Open Access

Investigation of the effects of machining parameters on cutting conditions during orthogonal turning of austenite stainless steel


Cite

Acayaba, G. M. A., de Escalona, P. M., 2015. Prediction of surface roughness in low speed turning of AISI316 austenitic stainless steel. CIRP Journal of Manufacturing Science and Technology, 11, 62-67, DOI: 10.1016/j.cirpj.2015.08.004. Search in Google Scholar

Bharasi, N. S., Pujar, M.G., Das, C.R., Philip, J., Thyagarajan, K., Paneerselvi, S., Moitra, A., Chandramouli, S., Karki, V., Kannan, S., 2019. Microstructure, corrosion and mechanical properties characterization of AISI type 316L(N) stainless steel and modified 9Cr-1Mo steel after 40,000 h of dynamic sodium exposure at 525 °C. Journal of Nu-clear Materials, 516, 84-99, DOI: 10.1016/J.JNUCMAT.2019.01.012 Search in Google Scholar

Buranská, E., Buranský, I., Kritikos, M., Gerulová, K., Líška, J., (2019). Cutting Environment Impact on the Aluminium Alloy Machining, Vedeckee Prace Materialovotechnologickej Fakulty Slovenskej Technickej Univerzity V Bratislave So Sidlom V Trnave. 27(44), 21-28, DOI: 10.2478/rput-2019-0002 Search in Google Scholar

Dömötör, F., Vehovszky, B., Weltsch, Z., Németh, Sz., Terpó, Gy., 2013. Complex Process Monitoring of Cutting Hybrid Metal Structures. Periodica Polytechnica Transportation Engineering, 41(2), 87-94, DOI: 10.3311/PPtr.7107 Search in Google Scholar

Ezugwu, E.O., Wang, Z.M., 1997. Titanium alloys and their machinability—a review. Journal of Materials Processing Technology, 68(3), 262-274, DOI: 10.1016/S0924-0136(96)00030-1 Search in Google Scholar

Freddi, A., Salmon, M., 2019. Introduction to the Taguchi Method, Design Principles and Methodologies. Springer Tracts in Mechanical Engineering, Springer, Cham. Search in Google Scholar

Gerth, J., Gustavsson, F., Collin, M., Andersson, G., Nordh, L.-G., Heinrichs, J., Wiklund, U., 2014. Adhesion phenomena in the secondary shear zone in turning of austenitic stainless steel and carbon steel. Journal of Materials Processing Technology, 214(8), 1467-1481, DOI: 10.1016/J.JMATPROTEC.2014.01.017 Search in Google Scholar

Gökkaya, H., Nalbant, M., 2007. The effects of cutting tool geometry and processing parameters on the surface roughness of AISI 1030 steel. Materials & Design, 28(2), 717-721, DOI: 10.1016/j.matdes.2005.09.013 Search in Google Scholar

Kónya, G., Kovács, Z. F., 2023. The Comparison of Effects of Liquid Carbon Dioxide and Conventional Flood Cooling on the Machining Conditions During Milling of Nickel-based Superalloys. Periodica Polytechnica Mechanical Engineering, DOI: 10.3311/PPme.22265 Search in Google Scholar

Kónya, G., Kovács, Zs. F., Kókai, E., 2022. Milling of Nickel-based superalloy by Trochoidal Strategies, 2022 IEEE 22nd International Symposium on Computational Intelligence and Informatics and 8th IEEE International Conference on Recent Achievements in Mechatronics. Automation, Computer Science and Robotics (CINTI-MACRo), Targu-Mures, Romania, 1-6. Search in Google Scholar

Kovács, Z. F., Viharos, Z. J., Kodácsy, J., 2022. Improvements of surface tribological properties by magnetic assisted ball burnishing. Surface and Coatings Technology, 437, 128317, DOI: 10.1016/j.surfcoat.2022.128317 Search in Google Scholar

Krolczyk, G. M., Nieslony, P., Legutko, S., 2015. Determination of tool life and research wear during duplex stainless steel turning. Archives of Civil and Mechanical Engineering, 15(2), 347–354, DOI: 10.1016/J.ACME.2014.05.001/METRICS Search in Google Scholar

