This paper proposes a new fully three-dimensional failure criteria for polymer composites reinforced by unidirectional fibers. Existing failure criteria based on three-dimensional stress states are revisited and their limitations and pitfalls are identified. A new set of failure criteria for both longitudinal and transverse failure mechanisms where the effect of ply thickness on the material strength is accounted for is proposed. The accuracy of the failure criteria is assessed by comparing the analytical predictions with existing experimental data obtained under multiaxial stress states. A good agreement between the predictions and experimental data is generally observed
In this study, failure behavior of fiber-reinforced composites under four-point bending is investiga...
This work is about study of the mechanical behaviour of unidirectional Kevlar / Epoxy composite lami...
ABSTRACT: The micromechanics of failure was developed to predict the failure of continuous fiber rei...
The failure locus a fiber-reinforced composite lamina, made up of 50 vol.% of carbon fibers embedded...
ABSTRACT: A new set of six phenomenological failure criteria for fiber-reinforced polymer laminates ...
This paper presents the extension and validation of omni-failure envelopes for first-ply failure (FP...
It has still not been shown that current failure theories can be accurate for all loading configurat...
Considerable effort has been put into the development of models describing damage and failure of fib...
�� 2020 The Authors. Published by SAGE. This is an open access article available under a Creative Co...
Three dimensional (3D) fibre-reinforced composites have shown weight efficient strength and stiffnes...
Three specific failure criteria for the transversely isotropic fiber composite case will be discusse...
A method of predicting the strength of cross-plied fibrous composite laminates is based on expressin...
AbstractA novel invariant-based approach to describe elastic properties and failure of composite pli...
Transverse failure is one of the most important failure modes in polymer composites. The phenomenon ...
In this paper, a set of failure criteria for transverse failure in non-crimp fabric-reinforced compo...
In this study, failure behavior of fiber-reinforced composites under four-point bending is investiga...
This work is about study of the mechanical behaviour of unidirectional Kevlar / Epoxy composite lami...
ABSTRACT: The micromechanics of failure was developed to predict the failure of continuous fiber rei...
The failure locus a fiber-reinforced composite lamina, made up of 50 vol.% of carbon fibers embedded...
ABSTRACT: A new set of six phenomenological failure criteria for fiber-reinforced polymer laminates ...
This paper presents the extension and validation of omni-failure envelopes for first-ply failure (FP...
It has still not been shown that current failure theories can be accurate for all loading configurat...
Considerable effort has been put into the development of models describing damage and failure of fib...
�� 2020 The Authors. Published by SAGE. This is an open access article available under a Creative Co...
Three dimensional (3D) fibre-reinforced composites have shown weight efficient strength and stiffnes...
Three specific failure criteria for the transversely isotropic fiber composite case will be discusse...
A method of predicting the strength of cross-plied fibrous composite laminates is based on expressin...
AbstractA novel invariant-based approach to describe elastic properties and failure of composite pli...
Transverse failure is one of the most important failure modes in polymer composites. The phenomenon ...
In this paper, a set of failure criteria for transverse failure in non-crimp fabric-reinforced compo...
In this study, failure behavior of fiber-reinforced composites under four-point bending is investiga...
This work is about study of the mechanical behaviour of unidirectional Kevlar / Epoxy composite lami...
ABSTRACT: The micromechanics of failure was developed to predict the failure of continuous fiber rei...