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空气和氩气作用下重叠对3D打印Inconel 718激光抛光表面质量的影响

Influence of Overlap on Surface Quality in the Laser Polishing of 3D Printed Inconel 718 under the Effect of Air and Argon.

作者信息

Ćwikła Michał, Dziedzic Robert, Reiner Jacek

机构信息

Faculty of Mechanical Engineering, Wroclaw University of Science and Technology, Wybrzeże Stanisława Wyspiańskiego 27, 50-370 Wroclaw, Poland.

出版信息

Materials (Basel). 2021 Mar 17;14(6):1479. doi: 10.3390/ma14061479.

Abstract

Laser Polishing (LP) is a well-defined technology that has recently been applied to improve three-dimensional (3D) printed Inconel 718 (IN718) parts. However, the necessity to conduct the process in an argon chamber is one of its major drawbacks, which is associated with an increase in the costs of production and the limitations of the technology regarding the size of parts that can be polished. This article investigates the possibility to conduct LP of IN718 in an air atmosphere and compares the results with those from an argon chamber setup. The experiment was carried out in the context of the influence of overlap on the final surface. The improvement of surface quality was defined through the evaluation of average areal roughness parameters, material relocation, periodic surface components, and the categorization of process-induced structures. It was found that LP allows for the average roughness to be reduced by 82.8% and 87.9% for an air and argon atmosphere, respectively. The oxidation layer was characterized using Energy-Dispersive X-ray Spectroscopy (EDS) analysis. The formation of overlap with regards to Ti and Al oxides had a vital influence on surface quality.

摘要

激光抛光(LP)是一种定义明确的技术,最近已被应用于改善三维(3D)打印的因科镍合金718(IN718)零件。然而,必须在氩气腔室中进行该工艺是其主要缺点之一,这与生产成本的增加以及该技术在可抛光零件尺寸方面的局限性有关。本文研究了在空气气氛中对IN718进行激光抛光的可能性,并将结果与氩气腔室设置的结果进行了比较。实验是在重叠对最终表面影响的背景下进行的。通过评估平均面粗糙度参数、材料迁移、周期性表面成分以及对工艺诱导结构进行分类来定义表面质量的改善。结果发现,对于空气和氩气气氛,激光抛光分别可使平均粗糙度降低82.8%和87.9%。使用能量色散X射线光谱(EDS)分析对氧化层进行了表征。Ti和Al氧化物重叠的形成对表面质量有至关重要的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8443/8002953/9af0132eb761/materials-14-01479-g001.jpg

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