Publications

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Análise do efeito de características mecânicas e geométricas que afetam o comportamento ao Punçoamento de lajes fungiformes, Mamede, Nuno, Ramos António, and Faria Duarte , Encontro Nacional Betão Estrutural 2012, Porto, p.1–8, (2012) Abstract

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Análise Numérica Não Linear do Punçoamento em Lajes Fungiformes – Calibração, Mamede, Nuno, Faria Duarte, and Ramos António , Revista Internacional Tech ITT, Volume 12, Issue 35, p.4-13, (2014)
Análise Numérica Não Linear do Punçoamento em Lajes Fungiformes – Estudo Paramétrico, Mamede, Nuno, Faria Duarte, and Ramos António , Revista Internacional Tech ITT, Volume 12, Issue 35, p.14-24, (2014)
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Estudo Experimental do Punçoamento Cíclico em Lajes Fungiformes Reforçadas com Pré-Esforço Transversal, Luis, Marta, and Ramos António , Encontro Nacional Betão Estrutural 2008, Guimarães, (2008) Abstract

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Reabilitação Estrutural de Edifícios com Pós-Tensão, Lúcio, Válter, Faria Duarte, Ramos António, and Ferreira João , ReHabend 2014, Santader, (2014) Abstract

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Reforço de Lajes Fungiformes com Betão Complementar Armado na Face Tracionada, Lúcio, Válter, Fernandes Hugo, and Ramos António , Construção Magazine, Volume 64, (2014)
Reforço de Lajes Fungiformes – Anomalias, Causas e Soluções, Lúcio, Válter, Ramos António, and Faria Duarte , SILE2008 – Seminário Internacional sobre Ligações Estruturais, Lisbon, p.1–10, (2008) Abstract

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Flat slab strenghtening techniques against punching-shear, Lapi, M., Ramos A. P., and Orlando M. , Engineering Structures, Volume 180, p.160-180, (2019) AbstractWebsite

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Performance assessment of flat slabs strengthened with a bonded reinforced-concrete overlay, Lapi, M., Fernandes H., Orlando M., a Ramos, and Lúcio V. , Magazine of Concrete Research, Volume 70, Number 9, p.433-451, (2018) AbstractWebsite
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Static and seismic behaviour of R/C slabs with openings adjacent to columns, Lapi, M., Orlando M., Spinelli P., and a Ramos , Proceedings of the fib Symposium 2019: Concrete - Innovations in Materials, Design and Structures, p.1795-1802, (2019) Abstract
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R/C flat slab connections under lateral loading, Lapi, Massimo, Isufi Brisid, Orlando Maurizio, and Ramos António , XVII Convegno ANIDIS – L´Ingegneria Sismica in Italia, Pistoia, Italy, p.8 pp-, (2017)
A hybrid method for the calibration of finite element models of punching-shear in R/C flat slabs, Lapi, Massimo, Secci Lorenzo, Teoni Emanuele, Ramos Antonio Pinho, and Orlando Maurizio , Computers & Structures, Volume 238, p.106323, (2020) AbstractWebsite

The paper is focused on the calibration of non-linear 3D finite element (FE) analyses to simulate punching failure of R/C flat slabs. The calibration procedure is developed with reference to the code ABAQUS, which is one of the most used computer codes in nonlinear modelling of R/C structures. Generally, the calibration of a nonlinear FE model is grounded on one test only, so its reliability could be limited. Here a hybrid method for the calibration of FE models of R/C flat slabs failing in punching is proposed and discussed. The method consists in calibrating input data by comparison of finite element model (FEM) results with both experimental data and predictions provided by analytical models. The procedure allows for a consistent calibration to be performed, valid for a wide range of longitudinal reinforcement ratios, from 0.5% to 2.00%, and concrete grades, from C20/25 to C50/60. A case study is investigated using the proposed method. Results show that calibrated values of the fracture energy lie between those provided by Model Code 1990 and Model Code 2010. From the new calibration procedure, a relationship between fracture energy and concrete compressive strength is also derived and blind analyses are performed to check its reliability against experimental results.

Comparison of flat slab strengthening techniques against punching-shear, Lapi, Massimo, Martini Daniele, Zagli Emilio, Orlando Maurizio, Ramos Antonio, and Spinelli Paolo , Proceedings of The New Boundaries of Structural Concrete 2016, NBSC2016, Italy ACI Chapter, Capri, Italy, (2016) Abstract

Punching-shear capacity of slab-column connections in existing R/C structures may be inadequate to bear design loads, so strengthening works are required. The lack of punching resistance may be due to detailing, design or building errors; in other cases, such lack is due to a change of use, which requires an increase of resistance. Different techniques have been developed for strengthening R/C slabs against punching: enlargement of the support, gluing external fibre reinforced polymers or casting a bonded concrete overlay (BCO) on the slab's top surface, insertion of post-installed steel bolts, application of fibre reinforced polymers cords as shear reinforcement. In the paper, the authors apply the Critical Shear Crack Theory (CSCT) to all of these techniques and evaluate their efficacy with reference to a case study.

