Study on the effectiveness of the CRM system: numerical simulations on masonry piers with OOFEM layered elements
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[1] I. Boem. Characterization of Textile-Reinforced Mortar: State of the Art and Detail-Level Modeling with a Free Open-Source Finite-Element Code , 2022, Journal of Composites for Construction.
[2] A. Kohoutková,et al. Numerical Simulations of Masonry Elements Strengthened through Fibre-Reinforced Mortar: Detailed Level Modelling Using the OOFEM Code , 2022, Key Engineering Materials.
[3] P. Roca,et al. Cyclic shear-compression testing of brick masonry walls repaired and retrofitted with basalt textile reinforced mortar , 2021, Composite structures.
[4] N. Gattesco,et al. Rehabilitation of Masonry Buildings with Fibre Reinforced Mortar: Practical Design Considerations Concerning Seismic Resistance , 2021, Key Engineering Materials.
[5] G. de Felice,et al. Out-of-plane seismic retrofitting of masonry walls with Textile Reinforced Mortar composites , 2019, Bulletin of Earthquake Engineering.
[6] Thanasis Triantafillou,et al. State-of-the-art on strengthening of masonry structures with textile reinforced mortar (TRM) , 2018, Construction and Building Materials.
[7] Natalino Gattesco,et al. Out-of-plane behavior of reinforced masonry walls: Experimental and numerical study , 2017 .
[8] N. Gattesco,et al. Characterization tests of GFRM coating as a strengthening technique for masonry buildings , 2017 .
[9] Natalino Gattesco,et al. Experimental and analytical study to evaluate the effectiveness of an in-plane reinforcement for masonry walls using GFRP meshes , 2015 .
[10] Peter Grassl,et al. CDPM2: A damage-plasticity approach to modelling the failure of concrete , 2013, 1307.6998.
[11] Bořek Patzák,et al. OOFEM — an Object-oriented Simulation Tool for Advanced Modeling of Materials and Structures , 2012 .
[12] N. Gattesco,et al. Study on the effectiveness of a CRM system: in-plane and out-of-plane cyclic tests on masonry piers , 2023, Procedia Structural Integrity.