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Environmental Sustainability of Laser Metal Deposition: the Role of Feedstock Powder and Feedstock Utilization Factor

机译:激光金属沉积的环境可持续性:原料粉和原料利用因子的作用

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Metal additive manufacturing (AM) is commonly promoted as a sustainable technology because of its capability to produce engineering components of complex geometries in a single step. Prior studies on environmental impact assessment of metal AM have underestimated the resource consumption due to the overestimation of the material utilization factor and neglecting the energy consumption needed to produce the desirable feedstock powder. This paper aims to address the role of feedstock powder and the actual material utilization factor in environmental impact assessment of laser metal deposition. Recycling and reuse of the unfused powder as the feedstock for subsequent depositions are proposed.
机译:金属添加剂制造(AM)通常促进作为可持续技术,因为其能力在一步中生产复杂几何形状的工程部件。对金属环境影响评估的研究表明,由于材料利用因子的高估,并且忽略了生产所需原料粉末所需的能量消耗,因此对资源消耗进行了低估了资源消耗。本文旨在解决原料粉末的作用及激光金属沉积环境影响评估中的实际材料利用率。提出了作为随后沉积的原料的未使用粉末的回收和再利用。

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