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Calculation of strain gradient in flow formulation using strain surface function and its applications to micro rolling

Authors
Byon, S. M.Lee, Y.
Issue Date
Oct-2007
Publisher
ELSEVIER SCIENCE SA
Keywords
strain components; flow formulation; finite element analysis; strain gradient plasticity; micro rolling
Citation
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, v.192, pp 218 - 224
Pages
7
Journal Title
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY
Volume
192
Start Page
218
End Page
224
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/53260
DOI
10.1016/j.jmatprotec.2007.04.070
ISSN
0924-0136
Abstract
Using flow formulation-based finite element analysis, we compute the strain components of material of copper during micro rolling that material size in thickness is 1.25-12.5 mu m. To examine whether the computed strain component is the component of Cartesian tensor, we also calculate the strain components using deformation kinematics of each element and we compare the results obtained from both methods. To illustrate application capability of the proposed method, we link the strain gradient plasticity theory with flow formulation-based finite element analysis. We set up a least square function composed of strain components and compute its derivatives and finally obtain information of strain gradient distribution in the material during rolling. It shows when the material thickness is less than the intrinsic material length, its deformation behavior is quite different compared with that computed from the conventional plasticity theory. (c) 2007 Elsevier B.V. All rights reserved.
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