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Characterization of various coatings on wear suppression in turning of Inconel 625: a three-dimensional numerical simulation

Lotfi, M. and Ashrafi, H. and Amini, S. and Akhavan Farid, A. and Jahanbakhsh, M. (2017) Characterization of various coatings on wear suppression in turning of Inconel 625: a three-dimensional numerical simulation. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology, 231 (6). pp. 734-744. ISSN 1350-6501

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Abstract

Applying cutting tool with longer functioning time is a vital issue in machining of the nickel-based super alloys. However, the experimental analysis of this problem is quite expensive. Thus, three-dimensional numerical simulation of tool wear propagation in turning of Inconel 625 super alloy is taken into account, in this study. The cutting insert with complex geometry is modeled by using a reverse engineering method. Based on the cutting tool and workpiece material, Usui wear rate model is exerted to estimate the tool wear rate. In the first section, characterization of TiAlN-coated carbide tool, which is suggested by catalogue, on wear resistance is evaluated and then simulation results are validated with experiments. As a result, increment of depth of cut is the most effective factor on the generation of temperature and stresses on the tool faces resulting in wear rate acceleration. In the second section, different commercial coatings with multicompositions are applied in the simulation to find the best performance against wear. Finally, TiCN coating outperformed other coatings in turning of Inconel 625.

Item Type:Article
Uncontrolled Keywords:carbide, coating, Inconel 625, Simulation, tool wear, turning
Subjects:T Technology > TJ Mechanical engineering and machinery
Divisions:Mechanical Engineering
ID Code:75698
Deposited By: Widya Wahid
Deposited On:27 Apr 2018 01:46
Last Modified:27 Apr 2018 01:46

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