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Much of the sport's improved safety record in recent years derives from the controlled fracture behaviour of composite materials.
In this paper the failure behaviour of composite materials in the skin-stiffener of wind turbine blade structures are investigated.
As parts of different engineering structures, the functioning and behaviour of composite materials, particularly metal matrix composites (MMCs), are highly influenced by residual stresses (RS).
This paper presents a neural network modelling method for damage behaviour of composite materials in conjunction with full-field strain measurements.
The bond behaviour of composite materials on concrete substrates (but also steel, masonry and wooden ones) are generally investigated by means of pull-out tests.
The effect of these discontinuities on the behaviour of composite materials is an important topic because it causes a relatively large reduction in strength compared to the unnotched laminate [3].
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Mechanics of Composite Materials encourages publication of original experimental and theoretical research on the mechanical properties and behavior of composite materials as well as matrices and fibres.
The Johnson Cook law is used to model the behaviours of composite materials at high strain rates.
The present paper explores the possibility to employ 0/90 unsymmetric plates as a tool for characterising the thermo-oxidation behaviour and the environmental ageing of composite materials at high temperature.
Total stresses and deformations of the two wind generator configurations, coming from the updated numerical models, are evaluated and compared to quantitatively point out the improvement of the structural behaviour obtained by the use of composite materials.
A numerical prediction of the vibration behaviour is necessary for an efficient use of composite materials in rotors, especially since the modal parameters such as the eigenfrequency and the modal damping are influenced by the fibre orientation.
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behavior of composite materials
behaviour of new materials
characteristics of composite materials
behaviour of viscoelastic materials
behaviour of granular materials
behaviour of such materials
behaviour of concrete materials
behaviour of pseudocapacitive materials
behaviour of porous materials
behaviour of heterogeneous materials
behaviour of biological materials
behaviour of bituminous materials
behaviour of metallic materials
behaviour of organic materials
behaviour of various materials
behaviour of orthotropic materials
behaviour of blocky materials
behaviour of hyperelastic materials
behaviour of viscoplastic materials
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