Z-fibre® pinning is a new method of through-thickness reinforcement of laminated composites. This paper presents an experimental test and theoretical analysis on how and why these pins can improve the resistance to impact loading and post- impact compression. Specimens were made of carbon/epoxy T300/914C with nominal thicknesses of 2, 4, and 6 mm. For the specimens tested in this study, z-pinning reduced impact damage area by 19–64% depending on the specimen thickness and impact energy. Experimental results obtained also indicate that z-pins can significantly increase the compression-after-impact (CAI) strength by about 45%. In this paper all of these observations are discussed in the context of theoretical and numerical models that have be...
Dynamic impact onto laminated composite structures can lead to large-scale delamination. This can be...
This study investigates the effects of Z-pinning on the delamination performance in opening and shea...
Through thickness reinforcement (TTR) technologies have been shown to provide effective delamination...
Impact and compression-after-impact (CAI) tests were carried out on [02/ ± 45]s carbon/epoxy samples...
The study examines the effect of Z-pinning on the impact and post-impact behaviour of composite lami...
The study examines the effect of Z-pinning on the impact and post-impact behaviour of composite lam...
Delamination, i.e. the separation between layers that occurs by failure of the resin-rich interlamin...
Delamination, i.e. the separation between layers that occurs by failure of the resin-rich interlamin...
High-performance aerospace composite structures manufactured from pre-impregnated carbon fibre prefo...
The paper presents the results of an experimental investigation into the effect of Z-pinning on the ...
The results of an experimental investigation into the compression after impact (CAI) performance of ...
The results of an experimental investigation into the compression after impact (CAI) performance of ...
The paper outlines the current status of mechanical testing, identification of failure mechanisms a...
Dynamic impact onto laminated composite structures can lead to large-scale delamination. This can be...
Z-pin through-thickness reinforcement is used to improve the impact resistance of composite structur...
Dynamic impact onto laminated composite structures can lead to large-scale delamination. This can be...
This study investigates the effects of Z-pinning on the delamination performance in opening and shea...
Through thickness reinforcement (TTR) technologies have been shown to provide effective delamination...
Impact and compression-after-impact (CAI) tests were carried out on [02/ ± 45]s carbon/epoxy samples...
The study examines the effect of Z-pinning on the impact and post-impact behaviour of composite lami...
The study examines the effect of Z-pinning on the impact and post-impact behaviour of composite lam...
Delamination, i.e. the separation between layers that occurs by failure of the resin-rich interlamin...
Delamination, i.e. the separation between layers that occurs by failure of the resin-rich interlamin...
High-performance aerospace composite structures manufactured from pre-impregnated carbon fibre prefo...
The paper presents the results of an experimental investigation into the effect of Z-pinning on the ...
The results of an experimental investigation into the compression after impact (CAI) performance of ...
The results of an experimental investigation into the compression after impact (CAI) performance of ...
The paper outlines the current status of mechanical testing, identification of failure mechanisms a...
Dynamic impact onto laminated composite structures can lead to large-scale delamination. This can be...
Z-pin through-thickness reinforcement is used to improve the impact resistance of composite structur...
Dynamic impact onto laminated composite structures can lead to large-scale delamination. This can be...
This study investigates the effects of Z-pinning on the delamination performance in opening and shea...
Through thickness reinforcement (TTR) technologies have been shown to provide effective delamination...