Kulkarni, A. P., Joshi, G. G., Karekar, A., Sargade, V. G., 2014. Investigation on cutting temperature and cutting force in turning AISI 304 austenitic stainless steel using AlTiCrN coated carbide insert. International Journal of Machining and Machinability of Materials, 15(3–4), 147–156, DOI: 10.1504/IJMMM.2014.060546 Search in Google Scholar

Kun, K., Kodácsy, J., Vaczkó, D., Kovács, Zs. F., 2019. Machinability of Ni-based Superalloys by Indexable End Mills. Acta Materialia Transylvanica, 2(1), 49-54, DOI: 10.33924/amt-2019-01-08 Search in Google Scholar

Leksycki K., Maruda, R. W., Feldshtein, E., Wojciechowski, S., Habrat, W, Gupta, M. K., Królczyk, G. M., 2023. Evaluation of tribological interactions and machinability of Ti6Al4V alloy during finish turning under different cooling conditions. Tribology International, 189, 109002, DOI: 10.1016/j.triboint.2023.109002 Search in Google Scholar

Móricz, L., Viharos, Z. J., 2022. Investigation of ductile/brittle chip formation zone in the context of manufactured geometry with different CAM paths strategies. IFAC-PapersOnLine, 55(10), 2300-2305, DOI: 10.1016/j.ifacol.2022.10.051 Search in Google Scholar

Nalbant, M., Gökkaya, H., Sur, G., 2007. Application of Taguchi method in the optimization of cutting parameters for surface roughness in turning. Materials & Design, 28(4), 1379-1385, DOI: 10.1016/j.matdes.2006.01.008. Search in Google Scholar

Saketi, S., Östby, J., Olsson, M., 2016. Influence of tool surface topography on the material transfer tendency and tool wear in the turning of 316L stainless steel. Wear, 368-369, 239-252, DOI: 10.1016/j.wear.2016.09.023 Search in Google Scholar

Smith, G. T., 1989. Advanced Machining – The Handbook of Cutting Technology. IFS Pub/Springer Verlag, Germany. Search in Google Scholar

Radek, N., 2023. Properties of WC-Co coatings with Al2O3 addition. Production Engineering Achives, 29(1), 94-100, DOI: 10.30657/pea.2023.29.11 Search in Google Scholar

Sipos, S., 2018. A new method for analysing the efficiency of cutting inserts. IOP Conference Series: Materials Science and Engineering, 448(1), 012043, DOI: 10.1088/1757-899X/448/1/012043 Search in Google Scholar

Sonawane, S., Wangikar, S., Pukale, K., 2021. Multi-Independent Optimization while Turning of Inconel-600 alloy using Grey Interactive Exploration. Production Engineering Archives, 27(4), 277-282, DOI: 10.30657/pea.2021.27.37 Search in Google Scholar

Szczotkarz, N., Mrugalski, R., Maruda, R. W., Królczyk, G. M., Legutko, S., Leksycki, K., Dębowski, D., Pruncu, C. I., 2021. Cutting tool wear in turning 316L stainless steel in the conditions of minimized lubrication. Tribology International, 156, 106813, DOI: 10.1016/j.triboint.2020.106813 Search in Google Scholar

TaeguTec cutting tool catalogue, [online] Available at: https://www.imc-companies.com/TaeguTec/ttkCatalog/item.aspx?cat=6110853&fnum=623&mapp=TG&app=0&GFSTYP=M&isoD=1, [Accessed at: 01. 07. 2023.] a. Search in Google Scholar

TaeguTec cutting tool catalogue, b[online] Available at: https://www.imc-companies.com/taegutec/ttkCatalog/item.aspx?cat=2801655&fnum=649&mapp=TG&app=51&GFSTYP=M&isoD=1, [Accessed at: 01. 07. 2023.] b. Search in Google Scholar

Tschätsch, H., Reichelt, A., 2009. Tool life T., Applied Machining Technology, Springer, Berlin, Germany. Search in Google Scholar

Venkatesan, K., (2017). The study on force, surface integrity, tool life and chip on laser assisted machining of inconel 718 using Nd:YAG laser source. Journal of Advanced Research, 8(4), 407-423, DOI: 10.1016/j.jare.2017.05.004 Search in Google Scholar