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Dive into the research topics where Fabio Corazza is active.

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Featured researches published by Fabio Corazza.


Applied Mechanics and Materials | 2011

Electrical Properties of Carbon Nanotubes Cement Composites for Monitoring Stress Conditions in Concrete Structures

Luigi Coppola; Alessandra Buoso; Fabio Corazza

Cement pastes reinforced with Multi-Walled carbon NanoTubes (MWNTs) are smart materials with piezoresistivity properties. Adding carbon nanotubes to the cement matrix, in fact, the electrical resistivity of cementitious composites changes with the stress conditions under static and dynamic loads. This particular behaviour can be used to evaluate the stress level in reinforced concrete structures, to monitor the traffic flow, to weigh vehicles. In this paper data on pressure-sensitive behaviour under compressive stress of cement pastes and mortars containing different percentages (from 0.0% to 1.0% vs. cement mass) of MWNTs are presented.In order to form a conductive network and enhancethe piezoresistive properties of cementitious mixtures, Carbon NanoTubes (CNTs) need to be efficiently dispersed in the cement matrix. Two different methods to disperse CNTsin the cement matrix were used. The first one uses a surfactant (Sodium Linear Alkyl Benzene Sulphonate - LAS): MWNTs were dispersed in a LAS aqueous solution,and thenmixed with cement and a defoamer (tributyl phosphate) to decrease the air bubble in MWNT filled cement-based composites. The second method consists in mixing CNTs with about 50% of the mixing water in a becker by means of a glass wand. Then, the solution is sonicated by an ultrasonic generator for 10 minutes. Finally, the sonicatedCNT-aqueous solution ismixed with cement (and sand for the mortars). The piezoresistivity properties of the cementitious mixtures manufactured with the two above mentioned CNTs dispersing methods will be compared.Experimental results show that the electrical resistance changes synchronously with the compressive stress levelsfor the specimens manufactured with both methods. Therefore, CNTs improve the pressure-sensitivity of cementitious composites. Moreover, the piezoresistive response is better for cementitious composites manufactured by using the surfactant agent to disperse CNTs. Data indicate that – thanks to the better dispersion of nanotubes promoted by the surfactant - the pressure-sensitivity properties of cement pastes can be achieved even by using a very low percentage of CNTS (0.1% vs. cement mass). These findings seem to indicate that self-sensing CNTs/cement composite can be produced. These smart materials have great potential and they could be used in the next future in concrete field for practical applications to monitor the stress level of reinforced concrete elements subjected to static, dynamic and impact loads. In particular, informations on actual stress existing under dynamic and impact loads could be improve design procedures in protective structures.


CMSS-2013. International Congress on Materials & Structural Stability | Rabat, Morocco, 27-30 November 2013 | 2013

The influence of AC and DC electrical resistance and piezoresistivity measurements of CNTs/Cement composites

Luigi Coppola; Alessandra Buoso; Fabio Corazza


1st Workshop on "The new boundaries of structural concrete : Le Nuove Frontiere del Calcestruzzo Strutturale", Università degli Studi di Salerno – ACI Italy Chapter, Salerno, Italy, 22-23 Aprile 2010 | 2010

Experimental study on the properties of cement composites with carbon nanotubes for monitoring the stress conditions of the reinforced concrete structures

Luigi Coppola; Alessandra Buoso; Enrico Borgarello; Elisa Crippa; Fabio Corazza


Thirteenth International Conference on Recent Advances in Concrete Technology and Sustainability Issues | 2015

Comparative evaluation of piezoresistivity of CNTs/Cement composites measured by AC and DC techniques

Luigi Coppola; Alessandra Buoso; Fabio Corazza


XII Convegno Nazionale AIMAT 2014 | 2014

Valutazione delle proprietà piezoresistive di compositi cementizi con nanotubi in carbonio mediante tecniche di misura in AC e DC

Luigi Coppola; Alessandra Buoso; Fabio Corazza


27° Convegno Nazionale AICAP - Giornate AICAP 2014: “Strutture nel tessuto urbano. Progetto e realizzazione del nuovo e di interventi su esistente” | 2014

Valutazione comparativa della piezoresistività dei compositi cementizi rinforzati con nanotubi in carbonio mediante misura in corrente continua e alternata

Luigi Coppola; Alessandra Buoso; Fabio Corazza


CMSS-2013. International Congress on Materials & Structural Stability | Rabat, Morocco, 27-30 November 2013 | 2013

The influence of electrode type/set-up and frequency in AC measurements of electrical resistance and piezoresistivity of CNTs reinforced cementitious composites.

Luigi Coppola; Alessandra Buoso; Fabio Corazza


Recent Advances in concrete technologies and sustainability issues | 2012

Experimental study on the electrical properties of cement composites with carbon nanotubes for monitoring the stress conditions of reinforced concrete structures

Luigi Coppola; Alessandra Buoso; Fabio Corazza


AIMAT 2012: XI convegno nazionale Aimat, Gaeta, 16-19 settembre 2012 | 2012

Studio sperimentale delle proprietà elettriche di materiali a base cementizia con nanotubi in carbonio

Luigi Coppola; Alessandra Buoso; Fabio Corazza


2nd ACI Italy Chapter Workshop: The New Boundaries of Structural Concrete. Workshop proceedings | 2011

The influence of carbon nanotubes dispersion on stress sensitivity of cementitious composites materials

Luigi Coppola; Alessandra Buoso; Fabio Corazza

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