Strategic evolution of eco-products: a product life cycle planning methodology
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Beiter K, Ishii K (1999) Incorporating the voice of the customer in preliminary component design. Proceedings of the ASME 1999 Design Engineering Technical Conferences, ASME, DETC99/DTM-8908
Biswas G, Haftbaradaran H, Kawamura K, Hunkeler D, Lantz J, Shahinpoor M, Quinn T (1997) An environmentally conscious decision support system based on a streamlined LCA and a cost residual risk evaluation: fluorescent light bulb case study. Int J Environ Conscious Des Manuf 6(3):9–24
Brezet H, Van Hemel C (1997) Eco-design: a promising approach to sustainable production and consumption. UN Environment Programme (UNEP)
Brink S, Diehl J, A Stevels (1998) ECO-QUEST, an ecodesign self audit tool for suppliers of the Electronics Industry. Proceedings of the 1998 IEEE International Symposium on Electronics and the Environment, IEEE, pp 129–132
Capra F, Pauli G (1995) Steering business toward sustainability. United Nations University Press, Tokyo
Clausing D (1993) Total quality development. ASME Press, New York
Coulter S, Bras B (1997) Reducing environmental impact through systematic product evolution. Int J Environ Conscious Des Manuf 6(2):1–10
Coulter S, Bras B (1999) Decision support for systematic product evolution. Proceedings of the 1999 ASME Design Engineering Technical Conferences, ASME, DTEC99/DTM-8747
Dannheim F, Grüner C, Birkhofer H (1998) Human factors in design for environment. Proceedings of the 5th International Seminar on Life Cycle Engineering, CIRP, pp 13–24
Frei M, Züst R (1997) The eco-effective product design—the systematic inclusion of environmental aspects in defining requirements. In: Krause F-L, Seliger G (eds) Life cycle networks. Chapman& Hall, London, pp 163–173
Goodkoop M, Spriensma R (2000) The Eco-Indicator 99, a damage-oriented method for life cycle impact assessment. Methodology Report
Graedel T, Allenby B (1995) Industrial ecology. Prentice Hall, Englewood Cliffs
Hoshino T, Yura K, Hitomi K (1995) Optimization analysis for recycle-oriented manufacturing system. Int J Prod Res 33:2069–2078
ISO 14040 (1997) Environmental management—life cycle assessment—principles and framework. International Organization for Standardization
Itsubo N, Inaba A (2001) Development of endpoint-type methodology of LCIA in Japan. Proceedings of the 2nd International Symposium on Environmentally Conscious Design and Inverse Manufacturing, IEEE, pp 826–831
Johnson E, Gay A (1995) A practical customer-oriented DFE methodology. Proceedings of the 1995 IEEE International Symposium on Electronics and the Environment, IEEE, pp 47–50
Jones E, Stanton N, Harrison D (2001) Applying structured methods to eco-innovation. An evaluation of the product idea tree diagram. Design Stud 22:519–542
Kimura F, Suzuki H (1996) Product life cycle modelling for inverse manufacturing. In: Krause F-L, Jansen H (eds) Life cycle modelling for innovative products and processes. Chapman& Hall, London, pp 80–89
Kobayashi H (2000) A method of life cycle planning for product eco-improvement. Int J Environ Conscious Des Manuf 8(4):27–37
Kobayashi H (2001) Life cycle planning for strategic evolution of eco-products. Proceedings of the 13th International Conferences on Engineering Design, IMechE, pp 757–763
Kobayashi H, Haruki K (2003) A product life cycle planning method for environmentally conscious design. J Jpn Soc Precis Eng 69(2):193–199 (in Japanese)
Kobayashi H, Hongu A, Haruki K, Doi S (1999) A framework of eco-design. Proceedings of the First International Symposium on Environmentally Conscious Design and Inverse Manufacturing, IEEE, pp 680–684