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Post-earthquake strength and deformation capacity of a flat slab specimen with shear studs, Isufi, B., Lúcio V., and Ramos A. P. , Proceedings of the fib Symposium 2019: Concrete - Innovations in Materials, Design and Structures, p.1684-1691, (2019) Abstract
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Influence of flexural reinforcement on the seismic performance of flat slab – Column connections, Isufi, Brisid, Rossi Mariana, and Ramos António Pinho , Engineering Structures, Volume 242, (2021) AbstractWebsite
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EXPERIMENTAL INVESTIGATION ON THE BEHAVIOUR OF HYBRID HPFRC FLAT SLABS, Isufi, Brisid, Marchão Carla, Marreiros Rui, and Ramos António Pinho , fib Symposium, p.1870 – 1879, (2022) Abstract
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Post-earthquake Performance of a Slab-Column Connection with Punching Shear Reinforcement, Isufi, Brisid, Ramos António Pinho, and Lúcio Válter , Journal of Earthquake Engineering, p.1-23, (2020) AbstractWebsite
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A review of tests on slab-column connections with advanced concrete materials, Isufi, Brisid, and Ramos António Pinho , Structures, Volume 32, p.849-860, (2021) AbstractWebsite

Advances in concrete technology during the last decades have resulted in the development of materials with enhanced mechanical properties, such as High Strength Concrete (HSC), Fibre Reinforced Concrete (FRC) and Ultra-High Performance Fibre Reinforced Concrete (UHPFRC). The application of these materials in flat slabs, which are a popular structural solution in Reinforced Concrete (RC) buildings worldwide, has the potential of significantly reducing raw material consumption by enabling the design of slenderer and therefore lighter structures. However, flat slabs are susceptible to punching shear failure, which is a complex phenomenon that remains challenging, even though significant efforts have been made to experimentally study it. For advanced concrete materials (HSC, FRC and UHPFRC), the challenge is further accentuated by the continuous and rapid development of these materials. With the purpose of identifying and highlighting gaps in the published literature, a review of tests with HSC, FRC and UHPFRC slab-column connections in non-seismic and seismic loading applications is presented in this paper. It is shown that future research directions in this field include, among others, testing thicker slabs, HSC slabs with higher concrete compressive strength, HSC combined with FRC and several more cases related to seismic loading conditions.

Post-earthquake Performance of a Slab-Column Connection with Punching Shear Reinforcement, Isufi, Brisid, Ramos António Pinho, and Lúcio Válter , Journal of Earthquake Engineering, Volume 26, Number 3, p.1171 – 1193, (2022) AbstractWebsite
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Role of punching shear reinforcement in the seismic performance of flat slab frames, Isufi, B., Cismasiu I., Marreiros R., Pinho Ramos A., and Lúcio V. , Engineering Structures, Volume 207, (2020) AbstractWebsite
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Slab–column connection punching and ductility improvement methods for seismic response of buildings with flat slabs, Isufi, Brisid, Almeida André, Marreiros Rui, Ramos António Pinho, and Lúcio Válter , Structural Concrete, Volume 23, Number 3, p.1385 – 1398, (2022) AbstractWebsite
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Seismic behaviour of slab-column connections with various punching shear enhancement methods, Isufi, Brisid, Marreiros Rui, Ramos António Pinho, and Lúcio Válter , fib Symposium, Volume 2021-June, p.978 – 986, (2021) Abstract
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Reversed horizontal cyclic loading tests of flat slab specimens with studs as shear reinforcement, Isufi, Brisid, Ramos António Pinho, and Lúcio Válter , Structural Concrete, (2018) AbstractWebsite

The results of a series of experiments on four reinforced concrete flat slab specimens with shear studs and a control specimen without any shear reinforcement are presented. The specimens were tested under constant gravity loads and reversed horizontal cyclic displacements. The main test variables were the applied gravity load and the number of perimeters of studs. One of the specimens was tested in two phases to study the postearthquake behavior. Results showed a considerable improvement of the deformation capacity of specimens with studs compared to the reference specimen. In agreement with previous research, increasing the applied gravity shear ratio resulted in a lower experimental drift capacity. It is shown that a better explanation of the observed ultimate drifts can be made by considering also the flexural capacity and the extent of shear reinforcement. The specimen tested in two phases exhibited considerable residual capacity, even after severe horizontal loading.

Reversed lateral cyclic loading test of two flat slab specimens with punching shear stud reinforcement, Isufi, Brisid, Ramos António, and Lúcio Válter , ICCE 2017 International Conference of Civil Engineering, Tirana, Albania, p.9 pp, (2017)
Reversed horizontal cyclic loading tests of flat slab specimens with studs as shear reinforcement, Isufi, Brisid, Ramos António Pinho, and Lúcio Válter , Structural Concrete, Volume 20, Number 1, p.330-347, (2019) AbstractWebsite

The results of a series of experiments on four reinforced concrete flat slab specimens with shear studs and a control specimen without any shear reinforcement are presented. The specimens were tested under constant gravity loads and reversed horizontal cyclic displacements. The main test variables were the applied gravity load and the number of perimeters of studs. One of the specimens was tested in two phases to study the postearthquake behavior. Results showed a considerable improvement of the deformation capacity of specimens with studs compared to the reference specimen. In agreement with previous research, increasing the applied gravity shear ratio resulted in a lower experimental drift capacity. It is shown that a better explanation of the observed ultimate drifts can be made by considering also the flexural capacity and the extent of shear reinforcement. The specimen tested in two phases exhibited considerable residual capacity, even after severe horizontal loading.