Technical cleanliness of additively manufactured Inconel 718: a comparative study of surface treatment methods

材料科学 抛光 电镀(地质) 粒子(生态学) 工艺工程 实验设计 因科镍合金 响应面法 计算机科学 复合材料 工程类 地球物理学 地质学 机器学习 海洋学 统计 数学 合金
作者
Felix Endress,Julius Tiesler,Markus Zimmermann
出处
期刊:Rapid Prototyping Journal [Emerald Publishing Limited]
卷期号:30 (11): 173-192
标识
DOI:10.1108/rpj-02-2024-0073
摘要

Purpose Metal laser-powder-bed-fusion using laser-beam parts are particularly susceptible to contamination due to particles attached to the surface. This may compromise so-called technical cleanliness (e.g. in NASA RPTSTD-8070, ASTM G93, ISO 14952 or ISO 16232), which is important for many 3D-printed components, such as implants or liquid rocket engines. The purpose of the presented comparative study is to show how cleanliness is improved by design and different surface treatment methods. Design/methodology/approach Convex and concave test parts were designed, built and surface-treated by combinations of media blasting, electroless nickel plating and electrochemical polishing. After cleaning and analysing the technical cleanliness according to ASTM and ISO standards, effects on particle contamination, appearance, mass and dimensional accuracy are presented. Findings Contamination reduction factors are introduced for different particle sizes and surface treatment methods. Surface treatments were more effective for concave design features, however, the initial and resulting absolute particle contamination was higher. Results further indicate that there are trade-offs between cleanliness and other objectives in design. Design guidelines are introduced to solve conflicts in design when requirements for cleanliness exist. Originality/value This paper recommends designing parts and corresponding process chains for manufacturing simultaneously. Incorporating post-processing characteristics into the design phase is both feasible and essential. In the experimental study, electroless nickel plating in combination with prior glass bead blasting resulted in the lowest total remaining particle contamination. This process applied for cleanliness is a novelty, as well as a comparison between the different surface treatment methods.
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