Thanks to its sensitivity and low invasiveness Electrochemical impedance spectroscopy (EIS) is a powerful technique for corrosion assessment and monitoring of metallic artifacts exposed outdoor. This paper presents some preliminary results of an in-situ monitoring campaign, started in 2016 and still in progress, carried out to assess the atmospheric corrosion behavior of the weathering steel structures of a residential building, known as 25-Green, designed by the architect Luciano Pia and located in Torino (Italy). FESEM and -Raman measurements were performed on some specimens of the corrosion patina to correlate the chemical composition and morphology of the corrosion products layer to its protective effectiveness, taking into account the different exposure conditions.

In situ corrosion monitoring campaign of a weathering steel urban building / DI FRANCIA, Elisabetta; Bussetto, Andrea; de Caro, Tilde; Parvis, Marco; Angelini, EMMA PAOLA MARIA VIRGINIA; Grassini, Sabrina. - ELETTRONICO. - (2018), pp. 340-344. (Intervento presentato al convegno 2018 IEEE International Workshop on Metrology for Archaeology and Cultural Heritage (MetroArchaeo 2018) tenutosi a Cassino, Italy nel 22-24 October 2018) [10.1109/MetroArchaeo43810.2018.9089773].

In situ corrosion monitoring campaign of a weathering steel urban building

Elisabetta Di Francia;Marco Parvis;Emma Angelini;Sabrina Grassini
2018

Abstract

Thanks to its sensitivity and low invasiveness Electrochemical impedance spectroscopy (EIS) is a powerful technique for corrosion assessment and monitoring of metallic artifacts exposed outdoor. This paper presents some preliminary results of an in-situ monitoring campaign, started in 2016 and still in progress, carried out to assess the atmospheric corrosion behavior of the weathering steel structures of a residential building, known as 25-Green, designed by the architect Luciano Pia and located in Torino (Italy). FESEM and -Raman measurements were performed on some specimens of the corrosion patina to correlate the chemical composition and morphology of the corrosion products layer to its protective effectiveness, taking into account the different exposure conditions.
2018
978-1-5386-5275-6
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2715556