ABSTRACT The influence on multi walled carbon nanotubes (MWCNT, or simply CNT) as a reinforcement material in an epoxy resin in order to decrease the fatigue crack propagation rate in the 2024 T3 aeronautical Al alloy was studied. CT samples were pre-cracked in a resonant fatigue machine until a 4 mm pre-crack length. Four groups of samples were considered: a non-repaired reference group, two groups repaired with epoxy resin reinforced with two CNT proportions (0.5 and 1 vol %) and a group repaired by the conventional “stop drill” technique. The crack was propagated until a length of 16 mm, measuring the number of cycles to this crack propagation. Resin Hysol EA9320 NA was used, mixing it with the CNT and the hardener, by ultrasonic stirrin...
AbstractWe studied the mechanical and fracture properties of multi walled carbon nanotube (MWCNT) re...
The emergence of carbon nanotubes (CNTs) has created new opportunities for the fabrication of polyme...
In the discipline of nanomaterials, the outstanding mechanical properties of nanoscale fibres and tu...
The influence on multi walled carbon nanotubes (MWCNT, or simply CNT) as a reinforcement material in...
Crack arise may be because of defects due to manufacturing processes and mechanical defects. Cracks ...
AbstractThe paper presents the results of the research undertaken to determine the impact of the epo...
This study aimed to develop an in-situ field-repair approach, especially for aircraft composite stru...
Rapid development of carbon nanotubes (CNTs) reinforced to polymer composites has been recently noti...
This paper describes the results related to the crack growth rate measurement on double cantilever b...
The fatigue life of polymer materials like epoxy can be improved by using stiffeners such as carbon ...
Abstract Carbon nanotubes were employed as adhesive reinforcement/nano-stitches to aluminum bonded j...
In recent decades, fibre-reinforced polymer composite structures have seen increased aerospace appli...
We studied the mechanical and fracture properties of multi walled carbon nanotube (MWCNT) reinforced...
This work concerns the fatigue behavior at three different temperature conditions (−40, 20, and 80°C...
Steel structures including bridges are susceptible to cracking, particularly due to fatigue-sensitiv...
AbstractWe studied the mechanical and fracture properties of multi walled carbon nanotube (MWCNT) re...
The emergence of carbon nanotubes (CNTs) has created new opportunities for the fabrication of polyme...
In the discipline of nanomaterials, the outstanding mechanical properties of nanoscale fibres and tu...
The influence on multi walled carbon nanotubes (MWCNT, or simply CNT) as a reinforcement material in...
Crack arise may be because of defects due to manufacturing processes and mechanical defects. Cracks ...
AbstractThe paper presents the results of the research undertaken to determine the impact of the epo...
This study aimed to develop an in-situ field-repair approach, especially for aircraft composite stru...
Rapid development of carbon nanotubes (CNTs) reinforced to polymer composites has been recently noti...
This paper describes the results related to the crack growth rate measurement on double cantilever b...
The fatigue life of polymer materials like epoxy can be improved by using stiffeners such as carbon ...
Abstract Carbon nanotubes were employed as adhesive reinforcement/nano-stitches to aluminum bonded j...
In recent decades, fibre-reinforced polymer composite structures have seen increased aerospace appli...
We studied the mechanical and fracture properties of multi walled carbon nanotube (MWCNT) reinforced...
This work concerns the fatigue behavior at three different temperature conditions (−40, 20, and 80°C...
Steel structures including bridges are susceptible to cracking, particularly due to fatigue-sensitiv...
AbstractWe studied the mechanical and fracture properties of multi walled carbon nanotube (MWCNT) re...
The emergence of carbon nanotubes (CNTs) has created new opportunities for the fabrication of polyme...
In the discipline of nanomaterials, the outstanding mechanical properties of nanoscale fibres and tu...