Application of Generalized Reduced Gradient Method for Optimization of Plunge Centerless Grinding Process
Keywords:
Plunge centerless grinding, optimization, generalized reduced gradient, surface roughness, 20X steelAbstract
This paper presents the study on optimization of plunge centerless grinding parameters when grinding 20X – carbon infiltration steel (ГOCT standard - Russia) to achieve minimum of surface roughness value by generalized reduced gradient method. Using the result of 29 runs in central composite design matrix with input parameters are center height angle of the workpiece ( ), longitudinal grinding wheel dressing feed-rate ( ), plunge feed-rate ( ) and control wheel velocity ( ) to given the second order surface roughness model. Using generalized reduced gradient method to get optimization values of input parameters to achieve minimum of surface roughness.
References
- Senthil Kumar N, Dhinakarraj C K, Deepanraj and Sankaranarayyanan G (2012) Multi Objective Optimization and Empirical Modeling of centerless Grinding Parameters. Emerging Trends in Science, Engineering and Technology Lecture Notes in Mechanical Engineering 2012, pp 285-295.
- Dhavlikar MN, Kulkarni MS, Mariappan V (2003) Combined Taguchi and dual response method for optimization of a centerless grinding operation. Int J Mater Process Technol 132:90–94.\
- Garitaonandia I, Fernandes MH, Albizuri J, Hernandez JM, Barrenetxe D (2010) A new perspective on the stability study of centerless grinding process. Int J Mach Tools Manuf 50:165–173.
- Krajnik P, Kopac J, Sluga A (2005) Design of grinding factors based on response surface methodology. Int J Mater Process Technol 162–163:629–636.
- Zhou SS, Gartner JR, Howes TD (1996) On the relationship between setup parameters and lobing behavior in centerless grinding. Ann CIRP 45(1):341–346.
- Xu W, Wu Y, Sato T, Lin W (2010) Effects of process parameters on workpiece roundness in tangential-feed centerless grinding using a surface grinder. Int J Mater Process Technol 210:759–766.
- Khan ZA, Siddiquee AN and Kamaruddin S (2012) Optimization of In-feed Centerless Cylindrica; Process Parameters Using Grey Relational Analysis. Pertanika J Sci & Technol 20(2): 257 - 268
- Subramanya Udupa NG, Shunmagam MS and Radhakrishman V (1987) Optimizing workpiece position in centerless grinding by roundness profile analysis. Butter & Co (Publishers) Ltd: 23-30
- Chien AY (1984) The Selection of Optimal Stable Geometrical Configuration in Centerless Grinding. Int J. Mach Tool. Des. Res Vol 24 No 2: 87-93
- Hashimoto F, Kanai A and Miyshita M (2004) Optimisation of Set-Up Conditions of the Centerless Grinding Process. Ann. CIRP 53 (1) 271-274.
- Phan Bui Khoi,Do Duc Trung, Ngo Cuong (2014), A study on multi – objective optimization of plunge centerless grinding process, International journal of mechanical engineering anf technology, Volume 5, issue 11, pp. 140 – 152.
- Phan Bui Khoi, Do Duc Trung, Ngo Cuong, Nguyen Dinh Man (2014) Research on Optimization of Plunge Centerless Grinding Process using Genetic Algorithm and Response Surface Method, International Journal of Scientific Engineering and Technology, Volume No.4 Issue No.3, pp: 207-211.
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