An innovative laboratory procedure, developed at the Non Destructive Testing Laboratory of the Politecnico di Torino, as a preliminary design stage for the pre-qualification of repair mortars applied to historical masonry buildings is described. Tested repair mortars are suitable for new dehumidified plaster in order to stop the rising damp effects by capillary action on historical masonry walls. Long-term plaster delamination occurs frequently as a consequence of not compatible mechanical characteristics of mortar. Preventing this phenomenon is the main way to increase the durability of repair work. In this direction, it is useful to analyse, through the cohesive crack model, the evolutionary phenomenon of plaster delamination. The parameters used in the numerical simulation of experimental tests are able to characterize the mechanical behaviour of the interface. It is therefore possible to predict delamination in problems with different boundary conditions.

"Mechanical interaction between historical brick and repair mortar: experimental and numerical tests" / Bocca, Pietro Giovanni; Grazzini, Alessandro; Masera, Davide; Alberto, Andrea; Valente, Silvio. - In: JOURNAL OF PHYSICS. CONFERENCE SERIES. - ISSN 1742-6588. - ELETTRONICO. - 305:(2011). (Intervento presentato al convegno 9th International Conference on Damage Assessment of Structures (DAMAS 2011) tenutosi a Oxford nel 11-13 July 2011) [10.1088/1742-6596/305/1/012126].

"Mechanical interaction between historical brick and repair mortar: experimental and numerical tests"

BOCCA, Pietro Giovanni;GRAZZINI, ALESSANDRO;MASERA, DAVIDE;ALBERTO, ANDREA;VALENTE, Silvio
2011

Abstract

An innovative laboratory procedure, developed at the Non Destructive Testing Laboratory of the Politecnico di Torino, as a preliminary design stage for the pre-qualification of repair mortars applied to historical masonry buildings is described. Tested repair mortars are suitable for new dehumidified plaster in order to stop the rising damp effects by capillary action on historical masonry walls. Long-term plaster delamination occurs frequently as a consequence of not compatible mechanical characteristics of mortar. Preventing this phenomenon is the main way to increase the durability of repair work. In this direction, it is useful to analyse, through the cohesive crack model, the evolutionary phenomenon of plaster delamination. The parameters used in the numerical simulation of experimental tests are able to characterize the mechanical behaviour of the interface. It is therefore possible to predict delamination in problems with different boundary conditions.
2011
9781618390493
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2429989