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2022
Azevedo, A. S., J. P. Firmo, J. R. Correia, C. Chastre, H. Biscaia, and N. Franco. "Fire behaviour of CFRP-strengthened RC slabs using different techniques – EBR, NSM and CREatE." Composites Part B: Engineering. 230 (2022). AbstractWebsite

This paper presents an experimental study about the fire behaviour of reinforced concrete (RC) slabs strengthened with carbon fibre reinforced polymer (CFRP) strips, applied according to three different techniques: externally bonded reinforcement (EBR); near-surface mounted (NSM), and continuous reinforcement embedded at the ends (CREatE), a new technique that prevents premature CFRP debonding. The main goals of this study were three-fold: to understand and compare the fire behaviour of the strengthening techniques, namely the CREatE technique (yet to be studied); to assess the efficiency of the fire protection schemes (constant thickness vs. increased thickness at the CFRP anchorage zones) in extending the fire resistance of the CFRP systems; and, based on the experimental results and data available in the literature, to propose “critical” temperatures for the fire design of CFRP-strengthened RC members. The results obtained show that: (i) without protection, the CREatE technique presented higher fire resistance than the alternative NSM and EBR techniques (24 min vs. 16 min and 2 min); (ii) with fire protection, regardless of its geometry, the NSM and CREatE techniques presented a similar fire resistance (both above 120 min), higher than the EBR technique (less than 60 min); and (iii) the “critical” temperatures for each technique were defined as 1.0Tg, 2.5Tg and 3.0Tg for EBR, NSM and CREatE, respectively, with Tg being the glass transition temperature of the adhesive, defined based on the onset of the storage modulus curve decay from dynamic mechanical analysis. © 2021 Elsevier Ltd

Coronelli, Dario, Aurelio Muttoni, Radu Pascu, and Antonio Ramos. "Flat Plate Building and Frame Full Scale Tests for European Design Provisions." American Concrete Institute, ACI Special Publication. Vol. SP-353. 2022. 73-96. Abstract
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Pereira, \{Maria Elias\}, Jonas Deuermeier, Cátia Figueiredo, Ângelo Santos, Guilherme Carvalho, \{Vítor Grade\} Tavares, Rodrigo Martins, Elvira Fortunato, Pedro Barquinha, and Asal Kiazadeh. "Flexible Active Crossbar Arrays Using Amorphous Oxide Semiconductor Technology toward Artificial Neural Networks Hardware." Advanced Electronic Materials. 8 (2022). Abstract

Memristor crossbar arrays can compose the efficient hardware for artificial intelligent applications. However, the requirements for a linear and symmetric synaptic weight update and low cycle-to-cycle (C2C) and device-to-device variability as well as the sneak-path current issue have been delaying its further development. This study reports on a thin-film amorphous oxide-based 4×4 1-transistor 1-memristor (1T1M) crossbar. The a-IGZO crossbar is built on a flexible polyimide substrate, enabling IoT and wearable applications. In the novel framework, the thin-film transistor and memristor are fabricated at the same level, with the same processing steps and sharing the same materials for all layers. The 1T1M cells show linear and symmetrical plasticity characteristic with low C2C variability. The memristor performs like an analog dot product engine and vector–matrix multiplications in the 4×4 crossbars is demonstrated experimentally, in which the sneak-path current issue is successfully suppressed, resulting in a proof-of-concept for a cost-effective, flexible artificial neural networks hardware.

2021
Rocha, H., P. Palhares, and M. Botelho From classroom teaching to distance learning: the experience of Portuguese mathematics teachers. INTED - 15th annual International Technology, Education and Development Conference. IATED, 2021.
Azevedo, A., J. Firmo, J. Correia, C. Chastre, H. Biscaia, and N. Franco. "Fire behaviour of rc slab strips strengthened with advanced cfrp strengthening systems." fib Symposium. Vol. 2021-June. 2021. 1306-1315. Abstract

