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Combined elastoplastic finite element method and tube tensile test method to accurately characterize flow behaviors of tubular metallic materials

Authors
Hong, Bo SeungShin, Young BinJung, Dong SukHong, Seok MooJoun, Man Soo
Issue Date
Nov-2025
Publisher
Springer Verlag
Keywords
Tube tensile test; Snug-fitting plug; Flow characterization; Combined elastoplastic FEM and tube tensile test method; Accurate flow curve
Citation
The International Journal of Advanced Manufacturing Technology
Indexed
SCIE
SCOPUS
Journal Title
The International Journal of Advanced Manufacturing Technology
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/81284
DOI
10.1007/s00170-025-16989-4
ISSN
0268-3768
1433-3015
Abstract
An efficient and practical method of the combined elastoplastic finite element method (FEM) and tube tensile test method (CF3TM) for obtaining accurate flow curves of tubular materials is presented. The CF3TM iteratively reduces the difference in the tube tensile load at the selected sample points between the finite element (FE) predictions obtained using the piecewise linear function flow (PLFF) model of effective strain and their corresponding experiments. Due to the nature of the tubular material, a snug-fitting plug is inserted to reinforce the grips, and the outer skin of the major elongation section is appropriately turned to divide the tubular material into a deformable body section and a strong grip section. The difference between the FE analysis model and the actual tube tensile test is minimized using a multi-body analysis model of the plug and the material. The CF3TM is applied to the SUS 304 tubular material. As a result, starting from the initial flow curve with an average error of 26.5% based on the tube tensile load, a flow function providing a tube tensile test prediction result with an average error of less than 0.16% is obtained with only two iterative calculations.
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공학계열 > 기계항공우주공학부 > Journal Articles

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