Analytical 1D Model of Delamination Development and Strength of Layered Composite Beam in Post-Buckling
Key Engineering Materials 2014
Vitālijs Pavelko

1D nonlinear model of a thin plate (or beam) with delamination was developed earlier. Large deflections and membrane strains of a plate in buckled state, as well as the strain energy described using elliptic integrals. The Griffith-type energy condition was used as a criteria of delamination propagation. The analysis of the destruction of the plate was performed depending on the geometrical dimensionless parameters of a plate and the material strength performance. Here the mentioned model is extended to the general mode of delamination and it allows to describe the post-buckling stage and damage propagation. Model application as a base for the alternative determination of the interlaminar fracture toughness of the layered composites is indicated.


Keywords
Compressive Strength, Delamination, Layered Composite Beam, Post-Buckling
DOI
10.4028/www.scientific.net/KEM.627.325

Pavelko, V. Analytical 1D Model of Delamination Development and Strength of Layered Composite Beam in Post-Buckling. Key Engineering Materials, 2014, Vol.627, pp.325-328. ISSN 1662-9795. Available from: doi:10.4028/www.scientific.net/KEM.627.325

Publication language
English (en)
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