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March 3, 2026Corrosion Communications0 citationsOpen Access

Understanding of localized corrosion behavior induced by composite inclusions with Ca, Mn, and RE-containing sulfide part of low-alloy steel in deaerated environments

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GLGengxin LiHMHeng MaHMHeng Ma

Key Points

  • Localized corrosion is significantly influenced by the type of sulfide inclusion within the steel matrix.
  • Inclusions like MgO·Al2O3-CaS create cathodically protected regions, while others induce shallow pits.
  • Characterization shows that (RE)AlO3-(RE)2O2S inclusions form larger pits than Al2O3-MnS due to galvanic effects.
  • Understanding these relationships is critical for designing corrosion-resistant materials in engineering.

Abstract

• Localized corrosion induced by three kinds of inclusions with different sulfides part is studied. • CaS part serves as a micro-anode and results in the formation of a cathodically protected region around the inclusion. • Circular shallow pit forms around Al 2 O 3 -MnS and (RE)AlO 3 -(RE) 2 O 2 S inclusions because of the sulfide part serving as micro-cathodes. • Larger and deeper pits are formed around (RE)AlO 3 -(RE) 2 O 2 S inclusion as compared to that initiated by Al 2 O 3 -MnS inclusion. This study investigates influences of sulfide type within oxide-sulfide composite inclusions on localized corrosion behavior of low-alloy steel in deaerated soil solution. Three distinct inclusion types were identified: MgO·Al 2 O 3 -CaS, Al 2 O 3 -MnS, and (RE)AlO 3 -(RE) 2 O 2 S, exhibiting similar physical properties but distinct electrochemical behavior compared to steel matrix. MgO·Al 2 O 3 -CaS inclusion initiated corrosion through micro-galvanic coupling, with electrochemically dissolved CaS creating a circular protected region. Conversely, Al 2 O 3 -MnS and (RE)AlO 3 -(RE) 2 O 2 S inclusions induced circular shallow pits, attributed to that sulfide phases acted as micro-cathodes accelerating interfacial corrosion. Notably, RE-oxysulfide inclusions generated significantly larger pits (both diameter and depth) than MnS-containing counterparts, attributed to their larger dimensions enhancing galvanic corrosion effects. These findings establish critical relationships between inclusion chemistry/morphology and localized corrosion patterns.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69a7665abadf0bb9e87dcad0https://doi.org/10.1016/j.corcom.2025.05.004
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