Corrosion Study on Duplex Stainless Steel UNS S31803 Subjected to Solutions Containing Chloride Ions

Author:

de Souza Lucas Menezes1,Pereira Elaine1,Amaral Thiago Barreto da Silva2,Monteiro Sergio Neves3ORCID,de Azevedo Afonso Rangel Garcez4ORCID

Affiliation:

1. LAMAV—Advanced Materials Laboratory, UENF—State University of the Northern Rio de Janeiro, Av. Alberto Lamego, 2000, Campos dos Goytacazes 28013-602, RJ, Brazil

2. Corrosion Laboratory, IFES—Federal Institute of Education, Science and Technology of Espírito Santo, Av. Vitória, 1729, Jucutuquara, Vitória 29040-780, ES, Brazil

3. Materials Science Program, IME—Military Institute of Engineering, Praça Gen. Tibúrcio, 80, Rio de Janeiro 22290-270, RJ, Brazil

4. LECIV—Civil Engineering Laboratory, UENF—State University of the Northern Rio de Janeiro, Av. Alberto Lamego, 2000, Campos dos Goytacazes 28013-602, RJ, Brazil

Abstract

In the present work, the influence of a corrosive environment and temperature on the corrosion resistance properties of duplex stainless steel S31803 was evaluated. The corrosive process was carried out using solutions of 1.5% HCl (m/m) and 6% FeCl3 (m/m), at temperatures of 25 and 50 °C. The microstructure of UNS S31803 duplex stainless steel is composed of two phases, ferrite and austenite, oriented in the rolling direction, containing a ferrite percentage of 46.2% in the rolling direction and 56.1% in the normal direction. Samples, when subjected to corrosive media and temperature, tend to decrease their mechanical property values. It was observed, in both corrosive media, that with increasing test temperature, there is an increase in the corrosion rate, both uniform and pitting. The sample in HCl solution obtained a uniform corrosion rate of 0.85% at 25 °C and 0.92% at 50 °C and pitting rates of 0.77% and 1.47% at the same temperatures, respectively. When tested in FeCl3 solution, it obtained uniform corrosion of 0.0006% and 0.93% and pitting of 0.53% and 18.5%, at the same temperatures. A reduction in dissolution potentials is also noted, thus characterizing greater corrosion in the samples with increasing temperature.

Funder

State University of the Northern Fluminense

CAPES

CNPq

FAPERJ

Publisher

MDPI AG

Reference31 articles.

1. Chiaverini, V. (2005). Steel and Cast Iron, Associação Brasileira de Metals. [7th ed.].

2. Gunn, R.N. (1997). Duplex Stainless Steels—Microstructure, Properties and Applications, Woodhead Publishing Ltd.

3. Corrosion of antibacterial Cu-bearing 316L stainless steels in the presence of sulfate reducing bacteria;Liu;Corros. Sci.,2018

4. Outokumpu (2013). Handbook of Stainless Steel, Outokumpu.

5. Morais, J.M. (2013). Oil in Deep Waters: A Technological History of Petrobras in Offshore Exploration and Production, IPEA, Petrobras. [1st ed.].

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