Evaluation of Adhesion Improvement of a GFRP Treated with Atmospheric Plasma Torch

The applications (and repair) of glass fiber reinforced epoxy composites are increasing in different industries (wind turbines, boats, chassis of buses, etc.) due to specific strength and low cost. Their major disadvantage is the difficulty to shape complex components. This problem can be solved man...

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Published inThe Journal of adhesion Vol. 91; no. 12; pp. 937 - 949
Main Authors Martinez, M. A., Velasco, F., Abenojar, J., Chiminelli, A., Breto, R.
Format Journal Article
LanguageEnglish
Published Taylor & Francis 02.12.2015
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Abstract The applications (and repair) of glass fiber reinforced epoxy composites are increasing in different industries (wind turbines, boats, chassis of buses, etc.) due to specific strength and low cost. Their major disadvantage is the difficulty to shape complex components. This problem can be solved manufacturing different parts, being adhesively bonded afterwards. This work studies the effect of atmospheric pressure plasma torch compared to grit-blasting to improve adhesion. After surface treating different parts, the changes of wettability and surface energy were measured. Treated samples were bonded with polyurethane and epoxy adhesives, and the quality of the bond was evaluated using pull-off adhesion tests and fracture strength test under cleavage loads. Obtained results allow to select the most adequate treatment in terms of mechanical requirements.
AbstractList The applications (and repair) of glass fiber reinforced epoxy composites are increasing in different industries (wind turbines, boats, chassis of buses, etc.) due to specific strength and low cost. Their major disadvantage is the difficulty to shape complex components. This problem can be solved manufacturing different parts, being adhesively bonded afterwards. This work studies the effect of atmospheric pressure plasma torch compared to grit-blasting to improve adhesion. After surface treating different parts, the changes of wettability and surface energy were measured. Treated samples were bonded with polyurethane and epoxy adhesives, and the quality of the bond was evaluated using pull-off adhesion tests and fracture strength test under cleavage loads. Obtained results allow to select the most adequate treatment in terms of mechanical requirements.
Author Breto, R.
Chiminelli, A.
Martinez, M. A.
Velasco, F.
Abenojar, J.
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CitedBy_id crossref_primary_10_1016_j_ijadhadh_2019_102435
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crossref_primary_10_1016_j_matpr_2022_04_1017
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SubjectTerms Adhesion pull-off test
Atmospheric plasma treatment
Composites
DCB test
Surface treatment by exited gases
Wetting
Title Evaluation of Adhesion Improvement of a GFRP Treated with Atmospheric Plasma Torch
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