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Effects of Residual Stresses on the Uniaxial Ratcheting Behavior of a Girth-welded Stainless Steel Pipe

Authors
Chang, Kyong-HoJeon, Jun-TaiLee, Chin-Hyung
Issue Date
Dec-2016
Publisher
KOREAN SOC STEEL CONSTRUCTION-KSSC
Keywords
Girth-welded stainless steel pipe; Ratcheting; Cyclic plasticity constitutive model; Nonlinear kinematic hardening rule; Finite element analysis
Citation
INTERNATIONAL JOURNAL OF STEEL STRUCTURES, v.16, no.4, pp 1381 - 1396
Pages
16
Journal Title
INTERNATIONAL JOURNAL OF STEEL STRUCTURES
Volume
16
Number
4
Start Page
1381
End Page
1396
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/19018
DOI
10.1007/s13296-016-0072-1
ISSN
1598-2351
2093-6311
Abstract
This study attempts to characterize analytically the uniaxial ratcheting behavior of a girth-welded stainless steel pipe. Finite element (FE) simulation of the girth butt welding is first carried out to obtain the weld-induced residual stresses employing sequentially coupled three-dimensional (3-D) thermo-mechanical FE analysis technique. A cyclic constitutive model capable of simulating the cyclic plastic behavior is presented in the framework of rate-independent plasticity theory. Verification of the constitutive model is achieved by simulating the uniaxial strain- and stress-controlled cyclic loading tests and comparing the predicted results with the experimental measurements. The verified constitutive model is then applied to the girth-welded steel pipe subjected to uniaxial asymmetric stress cycling to evaluate the influence of residual stresses on the ratcheting behavior. The results show that welding residual stresses are needed to be taken into account in an accurate estimation of the uniaxial ratcheting behavior of the girth-welded steel pipe.
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Chang, Kyong Ho
공과대학 (건설환경플랜트공학)
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