The use of fiber reinforced mortar for structural retrofitting/new construction of masonry structures has become increasingly popular in the last years. A preliminary study on the mechanical performances under compression of masonry panels is performed by selecting three different mortar types. The panels were composed of mortar and clay bricks; the mortars adopted are the following: i) commercial type mortar, ii) traditional mortar and iii) traditional mortar with the addition of a cellulose-based industrial non-hazardous waste. In particular, the study proposes the use of deink paper sludge as mortar filler as an example of sustainable end-of-life reuse. Using the collected experimental results involving the mortars and clay brick form a regression analysis on compressive strengths was performed in order to evaluate the influence of the deink paper sludge on the compressive behavior of the panel.

Structural behavior of small-scale masonry panel with fiber reinforced mortar under compressive load

Verre S.
Conceptualization
2019-01-01

Abstract

The use of fiber reinforced mortar for structural retrofitting/new construction of masonry structures has become increasingly popular in the last years. A preliminary study on the mechanical performances under compression of masonry panels is performed by selecting three different mortar types. The panels were composed of mortar and clay bricks; the mortars adopted are the following: i) commercial type mortar, ii) traditional mortar and iii) traditional mortar with the addition of a cellulose-based industrial non-hazardous waste. In particular, the study proposes the use of deink paper sludge as mortar filler as an example of sustainable end-of-life reuse. Using the collected experimental results involving the mortars and clay brick form a regression analysis on compressive strengths was performed in order to evaluate the influence of the deink paper sludge on the compressive behavior of the panel.
2019
Inglese
AA.VV.
Prof. Angelo Di Tommaso, Prof. Cristina Gentilini and Prof. Giovanni Castellazzi
Key Engineering Materials
contributo
STAMPA
817
Mechanics of Masonry Structures Strengthened with Composite Materials III
Vol. 817
472
477
6
Trans Tech Publications Ltd
Esperti anonimi
2019
Bologna
Internazionale
Compression; Eco-friendly Systems; Masonry; Reinforcing Fiber; Waste of Cellulose
no
none
Bencardino, F.; Cecchi, A.; Franceschi, M.; Nistico, M.; Ombres, L.; Verre, S.
273
info:eu-repo/semantics/conferenceObject
6
4 Contributo in Atti di Convegno (Proceeding)::4.1 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11389/61516
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