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A Holistic Approach to Polymeric Material Selection for Laser Beam Machining using Methods of DEA and TOPSIS Cover

A Holistic Approach to Polymeric Material Selection for Laser Beam Machining using Methods of DEA and TOPSIS

Open Access
|Dec 2020

References

  1. [1] Atanasov, P. A., & Baeva, M. G., CW CO2 laser cutting of plastics. In XI International Symposium on Gas Flow and Chemical Lasers and High-Power Laser Conference (Vol. 3092, pp. 772-776). International Society for Optics and Photonics, 1997, April.10.1117/12.270185
  2. [2] Belenson, S. M., & Kapur, K. C., An algorithm for solving multicriterion linear programming problems with examples. Journal of the Operational Research Society, 24(1), 65-77, 1973.10.1057/jors.1973.9
  3. [3] Benitez, J. M., Martín, J. C., & Román, C., Using fuzzy number for measuring quality of service in the hotel industry. Tourism management, 28(2), 544-555, 2007.10.1016/j.tourman.2006.04.018
  4. [4] Bhattacharya, A., Sarkar, B. and Mukherjee, S.K., Integrating AHP with QFD for robot selection under requirement perspective. International journal of production research, 43(17), pp.3671-3685, 2005.10.1080/00207540500137217
  5. [5] Caiazzo, F., Curcio, F., Daurelio, G., & Minutolo, F. M. C., Laser cutting of different polymeric plastics (PE, PP and PC) by a CO2 laser beam. Journal of Materials Processing Technology, 159(3), 279-285, 2005.10.1016/j.jmatprotec.2004.02.019
  6. [6] Chakraborty, S. and Dey, S., Design of an analytic-hierarchy-process-based expert system for non-traditional machining process selection. The International Journal of Advanced Manufacturing Technology, 31(5-6), pp.490-500, 2006.10.1007/s00170-005-0216-5
  7. [7] Chakladar, N. D., & Chakraborty, S., A combined TOPSIS-AHP-method-based approach for non-traditional machining processes selection. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 222(12), 1613-1623, 2008.10.1243/09544054JEM1238
  8. [8] Charnes, A., Cooper, W. W., Lewin, A. Y., & Seiford, L. M. (Eds.)., Data envelopment analysis: Theory, methodology, and applications. Springer Science & Business Media, 2013.
  9. [9] Charnes, A., Cooper, W. W., & Rhodes, E., Measuring the efficiency of decision making units. European journal of operational research, 2(6), 429-444, 1978.10.1016/0377-2217(78)90138-8
  10. [10] Chaudhuri A., & Bhattacharyya M., A combined QFD and integer programming framework to determine attribute levels for conjoint study, International Journal of Production Research, 47(23), 6633–6649, 2009.10.1080/00207540802350757
  11. [11] Chen, M. F., Ho, Y. S., Hsiao, W. T., Wu, T. H., Tseng, S. F., & Huang, K. C., Optimized laser cutting on light guide plates using grey relational analysis. Optics and Lasers in Engineering, 49(2), 222-228, 2011.10.1016/j.optlaseng.2010.09.008
  12. [12] Choudhury, I. A., Chong, W. C., & Vahid, G., Hole qualities in laser trepanning of polymeric materials. Optics and lasers in engineering, 50(9), 1297-1305, 2012.10.1016/j.optlaseng.2012.02.017
  13. [13] Choudhury, I. A., & Shirley, S., Laser cutting of polymeric materials: an experimental investigation. Optics & Laser Technology, 42(3), 503-508, 2010.10.1016/j.optlastec.2009.09.006
  14. [14] Cook, W. D., & Seiford, L. M., Data envelopment analysis (DEA)–Thirty years on. European journal of operational research, 192(1), 1-17, 2009.10.1016/j.ejor.2008.01.032
  15. [15] Davim, J. P., Oliveira, C., Barricas, N., & Conceição, M., Evaluation of cutting quality of PMMA using CO2 lasers. The International Journal of Advanced Manufacturing Technology, 35(9-10), 875-879, 2008.10.1007/s00170-006-0766-1
  16. [16] Farrell, M. J., The measurement of productive efficiency. Journal of the Royal Statistical Society: Series A (General), 120(3), 253-281, 1957.10.2307/2343100
  17. [17] Goh, H. H., Kok, B. C., Yeo, H. T., Lee, S. W., & Zin, A. M., Combination of TOPSIS and AHP in load shedding scheme for large pulp mill electrical system. International Journal of Electrical Power & Energy Systems, 47, 198-204, 2013.10.1016/j.ijepes.2012.10.059
  18. [18] Hwang, C. L., & Yoon, K., Methods for multiple attribute decision making. In Multiple attribute decision making (pp. 58-191). Springer, Berlin, Heidelberg, 1981.10.1007/978-3-642-48318-9_3
  19. [19] Ilio, A. D., Tagliaferri, V., & Veniali, F., Machining parameters and cut quality in laser cutting of aramid fibre reinforced plastics. Material and Manufacturing Process, 5(4), 591-608, 1990.10.1080/10426919008953279
