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Numerical investigation on the ratcheting behavior of pressurized stainless steel pipes under cyclic in-plane bending

Authors
Lee, Chin-HyungChang, Kyong-HoVuong Nguyen Van Do
Issue Date
Sep-2016
Publisher
ELSEVIER SCI LTD
Keywords
Pressurized stainless steel pipe; Cyclic in-plane bending; Ratcheting; Cyclic plasticity constitutive model; Finite element analysis
Citation
MARINE STRUCTURES, v.49, pp 224 - 238
Pages
15
Journal Title
MARINE STRUCTURES
Volume
49
Start Page
224
End Page
238
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/6588
DOI
10.1016/j.marstruc.2016.08.002
ISSN
0951-8339
1873-4170
Abstract
This study intends to characterize numerically the ratcheting behavior of stainless steel pipes subjected to cyclic bending and internal pressure. A cyclic plasticity constitutive model able to simulate the cyclic plastic behavior is first presented in the framework of rate-independent plasticity theory. Validity of the constitutive model is confirmed against the strain- and stress-controlled cyclic loading test data. The verified constitutive model is then applied to parametric studies in which the local (circumferential strain) and global (cross-section diameter change) ratcheting responses of pressurized straight stainless steel pipes under cyclic in-plane bending are scrutinized. The results demonstrate that the shape and degree of the ovalization which occurs during the multiaxial ratcheting are dependent not only on the geometry but also on the applied loads such as the internal pressure and the cyclic in-plane bending. (C) 2016 Elsevier Ltd. All rights reserved.
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Chang, Kyong Ho
공과대학 (건설환경플랜트공학)
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