REFERENCES - Shodhganga

REFERENCES
Adelmann, B. and Hellmann, R. (2011), “Fast laser cutting optimization algorithm”, Physics
Procedia, 12, 591-598.
Ahn, D.G. and Byun, K.W. (2009), “Influence of cutting parameters on surface characteristics
of cut section in cutting of Inconel 718 sheet using CW Nd:YAG laser”, Transactions of
Nonferrous Metals Society of China, 19, 32-39.
Ahn, D. G., Byun, K. W. and Kang, M. C. (2010), “Thermal characteristics in the laser cutting of
Inconel 718 superalloy using CW Nd:YAG laser”, Journal of Materials Science and
Technology, 26, 362 -366.
Akbari and Ziarati (2011) “A multilevel evolutionary algorithm for optimizing numerical
functions”, International Journal of Industrial Engineering Computations, 2, 419–430.
Almeida, I. A., Rossi, W., Lima, M.S.F., Berretta, J.R., Nogueira, G.E.C., Wetter, N.U. and
Vieira, Jr. N.D. (2006), “Optimization of titanium cutting by factorial analysis of the
pulsed Nd:YAG laser parameters”, Journal of Materials Processing Technology, 179,
105–110.
Ali, M., Wagner, T., Shakoor, M. and Molian, P.A. (2008), “Review of laser nanomachining”
Journal of laser applications, 20 (3), 169 – 184.
Araujo, D., Carpio, F.J., Mendez, D, Garcia, A.J., Villar, M.P., Garcia, R., Jimenez, D. and
Rubio, L. (2003), “Microstructural study of CO2 laser machined heat affected zone of
2024 aluminum alloy, Applied Surface Science, 208 – 209, 210-17.
Arif, A. F. M., Yilbas, B. S. and Abdul, Aleem B. J. (2009), “Laser cutting of thick sheet metals:
Residual stress analysis”, Optics and Laser Technology, 41, 224-232.
Ayer, T., Chhatwal, J., Alagoz, O., Kahn, C.E., Woods, R.W. and Burnside, E.S. (2010),
“Comparison of Logistic Regression and Artificial Neural Network Models in Breast
Cancer Risk Estimation”, Informatics in Radiology, 30, 13-22.
Aydin, H., Bayram, A., Esme, U., Kazancoglu, Y. and Guven, O. (2010), “Application of grey
relation analysis (GRA) and Taguchi method for the parametric optimization of friction
stir welding (FSW) process”, Materials and Technology, 44 (4), 205 - 211.
1
Benedict, G. F. (1987), Nontraditional Manufacturing Processes, Marcel Dekker, INC. New
York.
Biffi, C. A., Lecis, N., Previtali, B., Vedani, Maurizio and Vimercati, G.M. (2011), “Fiber laser
microdrilling of titanium and its effect on material microstructure”, International Journal
Advanced Manufacturing Technology, 54, 149-60.
Black, I. and Chua, K. L. (1997), “Laser cutting of thick ceramic tiles”, Optics and Laser
Technology, 29, 193-205.
Black, I. (1998a), “Laser cutting speed for the ceramic tile: a theoretical-empirical comparison”,
Optics and Laser Technology, 30, 95-101.
Black I., Livingstone, S. A. J. and Chua, K. L. (1998b), “A laser beam machining (LBM)
database for the ceramic tiles”, Journal of Materials Processing Technology, 84, 47-55.
Caydas, U. and Hascalık, A. (2008), “Use of the grey relational analysis to determine optimum
laser cutting parameters with multi-performance characteristics”, Optics and Laser
Technology, 40, 987–994.
Caprino, G. and Tagliaferri, V. (1988), “Maximum cutting speed in laser cutting of fiber
reinforced plastics”, International Journal of machine tools and manufacture, 28, 389398.
Cenna, A. A. and Mathew, P. (2002), “Analysis and prediction of laser cutting parameters of
fibre reinforced plastic (FRP) composite materials”, International Journal of Machine
Tools and Manufacture, 42, 105-113.
Chagnot, C., Dinechin, G. D. and Canneau, G. (2010), “Cutting performances with new
industrial continuous wave ND:YAG high power lasers For dismantling of former nuclear
workshops, the performances of recently introduced high power continuous wave
ND:YAG lasers are assessed”, Nuclear Engineering and Design, 240, 2604–2613.
