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Experimental study of the bond of FRP applied to natural stones and masonry prisms

Conference Paper
Publication Date:
2015
abstract:
Compared to more traditional techniques, the application of Externally Bonded-Fibre Reinforced Polymers (EB-FRP) represents a viable alternative for the strengthening of masonry structures, also in case of Cultural Heritage buildings where strict requirements need to be met, aimed at minimizing the impact of the intervention. Since the FRP-to-masonry bond behaviour strongly affects design and effectiveness of such interventions, several investigations have been carried out in recent years to study this phenomenon, generally based on the longer experience developed for concrete substrates. Mortar joints, which are geometrical and mechanical discontinuities, distinguish and characterize masonry substrates from concrete ones, and therefore deserve a special attention as far as their role in the bond behaviour is not clarified yet. This paper, aimed at giving a contribution also from a methodological point of view, presents the main experimental results of shear tests carried out on glass composites (GFRP) applied to natural calcareous stones (pietra leccese), to lime mortar blocks and to masonry prisms made by coupling stones and lime mortar. Overall 22 shear tests were performed, keeping a bonded length of 200 mm for stones and mortar specimens while it was changed from 65 mm (corresponding to one stone and one mortar joint) to 195 mm (three stones and three mortar joints) in the case of masonry prisms. The effect of the FRP end anchorage on the test development was investigated as well, and results of the experimental tests are herein discussed in detail.
Iris type:
04.01 Contributo in Atti di convegno
Keywords:
Bond; Composite Material; Experimental Testing; FRP; Stone Masonry; Strengthening
List of contributors:
Panizza, Matteo
Authors of the University:
PANIZZA MATTEO
Handle:
https://iris.cnr.it/handle/20.500.14243/423947
Published in:
KEY ENGINEERING MATERIALS
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URL

https://www.scientific.net/KEM.624.453
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