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This research work is focused on examining the turning behavior of Incoloy 800H superalloy by varying important cutting parameters. Incoloy 800H is an Iron-Nickel-Chromium based superalloy; it can withstand high temperature (810°C), high oxidization and corrosion resistance. But, it is difficult to turn in conventional machines and hence the present work was carried out and investigated. Experiments were conducted based on the standard L27 orthogonal array using uncoated tungsten inserts. The cutting force components, namely, feed force (Fx), thrust force (Fy) and cutting force (Fz); surface roughness (Ra) and specific cutting pressure (SCPR) were measured as responses and optimized using Taguchi-Grey approach. The main effects plots and analysis of mean (ANOM) were performed to check the effect of turning parameters and their significance on responses of cutting forces in all the direction (FX, FY, FZ), the surface roughness (Ra) and specific cutting pressure (SCPR). The tool wear and machined surfaces were also investigated using white light interferometer and SEM.
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Tom
Strony
1683--1691
Opis fizyczny
Bibliogr. 31 poz., fot., rys., tab.
Twórcy
autor
- National Institute of Technology, Department of Production Engineering, Tiruchirappalli - 620 015, Tamilnadu, India
autor
- National Institute of Technology, Department of Production Engineering, Tiruchirappalli - 620 015, Tamilnadu, India
autor
- Qassim University, Department of Mechanical Engineering, College of Engineering, Buraidah, Saudi Arabia
Bibliografia
- [1] E. O. Ezugwu, Int. J. Adv. Manuf. Technol. 45 (12-13), 1353-1367 (2005).
- [2] W. Ren, R. Swindeman, J Press Vess-T Asme. 136 (5), 054001-0540012 (2014).
- [3] K. Venkatesan, R. Ramanujam, P. Kuppan, Opt. Laser. Technol, 78, 10-18 (2016).
- [4] D. Ulutan, T. Ozel, Int. J. Mach. Tool. Manu, 51 (3), 250-280 (2011).
- [5] B. Davoodi, B. Eskandari, Measurement 68, 286-294 (2015).
- [6] R. Suresh, S. Basavarajappa, G. L. Samuel, Measurement 45 (7), 1872-1884 (2012).
- [7] H. Aouici, M. A. Yallese, K. Chaoui, T. Mabrouki, J. F. Rigal, Measurement. 45 (3), 344-353 (2012).
- [8] A. S. Kumar, A. R. Durai, T. Sornakumar, J. Mater. Process. Technol. 173 (2), 151-156 (2006).
- [9] S. Thamizhmanii, K. Kamarudin, E. A. Rahim, A. Saparudin, S. Hassan, Proceedings of the World Congress on Engineering 2 (2007).
- [10] M. Sarıkaya, A. Güllü, Journal of Cleaner Production 91, 347-357 (2015).
- [11] D. Singh, P. V. Rao, Int. J. Adv. Manuf. Tech. 32 (11-12), 1115-1124 (2007).
- [12] H. Ding, Y. C. Shin, Mach. Sci. Technol. 17 (2), 246-269 (2013).
- [13] A. K. Sahoo, B. Sahoo, Measurement. 45 (8), 2153-2165 (2012).
- [14] M. Sadílek, J. Dubský, Z. Sadílková, Z. Poruba, Perspectives in Science 7, 357-363 (2016).
- [15] D. G. Thakur, B. Ramamoorthy, L. Vijayaraghavan, Mater. Design 30 (5), 1718-1725 (2009).
- [16] S. Pervaiz, A. Rashid, I. Deiab, M. Nicolescu, Mater. Manuf. Process. 29 (3), 219-252 (2014).
- [17] C. H. Che Haron, A. Ginting, H. Arshad, J. Mater. Process. Technol. 185, 77-82 (2007).
- [18] J. G. Lima, R. F. Avila, A. M. Abrao, M. Faustino, J. Paulo Davim, J. Mater. Process. Tech. 169 (3), 388-395 (2005).
- [19] D. K. Das, A. K. Sahoo, R. Das, B. C. Routara, Proc. Mat. Sci. 6, 1351-1358 (2014).
- [20] W. L. Liu, W. T. Chien, M. H. Jiang, W. J. Chen, J. Alloys Compd. 495, 97-103 (2010).
- [21] A. Palanisamy, T. Selvaraja and S. Sivasankaran, J. Mech. Sci. Technol. 31 (9), 4159-4165 (2017).
- [22] A. Palanisamy, T. Selvaraj, S. Sivasankaran, Mater. Manuf. Process (2018), DOI:10.1080/10426914.2018.1424910 (In press).
- [23] H. S. Jailani, A. Rajadurai, B. Mohan, A. S. Kumar, T. Sornakumar, Int. J. Adv. Manuf. Technol. 45, 362-369 (2009).
- [24] R. Suresh, S. Basavarajappa, V. N. Gaitonde, G. L. Samuel, Int. J. Refract. Met. H. 33, 75-86 (2012).
- [25] J. Deng, Introduction to Grey Theory, Journal of Grey Systems 1 (1), 1-24 (1989).
- [26] P. Senthil, T. Selvaraj, K. Sivaprasad, Int. J. Adv. Manuf. Technol. 67 (5-8), 1589-1596 (2013).
- [27] S. R. Das, D. Dhupal, A. Kumar, Measurement. 62, 108-126 (2015).
- [28] A. Pal, S. K. Choudhury, S. Chinchanikar, Proc. Mat. Sci. 6, 80-91 (2014).
- [29] Z. Z. Julie, C. C. Joseph, E. Daniel Kirby, J. Mater. Process. Technol. 184, 233-239 (2007).
- [30] L. K. Pan, C. C. Wang, S. L. Wei, H. F. Sher, J. Mater. Process. Technol, 182, 107-116 (2007).
- [31] D. Palanisamy, P. Senthil, V. Senthilkumar, Arch. Civ. Mech. Eng. 16 (1), 53-63 (2016).
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-27496f88-cf61-4193-ad7b-332940df0e7f