Ajithkumar, J.P. and Xavior, M.A., 2019. Cutting Force and Surface Rough-ness Analysis During Turning of Al 7075 Based Hybrid Composites. Pro-cedia Manufacturing, 30, 180-187.10.1016/j.promfg.2019.02.026
Das, D., Sahoo, B.P., Bansal, S., Mishra, P., 2018. Experimental investigation on material removal rate and chip forms during turning T6 tempered Al 7075 alloy. Materials Today: Proceedings, 5(2), 3250-3256.10.1016/j.matpr.2017.11.566
Deepak, D., Rajendra, B., 2015. Investigations on the surface roughness pro-duced in turning of Al6061 (As-Cast) by Taguchi method. Int. J. Eng. Res. Techn, 4(8), 295-298.10.15623/ijret.2015.0408051
Dabhi, B.R., Parmar, K.V., 2015. Optimization of CNC Face Milling Process Parameters for WC with TiCN Coated Tool Life. International Journal for Scientific Research & Development (IJSRD), 3(5), 57-64.
Gupta, M.K., Sood, P.K., 2015. Optimization of machining parameters for turning AISI 4340 steel using Taguchi based grey relational analysis. In-dian Journal of Engineering and Material Sciences, 22, 679-685.
Gangopadhyay, S., Acharya, R., Chattopadhyay, A.K., Sargade, V.G., 2010. Effect of cutting speed and surface chemistry of cutting tools on the for-mation of BUL or BUE and surface quality of the generated surface in dry turning of AA6005 aluminium alloy. Machining Science and Tech-nology, 14(2), 208-223.10.1080/10910344.2010.500961
Junge, T., Liborius, H., Mehner, T., Nestler, A., Schubert, A., Lampke, T., 2020. Measurement system based on the Seebeck effect for the determi-nation of temperature and tool wear during turning of aluminum al-loys. Procedia CIRP, 93, 1435-1441.10.1016/j.procir.2020.03.015
Mali, R.A., Agrahari, M.D., Gupta, T.V.K., 2020. FE based simulation and experimental validation of forces in dry turning of aluminium 7075. Ma-terials Today: Proceedings, 27, 2319-2323.10.1016/j.matpr.2019.09.120
Mishra, G., Srivastava, A., Verma, A.S., Niranjan, R.S., 2018. Optimization of the radial cutting force in turning operation of Inconel718. Asian J Sci Tech, 9(3), 7705-7707.
Mishra, G., Srivastava, A., Verma, A.S., Niranjan, R., 2018. Optimization of Cutting Force, Feed Force and Material Removal Rate (MRR) in Turning of Inconel 718. International Journal of Science and Research(IJSR),7(6), 824-827.
Makadia, A.J., Nanavati, J.I., 2013. Optimisation of machining parameters for turning operations based on response surface methodology. Measure-ment, 46(4), 1521-1529.10.1016/j.measurement.2012.11.026
Pandey, G.K, Yadav, S.K., 2020. Multi-Response Optimization of Vibration Assisted Electrical Discharge Drilling Process using PCA based GRA ap-proach. Materials Today: Proceedings., 22, 2906-15.10.1016/j.matpr.2020.03.424
Srivastava, A., Bartarya, G., 2015. Thermal aspects in machining of superal-loy. In Proc. National Conf. on Innovations in Materials, Design and Manufacturing,HBTI, Kanpur, 326-334.
Schindler, S., Zimmermann, M., Aurich, J.C., Steinmann, P., 2014. Thermo-elastic deformations of the workpiece when dry turning aluminum alloys-A finite element model to predict thermal effects in the workpiece. CIRP Journal of Manufacturing Science and Technology, 7(3), 233-245.10.1016/j.cirpj.2014.04.006
Verma, M, Gautam, Y, Niranjan, R, Singh, A,. 2018. Optimization of the Feed Force and Cutting Force in Turning Operation of EN-8 Steel, Interna-tional Journal of Research in Advent Technology, 6(7), 1713-1716.
Macek, W., Marciniak, Z., Branco, R., Rozumek, D. Królczyk, M., 2021. A fractographic study exploring the fracture surface topography of S355J2 steel after pseudo-random bending-torsion fatigue tests, Meas-urement, 178, 109443.10.1016/j.measurement.2021.109443