Analysis of Machinability on Properties of Inconel 718 Wire and Arc Additive Manufacturing Products

IF 3.3 Q2 ENGINEERING, MANUFACTURING Journal of Manufacturing and Materials Processing Pub Date : 2023-12-25 DOI:10.3390/jmmp8010004
Gustavo Quadra Vieira dos Santos, Jun’ichi Kaneko, Takeyuki Abe
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Abstract

Wire and arc additive manufacturing (WAAM) is a metal deposition technique with a fast rate and the possibility of a high volume of deposition. Because of its fast deposition and high heat input, the manufactured products have poor surface quality. This paper presents a study on the machining of Inconel 718 wall-shaped additive manufacturing (AM) products, a necessary step for the improvement of surface quality. Considering the possibility that the characteristics of the milling processes of AM products might differ from those of traditionally manufactured parts, in this research, two types of Inconel 718 were studied and compared: one was manufactured using WAAM, and the other was an Inconel 718 rolled bar (Aerospace Material Specifications 5662). Using the testing procedure, a conventional two-flute cutting tool was used to assess their machinability. For this process, multiple passes were performed at three different heights of the samples. Considering the peculiarities of the AM products, such as their uneven surfaces, dendritic microstructures, and anisotropy, the results were analyzed. After the machining operation, the effects on the products were also studied by analyzing their surface quality. This study found a higher stability in the cutting process for the AMS 5662 samples relative to the WAAM parts with less variability in the cutting forces overall, resulting in better surface quality.
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可加工性对铬镍铁合金 718 线材和电弧增材制造产品性能的影响分析
线弧增材制造(WAAM)是一种金属沉积技术,具有速度快、沉积量大的特点。由于其沉积速度快、输入热量高,因此制造出的产品表面质量较差。本文对 Inconel 718 壁形增材制造(AM)产品的加工进行了研究,这是提高表面质量的必要步骤。考虑到 AM 产品的铣削加工特性可能不同于传统制造的零件,本研究对两种类型的 Inconel 718 进行了研究和比较:一种是使用 WAAM 制造的,另一种是 Inconel 718 轧制棒材(航空材料规格 5662)。通过测试程序,使用传统的双刃切削工具来评估它们的可加工性。在此过程中,对样品的三个不同高度进行了多次加工。考虑到 AM 产品的特殊性,如表面不平整、树枝状微结构和各向异性,对结果进行了分析。加工操作结束后,还通过分析表面质量研究了对产品的影响。研究发现,与 WAAM 零件相比,AMS 5662 样品在切削过程中的稳定性更高,切削力的总体变化更小,因此表面质量更好。
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来源期刊
Journal of Manufacturing and Materials Processing
Journal of Manufacturing and Materials Processing Engineering-Industrial and Manufacturing Engineering
CiteScore
5.10
自引率
6.20%
发文量
129
审稿时长
11 weeks
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