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L-PBF 공정으로 제조된 Fe-15Cr-7Ni-3Mn 합금의 상온 및 극저온(77K) 기계적 특성Mechanical Properties of the Laser-powder Bed Fusion Processed Fe-15Cr-7Ni-3Mn Alloy at Room and Cryogenic Temperatures

Other Titles
Mechanical Properties of the Laser-powder Bed Fusion Processed Fe-15Cr-7Ni-3Mn Alloy at Room and Cryogenic Temperatures
Authors
박준영노건우김정기
Issue Date
Feb-2024
Publisher
한국소성가공학회
Keywords
Additive manufacturing; Stainless steels; Microstructure; Mechanical property
Citation
소성가공, v.33, no.1, pp 36 - 42
Pages
7
Indexed
KCI
Journal Title
소성가공
Volume
33
Number
1
Start Page
36
End Page
42
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/69929
DOI
10.5228/KSTP.2024.33.1.36
ISSN
1225-696X
2287-6359
Abstract
Additive manufacturing with 3XX austenitic stainless steels has been widely investigated during a decade due to its high strength, good corrosion resistance, and fair weldability. However, in recently, Ni price drastically increased due to the high demand of secondary battery for electric mobilities. Thus, it is essential to substitute the Ni with Mn for reducing stainless steels price. Meanwhile, the chemical composition changes in stainless steels not only affect to its properties but also change the optimal processing parameters during additive manufacturing. Therefore, it is necessary to optimize the processing parameters of each alloy for obtaining high-quality product using additive manufacturing. After processing optimization, mechanical properties and microstructure of the laser-powder bed fusion processed Fe-15Cr-7Ni-3Mn alloy were investigated in both room (298 K) and cryogenic (77 K) temperatures. Since the temperature reduction affects to the deformation mechanism transition, multi-scale microstructural characterization technique was conducted to reveal the deformation mechanism of each sample.
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