Chaki, S., Ghosal, S. and Bathe, R.N. (2012), “Optimization of kerf quality during pulsed
Nd:YAG laser cutting of aluminium alloy sheet using GA-ANN hybrid model”,
International Journal of Mechatronics and Manufacturing Systems, 5, 263 – 279
Chiang, Y-M and Hsieh, H-H. (2009), “The use of the Taguchi method with grey relational
analysis to optimize the thin-film sputtering process with multiple quality characteristic
in color filter manufacturing”, Computers and Industrial Engineering, 56, 648-661.
2
Chien, W. T. and Hou, S. C. (2007), “Investigation of the recast layer formed during the laser
trepan drilling of inconel 718 using the Taguchi method”, International Journal of
Advanced Manufacturing Technology, 33, 308-316.
Chen, S. L. (1998), “The effects of gas composition on the CO2 laser cutting of mild steel”,
Journal of Materials Processing Technology, 73, 147–159.
Chen, C.B., Lin, C.Y., Chang, C.W. and Ho, C.P. (2000), “Grey relation for solving multiquality characteristics problems of Taguchi methods”, Journal of Technology, 15(1), 25 –
33.
Choudhury, I. A., Chong, W. C. and Vahid, G. (2012), “Hole qualities in laser trepanning of
polymeric Materials”, Optics and Lasers in Engineering, 50 (9), 1297–1305.
Choudhury, I. A. and Shirley S. (2010), “Laser cutting of polymeric materials: An experimental
investigation”, Optics and Laser Technology, 42, 503-508.
Chryssolouris, G. (1991), Laser Machining – Theory and Practice (Mechanical Engineering
Series), Springer, New York.
Deng, J.L. (1989), Introduction to Grey System, The Journal of Grey System, 1, 1-24.
Dey, V., Pratihar, D.K., Datta, G.L., Jha, M.N., Saha, T.K. and Bapat, A.V. (2009),
“Optimization of bead geometry in electron beam welding using a genetic algorithm,
Journal of Materials Processing Technology, 209, 1151 – 1157.
Dubey, A. K. and Yadava, V. (2008a), “Experimental Study of Nd:YAG Laser Beam Machining
– An overview”, Journal of Materials Processing Technology, 195, 15-26.
Dubey, A. K. and Yadava, V. (2008b), “Laser Beam Machining – A Review”, International
Journal of Machine Tools and Manufacture, 48, 609-628.
Dubey, A. K.
and Yadava, V. (2008c), “Robust Parameter Design and Multi-Objective
Optimization of Laser Beam Cutting for Aluminium Alloy Sheet”, International Journal
of Advanced Manufacturing Technology, 38, 268-277.
Dubey, A. K. and Yadava, V. (2008d), “Optimization of kerf quality during pulsed laser cutting
of aluminium alloy sheet”, Journal of Materials Processing Technology, 204, 412-418.
Dubey, A. K. and Yadava, V. (2008e), “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, 124–132.
3
Dubey, A. K. and Yadava, V. (2008f), “Multi-objective optimization of laser beam cutting
process”, Optics and Laser Technology, 40, 562–570.
Dubey, A. K. and Pandey, A.K. (2012a), “Taguchi based fuzzy logic optimization of multiple
quality characteristics in laser cutting of Duralumin sheet”, Optics and Lasers in
Engineering, 50, 328 – 335.
Dubey, A. K. and Pandey, A.K. (2012b), “Simultaneous optimization of multiple quality
characteristics in laser cutting of titanium alloy sheet”, Optics and Laser Technology, 44,
1858 – 65.
Dubey, A. K. and Pandey, A.K. (2012c), “Modeling and optimization of kerf taper in pulsed
laser cutting of Duralumin sheet”, Proceeding of the ASME 2012, International
Manufacturing Science and Engineering Conference, USA, June 4 – 8, 1-8.
Dubey, A. K. and Yadava, V. (2007), “Simultaneous optimization of multiple quality
characteristics in laser beam cutting using Taguchi Method”, International Journal of
Precision Engineering and Manufacturing, 8, 10-15.
Dvivedi, A. and Kumar, P. (2007), “Surface quality evaluation in ultrasonic drilling through the
Taguchi technique”, International Journal of Advance Manufacturing Technology, 34,
131-140.
Eiben, A. E. (1994), "Genetic algorithms with multi-parent recombination", PPSN III:
Proceedings of the International Conference on Evolutionary Computation, The 3 rd
Conference on Parallel Problem Solving from Nature, 78–87.
