By G. Spur (auth.), Helmut Jansen, Frank-Lothar Krause (eds.)
This quantity includes the chosen lawsuits of the foreign convention on lifestyles Cycle Modelling for cutting edge items and tactics (PROLAMAT '95), subsidized through the foreign Federation for info Processing, and held in Germany in 1995. It discusses the necessities and suggestions for sustainable product improvement and production procedures, targeting the employment of knowledge expertise to help the improvement of latest recommendations. This priceless new ebook is key interpreting for engineers, examine and improvement body of workers, and technical and managerial employees in and examine firms.
Read or Download Life-Cycle Modelling for Innovative Products and Processes: Proceedings of the IFIP WG5.3 international conference on life-cycle modelling for innovative products and processes, Berlin, Germany, November/December 1995 PDF
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Additional info for Life-Cycle Modelling for Innovative Products and Processes: Proceedings of the IFIP WG5.3 international conference on life-cycle modelling for innovative products and processes, Berlin, Germany, November/December 1995
Many of them such as life-cycle assessment (LeA) or simulation systems which are described in the following have the tasks of evaluating product behavior and environmental consequences in subsequent phases. Material evaluation is one of the key tasks in this area. Other tools support designers with respect to specific design strategies such as design for environment (DiE) or design for disassembly (DID). Design for environment focuses, for example, on energy economization. In order to support an optimal recycling tools or methods for design for disassembly are employed which are able to group parts into subassemblies with fixed disposal requirements and to determine the optimum disassembly depth (Alting.
Positive contribution to the local community/international; 3. Ethical behaviour (accepted values) 1. Economic contribution; 2. Environmental health and resource responsible; 3. Ethical behaviour, contribution to local pride 1. Environmental, health, and resource responsible; 2. Ethical behaviour 1. Economic contribution; 2. Environmental, health, resource responsible; 3. Ethical behaviour, positive image, pride contribution 1. Economic strength; 2. Environmental, health, resource responsible; 3.
Life cycle phase Pre-ma""facture Relevance Resource depletion, environmental burdens Environmental burdens Supplier performance, environmental burdens Resource depletion Manufacture I Environmental burdens, working environment Resource depletion, Environmental burdens I Environmental burdens Transportation/distribution I Environmental burdens I Environmental burdens Resource depletion, environmental burdens Use I Resource depletion, environmental burdens I Resource depletion Disposal Resource depletion Resource depletion, environmental burdens Strate2Y Use of recycled materials Use ofless enerJ(Y intensive materials Environmentally conscious component selection Use of renewable materials Use high-through-put processes Use material saving processes Overhead reduction Improved logistics Low volume / weight Use recycled materials for packaging Low energy consumption Design for maintenancel1om~ life Design for disassembly Material quality preservation Figure 12 Prevailing design strategies.