Enhancing the Surface Integrity of a Laser Powder Bed Fusion Inconel 718 Alloy by Tailoring the Microstructure and Microrelief Using Various Finishing Methods

因科镍合金 微观结构 表面完整性 材料科学 合金 结构完整性 融合 激光器 冶金 复合材料 表面粗糙度 光学 结构工程 工程类 哲学 语言学 物理
作者
Dmytro Lesyk,B.N. Mordyuk,Silvia Martı́nez,Vitaliy Dzhemelinskyi,Daniel Grochała,А. V. Kоtkо,Аitzol Lamikiz
出处
期刊:Coatings [Multidisciplinary Digital Publishing Institute]
卷期号:15 (4): 425-425
标识
DOI:10.3390/coatings15040425
摘要

Heat-performance nickel-based superalloys are commonly applied in various critical industries. In this work, test samples in the form of turbine blades were manufactured by means of laser powder bed fusion (LPBF) 3D technology. This research focused on comparison of the influences of various surface finishing methods. The mechanical surface post-processing of the LPBF-manufactured Inconel 718 alloy samples consisted of ultrasonic impact treatment (UIT), ultrasonic shot peening (USP), shot peening (SP), and barrel finishing (BF). The surface microrelief was evaluated using a high-precision laser profilometer, while the microstructural features were studied by light optical microscopy (LOM), scanning/transmission electron microscopy (SEM/TEM), and X-ray diffraction (XRD). Potentiodynamic polarization tests were also conducted to compare the surface finishing methods in terms of corrosion resistance improvement of the LPBF-manufactured 718 alloy samples. The effects of the surface microstructure and hardening intensity in combination with residual stresses and surface relief coupled with roughness profile shapes on the room temperature corrosion behavior of plastically deformed 718 alloy specimens manufactured by LPBF were studied. The corrosion rate (CR) of the LPBF-manufactured samples was reduced after post-processing: BF (~16 μm/year), USP (~15 μm/year), SP (~6.5 μm/year), and UIT (~5.5 μm/year). The experimental trends also agreed well with the theoretical trends of uniform corrosion of the studied alloy.
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