Eltawahni, H. A., Olabi, A. G. and Benyounis K. Y. (2010), “Effect of process parameters and
optimization of CO2 laser cutting of ultra-high performance polyethylene”, Materials and
Design, 31, 4029-4038.
Ghany Abdel, K. and Newishy, M. (2005), “Cutting of 1.2 mm thick austenitic stainless steel
sheet using pulsed and CW Nd:YAG laser”, Journal of Materials Processing Technology,
168, 438-447.
Gilbert, T., Krstic, V. D., Zak, G. (2007), “Machining of aluminium nitride with ultraviolet and
near infrared Nd:YAG lasers”, Journal of Materials Processing Technology, 189, 409417.
4
Goldberg, D.E. and Deb, K. (1991), “A comparison of selection schemes used in genetic
algorithms”, In G. Rawlines, (Ed.), Proceedings of Foundation of Genetic Algorithms – I,
San Mateo: Morgan Kaufmann, 69 – 93.
Grevey, D.F. and Desplats, H. (1994), “Comparison of the performance obtained with a YAG
laser cutting according to the source operation mode”, Journal of Material Processing
Technology, 42, 341 – 348.
Gross, M. S. (2006), “On gas dynamic effects in the modeling of laser cutting processes”,
Applied Mathematical Modeling, 30, 307-318.
Guo, S., Jun, H., Lei, L. and Yao, Z. (2009), “Numerical analysis of supersonic gas-dynamic
characteristic in laser cutting”, Optics and Lasers in Engineering, 47, 103- 110.
Hu, J., Zhang, Z., Luo, J., Sheng, X. (2011), “Simulation and experiment on standoff distance
affecting gas flow”, Applied Mathematical Modeling, 35, 895-902.
Jain, V. K. (2005), Advanced Machining Processes, 4th ed., Allied Publishers Private Limited,
New Delhi.
Ji, L., Yan, Y., Bao, Y., Jiang, Y. (2008), “Crack-free cutting of thick and dense ceramics with
CO2 laser by single-pass process”, Optics and Lasers in Engineering, 46, 785– 790.
Kaebernick H., Bicleanu D., Brandt M. (1999), “Theoretical and experimental investigation on
the pulsed laser cutting”, Annals of the CIRP, 48, 163-166.
Karatas, C., Keles, O., Uslan, I. and Usta, Y. (2006), “Laser cutting of steel sheets: Influence of
workpiece thickness and beam waist position on kerf size and stria formation”, Journal of
Material Processing Technology, 172, 22-29.
Karazi, S. M., Issa, A. and Brabazon D. (2009), “Comparison of ANN and DOE for the
Prediction of the Laser Machined Micro-Channel Dimensions”, Optics and Lasers in
Engineering, 47, 956-964.
Kim, M. J. (2004), “Transient evaporative laser cutting with moving laser by boundary element
method”, Applied Mathematical Modeling, 28, 891-910.
Kim, M. J. (2005), “3D finite element analysis of evaporative laser cutting”, Applied
Mathematical Modeling, 29, 938-954.
Kim, M. J. (2000), “Transient evaporative laser-cutting with boundary element method”, Applied
Mathematical Modeling, 25, 25-39.
5
Kim, M. J. and Zhang J. (2001), “Finite Element Analysis of evaporative cutting with a moving
high energy pulsed laser”, Applied Mathematical Modeling, 25, 203- 220.
Koechner, W. (2002), Solid-state laser – a graduate text, physics and astronomy, Florida:
Springer.
Kuar, A. S., Doloi, B. and Bhattacharyya, B. (2005), “Experimental investigations on Nd:YAG
laser cutting of silicon nitride”, International Journal of Manufacturing and Management,
2,181-191.
Kumar, P., Barua, P.B. and Gaindher, J.L. (1996), “Quality of V-process method through the
technique”, Quality and Reliability Engineering International, 12, 421 – 427.
Lamikiz, A., Lacalle, L. N. L., Sanchez, J. A., Pozo, D., Etayo, J. M. and Lopez, J. M. (2005),
“CO2 laser cutting of advanced high strength steels (AHSS)”, Applied Surface Science,
242, 362-368.
Li, C. H., Tsai, M. J., Chen, R., Lee, C. H. and Hong, S. W. (2005a), “Cutting for QFN
packaging by diode pumping solid state laser system”, Proceeding of IEEE, 123-126.
