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정하영

Chung, Hayoung
Computational Structural Mechanics and Design Lab.
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Laser powder bed fusion for AI assisted digital metal components

Author(s)
Seo, EunhyeokSung, HyokyungJeon, HongryoungKim, HayeolKim, TaekyeongPark, SangeunLee, Min SikMoon, Seung KiKim, Jung GiChung, HayoungChoi, Seong-KyumYu, Ji-HunKim, Kyung TaePark, Seong JinKim, NamhunJung, Im Doo
Issued Date
2022-10
DOI
10.1080/17452759.2022.2068804
URI
https://scholarworks.unist.ac.kr/handle/201301/58398
Fulltext
https://www.tandfonline.com/doi/full/10.1080/17452759.2022.2068804
Citation
VIRTUAL AND PHYSICAL PROTOTYPING, v.17, no.4, pp.806 - 820
Abstract
This paper proposes a novel method to impart intelligence to metal parts using additive manufacturing. A sensor-embedded metal bracket is prototyped via a metal powder bed fusion process to recognise partial screw loosening or total screw missing or identify the source of vibration with the assistance of artificial intelligence (AI). The digital metal bracket can recognise subtle changes in the screw fixation state with 90% accuracy and identify unknown sources of vibration with 84% accuracy. The von Mises stress distribution in the prototyped metal bracket is evaluated using a finite element analysis, which is learned by AI to match the real-time deformation analysis of the metal bracket in augmented reality. The proposed prototype can contribute to hyper-connectivity for developing next-generation metal-based mechanical components.
Publisher
TAYLOR & FRANCIS LTD
ISSN
1745-2759
Keyword (Author)
Laser powder bed fusionartificial intelligencesensor embeddingdigital metal componentaugmented reality
Keyword
PERSPECTIVESSENSORS

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