The broad range of applications of 3D textile reinforced composites requires an in-depth knowledge of their mechanical properties. Among those, the fatigue behaviour receives high demand in several industrial applications. In this chapter some experimental investigations are summarized to assess the influence of the three-dimensional architecture of the preform on the fatigue properties and fatigue damage evolution. The considered composite materials were produced using epoxy resins reinforced with: non-crimp 3D orthogonal weave E-glass fabric; 3D braided carbon fabric; structurally stitched carbon multi-ply preform. The tensile-tensile fatigue response in the principal directions, for several load levels, provides a complete understanding ...
A number of studies have been conducted on 3D non-crimp orthogonal woven composites, but their indus...
Late-stage fatigue damage of an E-glass/epoxy 3D orthogonal non-crimp textile composite loaded in th...
The paper studies tension–tension fatigue behavior of a single-ply non-crimp 3D orthogonal weave Egl...
The broad range of applications of 3D textile reinforced composites requires an in-depth knowledge o...
The broad range of applications of 3D textile reinforced composites requires an in-depth knowledge o...
The broad range of applications of 3D textile reinforced composites requires an in-depth knowledge o...
The broad range of applications of 3D textile reinforced composites requires an in-depth knowledge o...
The broad range of applications of 3D textile reinforced composites requires an in-depth knowledge o...
The broad range of applications of 3D textile reinforced composites requires an in-depth knowledge o...
An experimental study of the in-plane tension-tension fatigue behavior of the carbon fiber/epoxy mat...
An experimental study of the in-plane tension-tension fatigue behavior of the carbon fiber/epoxy mat...
Late-stage fatigue damage of an E-glass/epoxy 3D orthogonal non-crimp textile composite loaded in th...
Late-stage fatigue damage of an E-glass/epoxy 3D orthogonal non-crimp textile composite loaded in th...
Damage development in the later stages of the fatigue life of a glass/epoxy non-crimp 3D orthogonal ...
A number of studies have been conducted on 3D non-crimp orthogonal woven composites, but their indus...
A number of studies have been conducted on 3D non-crimp orthogonal woven composites, but their indus...
Late-stage fatigue damage of an E-glass/epoxy 3D orthogonal non-crimp textile composite loaded in th...
The paper studies tension–tension fatigue behavior of a single-ply non-crimp 3D orthogonal weave Egl...
The broad range of applications of 3D textile reinforced composites requires an in-depth knowledge o...
The broad range of applications of 3D textile reinforced composites requires an in-depth knowledge o...
The broad range of applications of 3D textile reinforced composites requires an in-depth knowledge o...
The broad range of applications of 3D textile reinforced composites requires an in-depth knowledge o...
The broad range of applications of 3D textile reinforced composites requires an in-depth knowledge o...
The broad range of applications of 3D textile reinforced composites requires an in-depth knowledge o...
An experimental study of the in-plane tension-tension fatigue behavior of the carbon fiber/epoxy mat...
An experimental study of the in-plane tension-tension fatigue behavior of the carbon fiber/epoxy mat...
Late-stage fatigue damage of an E-glass/epoxy 3D orthogonal non-crimp textile composite loaded in th...
Late-stage fatigue damage of an E-glass/epoxy 3D orthogonal non-crimp textile composite loaded in th...
Damage development in the later stages of the fatigue life of a glass/epoxy non-crimp 3D orthogonal ...
A number of studies have been conducted on 3D non-crimp orthogonal woven composites, but their indus...
A number of studies have been conducted on 3D non-crimp orthogonal woven composites, but their indus...
Late-stage fatigue damage of an E-glass/epoxy 3D orthogonal non-crimp textile composite loaded in th...
The paper studies tension–tension fatigue behavior of a single-ply non-crimp 3D orthogonal weave Egl...