Masonry buildings are still very common in the area with high seismic zone, such as the Mediterranean countries and other areas of the world recently hit by earthquakes of considerable intensity. The structural reinforcement of the masonry load-bearing elements is often necessary to increase their seismic resistance, also underway to modern regulatory codes. The use of FRP materials (fiber-reinforced polymers), produced by the pultrusion process, is for these purposes of a possible solutions. FRP pultruded structural elements could enhance the seismic capacity of the reinforced masonry structure and represent an advantage. The application of these materials in the field of structural reinforcement, takes place by gluing with appropriate adhesives or by bolting on the element to be reinforced. The aim of our research is the evaluation of the life cycle (LCA) of FRP glued a halted to the masonry. In detail, the research shows the final experimental results, related to the residual mechanical performance of pultruded samples subject to induced aging.

FRP pultruded material as Reinforcement for masonry: Expected interaction in the Medium and long Time

Russo, Salvatore;Ippolito, Ileana;
2019-01-01

Abstract

Masonry buildings are still very common in the area with high seismic zone, such as the Mediterranean countries and other areas of the world recently hit by earthquakes of considerable intensity. The structural reinforcement of the masonry load-bearing elements is often necessary to increase their seismic resistance, also underway to modern regulatory codes. The use of FRP materials (fiber-reinforced polymers), produced by the pultrusion process, is for these purposes of a possible solutions. FRP pultruded structural elements could enhance the seismic capacity of the reinforced masonry structure and represent an advantage. The application of these materials in the field of structural reinforcement, takes place by gluing with appropriate adhesives or by bolting on the element to be reinforced. The aim of our research is the evaluation of the life cycle (LCA) of FRP glued a halted to the masonry. In detail, the research shows the final experimental results, related to the residual mechanical performance of pultruded samples subject to induced aging.
2019
Mechanics of masonry structures strengthened with composite materials III : 6th International Conference on Mechanics of Masonry Structures Strengthened with Composite Materials (MuRiCo 6, 2019) : selected, peer reviewed papers from the 6th International Conference on Mechanics of Masonry Structures Strengthened with Composite Materals (MuRiCo6), June 26-28, 2019, Bologna, Italy
Inglese
817
89
94
6
9783035715651
Trans Tech Publications
Zurich
SVIZZERA
6th International Conference on Mechanics of Masonry Structures Strengthened with Composite Materials, MuRiCo6 2019
6-28 June 2019
Bologna
Internazionale
Durability; Frp interaction; FRP Masonry; Long time behavior FRP pultruded profiles
no
reserved
info:eu-repo/semantics/conferenceObject
3
3. Contributo in atti di convegno (Proceedings)::3.1 Contributo in atti di convegno
Russo, Salvatore; Ippolito, Ileana; Bergamo, Claudia
273
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11578/342157
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