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Product design for energy reduction in concurrent engineering: an inverted pyramid approach

机译:并行工程中的节能产品设计:倒金字塔方法

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The consideration of energy aspects as X in the design for X (DFX) paradigm in concurrent engineering (CE) is important for enabling reductions in operating costs, reducing greenhouse gas (GHG) emissions and enhancing sustainability. This research presents a CE methodology for the consideration of energy use in product development and manufacturing, specifically addressing the machining process. The research reported in this paper showcases the effectiveness of using a systematic integrated approach towards consideration of energy in product development, addressed through product, process, and system level parameters. It adds an important tool to the DFX toolbox for evaluation of the impact of design decisions on the product manufacturing energy requirement early during the design phases. The use of the inverted pyramid approach (IPA) has been described as an effective methodology for incorporation in expansion of the DFX toolbox.
机译:在并行工程(CE)的X设计(DFX)范式中将能源方面考虑为X对于降低运营成本,减少温室气体(GHG)排放并增强可持续性至关重要。这项研究提出了一种CE方法论,用于考虑产品开发和制造中的能耗,特别是针对加工过程。本文报道的研究展示了使用系统集成的方法来考虑产品开发中能源的有效性,该方法通过产品,过程和系统级参数来解决。它在DFX工具箱中添加了一个重要工具,用于在设计阶段的早期评估设计决策对产品制造能源需求的影响。倒金字塔方法(IPA)的使用已被描述为一种结合在DFX工具箱扩展中的有效方法。

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