The mechanics of woven fabric-based laminated composites is complex, but computational models can contribute to its enhanced understanding. In this work the architecture of a twill-weave graphite epoxy laminate was characterized experimentally by microscopy of polished sections. The mechanical response under tensile loading was then investigated and a microscopic assessement of the failure mechanisms was conducted. The finite element approach was used to predict stiffness and strength using a suitable representative volume element from the twill-weave laminate. The role of texture and crimp ratio on the macroscopic stiffness and strength was investigated. Progressive failure was simulated numerically and stress distributions in the model we...
In this study, an experimental and numerical investigation is presented on the effect of thickness a...
The many aspects of high speed response of fibre reinforced composite materials have received the at...
Failure mechanisms in fiber composites are a function of many parameters such as constituent propert...
When a component is produced from textile reinforcement, it is well known that the reinforcement con...
A two-dimensional woven fabric composite strength model is presented for the prediction of failure s...
Mathematical expressions are presented for defining the geometry of the two-dimensional orthogonal p...
This article focuses on understanding the progressive failure behavior and predicting the failure st...
Finite element models of 3D woven composites are developed to predict possible microcracking of the ...
The laminate load bearing capability is often compromised by the interlaminar failure even though th...
A progressive failure analysis of woven glass/epoxy laminated plates is developed via the non-linear...
AbstractThe laminate load bearing capability is often compromised by the interlaminar failure even t...
Textile composites have the advantage over laminated composites of a significantly greater damage to...
The mechanical characteristics of a glass woven fabric are examined both experimentally and theoreti...
The effect of fabric geometry on the failure behavior of two-dimensional orthogonal plain weave fabr...
Une méthode par élément finis est utilisée pour déterminer le facteur de concentration de contrainte...
In this study, an experimental and numerical investigation is presented on the effect of thickness a...
The many aspects of high speed response of fibre reinforced composite materials have received the at...
Failure mechanisms in fiber composites are a function of many parameters such as constituent propert...
When a component is produced from textile reinforcement, it is well known that the reinforcement con...
A two-dimensional woven fabric composite strength model is presented for the prediction of failure s...
Mathematical expressions are presented for defining the geometry of the two-dimensional orthogonal p...
This article focuses on understanding the progressive failure behavior and predicting the failure st...
Finite element models of 3D woven composites are developed to predict possible microcracking of the ...
The laminate load bearing capability is often compromised by the interlaminar failure even though th...
A progressive failure analysis of woven glass/epoxy laminated plates is developed via the non-linear...
AbstractThe laminate load bearing capability is often compromised by the interlaminar failure even t...
Textile composites have the advantage over laminated composites of a significantly greater damage to...
The mechanical characteristics of a glass woven fabric are examined both experimentally and theoreti...
The effect of fabric geometry on the failure behavior of two-dimensional orthogonal plain weave fabr...
Une méthode par élément finis est utilisée pour déterminer le facteur de concentration de contrainte...
In this study, an experimental and numerical investigation is presented on the effect of thickness a...
The many aspects of high speed response of fibre reinforced composite materials have received the at...
Failure mechanisms in fiber composites are a function of many parameters such as constituent propert...