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Original Articles

Selection of best product end-of-life scenario using digraph and matrix methods

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Pages 455-472 | Received 03 Feb 2008, Accepted 13 Aug 2008, Published online: 26 Sep 2008

References

  • Adda , S. 2002 . Environmental/social cost/value assessment methodology , WP4 : D4.1 (version 2)
  • Alting , L. Designing for a lifetime . May/June . Manufacturing Breakthrough , pp. 29 – 33 .
  • Alting , L. and Zhang , H. 1991 . Trends in the development of the future integrated manufacturing systems . Manufacturing Review , 4 ( 2 ) : 1 – 9 .
  • Arena , U. , Mastellone , M. L. and Perugini , F. 2003 . The environmental performance of alternative solid waste management options: a life cycle assessment study . Chemical Engineering Journal , 96 ( 1–3 ) : 207 – 222 .
  • Azapagic , A. 1999 . Life cycle assessment and its application to process selection design and optimization . Chemical Engineering Journal , 73 ( 1 ) : 1 – 21 .
  • Bufardi , A. 2003 . Multiple criteria decision aid for selecting the best product end-of-life scenario . International Journal of Computer Integrated Manufacturing , 16 ( 7–8 ) : 526 – 534 .
  • Bufardi , A. 2004 . Multi-criteria decision aid approach for product end-of-life alternative selection . International Journal of Production Research , 42 ( 16 ) : 3139 – 3157 .
  • Byggeth , S. and Hochschorner , E. 2006 . Handling trade-offs in ecodesign tools for sustainable product development and procurement . Journal of Cleaner Production , 14 ( 15–16 ) : 1420 – 1430 .
  • Chan , J. W.K. and Tong , T. K.L. 2007 . Multi-criteria material selections and end-of-life product strategy: grey relational analysis approach . Materials & Design , 28 ( 5 ) : 1539 – 1546 .
  • Chen , S. J. and Hwang , C. L. 1992 . Fuzzy multiple factor decision making – methods and applications , Berlin : Springer . Lecture Notes in Economics and Mathematical Systems
  • Chen , W. K. 1997 . Digraph theory and its engineering applications , Chicago : University of Illinois .
  • Das , S. K. , Pradeep , Y. and Narendra , R. 2000 . An approach for estimating the end-of-life product disassembly effort and cost . International Journal of Production Research , 38 ( 3 ) : 657 – 673 .
  • Desai , A. and Mittal , A. 2003 . Evaluation of disassemblability to enable design for disassembly in mass production . International Journal of Industrial Ergonomics , 32 ( 4 ) : 265 – 281 .
  • Ferrão , P. and Amaral , J. 2006 . Design for recycling in the automobile industry: new approaches and new tools . Journal of Engineering Design , 17 ( 5 ) : 447 – 462 .
  • Forbert , H. and Marx , D. 2003 . Calculation of the permanent of a sparse positive matrix . Computer Physics Communications , 150 ( 3 ) : 267 – 273 .
  • Gehin , A. , Zwolinski , P. and Brissaud , D. 2008 . A tool to implement sustainable end-of-life strategies in the product development phase . Journal of Cleaner Production , 16 ( 5 ) : 566 – 576 .
  • Giudice , F. , Rosa , G. L. and Risitano , A. 2006 . Product design for the environment: life cycle approach , Boca Raton , FL : CRC Press .
  • González , B. and Díaz , A. 2005 . A bill of materials-based approach for end-of-life decision making in design for the environment . International Journal of Production Research , 43 ( 10 ) : 2071 – 2099 .
  • Harmsen , G. J. 2004 . Industrial best practices of conceptual process design . Chemical Engineering and Processing , 43 ( 5 ) : 671 – 675 .
  • Jense , J. B. and Gutin , G. 2000 . Digraph theory, algorithms, and applications , London : Springer .
  • Jun , H. B. 2007 . A multi-objective evolutionary algorithm for EOL product recovery optimization: turbocharger case study . International Journal of Production Research , 45 ( 18–19 ) : 4573 – 4594 .
  • Jurkat , W. B. and Ryser , H. J. 1966 . Matrix factorization of determinants and permanents’ . Journal of Algebra , 3 ( 1 ) : 1 – 27 .
  • Keoleian , G. A. and Kar , K. 2003 . Elucidating complex design and management tradeoffs through life cycle design: air intake manifold demonstration project . Journal of Cleaner Production , 11 ( 1 ) : 61 – 77 .
