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A life cycle assessment-based approach for evaluating the influence of total build height and batch size on the environmental performance of electron beam melting

机译:基于生命周期评估的方法,用于评估总构建高度和批量大小对电子束熔化环境性能的影响

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摘要

Electron beam melting (EBM) is emerged as a promising metal-based additive manufacturing technology. The technique allows the build of complex and fully dense metallic parts by using an electron beam to melt metallic powder layer by layer. This technique has been applied efficiently in aeronautic and automobile sectors, as well as biomedical engineering. However, the environmental performance of EBM is still an open question. This paper aims to offer a more comprehensive understanding on environmental impacts related to EBM process. A methodology based on life cycle assessment (LCA) method is proposed to evaluate environmental impacts related to EBM. In particular, the influence of different parameters, such as total build height, batch size (i.e., number of parts per build), and material waste due to support structures on the environmental performance of EBM is discussed. By comparing environmental impacts between (EBM + finishing machining) and conventional approach (i.e., machining) approaches, which are used to manufacture a same mechanical part, the environmentally friendly area of each manufacturing approach is also determined. The results show that the (EBM + finishing machining) approach becomes the best option on the environmental point of view when the total build height decreases and the batch size is close to a full build configuration. On the other hand, the amount of material waste due to support structures in EBM does not significantly influence on the environmental performance of the EBM process.
机译:电子束熔化(EBM)被出现为有前途的金属基添加剂制造技术。该技术允许通过使用电子束通过层熔化金属粉末层来构建复合物和完全致密的金属部件。该技术已经有效地应用于航空和汽车领域,以及生物医学工程。但是,EBM的环境表现仍然是一个开放的问题。本文旨在为与EBM过程有关的环境影响提供更全面的理解。提出了一种基于生命周期评估(LCA)方法的方法来评估与EBM相关的环境影响。特别地,讨论了不同参数的影响,例如总构建高度,批量尺寸(即,每个构建部件数量),以及由于支持结构的支持结构而导致的ebm的环境性能。通过比较(EBM +精加工加工)和传统方法(即,加工)方法之间的环境影响,其用于制造相同的机械部分,还确定每个制造方法的环保面积。结果表明,(EBM +精加工)方法在总构建高度降低时变为环境视角的最佳选择,批量尺寸接近完全构建配置。另一方面,EBM中支持结构导致的材料废物的量对EBM过程的环境性能没有显着影响。

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