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Numerical analysis of void closure in metal forming

Authors
Park, Jong-jinJ.-J.
Issue Date
2018
Publisher
ELSEVIER SCIENCE BV
Keywords
Void; Metal forming; Numerical analysis; Collapse; Contraction
Citation
Procedia Manufacturing, v.15, pp.1841 - 1846
Journal Title
Procedia Manufacturing
Volume
15
Start Page
1841
End Page
1846
URI
https://scholarworks.bwise.kr/hongik/handle/2020.sw.hongik/13016
DOI
10.1016/j.promfg.2018.07.206
ISSN
2351-9789
Abstract
Since voids in a billet or an ingot are detrimental to tensile strength of the material, they are required to be closed by metal forming processes. However, distributions of field variables, such as stress and strain, imposed by the processes are in general inhomogeneous and thus prediction of void closure is difficult. In previous studies, where stress triaxiality was low in magnitude, void closure was found to be predicted by the effective strain at the location of the void. The effective strain was obtained from numerical analysis of a non-void model. In the present study, this finding was further investigated for compressions of a rectangular block and a cylinder, where stress triaxiality was relatively high in magnitude. As a result, a closure criterion of spherical void was found as a function of the effective strain and stress triaxiality. The mode of void closure changed from collapse to contraction as stress triaxiality increased in magnitude. (C) 2018 The Authors. Published by Elsevier B.V. Peer-review under responsibility of the scientific committee of the 17th International Conference on Metal Forming.
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