Publications

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2017
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)
Reforço ao punçoamento de lajes fungiformes com lâmina complementar de betão, Fernandes, Hugo, Lúcio Válter, and Ramos António , Revista Portuguesa de Engenharia de Estruturas, Volume III, Issue 5, p.63-72, (2017)
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)
Strengthening of RC slabs with reinforced concrete overlay on the tensile face, Fernandes, Hugo, Lúcio Válter, and Ramos António , Engineering Structures, Volume 132, p.540 - 550, (2017) AbstractWebsite

Abstract Strengthening of concrete structures with a new concrete layer has been commonly used for columns, beams and slabs. This technique is economic and efficient for structural strengthening since it uses the same base materials, steel and concrete. It is usually applied on the compressed face of the concrete element due to concrete’s recognized behaviour under compression, posing several challenges to control cracking and resistance when applied on the tensile face. For assessing the performance of the strengthening method, twelve slab specimens were designed and tested monotonically. The main parameters to assess in this work were the debonding behaviour and load, and the relationship between the latter and the relative displacements at the interface of the two concrete layers. The performance of the strengthened structures strongly relies on the interaction of the two concrete layers, with this being the main subject of the research about overlaid concrete. The load transfer capacity of the interface depends on the interface shear strength, which in turn is highly dependable on substrate roughness, cleanliness and curing conditions of the newly added layer. Interface performance may be improved by using steel connectors crossing the interface, properly anchored on both layers. The importance for these elements grows as the existing concrete is more deteriorated, since adhesion strength will decrease with lower quality concrete. This paper presents the experimental research for the application of bonded concrete overlays on the tensile face of reinforced concrete slabs, mainly aimed at office buildings and parking facilities, where spatial clearances or inaccessibility to the lower side of the slabs are recurrent. A ductile behaviour upon debonding was achieved for the specimens with reinforcement crossing the interface, and a debonding load up to three times that of the reference specimens without reinforcement crossing the interface.

Utilização de betão de elevada resistência em lajes fungiformes, Inácio, Micael, Almeida André, Lúcio Válter, and Ramos António , Revista Portuguesa de Engenharia de Estruturas, Volume III, Issue 5, p.27-36, (2017)
Strengthening of RC slabs with reinforced concrete overlay on the tensile face, Fernandes, Hugo, Lúcio Válter, and Ramos António , Engineering Structures, Volume 132, Number Supplement C, p.540 - 550, (2017) AbstractWebsite
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2016
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.

Flat Slabs under Cyclic Reversed Horizontal Loads, Almeida, André, Lúcio Válter, and Ramos António , 3rd NOVA-Yamaguchi International Seminar – Earthquake Resistant Structures, Caparica, (2016)
Punching behaviour of RC flat slabs under reversed horizontal cyclic loading, Almeida, André F. O., Inácio Micael M. G., Lúcio Válter J. G., and Ramos António Pinho , Engineering Structures, Volume 117, p.204–219, (2016) AbstractWebsite

The aim of this work is to study the behaviour of reinforced concrete flat slab structures under combined vertical and horizontal cyclic loading. A total of five specimens were cast and tested: a control specimen was punched without eccentricity, one specimen was tested under constant vertical loading and monotonically increased eccentricity until failure and the remaining three were tested under constant vertical load, at different shear ratios, and cyclic horizontal loading with increasing horizontal drift ratios. All slabs were similar, measuring 4.25×1.85×0.15m3. The reinforced concrete slab specimens were connected to two steel half columns by 0.25×0.25m2 rigid steel plates, prestressed against the slab using steel bolts, to ensure monolithic behaviour. The cyclic tests were performed using an innovative test setup that allows bending moment redistribution, line of inflection mobility, assures equal vertical displacements at the North-South borders and symmetrical shear forces. Results show that cyclic horizontal actions are very harmful to the slab–column connection, resulting in low horizontal drifts and energy dissipation.

Strengthening of concrete Flat Slabs with an Overlaid Reinforced Concrete Layer, Fernandes, Hugo, Lúcio Válter, and Ramos António , fib Symposium 2016 - Performance-based Approaches for Concrete Structures, Cape Town, (2016)
2015
Punching of high strength concrete flat slabs without shear reinforcement, Inácio, Micael M. G., Almeida André F. O., Faria Duarte M. V., Lúcio Válter J. G., and Ramos António Pinho , Engineering Structures, nov, Volume 103, p.275–284, (2015) AbstractWebsite

The experimental research carried out to study the punching behavior of high strength concrete (HSC) flat slabs is reported in the present work. Three flat slab specimens were cast using HSC and another one with normal strength concrete (NSC), to be used as a reference slab. The HSC mix presented a compressive strength of about 130MPa, with a basalt coarse aggregate. The tested specimens were square with 1650mm side and 125mm thickness. The longitudinal reinforcement ratio varied between 0.94{%} and 1.48{%}. The experimental results show that the use of HSC led to a significant load capacity increase when compared with the reference model made with NSC. Furthermore, the experimental results also indicated that as the longitudinal reinforcement ratio increased, the punching capacity also increased. The results obtained in this set of experimental tests and others collected from the literature were compared with the code provisions by EC2, MC2010 and ACI 318-11.

