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Exergetic Control Charts (Variability Analysis in a Real Injection-moulding Industrial Application)

机译:高能控制图(实际注塑工业应用中的变异性分析)

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Decision concerning manufacturing process design and management, under sustainable constraints, are difficult to draw when taking into account variability of process conditions. Life-cycle analysis and exergetic analysis are even more jointly adopted to improve the accuracy of resource use efficiency – the so-called hybrid approach – even though these are based on the assumption of constant operating conditions. The paper discussed a new idea to take into account variability in hybrid exergetic LCA due to contingent conditions, by proposing an exergetic control-chart (ExCC) scheme to formalise the variable conditions. The idea behind the ExCC approach is that manufacturing sustainability analysis may change its outcomes when taking into account this ‘dynamic’ point of view. The control-charting scheme here proposed provides a mean to formalise explicitly the effects of variability in time, under the real operating conditions. The main advantage of the approach is to allow a more complete view of the process and to drive hints for improvements or innovations of processes. A real industrial case here presented of an Italian SME explains the potentialities of the idea as well as the limits of the current hybrid approaches available.
机译:当考虑到工艺条件的可变性时,在可持续的约束下,很难做出有关制造工艺设计和管理的决策。甚至更共同采用生命周期分析和精力充沛的分析来提高资源使用效率的准确性-所谓的混合方法-即使这些方法都是基于恒定工作条件的假设。本文提出了一种新的想法,该想法考虑了偶然条件导致的混合高能LCA的可变性,提出了高能控制图(ExCC)方案以对可变条件进行形式化。 ExCC方法背后的想法是,在考虑这种“动态”观点时,制造业可持续性分析可能会改变其结果。这里提出的控制图表方案提供了一种手段,可以在实际操作条件下将形式的时间变化的影响明确地形式化。该方法的主要优点是可以更完整地了解流程,并为流程的改进或创新提供提示。这里展示的是一家意大利中小型企业的实际工业案例,它解释了这种想法的潜力以及当前可用的混合方法的局限性。

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