This paper presents an experimental investigation on mode I delamination of z-pinned double-cantilever-beams (DCB) and associate z-pin bridging mechanisms. Tests were performed with three types of samples: big-pin with an areal density of 2%, small-pin with an areal density of 2% and small-pin with an areal density of 0.5%. The loading rates for each type of samples were set at 1 mm/min and 100 mm/min. Comparison of fracture load under different loading rates shows the rate effects on delamination crack opening and delamination growth. Optical micrographs of z-pins after pullout were also presented to identify the bridging mechanisms of z-pins under different loading rates.<br /
The present experimental study aims to extend the understanding of delamination crack bridging mech...
The paper illustrates a new approach to the evaluation of the effect of z-pins on deformations and t...
Mode II delamination toughness of z-pin reinforced composite laminates is investigated using finite ...
ABSTRACT: An experimental investigation on mode I delamination of z-pinned double-cantilever-beams ...
An experimental investigation on mode I delamination of z-pinned double-cantilever-beams (DCB) and c...
This paper reviews our recent studies on z-pinning of composite laminates. The contents include theo...
This paper reviews our recent studies on z-pinning of composite lamiantes. The contents include theo...
A finite element (FE) model is developed to investigate mode I delamination toughness of z-pin reinf...
This paper presents our previous and current studies on the fatigue performance of z-pin reinforceme...
Z-pinned laminates are designed to suppress interlaminar fracture. Much interlaminar fracture damage...
Z-pin through-thickness reinforcement is used to improve the impact resistance of composite structur...
The dynamic Mode I delamination initiation in a z-pinned woven composite laminate is studied using a...
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...
Dynamic impact onto laminated composite structures can lead to large-scale delamination. This can be...
The present experimental study aims to extend the understanding of delamination crack bridging mech...
The paper illustrates a new approach to the evaluation of the effect of z-pins on deformations and t...
Mode II delamination toughness of z-pin reinforced composite laminates is investigated using finite ...
ABSTRACT: An experimental investigation on mode I delamination of z-pinned double-cantilever-beams ...
An experimental investigation on mode I delamination of z-pinned double-cantilever-beams (DCB) and c...
This paper reviews our recent studies on z-pinning of composite laminates. The contents include theo...
This paper reviews our recent studies on z-pinning of composite lamiantes. The contents include theo...
A finite element (FE) model is developed to investigate mode I delamination toughness of z-pin reinf...
This paper presents our previous and current studies on the fatigue performance of z-pin reinforceme...
Z-pinned laminates are designed to suppress interlaminar fracture. Much interlaminar fracture damage...
Z-pin through-thickness reinforcement is used to improve the impact resistance of composite structur...
The dynamic Mode I delamination initiation in a z-pinned woven composite laminate is studied using a...
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...
Dynamic impact onto laminated composite structures can lead to large-scale delamination. This can be...
The present experimental study aims to extend the understanding of delamination crack bridging mech...
The paper illustrates a new approach to the evaluation of the effect of z-pins on deformations and t...
Mode II delamination toughness of z-pin reinforced composite laminates is investigated using finite ...