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ENERGY AND RESOURCE EFFICIENCY OF SLS/SLM PROCESSES

机译:SLS / SLM过程的能量和资源效率

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Manufacturing processes, as used for discrete part manufacturing, are responsible for a substantial part of the environmental impact of products, but are still poorly documented in terms of their environmental footprint. The lack of thorough analysis of manufacturing processes has as consequence that optimization opportunities are often not recognized and that improved machine tool design in terms of ecological footprint has only been targeted for a few common processes. Additive manufacturing processes such as Selective Laser Sintering (SLS) and Selective Laser Melting (SLM) allow near-net shape manufacturing of complex work pieces. Consequently, they inherently offer opportunities for minimum-waste and sustainable manufacturing. Nevertheless, powder production, energy consumption as well as powder losses are important and not always optimized environmental impact drivers of SLS and SLM. This paper presents the results of a data collection effort, allowing to assess the overall environmental impact of these processes using the methodology of the CO2PE! (Cooperative Effort on Process Emissions in Manufacturing) initiative. Based on the collected LCI data, a subsequent impact assessment analysis allows indentifying the most important contributors to the environmental impact of SLS/SLM. Next to the electricity consumption, the consumption of inert gasses proves to be an important cause of environmental impact. Finally, the paper sketches the improvement potential for SLS/SLM on machine tool as well as system level.
机译:用于分立零件制造的制造过程在很大程度上影响了产品对环境的影响,但就其环境足迹而言,仍然记录不清。由于缺乏对制造过程的透彻分析,因此常常没有意识到优化机会,并且就生态足迹而言改进的机床设计仅针对一些常见过程。诸如选择性激光烧结(SLS)和选择性激光熔融(SLM)之类的增材制造工艺可实现复杂工件的近乎净形加工。因此,它们天生就为减少废物和可持续制造提供了机会。然而,粉末的生产,能耗以及粉末的损失很重要,并且并非始终是SLS和SLM的优化环境影响驱动因素。本文介绍了数据收集工作的结果,可以使用CO2PE的方法来评估这些过程的整体环境影响! (制造过程中的排放合作努力)倡议。根据收集的LCI数据,进行后续的影响评估分析,可以确定对SLS / SLM的环境影响最重要的因素。除电力消耗外,惰性气体的消耗被证明是造成环境影响的重要原因。最后,本文概述了SLS / SLM在机床以及系统层面的改进潜力。

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