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Antonio Nanni

Researcher at University of Miami

Publications -  518
Citations -  19533

Antonio Nanni is an academic researcher from University of Miami. The author has contributed to research in topics: Fibre-reinforced plastic & Flexural strength. The author has an hindex of 62, co-authored 500 publications receiving 16867 citations. Previous affiliations of Antonio Nanni include Missouri University of Science and Technology & University of Minnesota.

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Physical, mechanical and durability properties of GFRP bars with modified acrylic resin (modar) matrix

TL;DR: In this paper, the possibility of using modified acrylic resins (ModAR) as a matrix for GFRP bars has been investigated and the feasibility of using ModAR matrices for concrete structures has been evaluated.

Performance of Double-T Prestressed Concrete Beams Strengthened with Steel Reinforced Polymer

TL;DR: In this article, a parking garage in Bloomington, Indiana, built with precast prestrestressed concrete (PC) double-T beams, was decommissioned due to a need for increased parking-space.
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Performance of decommissioned reinforced concrete girders strengthened with fiber-reinforced polymer laminates

TL;DR: In this paper, the authors present experimental and analytical investigations of reinforced concrete (RC) girders removed from a bridge after 40 years of service and strengthened with externally bonded fiber-reinforced polymer (FRP) sheets.
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Culvert Prototype Made with Seawater Concrete: Materials Characterization, Monitoring, and Environmental Impact

TL;DR: In this paper, a concrete culvert built along the A1 motorway, close to the city of Piacenza, Italy, is described, where concrete mix designs, materials characterization, embedded probes used to monitor the corrosion of the reinforcements, and test results obtained at various stages of execution and service conditions.
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Tensile properties of braided FRP rods for concrete reinforcement

TL;DR: In this paper, the static tensile properties of braided epoxy-impregnated FRP rods made with glass, aramid and polyvinyl alcohol fibers were investigated.