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Characterization of double strain-hardening behavior using a new flow of extremum curvature strain of Voce strain-hardening modelCharacterization of double strain-hardening behavior using a new flow of extremum curvature strain of Voce strain-hardening model

Other Titles
Characterization of double strain-hardening behavior using a new flow of extremum curvature strain of Voce strain-hardening model
Authors
Byun, Jong BokJee, ChangWoonSeo, IlDongJoun, ManSoo
Issue Date
Aug-2022
Publisher
대한기계학회
Keywords
Voce strain-hardening model; Necking; Tensile test; Double strain-hardening; Extremum curvature strain; Voce-ludwik
Citation
Journal of Mechanical Science and Technology, v.36, no.8, pp 4115 - 4126
Pages
12
Indexed
SCIE
SCOPUS
KCI
Journal Title
Journal of Mechanical Science and Technology
Volume
36
Number
8
Start Page
4115
End Page
4126
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/1014
DOI
10.1007/s12206-022-0730-5
ISSN
1738-494X
1976-3824
Abstract
The traditional flow models with an emphasis on Voce family flow models are criticized using a typical monotonic strain-hardening material and a double strain-hardening (DSH) material. The DSH behavior is quantitatively expressed in detail using SUS304. They are, however, negatively evaluated especially for the DSH material that simultaneously experiences wide ranges of strain (e.g., during cold forging). After characterizing the Voce strain-hardening model (VSHM) with an emphasis on not only asymptotic stress but also a new concept of extremum curvature strain (ECS), the Voce-Ludwik model coupled with ECS is presented to describe the DSH flow behavior, based on the mathematical characteristics of VSHM. It has been found that the proposed Voce-Ludwik model can reflect DSH behavior using the nature of the strain at the ECS, which has the distinct advantage of modeling thermoviscoplastic flow behaviors of the DSH materials including stainless steels, copper alloys, aluminum alloys, etc.
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Joun, Man Soo
대학원 (기계항공우주공학부)
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