OPTIMIZATION OF MILLING OPERATION USING COMBINED GREY TAGUCHI RELATIONAL METHOD AND ANOVA

Authors

  • Dave H K Mechanical Engineering Department, Sardar Vallabhbhai National Institute of Technology, Surat, Gujarat - 395 007, India
  • Desai K P Mechanical Engineering Department, Sardar Vallabhbhai National Institute of Technology, Surat, Gujarat - 395 007, India
  • Raval H K Mechanical Engineering Department, Sardar Vallabhbhai National Institute of Technology, Surat, Gujarat - 395 007, India

Keywords:

Milling, Taguchi Method, ANOVA, Grey Relational Analysis, Normalization, Grey Relational Grade, Grey Relational Co-efficient

Abstract

In the present study, optimization of process parameters on milling machine is carried out using a combination of Taguchi method and grey relational analysis method. Speed, feed and depth of cut are taken as input process parameters and cutting force, torque and power are selected as the target values. All the three input parameters are taken at four different levels and sixteen experimental runs are performed based on L16 orthogonal array of Taguchi method. An optimum parameter combination is obtained using Grey relational analysis method. By analyzing the grey relational grade matrix, the degree of influence for each controllable process parameter onto individual target value can be found. Based on the relatively new combined Taguchi and Grey relational approach, it is found that feed has maximum influence on the target characteristics. Analysis of Variance (ANOVA) is also applied to identify the most significant factor.

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References

Ghosh A and Mallik A K (2008), “Manufacturing Science”, Affiliated East West Press Private Limited, 240.

Yung-Kuang Yang, Ming-Tsan Chuang and Show-Shyan Lin (2009), “Optimization of Dry Machining Parameters For High- Purity Graphite in End Milling Process Via Design of Experiments Methods”, Journal of Materials Processing Technology, Vol. 209(9), 4395–4400.

Reddy N S K and Rao P V (2006), “Experimental Investigation to Study the Effect of Solid Lubricants on Cutting Forces and Surface Quality in End Milling”, International Journal of Machine Tools and Manufacture, Vol. 46, 189-198.

Alauddin M, Baradie M A E and Hashmi M S J (1995), “Computer-Aided Analysis of a Surface-Roughness Model for End Milling”, Journal of Materials Processing Technology, Vol. 55, 123–127.

Davim J P (2003), “Design of Optimization of Cutting Parameters for Turning Metal Matrix Composites Based on the Orthogonal Arrays”, Journal of Materials Processing Technology, Vol. 132, 340–344.

Ghani J A N, Choudhury I A and Hassan H H (2004), “Application of Taguchi Method in the Optimization of End Milling Parameters”, Journal of Materials Processing Technology, Vol. 145, 84–92.

Montgomery DC (2004), “Design and Analysis of Experiments”, John Wiley and Sons, Inc., New York. 6th Edition..

Puertas I. and Luis CJ (2004), “A Study of Optimization of Machining Parameters for Electrical Discharge Machining of Boron Carbide”, Mater. Manuf. Process. Vol. 19 (6), 1041–1070.

Alagumurthi N, Palaniradja K and Soundararajan V (2006), “Optimization of Grinding Process through Design of Experiment (DOE) — A Comparative Study”, Mater. Manuf. Process. Vol. 21 (1), 19–21.

Dave H K and Raval H K (2007), “Investigations on Optimization of Various Process Parameters for Improving the Material Removal Rate on Fuzzy Logic Controlled Electro Discharge Machine”, International Conference on Advances in Mechanical Engineering, MIT, Manipal, India.

Dave H K, Desai K P and Raval H K (2008), “Investigations on Improvement of Output Quality Characteristics in Electro Discharge Machining Process through the Optimization of Process Parameters using Taguchi Method”, Proc. Of International Conference on Advances in Mechanical Engineering, December 15-17, SVNIT, Surat, India.

Zhang, J Z, Chen J C and Kirby E D (2007), “Surface Roughness Optimization in a End-Milling Operation using the Taguchi Design Method”, Journal of Materials Processing Technology, , Vol. 184 233–239.

Deng J L (1989), “Introduction to Grey System Theory”, The Journal of Grey System, Vol. 1(1), 1–24.