  • Khan , F. I. , Sadiq , R. and Husain , T. 2002 . GreenPro-I: a risk-based life cycle assessment decision-making methodology for process plant design . Environmental Modelling and Software , 17 ( 8 ) : 669 – 692 .
  • Kongar , E. and Gupta , S. M. 2006 . Disassembly sequencing using genetic algorithm . International Journal of Advanced Manufacturing Technology , 30 ( 5–6 ) : 497 – 506 .
  • Lambert , A. J.D. 2002 . Determining optimum disassembly sequences in electronic equipment . Computers and Industrial Engineering , 43 ( 3 ) : 553 – 575 .
  • Leibrecht , S. , Vam , T. N.P. and Anderl , R. 2004 . Techniques for the integration of expert knowledge into the development of environmentally sound products . Journal of Engineering Design , 15 ( 4 ) : 353 – 366 .
  • Li , J. , Zhang , H. C. , Gonzalez , M. A. and Yu , S. 2008 . A multi-objective fuzzy graph approach for modular formulation considering end-of-life issues . International Journal of Production Research , 46 ( 14 ) : 4011 – 4033 .
  • Liang , H. , Shi , L. , Bai , F. and Liu , X. 2007 . Random path method with pivoting for computing permanents of matrices . Applied Mathematics and Computation , 185 : 59 – 71 .
  • Marttunen , M. and Hamalainen , R. P. 1997 . Decision analysis interviews in environmental impact assessment . European Journal of Operational Research , 87 ( 3 ) : 551 – 563 .
  • McGovern , S. M. and Gupta , S. M. 2007 . A balancing method and genetic algorithm for disassembly line balancing . European Journal of Operational Research , 179 ( 3 ) : 692 – 708 .
  • Nagel , C. , Nilsson , J. and Boks , C. European end-of-life systems for electrical and electronic equipment . Proceedings of the first international symposium on environmentally conscious design and inverse manufacturing . pp. 197 – 202 . Tokyo : IEEE Computer Society .
  • Nijenhuis , A. and Wilf , H. 1975 . Combinatorial algorithms , New York : Academic Press .
  • Rahimifard , A. , Newman , S. T. and Rahimifard , S. 2004 . A web based information system to support end-of-life product recovery . Journal of Engineering Manufacture , 218 ( 9 ) : 1047 – 1057 .
  • Rao , R. V. and Gandhi , O. P. 2001 . Digraph and matrix method for selection, identification and comparison of metal cutting fluids . Journal of Engineering Tribology , 215 ( 1 ) : 25 – 33 .
  • Rao , R. V. and Gandhi , O. P. 2002 . Failure cause analysis of machine tools using digraph and matrix methods . International Journal of Machine Tools and Manufacture , 42 ( 4 ) : 521 – 528 .
  • Rao , R. V. and Padmanabhan , K. K. 2006 . Selection, identification and comparison of industrial robots using digraph and matrix methods . Robotics and Computer-Integrated Manufacturing , 22 ( 4 ) : 373 – 383 .
  • Resta , G. and Sburlati , G. 2006 . Computing permanents via determinants for some classes of sparse matrices . Linear Algebra and its Applications , 418 ( 1 ) : 33 – 43 .
  • Rose , C. M. 2000 . Design for environment: a method for formulating product end-of-life strategies , Stanford University . Thesis (PhD)
  • Sarkis , J. and Weinrach , J. 2001 . Using data envelopment analysis to evaluate environmentally conscious waste treatment technology . Journal of Cleaner Production , 9 ( 5 ) : 417 – 427 .
  • Sharma , M. , Ammons , J. C. and Hartman , J. C. 2007 . Asset management with reverse product flows and environmental considerations . Computers & Operations Research , 34 ( 2 ) : 464 – 486 .
  • Staikos , T. and Rahimifard , S. 2007 . A decision making model for waste management in footwear industry . International Journal of Production Research , 45 ( 18–19 ) : 4403 – 4422 .
  • Yue , Y. 2000 . A decision-making model for materials management of end-of-life electronic products . Journal of Manufacturing Systems , 19 ( 2 ) : 94 – 107 .
  • Zadeh , L. A. 1975 . The concept of a linguistic variable and its application to approximate reasoning—I . Information Science , 8 ( 3 ) : 199 – 249 .
  • Zussman , E. , Kriwet , A. and Seliger , G. 1994 . Disassembly-oriented assessment methodology to support design for recycling . CIRP Annals—Manufacturing Technology , 43 ( 1 ) : 9 – 14 .

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