Corrosion Behaviour of Nickel‐Aluminium Bronze (NAB) in Artificial Brackish Water (ABW) and in Sulphide‐Containing Solutions

ABSTRACT Nickel–aluminium bronze (NAB) alloys are used in naval components requiring mechanical strength and corrosion resistance. Sulphides and other sulphur‐containing compounds increase electrolyte aggressiveness and modify corrosion mechanisms in polluted and stagnant marine environments. NAB corrosion behaviour was analysed by potentiodynamic and potentiostatic tests in five solutions: artificial brackish water (ABW, DIN 50905‐4), ABW wherein thioacetamide was replaced by Na 2 S solutions containing 10, 50 and 100 ppm S, and ABW without thioacetamide or Na 2 S (ABW No_Tio ). Corroded surfaces and corrosion products were analysed by optical microscopy (OM) and scanning electron microscopy–energy dispersive X‐ray spectroscopy (SEM–EDS). The results show that thioacetamide acts as an inhibitor, reducing the corrosion rate of NAB and promoting a stratified surface damage morphology. In contrast, Na 2 S‐containing solutions increase corrosion kinetics relative to ABW, promoting inward damage propagation and selective corrosion of the aluminium‐rich β phase. The formation of a thicker and less permeable copper sulphide layer than the oxychloride layer formed in ABW No_Tio may limit anodic dissolution.

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Publication Details

Journal
Materials and Corrosion
Published
2026-09-19
DOI
https://doi.org/10.1002/maco.70264
Primary Topic
Metallurgy and Material Science
Type
article
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article

Corrosion Behaviour of Nickel‐Aluminium Bronze (NAB) in Artificial Brackish Water (ABW) and in Sulphide‐Containing Solutions

María Victoria Biezma Moraleda, Ignacio Cobo, Lourdes Merino Galván
Materials and Corrosion
Metallurgy and Material Science
article

Corrosion Behaviour of Nickel‐Aluminium Bronze (NAB) in Artificial Brackish Water (ABW) and in Sulphide‐Containing Solutions

María Victoria Biezma Moraleda, Ignacio Cobo, Lourdes Merino Galván
article en

Abstract

ABSTRACT Nickel–aluminium bronze (NAB) alloys are used in naval components requiring mechanical strength and corrosion resistance. Sulphides and other sulphur‐containing compounds increase electrolyte aggressiveness and modify corrosion mechanisms in polluted and stagnant marine environments. NAB corrosion behaviour was analysed by potentiodynamic and potentiostatic tests in five solutions: artificial brackish water (ABW, DIN 50905‐4), ABW wherein thioacetamide was replaced by Na 2 S solutions containing 10, 50 and 100 ppm S, and ABW without thioacetamide or Na 2 S (ABW No_Tio ). Corroded surfaces and corrosion products were analysed by optical microscopy (OM) and scanning electron microscopy–energy dispersive X‐ray spectroscopy (SEM–EDS). The results show that thioacetamide acts as an inhibitor, reducing the corrosion rate of NAB and promoting a stratified surface damage morphology. In contrast, Na 2 S‐containing solutions increase corrosion kinetics relative to ABW, promoting inward damage propagation and selective corrosion of the aluminium‐rich β phase. The formation of a thicker and less permeable copper sulphide layer than the oxychloride layer formed in ABW No_Tio may limit anodic dissolution.

Materials and Corrosion
Universidad de Cantabria (ES)
Life below water
Openalex Percentile: Top 24%
Metallurgy and Material Science
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