In this work an analytical solution is developed to accurately predict the stiffness reduction in conductive cross-ply laminates, caused by matrix cracking in the transverse layers, as a function of the electrical resistance change of the laminate itself. To this end a closed form solution is initially developed with the aim to link the density of transverse cracks to the electric resistance of the cross-ply laminate. Such an expression is later used within a further model which allows the stiffness degradation associated to a given crack density to be estimated. The accuracy of the proposed model is verified by comparison with a bulk of FE analyses. (C) 2015 Elsevier Ltd. All rights reserved
Analytical and numerical electro-mechanical models are developed to predict the electrical resistanc...
Electrical resistance in carbon-fiber reinforced polymers has been shown experimentally to be a sens...
Fiber composites are today widely used in different load carrying structures. The main reason is the...
The main aim of this work is to propose and validate an analytical strategy to correlate the electri...
In this work, an analytical model is developed to calculate the electrical resistance of a conductiv...
ABSTRACT: Cross ply laminates of (02,90)sconfiguration having AS4 graphite fibers in three epoxy res...
Electrical tomography can be used as a structural health monitoring technique to identify different ...
An analytical model based on the principle of minimum potential energy is developed and applied to s...
An analytical model for stiffness degradation of composite laminates with damage under static or cyc...
In order to further develop and understand the data provided by electrical resistance measurements, ...
The present paper employs the electric resistance change method for monitoring the location and size...
A model that predicts the stiffness degradation in multidirectional reinforced laminates due to off-...
In the presented thesis analytical modeling of elastic properties degradation and modeling of damage...
Since delamination is invisible or difficult to detect visually, the delamination causes low reliabi...
Advanced polymer composites are commonly based on thin prepreg plies stacked at different angles to ...
Analytical and numerical electro-mechanical models are developed to predict the electrical resistanc...
Electrical resistance in carbon-fiber reinforced polymers has been shown experimentally to be a sens...
Fiber composites are today widely used in different load carrying structures. The main reason is the...
The main aim of this work is to propose and validate an analytical strategy to correlate the electri...
In this work, an analytical model is developed to calculate the electrical resistance of a conductiv...
ABSTRACT: Cross ply laminates of (02,90)sconfiguration having AS4 graphite fibers in three epoxy res...
Electrical tomography can be used as a structural health monitoring technique to identify different ...
An analytical model based on the principle of minimum potential energy is developed and applied to s...
An analytical model for stiffness degradation of composite laminates with damage under static or cyc...
In order to further develop and understand the data provided by electrical resistance measurements, ...
The present paper employs the electric resistance change method for monitoring the location and size...
A model that predicts the stiffness degradation in multidirectional reinforced laminates due to off-...
In the presented thesis analytical modeling of elastic properties degradation and modeling of damage...
Since delamination is invisible or difficult to detect visually, the delamination causes low reliabi...
Advanced polymer composites are commonly based on thin prepreg plies stacked at different angles to ...
Analytical and numerical electro-mechanical models are developed to predict the electrical resistanc...
Electrical resistance in carbon-fiber reinforced polymers has been shown experimentally to be a sens...
Fiber composites are today widely used in different load carrying structures. The main reason is the...