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Functionality assessment of ecodesign support system

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In the paper the issue of ecological-oriented product design is addressed. The definitions that concern product design are listed and the factors that make them important for the manufacturers are indicated. The method of ecological-oriented product assessment during the design process (implemented in the 3D CAD system), drawn-up by authors, is used for the analysis. The assessment of real household appliance using the method is presented and the conclusions from the evaluation are drawn.
Słowa kluczowe
Twórcy
autor
  • Poznań University of Technology, Faculty of Mechanical Engineering and Management, Poland
autor
  • Poznań University of Technology, Faculty of Mechanical Engineering and Management, Poland
autor
  • Poznań University of Technology, Faculty of Mechanical Engineering and Management, Poland
  • Poznań University of Technology, Faculty of Mechanical Engineering and Management, Poland
autor
  • Poznań University of Technology, Faculty of Mechanical Engineering and Management, Poland
Bibliografia
  • [1] Environmental management. Considering environmental aspects in the designer and product development, PKN-ISO/TR 14062.
  • [2] http://www.centrum.pemp.pl/dokumenty/eco/.
  • [3] Directive 2005/32/Ec of the European Parliament and of the Council of 6 July 2005.
  • [4] Janicka M., Hewelke P., Ecodesign as an important tool of environment protection as illustrated by electric and electronic equipment, Inter-faculty Environment Protection Studies at the Warsaw University of Life Sciences, p. 29.
  • [5] Frediel K., The process of implementing ecodesign in industry, research sources of Materials Recycling Center of Excellence (MRC), Wrocław University of Technology, http://www.ecodesignarc.info, access January 2015.
  • [6] Pigossoa D.C.A., Rozenfelda H., McAlooneb T.C., Ecodesign maturity model: a management framework to support ecodesign implementation into manufacturing companies, Journal of Cleaner Production, 15, 160-173, 2013.
  • [7] Boks C., The soft side of ecodesign, Journal of Cleaner Production, 14, 1346-1356, 2006.
  • [8] Brezet H., Rocha C., Towards a model for productoriented environmental management systems, Sustainable Solutions: Developing Products and Services for the Future, Charter M., Tischner U. [Eds.], Sheffield, Greenleaf Publishing, 2001.
  • [9] Baumann H., Boons F., Bragd A., Mapping the green product development field: engineering, policy and business perspectives, Journal of Cleaner Production, 10, 409-42, 2002.
  • [10] Dewulf W., Duflou J.R., Integrating eco-design into business environments: a multi-level approach, Product Engineering: Eco-design, Technologies and Green Energy Sources, Talaba D., Roche T. [Eds.], Springer, p. 539, 2004.
  • [11] Pascual O., Stevels A., Ecodesign in industry is not an environmental issue, Proceedings of Electronic Goes Green, Berlin, pp. 855-859, 2004.
  • [12] Luttropp C., Lagerstedt J., EcoDesign and the ten golden rules: generic advice for merging environmental aspects into product development, Journal of Cleaner Production, 14, 1396-1408, 2006.
  • [13] Boks C., Stevels A., Essential perspectives for design for environment, experiences from the electronics industry, International Journal of Production Research, 45, 4021-4039, 2007.
  • [14] Adamczyk W., The ecology of products, Polish Economic Publishing House, Warsaw, 2004.
  • [15] Dostatni E., Karwasz A., Diakun J., Method for estimating recycling costs of household appliances at product design stage, Innovation in Management and Production Engineering, Knosala R. [Ed.], Publishing House of the Polish Association for Production Management, Opole, pp. 298-306, 2013.
  • [16] Dostatni E., Diakun J., Karwasz A., Grajewski D., Wichniarek R., Ecodesign of products in CAD 3D environment with the use of agent technology, Publishing House of the Poznań University of Technology, Poznań, 2014.
  • [17] Yarwood J., Eagan P., Design for Environment - a Competitive Edge for the Future, Minnesota Office of Environmental Assistance, 2003.
  • [18] Wimmer W., Pamminger R., Stachura M., Grab R., ECODESIGN in the electronics industry - achieving legal compliance with the EU-directives and environmentally improving products by using the new EEE-PILOT, 2005, Fourth International Symposium on Environmentally Conscious Design and Inverse Manufacturing Eco Design, pp. 671-677, 2005.
  • [19] Lindahl M., Engineering designers’ experience of design for environment methods and tools - requirement definitions from an interview study, Journal of Cleaner Production, 14, 487-496, 2006.
  • [20] Tingström J., Karlsson R., The relationship between environmental analyses and the dialogue process in product development, Journal of Cleaner Production, 14, 1409-1419, 2006.
  • [21] Spicer A., Wang M.H., Environmental design industrial template (EDIT): a software tool for analysis of product retirement, Journal of Cleaner Production, 5, p193-19, 1997.
  • [22] Rydberg T., Cleaner products in the Nordic countries based on the life cycle assessment approach: the Swedish product ecology project and the Nordic project for sustainable, Journal of Cleaner Production, 3, 101-10, 1995.
  • [23] Finnveden G., Moberg Å., Environmental systems analysis tools-an overview, Journal of Cleaner Production, 13, 1165-1173, 2005.
  • [24] Luttropp C., Lagerstedt J., EcoDesign and the ten golden rules: generic advice for merging environmental aspects into product development, Journal of Cleaner Production, 14, 1396-1408, 2006.
  • [25] Van Der Zwan F., Bhamra T., Alternative function fulfillment: incorporating environmental considerations into increased design space, Journal of Cleaner Production, 11, 897-903, 2003.
  • [26] Van Hemel C., Barriers and stimuli for ecodesign in SMEs, Journal of Cleaner Production, 10, 439-453, 2002.
  • [27] www.labs.autodesk.com/technologies/sustainablematerials assistant
  • [28] Information materials on SolidWorks Sustainability, Dassault Systèmes, 2013.
  • [29] Wooldridge M., An Introduction to multiagent system, John Wiley & Sons, 2002.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-69ef6eb5-9f5c-49d6-a3fd-dcfab7d3256e
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