2014
The effect of the vertical component of prestress forces on the punching strength of flat slabs, Ramos, Pinho A., Lúcio Válter J. G., and Faria Duarte M. V. , Engineering Structures, Volume 76, p.90–98, (2014) Abstract

The use of prestress in flat slabs is a common solution, mainly because it allows larger spans and thinner slabs. Nevertheless, smaller thicknesses near the slab-column connections, along with the superposition of high shear and flexural stresses, arise the question of the slab capacity to resist punching. The punching failure results from the superposition of shear and flexural stresses near the column, and is associated to the formation of a pyramidal plug of concrete which punches through the slab. It is a local and brittle failure. The use of prestress can increase the punching capacity of flat slabs-column connections.This work presents the experimental analysis of flat slab specimens with tendons under punching. Nine slabs were tested using unbonded prestress with high strength steel tendons. The influences on the punching capacity of the vertical component of the prestress forces resulting from inclined tendons near the column and their distance to the column are analysed. The in-plane compression force due to prestress was not applied to the slabs, in order to evaluate only the deviation force influence. This work aims to improve the understanding of the behaviour of prestressed flat slabs under punching load in order to properly evaluate the punching resistance of this kind of structures. The experimental punching loads are compared with the provisions of EC2, ACI 318-11 and MC2010. © 2014 Elsevier Ltd.

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)
SFRC flat slabs punching behaviour - Experimental research, Gouveia, Nuno D., Fernandes Nelson A. G., Faria Duarte M. V., Ramos António M. P., and Lúcio Válter J. G. , Composites Part B: Engineering, Volume 63, p.161–171, (2014) Abstract

The use of randomly distributed steel fibres in the concrete mix improves its mechanical properties. In the particular case of a flat slab-column connection, this solution can provide slabs with an increased load capacity and deformation capacity, allowing a potential reduction of reinforcement. This work presents the experimental study of the behaviour of SFRC flat slabs up to failure under a concentrated loading, accompanied by the study of the mechanical properties of the SFRC, which consisted in three-point loading notched beams, compression and splitting tests. In this study, the hooked end steel fibre dosages varied between 0{%} and 1.25{%} by volume. Test results showed that the inclusion of steel fibres influences both slab stiffness and its load capacity. Increments of load capacity up to 64{%} were obtained in slabs with SFRC compared with the reference slab without fibres. The experimental results were compared with the predictions provided by several existing models. © 2014 Elsevier Ltd. All rights reserved.

2013
Discussion of “Strengthening Two-Way Reinforced Concrete Floor Slabs Using Polypropylene Fiber Reinforcement” by Matthew J. Radik, Ece Erdogmus, and Travis Schafer, Faria, Duarte M. V., Lúcio Valtér J. G., and Pinho Ramos António M. , Journal of Materials in Civil Engineering, aug, Volume 25, Number 8, p.1142–1142, (2013) AbstractWebsite

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Discussion: Pull-out and push-in tests of bonded steel strands, VIULA FARIA, Duarte M., LUCIO Válter J. G., Pinho Ramos A., and MARTI-VARGAS José R. , Magazine of concrete research, Volume 65, Number 17-18, p.1128–1131, (2013) AbstractWebsite

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Punching of Steel Fibre Reinforced Concrete Flat Slabs, Gouveia, Nuno, Fernandes Nelson, Faria Duarte, Ramos António, and Lúcio Válter , fib symposium Tel Aviv 2013, Tel Aviv, p.1–4, (2013) Abstract

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2012
Strengthening of flat slabs with transverse reinforcement by introduction of steel bolts using different anchorage approaches, Inácio, Micael M. G., Pinho Ramos A., Faria Duarte M. V., and Lúcio Válter J. G. , Engineering Structures, nov, Volume 44, p.383–397, (2012) AbstractWebsite

