This work addresses the issue of micro-structural damage in the longitudinal direction of the woven during a deformation process, primarily in the tensile mode. This paper extends the insight into self-inflicted damage in dimensional multilayer woven composites subjected to uniaxial tensile and shear loading. Two composites made of multilayer woven architectures, hereby named: orthogonal and normal layer interlock forms the basis of this study. It identifies the physical characteristics which initiate the various damage modes, what these modes are and when they occur. This work complements the work already reported on the transverse direction in woven composites
International audienceThe characterization and modeling of the inplane damage behavior of a three-di...
The mechanical characterization of textile composites is a challenging task, due to their nonuniform...
Damage mechanisms in uni-directional fiber-reinforced plastics have been studied at the micro-scale ...
Studies have been carried out on the damage evolution in a typical plain weave fabric composite unde...
Three-dimensional angle-interlock woven composites (3DAWCs) are widely used for their excellent mech...
Laminated composite plates are very sensitive to transverse loading because of weak interfaces betwe...
Damage and failure of textile composites is modelled from perspective of internal architectures. The...
Damage and mechanical properties in textile composites are closely connected with the textile reinfo...
The objective of this research work was to understand the warp and weft directional tensile properti...
A mesoscale finite element model was developed to investigate the progressive damage behaviors of tw...
This paper presents an experimental damage analysis of a 5-harness satin weave carbon–PPS (polypheny...
A novel continuum damage mechanics model for 2D woven fabrics has been developed and implemented in ...
A detailed investigation of micro-scale damage development in uni-directional polymer composites und...
Damage and failure of triaxial braided composites under multi-axial stress states was investigated. ...
Damage in textile composites is closely connected with the internal micro- and meso-geometry of the ...
International audienceThe characterization and modeling of the inplane damage behavior of a three-di...
The mechanical characterization of textile composites is a challenging task, due to their nonuniform...
Damage mechanisms in uni-directional fiber-reinforced plastics have been studied at the micro-scale ...
Studies have been carried out on the damage evolution in a typical plain weave fabric composite unde...
Three-dimensional angle-interlock woven composites (3DAWCs) are widely used for their excellent mech...
Laminated composite plates are very sensitive to transverse loading because of weak interfaces betwe...
Damage and failure of textile composites is modelled from perspective of internal architectures. The...
Damage and mechanical properties in textile composites are closely connected with the textile reinfo...
The objective of this research work was to understand the warp and weft directional tensile properti...
A mesoscale finite element model was developed to investigate the progressive damage behaviors of tw...
This paper presents an experimental damage analysis of a 5-harness satin weave carbon–PPS (polypheny...
A novel continuum damage mechanics model for 2D woven fabrics has been developed and implemented in ...
A detailed investigation of micro-scale damage development in uni-directional polymer composites und...
Damage and failure of triaxial braided composites under multi-axial stress states was investigated. ...
Damage in textile composites is closely connected with the internal micro- and meso-geometry of the ...
International audienceThe characterization and modeling of the inplane damage behavior of a three-di...
The mechanical characterization of textile composites is a challenging task, due to their nonuniform...
Damage mechanisms in uni-directional fiber-reinforced plastics have been studied at the micro-scale ...