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Research Article

Experimental investigation and parametric optimisation of the hole-circularity and recast layer during the laser trepan drilling

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Pages 1349-1362 | Received 27 Apr 2020, Accepted 02 Jul 2020, Published online: 22 Jul 2020

References

  • Ahn, D., K. Byun, and M. Kang. 2010. “Thermal Characteristics in the Cutting of Inconel 718 Superalloy Using CW Nd: YAG Laser.” Journal of Materials Science & Technology 26 (4): 362–366. doi:10.1016/S1005-0302(10)60059-X
  • Almeida, I., W. De Rossi, M. Lima, J. Berretta, G. Nogueira, N. Wetter, and V. Jr N. 2006. “Optimization of Titanium Cutting by Factorial Analysis of the Pulsed Nd: YAG Laser Parameters.” Journal of Materials Processing Technology 179 (1–3): 105–110. doi:10.1016/j.jmatprotec.2006.03.107
  • Begic-Hajdarevic, D., and I. Bijelonja. 2015. “Experimental and Numerical Investigation of Temperature Distribution and Hole Geometry during Laser Drilling Process.” Procedia Engineering 100: 384–393. doi:10.1016/j.proeng.2015.01.382
  • Biscaia, R., M. Ribas, and A. B. Júnior. 2020. “Effects of Processing Parameters on the Micro-drilling through Fast Hole Electroerosion and Laser Trepanning in Inconel 718.” The International Journal of Advanced Manufacturing Technology. 106 (1–2): 31–45. doi:10.1007/s00170-019-04394-7
  • Box, G. E., and N. R. Draper. 1987. Empirical Model-building and Response Surfaces. Washington, DC: John Wiley & Sons.
  • Chien, W.-T., and S.-C. Hou. 2007. “Investigating the Recast Layer Formed during the Laser Trepan Drilling of Inconel 718 Using the Taguchi Method.” The International Journal of Advanced Manufacturing Technology. 33 (3–4): 308–316. doi:10.1007/s00170-006-0454-1
  • Choudhury, I., W. Chong, and G. Vahid. 2012. “Hole Qualities in Laser Trepanning of Polymeric Materials.” Optics and Lasers in Engineering 50 (9): 1297–1305. doi:10.1016/j.optlaseng.2012.02.017
  • Dhaker, K. L., and A. K. Pandey. 2018. “Experimental Study of Hole Taper in Laser Trepan Drilling of Nickel Based Super Alloy Sheet.” Materials Today: Proceedings 5 (11): 23994–24004.
  • Dhaker, K. L., A. K. Pandey, and B. Upadhayay. 2017. “Experimental Investigation of Hole Diameter in Laser Trepan Drilling of Inconel718 Sheet.” Materials Today: Proceedings 4 (8): 7599–7608.
  • Dhaker, K. L., B. Singh, and Y. Shrivastava. 2019. “Adaptive Neuro-fuzzy Inference System Based Modeling of Recast Layer Thickness during Laser Trepanning of Inconel-718 Sheet.” Journal of the Brazilian Society of Mechanical Sciences and Engineering 41 (10): 423. doi:10.1007/s40430-019-1933-2
  • Duan, W., X. Mei, Z. Fan, J. Chen, and Y. Zhang. 2020. “Dynamic Change Process of a Recast Layer in Nd: YAG Millisecond Laser Trepan Drilling.” Journal of the Optical Society of America B 37 (3): 804–812. doi:10.1364/JOSAB.380129
  • Dubey, A. K., and V. Yadava. 2008. “Multi-objective Optimization of Nd: YAG Laser Cutting of Nickel-based Superalloy Sheet Using Orthogonal Array with Principal Component Analysis.” Optics and Lasers in Engineering 46 (2): 124–132. doi:10.1016/j.optlaseng.2007.08.011
  • Garg, A., and K. Tai. 2014. “Stepwise Approach for the Evolution of Generalized Genetic Programming Model in Prediction of Surface Finish of the Turning Process.” Advances in Engineering Software 78: 16–27. doi:10.1016/j.advengsoft.2014.08.005
  • Goyal, R., and A. K. Dubey. 2016. “Modeling and Optimization of Geometrical Characteristics in Laser Trepan Drilling of Titanium Alloy.” Journal of Mechanical Science and Technology 30 (3): 1281–1293. doi:10.1007/s12206-016-0233-3
  • Marimuthu, S., M. Antar, J. Dunleavey, D. Chantzis, W. Darlington, and P. Hayward. 2017. “An Experimental Study on quasi-CW Fibre Laser Drilling of Nickel Superalloy.” Optics & Laser Technology 94: 119–127. doi:10.1016/j.optlastec.2017.03.021