Carbon fibre reinforced polymer (CFRP) composite systems are widely used to strengthen reinforced concrete (RC) structures through bonding strips/sheets on the concrete surface – externally bonded reinforcement (EBR) technique, or through strips/rods bonded inside slits in the concrete cover – near-surface mounted (NSM) technique. Although both techniques provide high strength increases, it is usually not possible to use the CFRPs’ full strength due to premature debonding, especially with EBR. This limitation can be overcome when using CREatE (continuous reinforcement embedded at ends) technique (developed by the last three authors), which consists of (i) bonding the central part of the CFRP strip (as in EBR), or the CFRP rod (as in NSM), and (ii) anchoring both ends of the strip/rod inside the concrete section, after a transition curve, enhancing its anchorage capacity. However, all these techniques are susceptible to fire, due to the polymeric nature of CFRP materials and epoxy adhesives. This paper presents the results of an experimental study regarding the fire behaviour of RC slab strips strengthened with EBR, NSM and CREatE techniques, in which the influence of applying different fire protection systems was investigated. The specimens were strengthened with those systems and simultaneously subjected to a service load and the ISO 834 fire curve. The following main results were obtained: (i) without fire protection, the CREatE technique presented the highest fire resistance due to the better anchorage of the CFRP; (ii) when protected, the NSM technique presented higher fire resistance compared to EBR and CREatE techniques; and (iii) “critical” temperatures were proposed for each technique, 1.0Tg, 2.5Tg, and 3.0Tg for EBR, NSM and CREatE techniques, respectively. © Fédération Internationale du Béton (fib) – International Federation for Structural Concrete.

Coronelli, Dario, Luca Martinelli, Aurelio Muttoni, Radu Pascu, and Antonio Ramos. "Flat slab structural response for seismic european design. Full scale testing results." fib Symposium. Vol. 2021-June. 2021. 1831-1839. Abstract
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Coronelli, Dario, Luca Martinelli, Aurelio Muttoni, Radu Pascu, and Antonio Ramos. "Flat slab structural response for seismic european design. Full scale testing results." fib Symposium. Vol. 2021-June. 2021. 1831-1839. Abstract
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Santos, J. P., Mauro Guerra, Jorge M. Sampaio, Gonçalo R. Vília, César A. Godinho, Daniel Pinheiro, Pedro Amaro, José P. Marques, Jorge Machado, Paul Indelicato, Fernando Parente, and José Paulo Santos. "Fundamental Parameters Related to Selenium K\alpha and K\beta Emission X-ray Spectra." Atoms (2021). AbstractWebsite
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2020
Dinis, Duarte, Ângelo Palos Teixeira, and Ana Barbosa-Póvoa. "ForeSim-BI: A predictive analytics decision support tool for capacity planning." Decision Support Systems. 131 (2020): 113266. AbstractWebsite
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Carreira, Paulo, Vasco Amaral, and Hans Vangheluwe Foundations of Multi-Paradigm Modelling for Cyber-Physical Systems. Springer, 2020.
Esquível, Manuel L., Paula Patrício, and Gracinda R. Guerreiro. "From ODE to Open Markov Chains, via SDE: an application to models for infections in individuals and populations." Computational and Mathematical Biophysics. 8 (2020): 180-197.
Modano, M., A. Majumder, F. Santos, R. Luciano, and F. Fraternali. "Fast and Optimized Calculation of the Cable Pretension Forces in Arch Bridges With Suspended Deck." Frontiers in Built Environment. 6 (2020). AbstractWebsite
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Torabian, Ala, Brisid Isufi, Davood Mostofinejad, and António Pinho Ramos. "Flexural strengthening of flat slabs with FRP composites using EBR and EBROG methods." Engineering Structures. 211 (2020): 110483. AbstractWebsite

One of the major disadvantages of conventional fibre-reinforced polymer (FRP) strengthening techniques is the premature debonding of the FRP, leading to an underutilization of the materials. The externally bonded reinforcement on grooves (EBROG) method, which has been proven successful in postponing debonding in several structural applications, is examined in this study for the first time for realistic conditions in flat slabs. To this end, two different layouts of the strengthening solution are tested under concentric monotonic loading: one representing roof-level slab-column connections in which carbon FRP (CFRP) sheets are laid on top of the joint region (cross layout); and another one representing intermediate floors, in which the aforementioned layout is not possible due to the presence of the column (grid layout). For each layout, two FRP bonding techniques are used: conventional externally bonded reinforcement (EBR) and EBROG. Another specimen, without FRP strengthening, is used as a reference. It is shown that the EBROG technique is effective in postponing debonding for both layouts. Compared to the specimens in which EBR was used, the load capacity was increased in case of EBROG by 36% when FRP sheets were bonded on top of the joint (cross layout) and by 15% when sheets were attached outside the joint region (grid layout). Debonding strains are shown to be significantly higher in the case of EBROG compared to EBR. The experimentally observed debonding strains were compared with code provisions and predictions of models from the literature. A simple calculation method giving reasonably good results for the load capacity of the FRP-strengthened specimens is presented.

