Corrosion of metals and alloys in aqueous media

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M150 V3 Article

Corrosion of metals and alloys in aqueous media

Authors : Jean-Louis CROLET, Gérard BÉRANGER

Publication date: December 10, 2024 | Lire en français

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ABSTRACT

In the simplest way as possible, this article successively presents an explanation of the origin of the electrochemical nature of the corrosion of any metal in aqueous media, of all the usual parameters of this corrosion electrochemistry and their user manual, and then the four main corrosion mechanisms (uniform and localised), and the three natural protection modes that are chemical inertia, passivity and the possible protectiveness of some corrosion layers. The endless multiplication of all the possible interactions with another process is also addressed, such as construction heterogeneity, metallurgy, mechanics, fluid flow, friction or the biofilms of natural media.

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AUTHORS

  • Jean-Louis CROLET : Ingénieur civil des Mines, Doctor of Science - Consultant

  • Gérard BÉRANGER : Engineer from the École Nationale Supérieure de Chimie de Paris (ENSCP), Doctor of Science - Honorary University Professor (Université de Technologie de Compiègne) - Member of the Académie des technologies

 INTRODUCTION

To the average person, corrosion has always seemed a mysterious evil, involving a medium or one of its components, a metal and various forms of damage. Hence the abundant and ancient traditional nomenclature, based on one or other of these three aspects: corrosion by, corrosion of and corrosion how:

  • corrosion by air, seawater or oxygen, by the atmosphere or soils, by acids, bases or salts, by bacteria or molds, or by all the good and bad environments ;

  • corrosion of iron, steels or cast irons, copper, bronzes or brasses, etc. ;

  • uniform corrosion, pitting, crevice corrosion, etc.

Such a nomenclature has the advantage of perfectly expressing the observations, impressions or priorities of the materials user. On the other hand, it has the major disadvantage of sometimes being unmanageable as it stands. In fact, it results in the definition of several thousand combinations with no logical link between them. In both diagnostics and corrosion prevention, the mere consideration of these raw factual aspects would then result in thousands of unexplained and inexplicable recipes. The result is a truly hopeless situation.

In fact, only a scientific understanding of corrosion mechanisms can provide a simple approach to these complex problems and, above all, reliable solutions. As we shall see in paragraph 1 , aqueous corrosion of metals is essentially electrochemical in nature. This explains why only an electrochemical framework can enable us to identify simple laws of behavior, and therefore also simple rules of prevention. We shall also see that such an electrochemical understanding of corrosion in no way requires an electrochemist by trade, or even by training. In fact, it requires only a few rudimentary concepts, and the aim of 1

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KEYWORDS

corrosion electrochemistry   |   corrosion mechanisms   |   passivity   |   protectiveness   |   hydrogen charging

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Corrosion of metals and alloys in aqueous media

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