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A life cycle energy analysis integrated process planning approach to foster the sustainability of discrete part manufacturing

机译:生命周期能量分析集成过程计划方法,以促进离散零件制造的可持续性

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摘要

Recently, a paradigm shift towards environmentally benign manufacturing (EBM) has been evoked in view of the substantially deteriorated environment. To realize more sustainable manufacturing, mitigating the production energy has been recognized as one of the viable strategies. In discrete part manufacturing, different process plans would result in significantly varied production energy. Thus in this investigation, a life cycle energy analysis integrated process planning (LCEA-PP) method is developed to achieve energy-efficient process planning for a certain product design. The life cycle primary energy (LCPE) analysis, considering the energy footprint of a product during virgin material production, product manufacturing and material recycling, is incorporated into the process planning. The case study on an industrial component, produced in two different materials - steel and aluminium, is carried out to demonstrate the effectiveness of the developed approach. The investigation shows that applying the near-net shape (NNS) strategy results in an energy mitigation of over 40% compared to the conventional shape (CS) strategy. However, further analysis demonstrates that the CS strategy can be more energy-efficient under certain manufacturing settings. Therefore, the developed approach is necessitated to support industrial manufacturers to adopt energy-efficient process plans and will effectively help them to achieve more sustainable manufacturing.
机译:最近,考虑到环境的严重恶化,已经引发了向环境友好型制造(EBM)的范式转变。为了实现更可持续的制造,减轻生产能量已被认为是可行的策略之一。在离散零件制造中,不同的工艺计划将导致生产能量的显着变化。因此,在本研究中,开发了生命周期能量分析集成过程计划(LCEA-PP)方法,以实现特定产品设计的节能过程计划。考虑到原始材料生产,产品制造和材料回收过程中产品的能源足迹的生命周期一次能源(LCPE)分析已被纳入到流程计划中。对以两种不同材料(钢和铝)生产的工业组件进行了案例研究,以证明所开发方法的有效性。调查显示,与传统的形状(CS)策略相比,应用近净形状(NNS)策略可减少40%以上的能量。但是,进一步的分析表明,在某些制造设置下,CS策略可以更加节能。因此,必须采用已开发的方法来支持工业制造商采用节能工艺计划,并将有效地帮助他们实现更可持续的制造。

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