How to cite this paper
Panda, A., Sahoo, A & Rout, R. (2016). Multi-attribute decision making parametric optimization and modeling in hard turning using ceramic insert through grey relational analysis: A case study.Decision Science Letters , 5(4), 581-592.
Refrences
Aggarwal, A., Singh, H., Kumar, P., & Singh, M. (2008). Multicharacteristic optimisation of CNC turned parts using principal component analysis.International Journal of Machining and Machinability of Materials, 3(1-2), 208-223.
Asokan, P., Saravanan, R., & Vijayakumar, K. (2003). Machining parameters optimisation for turning cylindrical stock into a continuous finished profile using genetic algorithm (GA) and simulated annealing (SA). The International Journal of Advanced Manufacturing Technology, 21(1), 1-9.
Bhuyan, R., & Routara, B. (2016). Optimization the machining parameters by using VIKOR and Entropy Weight method during EDM process of Al–18% SiCp Metal matrix composite. Decision Science Letters, 5(2), 269-282.
Choudhury, I. A., & El-Baradie, M. A. (1997). Surface roughness prediction in the turning of high-strength steel by factorial design of experiments.Journal of Materials Processing Technology, 67(1), 55-61.
Chinchanikar, S., & Choudhury, S.K. (2013). Wear behaviors of single-layer and multi-layer coated carbide inserts in high speed machining of hardened AISI 4340 steel. Journal of Mechanical Science and Technology, 27 (5), 1451-1459.
Das, S. & Chattopadhyay, A.B. (2003) Application of the analytic hierarchy process for estimating the state of tool wear. International Journal of Machine Tools & Manufacture, 43, 1-6.
Datta, S., Bandyopadhyay, A., & Pal, P. K. (2008). Slag recycling in submerged arc welding and its influence on weld quality leading to parametric optimization. The International Journal of Advanced Manufacturing Technology, 39(3-4), 229-238.
Davim, J. P. (2001). A note on the determination of optimal cutting conditions for surface finish obtained in turning using design of experiments.Journal of materials processing technology, 116(2), 305-308.
Davim, J. P., Gaitonde, V. N., & Karnik, S. R. (2008). Investigations into the effect of cutting conditions on surface roughness in turning of free machining steel by ANN models. Journal of materials processing technology, 205(1), 16-23.
Dey, S., & Chakraborty, S. (2016). A study on the machinability of some metal alloys using grey TOPSIS method. Decision Science Letters, 5(1), 31-44.
Lin, C.L. (2004). Use of the Taguchi Method and Grey Relational Analysis to optimize turning operations with multiple performance characteristics. Materials & Manufacturing processes, 19 (2), 209-220.
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.
Natarajan, U., Periasamy, V. M., & Saravanan, R. (2007). Application of particle swarm optimisation in artificial neural network for the prediction of tool life. The International Journal of Advanced Manufacturing Technology,31(9-10), 871-876.
Haq, A. N., Marimuthu, P., & Jeyapaul, R. (2008). Multi response optimization of machining parameters of drilling Al/SiC metal matrix composite using grey relational analysis in the Taguchi method. The International Journal of Advanced Manufacturing Technology, 37(3-4), 250-255.
Haq, A. N., Marimuthu, P., & Jeyapaul, R. (2008). Multi response optimization of machining parameters of drilling Al/SiC metal matrix composite using grey relational analysis in the Taguchi method. The International Journal of Advanced Manufacturing Technology, 37(3-4), 250-255.
Noordin, M. Y., Venkatesh, V. C., Sharif, S., Elting, S., & Abdullah, A. (2004). Application of response surface methodology in describing the performance of coated carbide tools when turning AISI 1045 steel. Journal of Materials Processing Technology, 145(1), 46-58.
Pal, S., Malviya, S. K., Pal, S. K., & Samantaray, A. K. (2009). Optimization of quality characteristics parameters in a pulsed metal inert gas welding process using grey-based Taguchi method. The International Journal of Advanced Manufacturing Technology, 44(11-12), 1250-1260.
Palanikumar, K. (2008). Application of Taguchi and response surface methodologies for surface roughness in machining glass fiber reinforced plastics by PCD tooling. The International Journal of Advanced Manufacturing Technology, 36(1-2), 19-27.
Sahoo, A. K., Pradhan, S., & Rout, A. K. (2013). Development and machinability assessment in turning Al/SiCp-metal matrix composite with multilayer coated carbide insert using Taguchi and statistical techniques.Archives of civil and mechanical engineering, 13(1), 27-35.
Sahoo, A., Orra, K., & Routra, B. (2013). Application of response surface methodology on investigating flank wear in machining hardened steel using PVD TiN coated mixed ceramic insert. International Journal of Industrial Engineering Computations, 4(4), 469-478.
Sahoo, A. K., & Sahoo, B. (2013). Performance studies of multilayer hard surface coatings (TiN/TiCN/Al2O3/TiN) of indexable carbide inserts in hard machining: Part-II (RSM, grey relational and techno economical approach).Measurement, 46(8), 2868-2884.
Sargade, V. G., Nipanikar, S. R., & Meshram, S. M. (2016). Analysis of surface roughness and cutting force during turning of Ti6Al4V ELI in dry environment. International Journal of Industrial Engineering Computations,7(2), 257.
Tosun, N., & Pihtili, H. (2010). Gray relational analysis of performance characteristics in MQL milling of 7075 Al alloy. The International Journal of Advanced Manufacturing Technology, 46(5-8), 509-515.