Huang, J T and Lin J L (2002), “Optimization of Machining Parameters Setting of Die-Sinking EDM Process based on the Grey Relational Analysis with L18 Orthogonal Array”, Journal of Technology, Vol. 17, 659–664.

Fung C P, Huang C H and Doong J L (2003), “The Study on the Optimization of Injection Molding Process Parameters with Grey Relational Analysis”, Journal of Reinforced Plastics and Composites, Vol. 22, 51–66.

Chiang K T and Chang F P (2006), “Optimization of the WEDM Process of Particle-Reinforced Material with Multiple Performance Characteristics using Grey Relational Analysis”, Journal of Materials Processing Technology, Vol. 108, 96–101.

Lin CL (2004), “Use of the Taguchi Method and Grey Relational Analysis to Optimize Turning Operations with Multiple Performance Characteristics”, Mater. Manuf. Process. Vol. 19 (2), 209–220.

Chorng-Jyh Tzeng, Yu-Hsin Lin, Yung-Kuang Yang and Ming- Chang Jeng (2009), “Optimization of Turning Operations with Multiple Performance Characteristics using the Taguchi Method and Grey Relational Analysis”, Journal of Materials Processing Technology, Vol. 209, 2753–2759.

Yang YK, Shie JR, Huang CH (2006), “Optimization of Dry Machining Parameters for High-Purity Graphite in End Milling

Process”, Mater. Manuf. Process. Vol. 21 (8), 832–837.

Kopac J and Krajnik P (2007), “Robust Design of Flank Milling Parameters based on Grey-Taguchi Method”, Journal of Materials Processing Technology, Vol. 191, 400–403.

Deng J L (1986), “Theory and Method of Social Economic Grey Systems”, Social science of China, Vol. 6, 47- 60.

Deng J L (2005), “The Primary Methods of Grey System Theory”, Huazhong University of Science and Technology Press, Wuhan.

Tosun N (2006), “Determination of Optimum Parameters for Multi Performance Characteristics in Drilling by using Grey Relational Analysis” International Journal of Advanced Manufacturing Technology, Vol. 28, 450–455.

Lin ZC and Ho CY (2003), “Analysis and Application of Grey Relation and ANOVA in Chemical–Mechanical Polishing Process Parameters”, International Journal of Advanced Manufacturing Technology, Vol. 21, 10–14.

Chang CL, Tsai CH and Chen L (2003), “Applying Grey Relational Analysis to the Decathlon Evaluation Model”, International Journal of Computer & Internet Management, Vol. 11(3), 54–62.

Ulas Caydas and Ahmet Hascalik (2008), “Use of the Grey Relational Analysis to Determine Optimum Laser Cutting Parameters with Multi-Performance Characteristics”, Optics & Laser Technology, Vol. 40, 987–994.

Lung Kwang Pan, Che Chung Wang, Shien Long Wei and Hai Feng Sher (2007), “Optimizing Multiple Quality Characteristics via Taguchi Method-based Grey Analysis”, Journal of Materials Processing Technology, Vol. 182, 107–116.

Juninall R C and Marshek K M (2002), “Fundamentals of Machine Component Design”, John Wiley & Sons. Inc., 3rd edition, 22-25.

Yiyo Kuo, Taho Yang and Guan – Wei Huang (2008), “The Use of Grey Relational Analysis in Solving Multiple Attribute Decision Making Problems”, Computers and Industrial Engineering, Vol. 55, 80-93.

Sood AK, Ohdar RK and Mahapatra SS (2009), “Improving Dimensional Accuracy of FDM Processed Part using Grey Taguchi Method”, Materials and Design.

Phadke M S (1989), “Quality Engineering using Robust Design”, Prentice Hall, Englewood Cliffs, NJ.

Gupta S C (2006), Fundamentals of Statistics, Himalaya Publishing House, Mumbai, 23.1 -23.8.

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Published

2010-09-01

How to Cite

[1]
“OPTIMIZATION OF MILLING OPERATION USING COMBINED GREY TAGUCHI RELATIONAL METHOD AND ANOVA”, JME, vol. 5, no. 3, pp. 190–196, Sep. 2010, Accessed: Dec. 21, 2024. [Online]. Available: https://smenec.org/index.php/1/article/view/462

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