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Risk and sensitivity quantification of fracture failure employing cohesive zone elements

Authors
Lee, Young-JooSuh, Wonho
Issue Date
Sep-2019
Publisher
SAGE PUBLICATIONS LTD
Keywords
Fracture failure; cohesive zone element; finite element analysis; response surface; risk and sensitivity
Citation
ADVANCES IN MECHANICAL ENGINEERING, v.11, no.9, pp 1 - 11
Pages
11
Indexed
SCIE
SCOPUS
Journal Title
ADVANCES IN MECHANICAL ENGINEERING
Volume
11
Number
9
Start Page
1
End Page
11
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/2349
DOI
10.1177/1687814019878319
ISSN
1687-8132
1687-8140
Abstract
Many structures are subjected to the risk of fatigue failure. For their reliability-based design, it is thus important to calculate the probability of fatigue failure and assess the relative importance of the involved parameters. Although various studies have analyzed the fatigue failure, the stage of fracture failure has been less focused. In particular, the risk analysis of fracture failure needs to be conducted considering its importance in actual structures. This article proposes a new probabilistic framework for the risk and sensitivity analysis of structural fatigue failure employing cohesive zone elements. The proposed framework comprises three steps, namely finite element analysis using cohesive zone elements, response surface construction, and risk and sensitivity analysis of fatigue failure, which require several mathematical techniques and algorithms. The proposed framework is tested by applying it to an illustrative example, and the corresponding analysis results of fracture failure probability with different threshold values of a limit-state function are presented. In addition, the sensitivities of failure risk with respect to the statistical parameters of random variables are presented and their relative importance is discussed.
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Suh, Won ho
ERICA 공학대학 (DEPARTMENT OF TRANSPORTATION AND LOGISTICS ENGINEERING)
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