Li, C. H. and Tsai, M. J. (2009a), “Multi-objective optimization of laser scribing for the isolation
process of solar cell wafers using grey relational analysis”, IEEE International
Symposium on Industrial Electronics, Seoul Olympic Parktel, Seoul, Korea, 1154-1159.
Li, C. H., Tsai, M. J. and Yang, C. D. (2007), “Study of optimal laser parameters for cutting
QFN packages by Taguchi’s matrix method”, Optics and Laser Technology, 39, 786-795.
Li, C. H., Tsai, M. J. and Yao, S. M. (2005b), “Cutting quality study for QFN packages by
Nd:YAG laser”, Proceeding of IEEE, International conference on Mechatronics, Taiwan
19-24.
Li, K. and Sheng, P. (1995), “Plane stress model for fracture of ceramics during laser cutting”,
International journal of Machine Tools and Manufacture, 35, 1493- 1506.
Lin, H. K., Lee, C. J., Hu, T. T., Li, C. H. and Huang, J. C. (2012), “Pulsed laser
micromachining of Mg–Cu–Gd bulk metallic glass”, Optics and Lasers in Engineering,
50, 883–886.
Majumdar, J. D. and Manna I. (2003), “Laser Processing of Materials”, Sadhana, 28, 495–562.
6
Malikov, A. G., Orishich, A. M. and Shulyatyev V. B. (2009), “Scaling laws for the laser oxygen
cutting of thick-sheet mild steel”, International journal of Machine Tools & Manufacture,
49, 1152-1154.
Mathew, J., Goswami, G. L., Ramakrishnan, N. and Naik, N. K. (1999), “Parametric studies on
pulsed Nd:YAG laser cutting of carbon fiber reinforced plastic composites”, Journal of
Materials Processing Technology, 89–90, 198–203.
Meijer, J. (2004), “Laser beam machining (LBM), state of the art and new opportunities”,
Journal of Materials Processing Technology, 149, 2 – 17.
Melhem, O. A., Yilbas, B. S. and Shuja, S. Z. (2011), “Three-dimensional consideration of jet
impingement onto the kerf in relation to laser cutting process: Effect of jet velocity on
heat transfer rates”, Optics and Lasers in Engineering, 49, 384- 395.
Meng, H., Liao, J., Zhou, Y. and Zhang, Q. (2009), “Laser micro-processing of cardiovascular
stent with fiber laser cutting system”, Optics and Laser Technology, 41, 300– 302.
Mishra, P. K. (2005), “Non-conventional Machining”, The Institution of Engineers (India)
textbook series, Narosa Publication, New Delhi.
Montgomery, D.C. (2004), Design and analysis of experiments, 5th ed., New York: John Wiley
& Sons.
Mukherjee, I. and Ray, P. K. (2006), “A review of optimization techniques in metal cutting
processes”, Computer and Industrial Engineering, 50, 15-34.
Muhammad, N, Whitehead, D, Boor, A. and Li, L. (2010), “Comparison of dry and wet fibre
laser profile cutting of thin 316L stainless steel tubes for medical device applications”,
Journal of Materials Processing Technology, 210, 2261- 67.
Nakhjavani, O. B. and Ghoreishi, M. (2006), “Multi Criteria Optimization of Laser Percussion
Drilling Process Using Artificial Neural Network Model Combined with Genetic
Algorithm”, Materials and Manufacturing Processes, 21, 11- 18.
Negnevitsky, M. (2005), Artificial intelligence: A guide to intelligent systems, 2 nd ed., AdditionWesley, Pearson Education Limited, England.
Nisar, S., Sheikh, M. A., Li, L., Pinkerton, A. J. and Safdar, S. (2010a), “The effect of laser
beam geometry on cut path deviation in diode laser chip free cutting of glass”, Journal of
Manufacturing Science and Engineering, 132, 011002-9.
7
Nisar, S., Sheikh, M. A., Li, L. and Safdar, S. (2010b), “The effect of material thickness, laser
power and cutting speed on cut path deviation in high power diode laser chip-free cutting
of glass”, Optics and Laser Technology, 42, 1022-1031.
Nisar, S., Sheikh, M. A., Li, L. and Safdar, S. (2009), “Effect of thermal stresses on chip-free
diode laser cutting of glass”, Optics and laser Technology, 41, 318-327.
