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Cited 24 time in webofscience Cited 25 time in scopus
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Failure load analysis of C-shaped composite beams using a cohesive zone model

Authors
Viet-Hoai TruongKhanh-Hung NguyenPark, Sang-SeonKweon, Jin-Hwe
Issue Date
Jan-2018
Publisher
Elsevier BV
Keywords
Composite; Delamination; Cohesive zone model; Failure load prediction
Citation
Composite Structures, v.184, pp 581 - 590
Pages
10
Indexed
SCIE
SCOPUS
Journal Title
Composite Structures
Volume
184
Start Page
581
End Page
590
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/11981
DOI
10.1016/j.compstruct.2017.10.035
ISSN
0263-8223
1879-1085
Abstract
Delamination-based failure is commonly observed in curved composite structures owing to the significant curvature-induced through-thickness stresses present therein. To gain further insights on this failure mode, we investigated the initiation/propagation of delamination in C-shaped composite beams under an opening load and determined their failure load utilizing a three-dimensional finite element simulation based on a cohesive zone model (CZM). Several cohesive parameters (e.g., initial interface stiffness, cohesive zone length, and interface strength) were examined to construct an optimal CZM for the chosen loading conditions, with all parameters except for mode II fracture toughness (directly obtained from end-notched flexure test results) determined by an extensive literature survey. The predicted beam failure loads were compared with experimental results, with the obtained maximum prediction error of 8.4% indicating good agreement. Finally, the predicted position of delamination initiation was found to be heavily dependent on the ratio of the shear strength to the normal strength of the interlayer.
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