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steel research international· 2026Q2

Study on Corrosion and Mechanical Property Degradation Behavior of NiCrMoV Steel Under Laboratory‐Simulated Low‐Temperature Seawater Conditions

Hao Xiang, Huiyun Tian, Yang Qu, Zhongyu Cui

Short summary

Low temperatures significantly inhibit corrosion of NiCrMoV steel in seawater, with rust layers partially hindering ion transport, but pit geometry (width-to-depth ratio) severely degrades mechanical properties, particularly elongation, following a quadratic trend.

AI-generated from the title and abstract; the full text is not read.

Key points

  • Low temperatures inhibit the corrosion of NiCrMoV steel in simulated seawater.
  • The rust layer, composed of α‐FeOOH, β‐FeOOH, γ‐FeOOH, and Fe 3 O 4 /γ‐Fe 2 O 3, may partially hinder ion transport despite existing cracks.
  • Elevated temperature promotes lateral and vertical pit growth, while high Cl− concentration primarily promotes longitudinal growth.
  • A small pit width-to-depth ratio severely degrades mechanical properties, especially elongation, following a quadratic trend.

AI-generated from the title and abstract; the full text is not read.

Abstract

To elucidate the corrosion behavior and mechanical property degradation mechanisms of NiCrMoV steel under laboratory‐simulated low‐temperature seawater conditions, this study conducts systematic experiments under three static temperature conditions and two freezing‐thawing conditions. The results indicate that low temperature significantly inhibits the corrosion behavior of this steel. The rust layer primarily consists of α‐FeOOH, β‐FeOOH, γ‐FeOOH, and Fe 3 O 4 /γ‐Fe 2 O 3 . Although evident cracks exist within the rust layer, the accumulated rust may partially hinder the transport of ions to the substrate. Elevated temperature effectively promotes the development of corrosion pits in both lateral and vertical directions, whereas high Cl − concentration only promotes pit development in the longitudinal direction. A small pit width‐to‐depth ratio deteriorates the mechanical properties severely. Within the present dataset, the degradation of mechanical properties exhibits a quadratic trend with the pit width‐to‐depth ratio, which is associated with the reduction in effective load‐bearing area and increased stress concentration. The occurrence of pitting corrosion causes a more pronounced degradation in elongation than in strength.

The authors' abstract, as published at the source. steel research international, 2026 · DOI ↗

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Field: Metals and Alloys

Metals and AlloysMaterials Science