Tzeng, C. J., Lin, Y. H., Yang, Y. K., & Jeng, M. C. (2009). Optimization of turning operations with multiple performance characteristics using the Taguchi method and Grey relational analysis. Journal of materials processing technology, 209(6), 2753-2759.
Asokan, P., Saravanan, R., & Vijayakumar, K. (2003). Machining parameters optimisation for turning cylindrical stock into a continuous finished profile using genetic algorithm (GA) and simulated annealing (SA). The International Journal of Advanced Manufacturing Technology, 21(1), 1-9.
Bhuyan, R., & Routara, B. (2016). Optimization the machining parameters by using VIKOR and Entropy Weight method during EDM process of Al–18% SiCp Metal matrix composite. Decision Science Letters, 5(2), 269-282.
Choudhury, I. A., & El-Baradie, M. A. (1997). Surface roughness prediction in the turning of high-strength steel by factorial design of experiments.Journal of Materials Processing Technology, 67(1), 55-61.
Chinchanikar, S., & Choudhury, S.K. (2013). Wear behaviors of single-layer and multi-layer coated carbide inserts in high speed machining of hardened AISI 4340 steel. Journal of Mechanical Science and Technology, 27 (5), 1451-1459.
Das, S. & Chattopadhyay, A.B. (2003) Application of the analytic hierarchy process for estimating the state of tool wear. International Journal of Machine Tools & Manufacture, 43, 1-6.
Datta, S., Bandyopadhyay, A., & Pal, P. K. (2008). Slag recycling in submerged arc welding and its influence on weld quality leading to parametric optimization. The International Journal of Advanced Manufacturing Technology, 39(3-4), 229-238.
Davim, J. P. (2001). A note on the determination of optimal cutting conditions for surface finish obtained in turning using design of experiments.Journal of materials processing technology, 116(2), 305-308.
Davim, J. P., Gaitonde, V. N., & Karnik, S. R. (2008). Investigations into the effect of cutting conditions on surface roughness in turning of free machining steel by ANN models. Journal of materials processing technology, 205(1), 16-23.
Dey, S., & Chakraborty, S. (2016). A study on the machinability of some metal alloys using grey TOPSIS method. Decision Science Letters, 5(1), 31-44.
Lin, C.L. (2004). Use of the Taguchi Method and Grey Relational Analysis to optimize turning operations with multiple performance characteristics. Materials & Manufacturing processes, 19 (2), 209-220.
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.
Natarajan, U., Periasamy, V. M., & Saravanan, R. (2007). Application of particle swarm optimisation in artificial neural network for the prediction of tool life. The International Journal of Advanced Manufacturing Technology,31(9-10), 871-876.
Haq, A. N., Marimuthu, P., & Jeyapaul, R. (2008). Multi response optimization of machining parameters of drilling Al/SiC metal matrix composite using grey relational analysis in the Taguchi method. The International Journal of Advanced Manufacturing Technology, 37(3-4), 250-255.
Haq, A. N., Marimuthu, P., & Jeyapaul, R. (2008). Multi response optimization of machining parameters of drilling Al/SiC metal matrix composite using grey relational analysis in the Taguchi method. The International Journal of Advanced Manufacturing Technology, 37(3-4), 250-255.
Noordin, M. Y., Venkatesh, V. C., Sharif, S., Elting, S., & Abdullah, A. (2004). Application of response surface methodology in describing the performance of coated carbide tools when turning AISI 1045 steel. Journal of Materials Processing Technology, 145(1), 46-58.
Pal, S., Malviya, S. K., Pal, S. K., & Samantaray, A. K. (2009). Optimization of quality characteristics parameters in a pulsed metal inert gas welding process using grey-based Taguchi method. The International Journal of Advanced Manufacturing Technology, 44(11-12), 1250-1260.
Palanikumar, K. (2008). Application of Taguchi and response surface methodologies for surface roughness in machining glass fiber reinforced plastics by PCD tooling. The International Journal of Advanced Manufacturing Technology, 36(1-2), 19-27.
Sahoo, A. K., Pradhan, S., & Rout, A. K. (2013). Development and machinability assessment in turning Al/SiCp-metal matrix composite with multilayer coated carbide insert using Taguchi and statistical techniques.Archives of civil and mechanical engineering, 13(1), 27-35.
Sahoo, A., Orra, K., & Routra, B. (2013). Application of response surface methodology on investigating flank wear in machining hardened steel using PVD TiN coated mixed ceramic insert. International Journal of Industrial Engineering Computations, 4(4), 469-478.
Sahoo, A. K., & Sahoo, B. (2013). Performance studies of multilayer hard surface coatings (TiN/TiCN/Al2O3/TiN) of indexable carbide inserts in hard machining: Part-II (RSM, grey relational and techno economical approach).Measurement, 46(8), 2868-2884.
Sargade, V. G., Nipanikar, S. R., & Meshram, S. M. (2016). Analysis of surface roughness and cutting force during turning of Ti6Al4V ELI in dry environment. International Journal of Industrial Engineering Computations,7(2), 257.
Tosun, N., & Pihtili, H. (2010). Gray relational analysis of performance characteristics in MQL milling of 7075 Al alloy. The International Journal of Advanced Manufacturing Technology, 46(5-8), 509-515.
Tzeng, C. J., Lin, Y. H., Yang, Y. K., & Jeng, M. C. (2009). Optimization of turning operations with multiple performance characteristics using the Taguchi method and Grey relational analysis. Journal of materials processing technology, 209(6), 2753-2759.