定向能沉积(DED)工艺异常及潜在解决方案综述-零件质量与缺陷

Michael Liu, Abhishek Kumar, Satish Bukkapatnam, Mathew Kuttolamadom
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引用次数: 38

摘要

定向能沉积(DED)工艺允许增材制造和修复具有生成设计的复杂几何形状的金属部件,并具有出色的成分控制。然而,与粉末床熔合(PBF)相比,其适用性和采用受到限制,因为该工艺固有的一些问题和异常尚未得到适当的理解和解决。这项工作的目录和描述这些异常在DED过程以及他们的原因和解决方案,基于最先进的文献综述。这项工作还用于列举和联系潜在的原因,这些原因表现为不受欢迎的部分/过程结果。这些特定于ded的异常按零件、工艺、材料、生产率、安全、维修和组成进行分类;本文将具体报道第一类零件质量和缺陷,并将其进一步分为几何、形态和微观结构异常。总之,这篇入门文章作为一个指南,最好地准备和减轻在DED中遇到的问题,也奠定了基础,激发新的解决方案,进一步推进DED进入主流制造业。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Review of the Anomalies in Directed Energy Deposition (DED) Processes & Potential Solutions - Part Quality & Defects

Directed Energy Deposition (DED) processes allow additive manufacturing and repair of metallic components with generatively-designed complex geometries, and excellent compositional control. However, its applicability and adoption have been limited when compared to powder bed fusion (PBF) because several issues and anomalies innate to the process are yet to be suitably understood and resolved. This work catalogues and delineates these anomalies in the DED process along with their causes and solutions, based on a state-of-the-art literature review. This work also serves to enumerate and associate the underlying causes to the detrimental effects which manifest as undesirable part/process outcomes. These DED-specific anomalies are categorized under groups related to the part, process, material, productivity, safety, repair, and composition; this paper will specifically report on the first group - part quality and defects, which is further sub-classified into geometrical, morphological and microstructural anomalies. Altogether, this primer acts as a guide to best prepare for and mitigate the problems that are encountered in DED, and also to lay the groundwork to inspire novel solutions to further advance DED into mainstream manufacturing.

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