti-6Al-4V With AlMgB14 and WC-Co Tools. Mechanical and Thermal Behavior for Machining Ti-6Al-4V With AlMgB14 and WC-Co Tools.
Y.C Chen & Y.S Liao. (2003) Study on wear mechanisms in drilling of Inconel 718 superalloy. Journal of Materials Processing Technology 140:1-3, pages 269-273.
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C Ducros, V Benevent & F Sanchette. (2003) Deposition, characterization and machining performance of multilayer PVD coatings on cemented carbide cutting tools. Surface and Coatings Technology 163-164, pages 681-688.
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