The adhesion between carbon fiber-reinforced polymer (CFRP) and titanium parts can be improved by laser surface texturing before gluing them together. Here, a pulsed Nd:YAG laser was employed before bonding of the textured surfaces using an epoxy paste adhesive. To investigate the influence of the laser parameters, the roughness of the surfaces were characterized and correlated to the wettability, by measuring the contact angles of water droplets. Scanning electron microscope (SEM) characterization was also performed showing that under careful conditions, the fiber structure could be maintained. Tensile tests were performed to evaluate the influence of the laser treatment parameters on the joining efficiency. The lap-joint tensile strength ...
Adhesive bonds are critical to the integrity of built-up structures. Disbonds can often be detected ...
A Nd:YAG laser was used to etch patterns conducive to adhesive bonding onto CFRP surfaces. These wer...
Laser surface treatment is a promising technique to increase the adhesive strength of carbon fibres ...
The adhesion between carbon fiber-reinforced polymer (CFRP) and titanium parts can be improved by la...
The adhesion between carbon fiber-reinforced polymer (CFRP) and titanium parts can be improved by la...
The adhesion between carbon fiber-reinforced polymer (CFRP) and titanium parts can be improved by la...
The adhesion between carbon fiber-reinforced polymer (CFRP) and titanium parts can be improved by la...
In this study, laser surface treatment of CFRP made of PPS thermoplastic matrix by means of Q-switch...
In this study, laser surface treatment of CFRP made of PPS thermoplastic matrix by means of Q-switch...
In this study, laser surface treatment of CFRP made of PPS thermoplastic matrix by means of Q-switch...
In this study, laser surface treatment of CFRP made of PPS thermoplastic matrix by means of Q-switch...
In this study, laser surface treatment of CFRP made of PPS thermoplastic matrix by means of Q-switch...
AbstractHigh demands for lightweight construction can be attained by the use of carbon fiber-reinfor...
Laser surface treatment is a promising technique to increase the adhesive strength of carbon fibres ...
Due to increasing demands for weight reduction, the use of carbon fiber-reinforced plastics (CFRPs) ...
Adhesive bonds are critical to the integrity of built-up structures. Disbonds can often be detected ...
A Nd:YAG laser was used to etch patterns conducive to adhesive bonding onto CFRP surfaces. These wer...
Laser surface treatment is a promising technique to increase the adhesive strength of carbon fibres ...
The adhesion between carbon fiber-reinforced polymer (CFRP) and titanium parts can be improved by la...
The adhesion between carbon fiber-reinforced polymer (CFRP) and titanium parts can be improved by la...
The adhesion between carbon fiber-reinforced polymer (CFRP) and titanium parts can be improved by la...
The adhesion between carbon fiber-reinforced polymer (CFRP) and titanium parts can be improved by la...
In this study, laser surface treatment of CFRP made of PPS thermoplastic matrix by means of Q-switch...
In this study, laser surface treatment of CFRP made of PPS thermoplastic matrix by means of Q-switch...
In this study, laser surface treatment of CFRP made of PPS thermoplastic matrix by means of Q-switch...
In this study, laser surface treatment of CFRP made of PPS thermoplastic matrix by means of Q-switch...
In this study, laser surface treatment of CFRP made of PPS thermoplastic matrix by means of Q-switch...
AbstractHigh demands for lightweight construction can be attained by the use of carbon fiber-reinfor...
Laser surface treatment is a promising technique to increase the adhesive strength of carbon fibres ...
Due to increasing demands for weight reduction, the use of carbon fiber-reinforced plastics (CFRPs) ...
Adhesive bonds are critical to the integrity of built-up structures. Disbonds can often be detected ...
A Nd:YAG laser was used to etch patterns conducive to adhesive bonding onto CFRP surfaces. These wer...
Laser surface treatment is a promising technique to increase the adhesive strength of carbon fibres ...