Techno-eco-efficiency performance of 3D printed impellers: an application of life cycle assessment

Q2 Social Sciences
H. Jayawardane, I. Davies, G. Leadbeater, Michele John, W. Biswas
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引用次数: 5

Abstract

Rapid industrialisation had led to a scarcity of resources. The concept of sustainable manufacturing has emerged to address this scarcity and to minimise environmental degradation. 3D printing also known as additive manufacturing, could potentially reduce material wastage, energy consumption and resulting emissions. A 'techno-eco-efficiency' framework was developed to produce technically, economically, and environmentally feasible centrifugal pump impellers 3D printed using the fused filament fabrication process. Firstly, surface properties, geometric properties, build material properties, static structural and dynamic properties, and the hydraulic performance of impellers were assessed in order to investigate how process parameters, such as infill pattern, infill rate and reinforcement material affect the technical performance. Secondly, the eco-efficiency performance of technically suitable impellers was assessed using environmental life cycle assessment, life cycle costing tools and portfolio analysis. Thus, this 'techno-eco-efficiency' framework was used to achieve sustainable manufacturing and could act as a decision support tool for selecting cost-competitive, environmentally benign, and technically feasible products. Alternatively, it would assist product designers and manufacturers to minimise a trade-off between technical and resulting eco-efficiency performance.
3D打印叶轮的技术-生态效率性能:生命周期评估的应用
快速的工业化导致了资源的匮乏。可持续制造的概念已经出现,以解决这种稀缺性,并尽量减少环境退化。3D打印也被称为增材制造,可以潜在地减少材料浪费、能源消耗和由此产生的排放。开发了一种“技术-生态效率”框架,以生产技术、经济和环境可行的离心泵叶轮,使用熔融丝制造工艺进行3D打印。首先,对叶轮的表面性能、几何性能、建筑材料性能、静结构和动态性能以及水力性能进行了评估,以研究填充方式、填充率和增强材料等工艺参数对技术性能的影响。其次,采用环境生命周期评价、生命周期成本计算工具和组合分析对技术适宜的叶轮进行了生态效率评价。因此,这种“技术-生态效率”框架被用于实现可持续制造,并可作为选择具有成本竞争力、环境友好和技术可行产品的决策支持工具。或者,它将帮助产品设计师和制造商最大限度地减少技术和由此产生的生态效率性能之间的权衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Sustainable Manufacturing
International Journal of Sustainable Manufacturing Social Sciences-Social Sciences (miscellaneous)
CiteScore
1.90
自引率
0.00%
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0
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