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Documents dont l'auteur est "Niknam, Seyed Ali"

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Aller à : 2022 | 2021 | 2020 | 2019 | 2018 | 2017
Nombre de documents: 15

2022

Musavi, S. H., Sepehrikia, M., Davoodi, B., & Niknam, S. A. (2022). Performance analysis of developed micro-textured cutting tool in machining aluminum alloy 7075-T6: assessment of tool wear and surface roughness. International Journal of Advanced Manufacturing Technology, 119(5-6), 3343-3362. Lien externe

Kamalizadeh, S., Niknam, S. A., Balazinski, M., & Turenne, S. (2022). The Use of TOPSIS Method for Multi-Objective Optimization in Milling Ti-MMC. Metals, 12(11), 18 pages. Lien externe

2021

Memarianpour, M., Niknam, S. A., Turenne, S., & Balazinski, M. (2021). Study of the effects of initial cutting conditions and transition period on ultimate tool life when machining inconel 718. Materials, 14(3), 592 (13 pages). Disponible

2020

Safavi, M., Balazinski, M., Mehmanparast, H., & Niknam, S. A. (2020). Experimental characterization of tool wear morphology and cutting force profile in dry and wet turning of titanium metal matrix composites (Ti-MMCs). Metals, 10(11), 14 pages. Disponible

Niknam, S. A., & Jalali, A. (2020). Effects of lubricants and flow rates on the surface roughness and chip thickness when MQL turning of aero-engine aluminum alloys 6061-T6 and 7076-T6. International Journal of Advanced Manufacturing Technology, 110(7-8), 2015-2022. Lien externe

Anahid, M. J., Heydarnia, H., Niknam, S. A., & Mehmanparast, H. (2020). Evaluating the sensitivity of acoustic emission signal features to the variation of cutting parameters in milling aluminum alloys: Part A: frequency domain analysis. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 235(10), 1558-1568. Lien externe

Memarianpour, M., Niknam, S. A., Turenne, S., & Balazinski, M. (2020). Initial Tool Wear Behavior in High-Speed Turning of Inconel 718. Transactions of the Canadian Society for Mechanical Engineering, 44(3), 395-404. Lien externe

Saberi, M., Niknam, S. A., & Hashemi, R. (2020). On the impacts of cutting parameters on surface roughness, tool wear mode and size in slot milling of A356 metal matrix composites reinforced with silicon carbide elements. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 235(10), 1655-1667. Lien externe

2019

Memarianpour, M., Niknam, S. A., Turenne, S., & Balazinski, M. (décembre 2018). Initial Tool Wear Mechanism in Dry and Lubricated Turning of Inconel 718 [Communication écrite]. International Conference on Advances in Engineering Research and Application (ICERA 2018), Thai Nguyen, Vietnam. Lien externe

Asadi, R., Yeganefar, A., & Niknam, S. A. (2019). Optimization and prediction of surface quality and cutting forces in the milling of aluminum alloys using ANFIS and interval type 2 neuro fuzzy network coupled with population-based meta-heuristic learning methods. International Journal of Advanced Manufacturing Technology, 105(5-6), 2271-2287. Lien externe

Niknam, S. A., Saberi, M., Kouam, J., Hashemi, R., Songmene, V., & Balazinski, M. (2019). Ultrafine and fine particle emission in turning titanium metal matrix composite (Ti-MMC). Journal of Central South University, 26(6), 1563-1572. Lien externe

2018

Niknam, S. A., Kouam, J., Songméné, V., & Balazinski, M. (2018). Dry and semi-dry turning of titanium metal matrix composites (Ti-MMCs). Procedia CIRP, 77, 62-65. Disponible

Kamalizadeh, S., Niknam, S. A., Asgari, A., & Balazinski, M. (2018). Tool wear characterization in high-speed milling of titanium metal matrix composites. International Journal of Advanced Manufacturing Technology, 100(9-12), 2901-2913. Lien externe

Niknam, S. A., Kamalizadeh, S., Asgari, A., & Balazinski, M. (2018). Turning titanium metal matrix composites (Ti-MMCs) with carbide and CBN inserts. International Journal of Advanced Manufacturing Technology, 97(1-4), 253-265. Lien externe

2017

Niknam, S. A., Balazinski, M., & Songmene, V. (2017). To characterize and optimize the surface quality attributes in slot milling operation. International Journal of Advanced Manufacturing Technology, 97(1-4), 727-746. Lien externe

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