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니켈 기반 초합금 클래드 판재의 열간 압연 제조 공정 유한요소해석Finite Element Analysis of the Hot Rolled Cladding for the Ni-based Superalloy/steel Corrosion-resistant Alloy (CRA) Plate

Other Titles
Finite Element Analysis of the Hot Rolled Cladding for the Ni-based Superalloy/steel Corrosion-resistant Alloy (CRA) Plate
Authors
김찬양배성준이현석봉혁종이광석
Issue Date
Jun-2024
Publisher
한국소성∙가공학회
Keywords
CRA clad metal plate; Hot rolling; Finite element method; Alloy 625; Johnson-Cook hardening law
Citation
소성∙가공, v.33, no.3, pp 208 - 213
Pages
6
Indexed
KCI
Journal Title
소성∙가공
Volume
33
Number
3
Start Page
208
End Page
213
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/77493
DOI
10.5228/KSTP.2024.33.3.208
ISSN
1225-696X
2287-6359
Abstract
Ni-based superalloys have exceptional performance in high-temperature strength, corrosion resistance, etc, and it has been widely used in various applications that require corrosion resistance at high-temperature operations. However, the relatively expensive cost of the Ni-based superalloys is one of the major hurdles. The corrosion-resisted alloy(CRA) clad materials can be a cost-effective solution. In this study, finite element analysis of the hot rolling process for manufacturing of the Alloy 625/API X65 steel CRA clad plates is conducted. The stress-strain curves of the two materials are measured in compressive tests for various temperature and strain rate conditions, using the Gleeble tester. Then, strain hardening behavior is modeled following the modified Johnson-Cook model. Finite element analysis of the hot rolled cladding process is performed using this strain rate and temperature dependent hardening model. Finally, the thickness ratio of the CRA and base material is predicted and compared with experimental values.
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대학원 (나노신소재융합공학과)
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