Operating manual of pulsed Nd:YAG laser (SIL-200), (2003), S. I. Lasers Pvt. Ltd. Pune, India.
Panda, S., Mishra, D. and Biswal, B. B. (2011), “Determination of optimum parameters with
multi-performance characteristics in laser drilling—A grey relational analysis approach”,
International Journal of Advanced Manufacturing Technology, 54, 957–967.
Patnaik, A., Poondla, N., Bathini, U. and Srivatsan, T. S. (2011), “On the use of gas metal arc
welding for manufacturing beams of commercially pure Titanium and a Titanium alloy,
Materials and Manufacturing Processes, 26, 311- 318.
Paulo, Davim J., Barricasa, N., Conceicao, M. and Oliveira, C. (2008), “Some experimental
studies on CO2 laser cutting quality of polymeric materials”, Journal of Materials
Processing Technology, 198, 99–104.
Pfeifer, R., Herzog, D., Hustedt, M. and Barcikowski, S. (2010), “Pulsed Nd:YAG laser cutting
of Ni Ti shape memory alloys- influence of process parameters”, Journal of Materials
Processing Technology, 210,1918-1925.
Phadke, M. S. (1989), Quality Engineering using Robust Design, 1st ed., Englewood Cliffs, New
Jersey: Prentice-Hall.
Pietro, P. D. and Yao, Y. L. (1995), “A new technique to characterize and predict laser cut
striations”, International Journal of Machine Tools and Manufacture, 35, 993-1002.
Powell, J. and Kaplan, A. (2004), “Laser cutting: From first principle to the state of art”,
Proceedings of the 1 st Pacific International conference on application of lasers and
optics, 1 - 6.
Prusa, J. M., Venkitachalam, G. and Molian, P. A. (1999), “Estimetion of heat conduction losses
in laser cutting”, International Journal of machine Tools and manufacture, 39, 431-458.
Pratihar, D.K. (2008), Soft computing, Narosa Publishing House, New Delhi, 29 – 47.
8
Qin, Y., Chen, Y., Ni, X., Shen, Z., Bi, J. and Zhang, X. (2010), “Axisymmetric numerical
simulation of plastic damage in aluminium alloy induced by long pulsed laser”, Optics
and Lasers in Engineering, 48, 361-367.
Quintero, F., Pou, J., Lusquinos, F., Boutinguiza, M., Soto, R., Perez-Amor, M. (2004),
“Quantitative evaluation of the quality of the cuts performed on mullite-alumina by
Nd:YAG laser”, Optics and Lasers in Engineering, 42, 327–340.
Quintero, F., Pou, J., Fernandez, J. L., Doval, A. F., Lusquinos, F., Boutinguiza, M., Soto, R.,
Perez-Amor, M. (2006), “Optimization of an off-axis nozzle for assist gas injection in
laser fusion cutting”, Optics and Lasers in Engineering, 44, 1158–1171.
Rajaram, N., Ahmad, J. S. and Cheraghi, S. H. (2003), “CO2 laser cut quality of 4130 steel”,
International Journal of Machine Tools & Manufacture, 43, 351-358.
Rao, B. T., Kaul, R., Tiwari, P. and Nath, A. K. (2005), “Inert gas cutting of Titanium sheet”,
Optics and Lasers in Engineering, 43, 1330-1348.
Rao, R. and Yadava V. (2009), “Multi-objective optimization of Nd:YAG laser cutting of thin
superalloy sheet using grey relational analysis with entropy measurement”, Optics and
Laser Technology, 41, 922–930.
Rao, R. V. (2011), “Advanced Modeling and Optimization of Manufacturing Processes:
International Research and Development”, Springer-Verlag London Limited, Dordrecht
Heidelberg New York.
Riveiro, A., Quintero, F., Lusquinos, F., Comesana, R. and Pou, j. (2010), “Parameter
investigation of CO2 laser cutting of 2024-T3 alloy”, Journal of Materials Processing
Technology, 210, 1138-1152.
Ross, P. J. (1988), Taguchi techniques for quality engineering, 2 nd ed., New York: Mc-Graw
Hill.
Salem, H. G., Mansour, M. S., Badr, Y. and Abbas, W. A. (2008), “CW Nd:YAG laser cutting of
ultra low carbon steel thin sheets using O2 assist gas”, Journal of Manufacturing
Processing Technology, 196, 64-72.
