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유한요소해석 연계 알루미늄 다층판재의 기계적 거동 예측Predicting Mechanical Response of Multilayered Aluminum Sheet Using Finite Element Analysis

Other Titles
Predicting Mechanical Response of Multilayered Aluminum Sheet Using Finite Element Analysis
Authors
성진영김민호봉혁종이광석김민중김지훈
Issue Date
Dec-2020
Publisher
한국소성∙가공학회
Keywords
Multilayered Sheet; Roll Bonding; Finite Elemental Method (FEM)
Citation
소성∙가공, v.29, no.6, pp 347 - 355
Pages
9
Indexed
KCI
Journal Title
소성∙가공
Volume
29
Number
6
Start Page
347
End Page
355
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/77491
DOI
10.5228/KSTP.2020.29.6.347
ISSN
1225-696X
2287-6359
Abstract
The mechanical responses of multilayered aluminum sheet fabricated by roll bonding, i.e., A1050/A3004 (65% A1050, 35% A3004 by thickness), were investigated via combined experiment and finite element (FE) analysis. The mechanical properties were measured using uniaxial tensile tests in various loading directions for the multilayered sheet. The corresponding tests for individual layers were also conducted. The testing samples were prepared by wire electro discharge machining (EDM). Stress-strain curves and Lankford coefficients of the multilayered sheet were then predicted by FE simulations. The measured mechanical properties of the individual layers were utilized as inputs for the simulation. Two yield functions, i.e., isotropic von-Mises and anisotropic non-quadratic Hill1948, were employed. Predicted results were compared with the experimental data and further discussed.
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대학원 (나노신소재융합공학과)
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