Kobayashi Y, Haruki K, Oguchi M, Kagami H, Suzuki H (2002) A new LCI database developed for LCA support tool “Easy-LCA for Web‘’. Proceedings of the 5th International Conferences on EcoBalance, pp 345–348
Lee B, Ishii K (1997) Demanufacturing complexity metrics in design for recyclability. Proceedings of the 1997 IEEE International Symposium on Electronics and the Environment, IEEE, pp 19–24
Leon-Rovira N, Aguayo H (1998) A new model of the conceptual design process using QFD/FA/TRIZ. Proceedings of the Tenth Annual Quality Function Deployment Symposium, pp 437–443
Lindahl M (1999) E-FMEA—a new promising tool for efficient design for environment. Proceedings of the 1st International Symposium on Environmentally Conscious Design and Inverse Manufacturing, IEEE, pp 734–739
Martin M, Ishii K (2000) Design for variety: a methodology for developing product platform architectures. Proceedings of the 2000 ASME Design Engineering Technical Conferences, ASME, DTEC2000/DFM-14021
Masui K, Sakao T, Aizawa S, Inaba A (2000) Design for environment in early stages of product development using quality function deployment. Proceedings of the Electronics Goes Green 2000+, VDE Verlag, pp 197–202
Murayama T, Hatakeyama S, Narihiko N, Oba F (2001) Life cycle profitability analysis and LCA by simulating material and money flows. Proceedings of the 2001 IEEE International Symposium on Electronics and the Environment, IEEE, pp 139–144
Nakano R, Noguchi K, Kyoya Y (2001) The design support tool to set up the target specifications based on the customer requirements. Proceedings of the 11th Design Engineering and System Division Conference, JSME, pp 163–166 (in Japanese)
Oberender C, Weger O, Birkhofer H, Sauer J (2001) Ecological design for the usage phase: an interdisciplinary approach to design for environment. Proceedings of the Second International Symposium on Environmentally Conscious Design and Inverse Manufacturing, IEEE, pp 71–76
Otto K, Wood K (1998) Product evolution: a reverse engineering and redesign methodology. Res Eng Des 10(4):226–243
Pahl G, Beitz W (1988) Engineering design. The Design Council, London, pp 118–139
Rombouts J (1998) LEADS-II. A knowledge-based system for ranking DfE-options. Proceedings of the 1998 IEEE International Symposium on Electronics and the Environment, IEEE, pp 287–291
Rose C, Stevels A, Ishii K (2000) A new approach to end-of-life advisor (ELDA). Proceedings of the 2000 IEEE International Symposium on Electronics and the Environment, IEEE, pp 99–104
Satty T (1980) The analytic hierarchy process. McGraw-Hill, New York
Umeda Y, Life Cycle Design Committee of Inverse Manufacturing Forum (2001) Toward a life cycle design guideline for inverse manufacturing. Proceedings of the Second International Symposium on Environmentally Conscious Design and Inverse Manufacturing, IEEE, pp 143–148
Umeda Y, Tomiyama T (2000) Life cycle design for inverse manufacturing. Proceedings of 2000 Japan–USA Symposium on Flexible Automation, ASME, No. I464CD
Umeda Y, Nonomura A, Tomiyama T (2000) Study on life-cycle design for the post mass production paradigm. Artif Intell Eng Des Anal Manuf 14(2):149–161
Wenzel H, Hauschild M, Alting L (1997) Environmental assessment of products, vol 1. Chapman& Hall, London
Williams R, Deshmukh A, Wang B (1996) Using analytical hierarchy process to select environmentally friendly produce shipping containers. Int J Environ Conscious Des Manuf 5(2):47–52
Zhang Y, Wang H, Zhang C (1998a) Life cycle design with Green QFD-II. Proceedings of the 1998 ASME Design Engineering Technical Conferences, ASME: DTEC98/DFM-5719
Zhang Y, Wang B, Zhang C (1998b) Product concept evaluation using GQFD-II and AHP. Int J Environ Conscious Des Manuf 7(3):1–15