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

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Póvoa, Ricardo, Nuno Lourenço, Ricardo Martins, António Canelas, Nuno Horta, and João Goes. "A Folded Voltage-Combiners Biased Amplifier for Low Voltage and High Energy-Efficiency Applications." IEEE Transactions on Circuits and Systems II: Express Briefs (2019).
Mateus, Octávio, Pedro M. Callapez, Michael J. Polcyn, Anne S. Schulp, António Olímpio Gonçalves, and Louis L. Jacobs. "The Fossil Record of Biodiversity in Angola Through Time: A Paleontological Perspective." Biodiversity of Angola: Science & Conservation: A Modern Synthesis. Eds. Brian J. Huntley, Vladimir Russo, Fernanda Lages, and Nuno Ferrand. Springer International Publishing, 2019. 53-76. Abstractmateus2019_chapter_thefossilrecordofbiodiversityi.pdf

This chapter provides an overview of the alpha paleobiodiversity of Angola based on the available fossil record that is limited to the sedimentary rocks, ranging in age from Precambrian to the present. The geological period with the highest paleobiodiversity in the Angolan fossil record is the Cretaceous, with more than 80{%} of the total known fossil taxa, especially marine molluscs, including ammonites as a majority among them. The vertebrates represent about 15{%} of the known fauna and about one tenth of them are species firstly described based on specimens from Angola.

Amado, João Luís, Luís Freire, and Filipe Amarante dos Santos Framework for the management of a large stock of earth retaining structures. IABSE Symposium 2019 Guimarães Towards a Resilient Built Environment - Risk and Asset Management . Guimarães, 2019.
Secci, L., E. Teoni, M. Lapi, M. Orlando, and a Ramos. "Finite element analysis of punching shear of R/C slabs: A hybrid approach for model calibration." Proceedings of the fib Symposium 2019: Concrete - Innovations in Materials, Design and Structures. 2019. 643-650. Abstract
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Kiazadeh, Asal, and Jonas Deuermeier. "Flexible and transparent ReRAM devices for system on panel (SOP) application." 2nd ed. Elsevier, 2019. 519-538. Abstract
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Mateus, Octávio, Pedro M. Callapez, Michael J. Polcyn, Anne S. Schulp, António Olímpio Gonçalves, and Louis L. Jacobs. "The Fossil Record of Biodiversity in Angola Through Time: A Paleontological Perspective." Biodiversity of Angola: Science {&} Conservation: A Modern Synthesis. Eds. Brian J. Huntley, Vladimir Russo, Fernanda Lages, and Nuno Ferrand. Cham: Springer International Publishing, 2019. 53-76. Abstract

This chapter provides an overview of the alpha paleobiodiversity of Angola based on the available fossil record that is limited to the sedimentary rocks, ranging in age from Precambrian to the present. The geological period with the highest paleobiodiversity in the Angolan fossil record is the Cretaceous, with more than 80{%} of the total known fossil taxa, especially marine molluscs, including ammonites as a majority among them. The vertebrates represent about 15{%} of the known fauna and about one tenth of them are species firstly described based on specimens from Angola.

Silva, TEF, S. Gain, D. Pinto, A. M. P. de Jesus, J. Xavier, A. Reis, and P. A. R. Rosa. "Fracture characterization of a cast aluminum alloy aiming machining simulation." Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications. 233 (2019): 402-412. AbstractWebsite

Despite extensive research regarding metal cutting simulation, the current industrial practice very often relies on empirical data when it comes to tool design. In order accurately simulate the cutting process it is not only important to have robust numerical models that closely portray the phenomenon, but also to properly characterize the material taking into account the cutting conditions. The goal of this investigation focuses on the mechanical characterization of the cast aluminum alloy AlSi9Cu3 by conducting both compression and fracture tests. Due to its very good castability, machinability, and attractive mechanical properties, this alloy is widely used in casting industry for the manufacture of automotive components, among others. Besides the experimental characterization, a numerical methodology is proposed for the modeling of the cast alloy, making use of the Johnson–Cook constitutive material model, in Abaqus/CAE. The material model is calibrated based on compression tests at multiple conditions (quasi-static, incremental dynamic and high temperatures). The identified model is then validated by simulation of the ductile fracture tests of notched specimens. The obtained numerical results were consistent with the experimentally obtained, contributing to the validity of the presented characterization technique.

Amado, J., L. Freire, and F. A. D. Santos. "Framework for the management of a large stock of earth retaining structures." IABSE Symposium, Guimaraes 2019: Towards a Resilient Built Environment Risk and Asset Management - Report. 2019. 780-787. Abstract
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