By Shozo Takata, Yasushi Umeda
Existence cycle engineering offers with applied sciences for transferring the from mass creation and mass intake paradigm to closed loop production paradigm, during which required services are supplied for patrons with the minimal volume of creation. This topic is mentioned from some of the features, reminiscent of existence cycle layout, layout for surroundings, reduce/reuse/recycle, lifestyles cycle evaluation, and sustainable enterprise models.
Advances in existence Cycle Engineering for Sustainable production companies gathers jointly papers from the 14th CIRP lifestyles Cycle Engineering convention. This convention is the longest operating annual assembly within the box, within which papers are offered relating to advancements of cutting edge applied sciences, proposals of recent options, and trendy case stories.
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Extra resources for Advances in Life Cycle Engineering for Sustainable Manufacturing Businesses: Proceedings of the 14th CIRP Conference on Life Cycle Engineering, Waseda University, Tokyo, Japan, June 11th-13th, 2007
Figure 6: System architecture. 32 the amount of disposal without decreasing the manufacturer’s profit,” and, as parameter values of the objective, manufacturer’s profit and disposal amount are set to be 100% and 50% of the existing life cycle scenario, respectively. Second, we determined life cycle concept. Figure 7 depicts the thought process of this step. The objective of this life cycle is to decrease the amount of disposal. We analyzed that the disposal amount increases because of shorter life of PCB and HDD than other components by using an external tool called “disposal cause analysis matrix” .
26 Figure 4: Representation of a lifecycle with the products level and components level. Therefore, in order to measure the products performances, we have to compare the different alternatives taking into account many usage cycles. In a classical lifecycle, the performer knows exactly the system that is studied and usually can investigate some unlit points. During the design, not much information is available and strong assumptions have to be made, also because of the lack of 3R processes existing in the LCA databases.
It is not a EuP, but this is not essential as an introduction to the component-based approach. We have modelled a lifecycle based on the information we owned. This product enables the transmission of current and data for a period of five years, twenty-four hours a day. It consists of seven components and a packaging. It is manufactured in Leeds (UK) assembled in France, and then distributed in the capitals all over Europe. Different EoL scenarios have been determined for the product and also components, comprising reverse logistics, disassembly and remanufacturing, or end-of-pipe strategies.
Advances in Life Cycle Engineering for Sustainable Manufacturing Businesses: Proceedings of the 14th CIRP Conference on Life Cycle Engineering, Waseda University, Tokyo, Japan, June 11th-13th, 2007 by Shozo Takata, Yasushi Umeda