Scintilla, L. D. and Tricarico, L. (2012), “Estimating cutting front temperature in disk and CO2
laser beam fusion cutting”, Optics and Laser Technology, 44, 1468-1479.
9
Shanjin, L. and Yang, W. (2006), “An investigation of pulsed laser cutting of titanium alloy
sheet”, Optics and Lasers in Engineering, 44, 1067-1077.
Sharma, P.C. (1997), A text book of production engineering, S. Chand & Company Limited,
New Delhi, 433- 438.
Sharma, A. and Yadava V. (2012), “Modeling and optimization of cut quality during pulsed
Nd:YAG laser cutting of thin Al-alloy sheet for straight profile”, Optics & Laser
Technology, 44, 159-168.
Sharma, A., Yadava, V. and Rao, R. (2010), “Optimization of kerf quality characteristics during
Nd:YAG laser cutting of nickel based superalloy sheet for straight and curved cut
profiles”, Optics and Lasers in Engineering, 48, 915-925.
Sheng, P. S. and Joshi, V. S. (1995), “Analysis of heat affected zone formation for laser cutting
of stainless steel”, Journal of Materials Processing Technology, 53, 879-892.
Sivarao, Brevern, P, Tayeb, N.S.M. and Vengkatesh, V.C. (2009a), “Modeling, testing and
experimental validation of laser machining micro quality response by artificial neural
network”, International Journal of Engineering and Technology, 09, 161–166.
Sivarao, Breavern, P., Ei-Tayeb, N. S. M. and Vengkatesh, V. C. (2009b), “GUI Based ANFIS
Modeling: Back Propagation Optimization Method for CO2 Laser Machining”,
International Journal of Information Technology Application, 2, 191-198.
Sivarao, Anand, T. J. S., Ammar and Shukor (2010), “RSM based modeling for surface
roughness prediction in laser machining”, International Journal of Engineering and
Technology, 10, 32–39.
Spears, W.M. and De Jong, K.A. (1991), “On the virtues of parametrized uniform crossover,” In
Proceedings of the Fourth International Conference on Genetic Algorithms, Morgan
Kaufmann, 230 – 236.
Steen, W. M. (1991), Laser material processing, Springer, New York.
Stournaras, A., Stavropoulos, P., Salonitis, K. and Chryssolouris, G. (2009a), “An investigation
of quality in CO2 laser cutting of aluminum”, CIRP Journal of Manufacturing Science
and Technology, 2, 61–69.
10
Stournaras, A., Salonitis, K., Stavropoulos, P. and Chryssolouris, G. (2009b), “Theoretical and
experimental investigation of pulsed laser grooving process”, International Journal of
Advanced Manufacturing Technology, 44,114–124.
Sulaiman, F. A., Yilbas, B. S. and Ahsan, M. (2006), “CO2 laser cutting of carban /carban multilamelled plain weave structure”, Journal of Materials Processing Technology, 173, 345351.
Syn, C. Z., Mokhtar, M., Feng, C. J. and Manurung, Y.H.P. (2011), “Approach to prediction of
laser cutting quality by employing fuzzy expert system”, Expert System with
Applications, 38, 7558–68.
Syswerda, G. (1989), “Uniform crossover in genetic algorithms”, Proc. of the Foundation of
Genetic Algorithms, Morgan Kaufmann Publishing, 2 – 9.
Tsai, M.-J., Li, C.-H. and Chen, C.-C. (2008), “Optimal laser-cutting parameters for QFN
packages by utilizing artificial neural networks and genetic algorithm”, Journal of
Materials Processing Technology, 208, 270-283.
Tani, G., Tomesani, L., Campana, G. and Fortunato, A. (2004), “Quality factors assessed by
analytical modeling in laser cutting”, Thin Solid Films, 453-454, 486-491.
Thawari, G., Sarin, S.J.K., Sundararajan, G. and Joshi, S.V. (2005), “Influence of process
parameters during pulsed Nd:YAG laser cutting of nickel-base superalloys”, Journal of
Materials Processing Technology, 170, 229-39.
Ting, C.-K. (2005), On the mean convergence time of multi-parent genetic algorithms without
selection, Advances in Artificial Life, 3630, 403–412.
Tsenga, A. A., Chen, Y. T., Chao, C. L., Mad, K. J. and Chen, T. P. (2007), “Recent
developments on micro-ablation of glass materials using excimer lasers”, Optics and
Lasers in Engineering, 45, 975–992.
