In this paper, the out-of-plane response of infill walls is investigated by means of non-linear monotonic (push-over) analyses through a combined finite and discrete modelling approach. The model accounts for material deformability, crack formation, sliding, separa-tion and formation of new contacts. Masonry units are modelled as finite elements, and differ-ent material models are assumed for the masonry. Contact between masonry units, and between masonry and frame elements is modelled by means of interfaces, which permit tan-gential motion with frictional sliding. Frame elements are modelled by means of a linear-elastic material. The results of the numerical analyses are compared with those of experimen-tal tests available in the literature. The advantages and disadvantages of the adopted model-ling strategy are investigated.
Finite-discrete element modelling of masonry infill walls subjected to out-of-plane loads / Liberatore, Laura; Bruno, Marta; AL SHAWA, Omar; Pasca, Monica; Sorrentino, Luigi. - ELETTRONICO. - (2016), pp. 1-11. (Intervento presentato al convegno VII European Congress on Computational Methods in Applied Sciences and Engineering tenutosi a Crete Island, Greece 5-10 June 2016 nel 5-10 June 2016).
Finite-discrete element modelling of masonry infill walls subjected to out-of-plane loads
LIBERATORE, LauraPrimo
;BRUNO, MARTA;AL SHAWA, OMAR;PASCA, Monica;SORRENTINO, Luigi
2016
Abstract
In this paper, the out-of-plane response of infill walls is investigated by means of non-linear monotonic (push-over) analyses through a combined finite and discrete modelling approach. The model accounts for material deformability, crack formation, sliding, separa-tion and formation of new contacts. Masonry units are modelled as finite elements, and differ-ent material models are assumed for the masonry. Contact between masonry units, and between masonry and frame elements is modelled by means of interfaces, which permit tan-gential motion with frictional sliding. Frame elements are modelled by means of a linear-elastic material. The results of the numerical analyses are compared with those of experimen-tal tests available in the literature. The advantages and disadvantages of the adopted model-ling strategy are investigated.File | Dimensione | Formato | |
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