Micromachining the Aluminium Tubes Using Abrasive Finishing in Alternating Magnetic Field
Subject Areas : Journal of Simulation and Analysis of Novel Technologies in Mechanical EngineeringReza Abedinzadeh 1 , Rasoul Gorji 2
1 - Department of Mechanical Engineering, Khomeinishahr Branch, Islamic Azad University, Isfahan, Iran
2 - Department of Mechanical Engineering, Khomeinishahr Branch, Islamic Azad University, Isfahan, Iran
Keywords:
Abstract :
[1] M. Givi, A.F. Tehrani, and A. Mohammadi, “Polishing of the aluminum sheets with magnetic abrasive finishing method,” Int. J. Adv. Manuf. Tech., vol. 61, pp. 989-98, 2012.
[2] V. Grover, and A.K. Singh, “A novel magnetorheological honing process for nano-finishing of variable cylindrical internal surfaces,” Mater. Manuf. Process., vol. 32, pp. 573-580, 2017.
[3] A. Manna, and A. Kundal, “Micro machining of nonconductive Al2O3 ceramic on developed TW-ECSM setup,” Int. J. Manuf. Mater. Mech. Eng., vol. 1, pp. 46-55, 2011.
[4] K. Rakhimyanov, and I. Semenova, “Surface state control by ultrasonic plastic deformation at the final machining stage,” Mater. Manuf. Process., vol. 31, pp. 764-9, 2016.
[5] P. Saraeian, H. Soleimani Mehr, B. Moradi, H. Tavakoli, and O. Khalil Alrahmani, “Study of magnetic abrasive finishing for AISI321 stainless steel,” Mater. Manuf. Process., vol. 31, pp. 2023-9, 2016.
[6] C. Vipin, and M. Shukla & Pulak, “Experimental investigations into sintering of magnetic abrasive powder for ultrasonic assisted magnetic abrasive finishing process,” Mater. Manuf. Process., vol. 32, pp. 108-14, 2017.
[7] G. Singh, A.K. Singh, and P. Garg, “Development of Magnetorheological finishing process for external cylindrical surfaces,” Mater. Manuf. Process., vol. 32, pp. 581-8, 2017.
[8] M. Sushil, K. Vinod, and K. Harmesh, “Experimental investigation and optimization of process parameters of Al/SiC MMCs finished by abrasive flow machining,” Mater. Manuf. Process., vol. 30, pp. 902-11, 2015.
[9] N. Francis, K. Viswanadhan, and M. Paulose, “Swirling abrasive fluidized bed machining: Effect of process parameters on machining performance,” Mater. Manuf. Process., vol. 30, pp. 852-7, 2015.
[10] J. Sheikh-Ahmad, and J. Mohammed, “Optimization of process parameters in diamond abrasive machining of carbon fiber-reinforced epoxy,” Mater. Manuf. Process., vol. 29, pp. 1361-6, 2014.
[11] R. Ferreira, D. Carou, C. Lauro, and J. Davim, “Surface roughness investigation in the hard turning of steel using ceramic tools,” Mater. Manuf. Process., vol. 31, pp. 648-52, 2016.
[12] S.M. Ji, Y.M. Xu, G.D. Chen, and M.S. Jin, “Comparative study of magnetic abrasive finishing in free-form surface based on different polishing head,” Mater. Sci. Forum, vol. 675, pp. 593-596, 2011.
[13] K. Judal, and V. Yadava, “Modeling and simulation of cylindrical electrochemical magnetic abrasive machining process,” Mach. Sci. Technol., vol. 18, pp. 221-50, 2014.
[14] S. Jayswal, V. Jain, and P. Dixit, “Modeling and simulation of magnetic abrasive finishing process,” Int. J. Adv. Manuf. Tech., vol. 26, pp. 477-90, 2005.
[15] C.T. Lin, L.D. Yang, and H.M. Chow, “Study of magnetic abrasive finishing in free-form surface operations using the Taguchi method,” Int. J. Adv. Manuf. Tech., vol. 34, pp. 122-30, 2007.
[16] J. Kwak, and T. Kwak, “Parameter optimization in magnetic abrasive polishing for magnesium plate,” 2nd Int. Conf. Comput. Eng. Technol., vol. 5, pp. 544-547, 2010.
[17] B. Girma, S.S. Joshi, M. Raghuram, and R. Balasubramaniam, “An experimental analysis of magnetic abrasives finishing of plane surfaces,” Mach. Sci. Technol., vol. 10, pp. 323-40, 2006.
[18] Y. Wang, and D. Hu, “Study on the inner surface finishing of tubing by magnetic abrasive finishing,” Int. J. Mach. Tools Manuf., vol. 45, pp. 43-9, 2005.
[19] P.S. Kang, L. Singh, and J.S. Gill, “Finishing of SUS 304 stainless steel bent tubes using magnetic abrasive finishing,” Mechanica. Confab. Int. J., vol. 2, pp. 123-30, 2013.
[20] J. Wu, Y. Zou, and H. Sugiyama, “Study on finishing characteristics of magnetic abrasive finishing process using low-frequency alternating magnetic field,” Int. J. Adv. Manuf. Tech., vol. 85, pp. 585-94, 2016.
[21] X.G. Yao, Y.H. Ding, G. Ya, W.W. Liu, and Y. Zhang, “Study of finishing mechanism for internal surface using magnetic force generated by rotating magnetic field,” Key Eng. Mat., vol. 416, pp. 406-410, 2009.
[22] D.C. Montgomery, Design and analysis of experiments; John Wiley & Sons, 2017.
[23] S. Ahmad, S. Gangwar, P.C. Yadav, and D. Singh, “Optimization of process parameters affecting surface roughness in magnetic abrasive finishing process,” Mater. Manuf. Process., pp. 1-7, 2017.
[24] G.S. Gandhi, and L. Singh, “Internal finishing of thick cylinder SUS 304 steel tubes using magnetic abrasive finishing setup,” Int. J. Mech. Civil Eng., vol. 2, 2013.