Wang, X.C., Zheng, H.Y., Chu, P.L., Tan, J.L., The, K.M., Liu, T., Bryden, C.Y.A. and Tay,
G.H. (2010), “High quality femto second laser cutting of alumina substrates”, Optics and
Lasers in Engineering, 48, 657 – 663.
Wee, L. M. and Li, L. (2005), “An analytical for striation formation in laser cutting”, Applied
Surface Science, 247, 277-284.
Whitley, D. (1994), “A genetic algorithm tutorial", Statistics and Computing, 4 (2), 65–85.
11
Xie, Y.-M., Yu, H.-P., Chen, J. and Ruan, X.-Y. (2007), “Application of grey relational analysis
in sheet metal forming for multi-response quality characteristics”, Journal of Zhejiang
University Science A, 8 (5), 805 -811.
Xie, X. Z., Li, L. J., Wei, X. and Hu, W. (2008), “Distribution of the intensity absorbed by
evaporative front in laser cutting nonmetallic material”, Optics and Lasers in
Engineering, 46, 604-613.
Yang, L. J., Wang, Y., Tian, Z. C. and Cai, N. (2010), “YAG laser cutting soda-lime glass with
controlled fracture and volumetric heat absorption”, International Journal of Machine
Tools and Manufacture, 50, 849-859.
Yan, Y., Li, L., Sezer, K., Whitehead, D., Ji, L., Bao, Y. and Jiang, Y. (2012), “Nano-second
pulsed DPSS Nd:YAG laser striation-free cutting of alumina sheet”, International
Journal of machine Tools and manufacture, 53, 15-26.
Yi, P., Liu, Y., Shi, Y., Jang, H. and Lun, G. (2011), “Effects analysis of ambient conditions on
process of laser surface melting”, Optics and Laser Technology, 43, 1411- 1419.
Yilbas, B. S., Khan, S., Raza, K., Keles, O., Ubeyli, M., Demir, T. and Karakas, M. S. (2010a),
“Laser cutting of 7050 Al alloy reinforced with Al2O3 and B4C composites”,
International Journal of Advanced Manufacturing Technology, 50, 185 – 193.
Yilbas, B. S., Arif, A. F. M. and Abdul-Aleem B. J. (2010b), “Laser cutting of sharp edge:
Thermal stress analysis”, Optics and Lasers in Engineering, 48, 10-19.
Yilbas, Y. S., Ahktar, S. S. and Chatwin, C. (2011), “Laser hole cutting into bronze: Thermal
stress analysis”, Optics and Laser Technology, 43, 1119-1127.
Yilbas, B. S., Hyder, S. J. and Sunar, M. (1998), “The Taguchi method for determining CO2
laser cut quality”, Journal of Laser Applications, 10, 71–77.
Yilbas, B. S. (2008), “Laser cutting of thick sheet metals: Effects of cutting parameters on kerf
size variations”, Journal of Materials Processing Technology, 201, 285– 290.
Yilbas, B. S. (2004), “Laser cutting quality assessment and thermal efficiency analysis”, Journal
of Materials Processing Technology, 155–156, 2106–2115.
Yilbas, B. S., Nickel, J. and Coban, A. (1997), “Effect of Oxygen in laser cutting process”,
Materials and Manufacturing Processes, 12, 1163-1175.
12
Yilbas, B. S. and Akhtar, S. S. (2012), “Laser cutting of Kevlar laminates and thermal stress
formed at cutting sections”, Optics and Lasers in Engineering, 50, 204-209.
Yu, L. M. (1997), “Three dimensional finite element modeling”, Journal of Materials
Processing Technology, 63, 637-639.
Yusof, N., Ismail, S. R., Mamat, A. and Yazid, A. A. (2008), “Selected Malaysian Wood CO2Laser Cutting Parameters and Cut Quality”, American Journal of Applied Sciences, 5,
990-996.
Zhang, J.H., Lee, T.C., Ai, X. and Lau, W.S. (1996), “Investigation of the surface integrity of
laser-cut ceramic”, Journal of Materials Processing Technology, 57, 304 – 10.
Zhang, G. F., Zhang, B., Deng, Z. H. and Chen, J. F. (2007), “An Experimental Study on Laser
Cutting Mechanisms of Polycrystalline Diamond Compacts”, Annals of the CIRP, 56,
201-204.
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