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Reliability Analysis of a Suspension Bridge Affected by Hydrogen Induced Cracking Based upon Response Surface Method

Authors
Cho, TaejunKim, Tae SooLee, Do HyungHan, Sung HoChoi, Jun Hyeok
Issue Date
Sep-2009
Publisher
Nippon Tekko Kyokai/Iron and Steel Institute of Japan
Keywords
Cable wires; Crack propagation; Hydrogen induced cracking; Reliability; Suspension bridges
Citation
ISIJ International, v.49, no.9, pp 1414 - 1423
Pages
10
Indexed
SCIE
SCOPUS
Journal Title
ISIJ International
Volume
49
Number
9
Start Page
1414
End Page
1423
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/118038
DOI
10.2355/isijinternational.49.1414
ISSN
0915-1559
1347-5460
Abstract
This paper deals with the Hydrogen Induced Cracking (HIC) of wires in a cable of a suspension bridge. The main objective is to compare the safety of a bridge system locally and globally. In a deterministic analysis stage, HIC in cable wires is calculated in order to evaluate the local safety of the main cable of suspension bridge. In the local analysis, a decoupling technique has been developed for the evaluation of crack propagations in a wire section driven by the hydrogen diffusion to a wire section, in terms of two 2-dimensional finite element models. One is for the fracture analysis in a longitudinal section, and the other is for a hydrogen diffusion model in a horizontal section. In a stochastic analysis stage, an ultimate limit state function for the cracking in cable wires is considered for the local safety of main cable. Using the ultimate limit state, the reliability of time-dependent and crack depth-dependent HIC of a cable wire has been calculated in component and parallel system reliability analysis. Globally, a serviceability limit state based on the global responses of a stiffening girder is also evaluated. Based on the observed difference of safeties between the global and local behaviors of the suspension bridge system, the proposed solutions are discussed.
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Kim, Tae Soo
ERICA 공학대학 (MAJOR IN ARCHITECTURAL ENGINEERING)
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