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L-PBF 공정 처리된 Fe-Si 합금의 열처리 조건에 따른 미세조직 및 기계적 특성Mechanical Property and Microstructure of the Annealed Fe-Si Alloy Manufactured by Laser-Powder Bed Fusion

Other Titles
Mechanical Property and Microstructure of the Annealed Fe-Si Alloy Manufactured by Laser-Powder Bed Fusion
Authors
박준영곽민석정상국김형섭김정기
Issue Date
Apr-2023
Publisher
한국소성∙가공학회
Keywords
Additive Manufacturing; Fe-Si Alloy; Annealing; Microstructure; Mechanical properties
Citation
소성∙가공, v.32, no.2, pp 67 - 73
Pages
7
Indexed
KCI
Journal Title
소성∙가공
Volume
32
Number
2
Start Page
67
End Page
73
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/59398
DOI
10.5228/KSTP.2023.32.2.67
ISSN
1225-696X
2287-6359
Abstract
To overcome a climate change, manufacturing complex-shaped electric mobility parts becomes one of the important issues for enhancing a performance of motor with reducing their weight. Therefore, development of laser-based additive manufacturing shed on light due to their flexible manufacturing capacity that can be suitable to solve the poor formability of Fe-Si alloys for electric mobility parts. Although there are several studies existed to optimize the performance of additively manufactured Fe-Si alloys, the post-annealing effect was not well investigated yet though this is important to control the texture and mechanical properties of additively manufactured parts. In the present work, annealing effect on the mechanical property and microstructure of additively manufactured Fe-4.5Si alloy was investigated. Because of the ordered phase initiation after annealing, the hardness of additively manufactured Fe-4.5Si alloy increased up to 1173 K while a hardness drop occurs at the 1273 K condition due to the micro-crack initiation. The response surface methodology result represents the 1173 K-5 h sample is an optimal condition to maximize the mechanical property of additively manufactured alloy without micro-cracks.
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Kim, Jung Gi
대학원 (나노신소재융합공학과)
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