  • Myers, R. H., D. C. Montgomery, and C. M. Anderson-Cook. 2009. Response Surface Methodology: Process and Product Optimization Using Designed Experiments (Wiley Series in Probability and Statistics). New York: Wiley.
  • Nyon, K., C. Nyeoh, M. Mokhtar, and R. Abdul-Rahman. 2012. “Finite Element Analysis of Laser Inert Gas Cutting on Inconel 718.” The International Journal of Advanced Manufacturing Technology 60 (9–12): 995–1007. doi:10.1007/s00170-011-3655-1
  • Pandey, A. K., and A. K. Dubey. 2012. “Taguchi Based Fuzzy Logic Optimization of Multiple Quality Characteristics in Laser Cutting of Duralumin Sheet.” Optics and Lasers in Engineering 50 (3): 328–335. doi:10.1016/j.optlaseng.2011.11.005
  • Pandey, A. K., and A. K. Dubey. 2013. “Fuzzy Expert System for Prediction of Kerf Qualities in Pulsed Laser Cutting of Titanium Alloy Sheet.” Machining Science and Technology 17 (4): 545–574. doi:10.1080/10910344.2013.806182
  • Rajesh, P., U. Nagaraju, G. H. Gowd, and T. V. Vardhan. 2017. “Experimental and Parametric Studies of Nd: YAG Laser Drilling on Austenitic Stainless Steel.” The International Journal of Advanced Manufacturing Technology 93 (1–4): 65–71. doi:10.1007/s00170-015-7639-4
  • Saini, S. K., and A. K. Dubey. 2019. “Study of Material Characteristics in Laser Trepan Drilling of ZTA.” Journal of Manufacturing Processes 44: 349–358. doi:10.1016/j.jmapro.2019.06.017
  • Sharma, A., and V. Yadava. 2011. “Optimization of Cut Quality Characteristics during Nd: YAG Laser Straight Cutting of Ni-based Superalloy Thin Sheet Using Grey Relational Analysis with Entropy Measurement.” Materials and Manufacturing Processes 26 (12): 1522–1529. doi:10.1080/10426914.2011.551910
  • Shrivastava, P. K., and A. K. Pandey. 2018. “Parametric Optimization of Multiple Quality Characteristics in Laser Cutting of Inconel-718 by Using Hybrid Approach of Multiple Regression Analysis and Genetic Algorithm.” Infrared Physics & Technology 91: 220–232. doi:10.1016/j.infrared.2018.04.013
  • Shrivastava, Y., and B. Singh. 2018a. “Estimation of Stable Cutting Zone in Turning Based on Empirical Mode Decomposition and Statistical Approach.” Journal of the Brazilian Society of Mechanical Sciences and Engineering 40 (2): 77. doi:10.1007/s40430-018-0989-8
  • Shrivastava, Y., and B. Singh. 2018b. “Assessment of Stable Cutting Zone in CNC Turning Based on Empirical Mode Decomposition and Genetic Algorithm Approach.” Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 232 (20): 3573–3594.
  • Shrivastava, Y., and B. Singh. 2018c. “Stable Cutting Zone Prediction in CNC Turning Using Adaptive Signal Processing Technique Merged with Artificial Neural Network and Multi-objective Genetic Algorithm.” European Journal of Mechanics-A/Solids70: 238–248. doi:10.1016/j.euromechsol.2018.03.009
  • Singh, B., and B. Nanda. 2012. “Slip Damping Mechanism in Welded Structures Using Response Surface Methodology.” Experimental Mechanics 52 (7): 771–791. doi:10.1007/s11340-011-9563-3
  • Singh, B., and B. K. Nanda. 2013. “Investigation into the Effect of Surface Roughness on the Damping of Tack-welded Structures Using the Response Surface Methodology Approach.” Journal of Vibration and Control. 19 (4): 547–559. doi:10.1177/1077546311429056
  • Tamrin, K., Y. Nukman, I. Choudhury, and S. Shirley. 2015. “Multiple-objective Optimization in Precision Laser Cutting of Different Thermoplastics.” Optics and Lasers in Engineering 67: 57–65. doi:10.1016/j.optlaseng.2014.11.001
  • Venkatesan, K., R. Ramanujam, and P. Kuppan. 2016. “Parametric Modeling and Optimization of Laser Scanning Parameters during Laser Assisted Machining of Inconel 718.” Optics & Laser Technology 78: 10–18. doi:10.1016/j.optlastec.2015.09.021

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