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首页> 外文期刊>Journal of Cleaner Production >Increasing resource efficiency with an engineering decision support system for comparison of product design variants
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Increasing resource efficiency with an engineering decision support system for comparison of product design variants

机译:使用工程决策支持系统来比较产品设计变体,从而提高资源效率

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摘要

The development of sustainable and resource-efficient products requires consideration of multiple design targets concerning the whole product life cycle. Taking these factors into account leads to complex decision situations with conflicting targets and trade-offs. To support design engineers in these situations an Engineering Decision Support System (EDSS) has been developed. In this article, the overall concept of the EDSS is presented. Furthermore, one function of the EDSS to assist a systematic comparison of product variants is introduced in detail. It is based on combining an existing PLM solutions (in particular Siemens Teamcenter 11/Siemens NX9) and software for Life Cycle Assessment (GaBi 7). Beyond a proof of concept for information exchange between both systems a methodology is presented which enables design engineers to systematically assess and select multiple product variants based on their resource utilization. The approach is complemented with a comprehensive case study for different design options of a core slide. In the scope of this study, variations of geometry (solid vs. hollow design), materials (hot-working steel vs. nickel-based superalloy) and manufacturing processes (laser metal deposition vs. milling) were considered. Furthermore, a usability study of the decision support tool is shown. (C) 2018 Elsevier Ltd. All rights reserved.
机译:开发可持续和资源节约型产品需要考虑涉及整个产品生命周期的多个设计目标。考虑到这些因素,会导致复杂的决策情况,其中目标和取舍相互矛盾。为了在这种情况下为设计工程师提供支持,已经开发了工程决策支持系统(EDSS)。本文介绍了EDSS的总体概念。此外,详细介绍了EDSS的一项功能,可协助系统比较产品型号。它基于将现有的PLM解决方案(尤其是Siemens Teamcenter 11 / Siemens NX9)和用于生命周期评估的软件(GaBi 7)相结合的基础。除了在两个系统之间进行信息交换的概念证明之外,还提供了一种方法,使设计工程师能够根据其资源利用情况来系统地评估和选择多个产品变体。该方法辅以针对核心幻灯片的不同设计选项的全面案例研究作为补充。在本研究的范围内,考虑了几何形状(实心设计与空心设计),材料(热加工钢与镍基高温合金)和制造工艺(激光金属沉积与铣削)的变化。此外,还显示了决策支持工具的可用性研究。 (C)2018 Elsevier Ltd.保留所有权利。

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