3.8 Proceedings Paper

Non-linear Heterogeneous FE Approach for FRP Strengthened Masonry Arches

Publisher

AMER INST PHYSICS
DOI: 10.1063/1.4938931

Keywords

Fiber Reinforced Polymer FRP; masonry arches; FE numerical model; Heterogeneous approach; Masonry strengthening; interface elements

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A fast and reliable non-linear heterogeneous FE approach specifically conceived for the analysis of FRP-reinforced masonry arches is presented. The approach proposed relies into the reduction of mortar joints to interfaces exhibiting a non-linear holonomic behavior, with a discretization of bricks by means of four-noded elastic elements. The FRP reinforcement is modeled by means of truss elements with elastic-brittle behavior, where the peak tensile strength is estimated by means of a consolidated approach provided by the Italian guidelines CNR-DT200 on masonry strengthening with fiber materials, where the delamination of the strip from the support is taken into account. The model is validated against some recent experimental results relying into circular masonry arches reinforced at both the intrados and the extrados. Some sensitivity analyses are conducted varying the peak tensile strength of the trusses representing the FRP reinforcement.

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