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정임두

Jung, Im Doo
Intelligent Manufacturing and Materials Lab.
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Laser melting characterization for H13-steel 3D printing

Author(s)
Jung, Im DooChoe, JunghoYang, Dong-YeolYu, Ji-HunYun, JaecheolYang, SangsunKim, Yong-Jin
Issued Date
2018-05-14
DOI
10.25341/D4DS3K
URI
https://scholarworks.unist.ac.kr/handle/201301/48549
Fulltext
https://dr.ntu.edu.sg/handle/10220/45820
Citation
3rd International Conference on Progress in Additive Manufacturing, Pro-AM 2018, pp.286 - 290
Abstract
Selective laser melting is one of the important 3d printing process for its capability of the complex shape production for metal part. H13 steel is one of the difficult metal material to fabricate due to its high hardness, thus selective laser melting process can be efficiently applied for its net-shape production. However, selective laser melting improper process condition results in pores inside printed part and it degrade the hardness of H13 steel component. We hereby studied the characteristic behavior of H13 steel laser melting with computational and experimental approach. Re-melting process of single, triple and quintuple was compared and triple times of laser scanning exposure showed the lowest amount of pores and highest hardness. Our characteristic study can be usefully employed for development of H13 component via selective laser melting process. Copyright © 2018 by Nanyang Technological University.
Publisher
Pro-AM
ISSN
2424-8967

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