  20. [20] Jovanovic, J., Shah, H., Vujovic, A., & Krivokapic, Z., Application of MCDM Methods in Evaluation of Environmental Impacts. International Journal for Quality Research, 8(4), 2014.
  21. [21] Kabir, G., Third Party Logistic Service Provider Selection Using Fuzzy AHP and TOPSIS method. International Journal for Quality Research, 6(1), 2012.10.4018/ijpmat.2012010104
  22. [22] Kabir, G., & Hasin, M., Comparative Analysis of TOPSIS and Fuzzy TOPSIS for the Evaluation of Travel Website Service Quality. International Journal for Quality Research, 6(3), 2012.
  23. [23] Kurt, M., Kaynak, Y., Bagci, E., Demirer, H., & Kurt, M., Dimensional analyses and surface quality of the laser cutting process for engineering plastics. The International Journal of Advanced Manufacturing Technology, 41(3-4), 259-267, 2009.10.1007/s00170-008-1468-7
  24. [24] Kumar, M., & Das, P., Fuzzy-Distance Function Approach for Multiple Criteria Decision Making. International Journal for quality research, 6(2), 2012.
  25. [25] Lee, C., & Ji, Y. B., Data envelopment analysis in Stata. Stata Conference DC, 2009.
  26. [26] Lim, S., Oh, K. W., & Zhu, J., Use of DEA cross-efficiency evaluation in portfolio selection: An application to Korean stock market. European Journal of Operational Research, 236(1), 361-368, 2014.10.1016/j.ejor.2013.12.002
  27. [27] Mayyas, A., Shen, Q., Mayyas, A., Shan, D., Qattawi, A. and Omar, M., Using quality function deployment and analytical hierarchy process for material selection of body-in-white. Materials & Design, 32(5), pp.2771-2782, 2011.10.1016/j.matdes.2011.01.001
  28. [28] Powel, S. I., & Cutting, C. L., LASER 5: Laser Materials Processing for Industry. IITT International Gournay Sur Marne, 54-71, 1989.
  29. [29] Roy, M. K., Ray, A., & Pradhan, B. B., Non-Traditional Machining Process Selection-An Integrated Approach. International Journal for Quality Research, 11(1), 2017.
  30. [30] Roy, M. K., Ray, A., & Pradhan, B. B., Non-traditional machining process selection using integrated fuzzy AHP and QFD techniques: a customer perspective. Production & Manufacturing Research, 2(1), 530-549, 2014.10.1080/21693277.2014.938276
  31. [31] Saaty TL, The Analytic Hierarchy Process: Planning, Priority Setting, Resource Allocation, RWS Publication, Pittsburgh, PA, 1988.
  32. [32] Sarkis, J., A comparative analysis of DEA as a discrete alternative multiple criteria decision tool. European journal of operational research, 123(3), 543-557, 2000.10.1016/S0377-2217(99)00099-5
  33. [33] Sharma, P., Thakar, G., & Gupta, R. C., Evaluation of Assembly Line Balancing Methods Using an Analytical Hierarchy Process (AHP) And Technique For Order Preferences By Similarity To Ideal Solution (TOPSIS) Based Approach. International Journal for Quality Research, 7(4), 2013.
  34. [34] Shih, H. S., Shyur, H. J., & Lee, E. S., An extension of TOPSIS for group decision making. Mathematical and computer modelling, 45(7-8), 801-813, 2007.10.1016/j.mcm.2006.03.023
  35. [35] Singla, A., Ahuja, I. S., & Sethi, A. S., Comparative Analysis of Technology Push Strategies Influencing Sustainable Development in Manufacturing Industries Using TOPSIS and VIKOR Technique. International Journal for Quality Research, 12(1), 2018.
  36. [36] Soota, T., Integrated methodology for product planning using multi criteria analysis. International Journal for Quality Research, 10(3), 547-558, 2016.
  37. [37] Tadić, D., Arsovski, S., Stefanovic, M., & Aleksic, A., A fuzzy AHP and TOPSIS for ELV dismantling selection. International Journal for quality research, 4(2), 2010.
  38. [38] Zahar Djordjevic, M., Puskaric, H., & Djordjevic, A., Evaluation and Ranking Of Artificial Hip Prosthesis Suppliers By Using A Fuzzy TOPSIS Methodology. International Journal for Quality Research, 8(2), 2014.
  39. [39] Zelany, M., A concept of compromise solutions and the method of the displaced ideal. Computers & Operations Research, 1(3-4), 479-496, 1974.10.1016/0305-0548(74)90064-1
  40. [40] Zhou, B. H., & Mahdavian, S. M., Experimental and theoretical analyses of cutting nonmetallic materials by low power CO2-laser. Journal of materials processing technology, 146(2), 188-192, 2004.10.1016/j.jmatprotec.2003.10.017
DOI: https://doi.org/10.2478/fcds-2020-0017 | Journal eISSN: 2300-3405 | Journal ISSN: 0867-6356
Language: English
Page range: 339 - 357
Submitted on: Apr 24, 2020
Accepted on: Oct 5, 2020
Published on: Dec 16, 2020
Published by: Poznan University of Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2020 Manish Kumar Roy, Ishwer Shivakoti, Ruben Phipon, Ashis Sharma, published by Poznan University of Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.