This work presents an experimental study concerning the post-punching behaviour of flat slabs strengthened with a new technique based on post-tensioning with anchorages by bonding using an epoxy adhesive. This strengthening technique proved efficient with respect to ultimate and serviceability states. Five slab specimens were tested in the post-punching range and it was found that the post-punching resistance was on average 78{%} of the punching resistance. This paper reports the development of strand forces and slab displacements from the beginning of the tests, including the bond stresses developed at several stages of the loading process. It was observed that top reinforcement bars were capable of transmitting post-punching loads to the prestressing strands. Taking this into account and based on the load bath envisaged from the column to the slab, expressions for the vertical load capacities corresponding to the parts of the load path are presented and compared with the experimental results, showing their ability to predict both ultimate loads and modes of failure. Compared with other strengthening techniques, the one proposed here not only upgrades ultimate and serviceability behaviour but also adds post-punching resistance, which is a great advantage in the event of progressive collapse, since it may avoid the collapse of an entire structure, thus reducing the risk of material and human losses.

Post-punching behaviour of flat slabs strengthened with a new technique using post-tensioning, Faria, Duarte M. V., Lúcio Válter J. G., and Pinho Ramos A. , Engineering Structures, jul, Volume 40, p.383–397, (2012) AbstractWebsite

This work presents an experimental study concerning the post-punching behaviour of flat slabs strengthened with a new technique based on post-tensioning with anchorages by bonding using an epoxy adhesive. This strengthening technique proved efficient with respect to ultimate and serviceability states. Five slab specimens were tested in the post-punching range and it was found that the post-punching resistance was on average 78{%} of the punching resistance. This paper reports the development of strand forces and slab displacements from the beginning of the tests, including the bond stresses developed at several stages of the loading process. It was observed that top reinforcement bars were capable of transmitting post-punching loads to the prestressing strands. Taking this into account and based on the load bath envisaged from the column to the slab, expressions for the vertical load capacities corresponding to the parts of the load path are presented and compared with the experimental results, showing their ability to predict both ultimate loads and modes of failure. Compared with other strengthening techniques, the one proposed here not only upgrades ultimate and serviceability behaviour but also adds post-punching resistance, which is a great advantage in the event of progressive collapse, since it may avoid the collapse of an entire structure, thus reducing the risk of material and human losses.

Punçoamento de lajes fungiformes reforçadas com parafusos – efeito da área e posicionamento da ancoragem, Inácio, Micael, Ramos António, Lúcio Válter, and Faria Duarte , Encontro Nacional Betão Estrutural 2012, Porto, p.1–8, (2012) Abstract

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Reabilitação Sustentável de Estruturas –Reforço de Lajes de Edifícios de Betão Armado, Faria, Duarte, Lúcio Válter, and Ramos António Pinho , CRSEEL – 2ª Conferência Construção e Reabilitação Sustentável de Edifícios no Espaço Lusófono, Lisbon, (2012) Abstract

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Reforço de lajes com recurso a pós tensão com ancoragens por aderência, Faria, Duarte, Lúcio Válter, and Ramos António , Encontro Nacional Betão Estrutural 2012, Porto, p.1–8, (2012) Abstract

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2011
Material and geometrical parameters affecting punching of reinforced concrete flat slabs with orthogonal reinforcement, Faria, Duarte, Biscaia Hugo, Lúcio Válter, and Ramos António P. , fib Symposium Prague 2011 - Concrete Engineering for Excellence and Efficiency, Prague, (2011) Abstract

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Pull-out and push-in tests of bonded steel strands, Faria, Duarte Viúla M., Lúcio Válter J. G., and Ramos Pinho A. , Magazine of Concrete Research, Volume 63, Number 9, p.689–705, (2011) AbstractWebsite

The objective of this study was to analyse the behaviour of prestress strand anchorages by bonding with an epoxy adhesive for structural strengthening use. Pull-out and push-in tests were carried out on 15·2 mm diameter prestress steel strands sealed in 18 mm diameter holes with several embedment lengths, complemented by long-term tests. Experimental results are presented and compared with theoretical results regarding maximum pull-out and transmittable loads and also draw-in results. Theoretical results are obtained by solving the governing equation of the bond phenomenon adopting a non-linear local bond/slip law derived from pull-out tests with short embedment length. The study shows that it is reasonable to assume an average constant bond stress for anchorage design with the studied epoxy adhesive in the range of the studied values of anchor embedment length and diameter. The average values for bond stress to be used for determining the maximum pull-out and transmittable loads were found to be 12·0 and 5·2 MPa, respectively. Experimental draw-in values show a great variability, and so determining transmission length based on draw-in values may lead to a false perception that the transmission length is very variable.