Influence of water on bond behavior between CFRP sheet and natural calcareous stones
Abstract
In this paper the effect of a long term immersion in water on bond durability is analyzed when FRPs (Fiber Reinforced Plastic) are externally applied to a masonry substrate. In the performed research a substrate made by natural calcareous stones, strengthened by CFRP (Carbon Fiber Reinforced Plastic) sheets has been analyzed. For a better comprehension of water effect on the adhesive bond between stone and CFRP, the same treatments were performed to the constituent materials, namely epoxy resins, CFRP sheets and stones. To this aim mechanical tests were carried out on stone, composite materials and epoxy resins before and after their immersion in water, evaluating the effects of this agent on the properties of the materials. The influence of the aging in water on the interface stone-reinforcement was analyzed in terms of bond strength, maximum bond stress, optimal bond length, slip-bond stress relationship and mode of failure. In addition the possibility of calibrating design relationships, taking into account the influence of environmental conditions is discussed. Detailed results on adhesives and composites aged in water have been reported in a previous paper while in the present work the significant decay of the mechanical properties of the stone is specifically investigated. With regard to the conditioning treatment a reduction of the bond strength has been observed (up to 26%) as well as a similar decrease of the maximum bond stress; in addition the aged specimens have shown a more fragile behavior. On the basis of the obtained results the empirical coefficient, reported in the available Italian Guidelines, to determine the FRPmasonry bond strength seems still effective when the system FRP-masonry is aged in water once the properties of the aged materials are considered in the provided relationships.
Autore Pugliese
Tutti gli autori
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M.S. Sciolti , M.A. Aiello , M. Frigione
Titolo volume/Rivista
COMPOSITES. PART B, ENGINEERING
Anno di pubblicazione
2012
ISSN
1359-8368
ISBN
Non Disponibile
Numero di citazioni Wos
21
Ultimo Aggiornamento Citazioni
25/04/2018
Numero di citazioni Scopus
23
Ultimo Aggiornamento Citazioni
24/04/2018
Settori ERC
Non Disponibile
Codici ASJC
Non Disponibile
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