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Numerical study of interface cracking in composite structures using a novel geometrically nonlinear Linear Elastic Brittle Interface Model: Mixed-mode fracture conditions and application to structured interfaces

Authors

Garcia-Guzman, L. , Reinoso, J. , VALVERDE GONZÁLEZ, ANGEL DE JESÚS, Martinez-Paneda, E. , Tavara, L.

External publication

Si

Means

Compos. Struct.

Scope

Article

Nature

Científica

JCR Quartile

SJR Quartile

JCR Impact

5.407

SJR Impact

1.63

Publication date

15/09/2020

ISI

000552865300005

Abstract

Interface cracking is one of the most prominent failure modes in fibre reinforced polymer (FRP) composites. Recent trends in high-tech applications of FRP composites exploit the limits of the load bearing capacity, generally encompassing the development of notable nonlinear effects from geometrical and material signatures. In this investigation, we present a comprehensive assessment of the new Linear Elastic Brittle Interface Model (LEBIM) in geometrically nonlinear applications undergoing mixed-mode fracture conditions. This interface model for triggering fracture events is formulated through the advocation of continuum-like assumptions (for initial non-zero interface thickness) and allows the incorporation of the potential role of in-plane deformation effects. The performance of the present interface model is demonstrated through the simulation of specimens with mixed-mode delamination, with special attention to its application in samples equipped with structured interfaces. Predictions exhibit an excellent agreement with experimental data, validating the proposed methodology.

Keywords

Structured interfaces; Interface cracking; LEBIM; Fracture toughness; Mixed-mode

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