Data Publication

Data supporting the publication A shell-to-shell cohesive line element for efficient modeling of inter- facial cracking in overmolded stiffened panels

Sergio Gustavo Ferreira Cordeiro | Sérgio Cordeiro | Boyang Chen | Frans van der Meer

4TU.ResearchData

(2026)

Descriptions

Manuscript submitted to the journal Computer Methods in Applied Mechanics and Engineering. Description: A novel structural cohesive element is proposed for the efficient modeling of debonding in composite panels with overmolded stiffeners. The formulation is based on three-node triangular Kirchhoff–Love shell elements for both the panels and the stiffeners, complemented by the Free Formulation (FF) membrane to enhance the in-plane bending response. The proposed cohesive element is conforming with orthogonal T-jointed shell elements. An appropriate definition of the displacement jumps, consistent with shell kinematics, enables a straightforward formulation while allowing the transmission of both cohesive forces and cohesive moments. The model is validated against mode I, mode II, and mixed-mode benchmark problems. The results show that the structural models based on the FF membrane delivered superior performance compared to those employing the Constant Strain Triangle (CST) formulation in most cases. A panel–stiffener debonding problem designed to promote stable crack propagation is also analyzed using both standard 3D cohesive elements and the proposed structural cohesive element with the FF membrane. The results demonstrate that the proposed models can employ coarser meshes than the standard cohesive element models, achieving more than a 95% reduction in CPU time, while maintaining comparable accuracy. Consequently, the proposed cohesive element, based on three-node, 18-DoF triangular shell elements, enables efficient analysis of stiffener debonding in laminated panels with complex overmolded stiffener grids. It is further envisioned that the model can be coupled with the cohesive element proposed in the reference [23] to simulate both ply delamination and panel–stiffener debonding in progressive failure analyses of composite structures.

Keywords

MSL enriched keywords
civil engineered setting
Inferred deformation behavior
microphysical deformation mechanism
intragranular cracking
Measured property
strain
Measured property
strain
Analyzed feature
deformation microstructure
brittle microstructure
intragranular crack
MSL vocabulary keywords corresponding to originally assigned keywords
civil engineered setting
Originally assigned keywords
Civil Engineering
Aerospace Engineering
Engineering
Thermoplastic composites
Numerical modelling
Structural cohesive elements
Debonding
Coarse meshes

Metadata


MSL enriched sub domains

rock and melt physics
analogue modelling of geologic processes
microscopy and tomography

Resource Type

Dataset


Source


Source publisher

4TU.ResearchData

DOI


Creators

Sergio Gustavo Ferreira Cordeiro
Personal
0000-0002-6826-5457
Sérgio Cordeiro
Personal
0000-0002-6826-5457
Boyang Chen
Personal
0000-0001-7393-4363
Frans van der Meer
Personal
0000-0002-6691-1259

Contributors

TU Delft, Faculty of Civil Engineering and Geosciences, Department of Materials, Mechanics, Management and Design (3MD), Applied Mechanics.
Organizational

Citation

Ferreira Cordeiro, S. G., Cordeiro, S., Chen, B., & Frans van der Meer. (2026). Data supporting the publication A shell-to-shell cohesive line element for efficient modeling of inter- facial cracking in overmolded stiffened panels (Version 2) [Dataset]. 4TU.ResearchData. https://doi.org/10.4121/9EAEB151-D8C1-42A7-B060-7FEA8085E2D2.V2


References


Dates

Issued 2026-08-20

Language

en



Rights

Name Creative Commons Zero v1.0 Universal
URI https://creativecommons.org/publicdomain/zero/1.0/legalcode
Identifier cc0-1.0
Identifier Scheme SPDX
Scheme URI https://spdx.org/licenses/

Locations

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