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Comparing Environmental Impacts of Additive Manufacturing vs. Investment Casting for the Production of a Shroud for Gas Turbine

机译:比较添加剂制造的环境影响与投资铸造生产燃气轮机生产

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摘要

Additive manufacturing (AM hereinafter) is revolutionizing prototyping production and even small-scale manufacturing. Usually it is assumed that AM has lower environmental impact, compared to traditional manufacturing processes, but there have been no comprehensive environmental life-cycle assessment studies confirming this, especially for the gas turbines (GT hereinafter) and turbomachinery sector. In this study the core processes performed at Baker Hughes site in Florence are considered, together with the powder production via atomization process to describe the overall environmental impact of a GT shroud produced through additive manufacturing and comparing it with traditional investment casting production process. Particular attention is given to materials production and logistics. The full component life cycle starts from the extraction of raw materials during mining, their fusion and, as said, the atomization process, the powders are transported to the gas turbines production site where they are used as base material in additive manufacturing, also machining and finishing processes are analyzed as they differ for a component produced by AM respect to one produced by traditional investment casting. From the analysis of the data obtained, it emerges that the AM process has better performances in terms of sustainability than the Investment casting (IC hereinafter), highlighted above all by a decrease in greenhouse gas emissions (GHG hereinafter) of over 40%.
机译:添加剂制造(下文中)正在彻底改变原型制作,甚至小规模制造。通常,与传统的制造过程相比,AM对环境影响较低,但没有综合环境生命周期评估研究,特别是对于燃气轮机(下文中的GT)和涡轮机械部门。在本研究中,在佛罗伦萨贝克休斯遗址进行的核心方法被认为,通过雾化过程以及通过添加剂制造和与传统投资铸造生产过程进行比较的GT罩的整体环境影响。特别注意材料生产和物流。完整的组件生命周期从挖掘过程中的原材料提取,融合过程中,如上所述,雾化过程,粉末被运输到燃气轮机生产现场,其中它们用作添加剂制造中的基础材料,也加工和分析了整理过程,因为它们对由传统投资铸造产生的辅导产生的组件不同。根据所得数据的分析,它出现了在可持续性方面的可持续性方面具有更好的性能,而不是投资铸造(IC以下),以上全部以超过40%的温室气体排放(GHG)减少。

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