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March 7, 2026Journal of Materials Research and TechnologyOpen Access

Effect of Aging Temperature on the Corrosion Resistance of a 2.2 GPa Ultra-high-strength Steel Designed Based on a Hybrid Concept

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Authors

XPXiaokun PanCZChaolei ZHANGYWYi-Ling Wu

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Overview

Experimental investigation reveals aging temperature affects corrosion resistance in high-strength steel, suggesting optimal processing conditions.

Key Points

  • This research aims to examine how aging temperature influences the corrosion resistance of a novel ultra-high-strength steel.
  • Developed steel using a hybrid low-carbon alloy concept.
  • Systematically investigated corrosion resistance at varying aging temperatures.
  • Measured tensile strength and dislocation density to assess mechanical properties.
  • Older aging temperatures led to poorer corrosion resistance.
  • Corrosion products remained consistent regardless of aging temperature.
  • Optimally aged steel at 540 °C showed highest tensile strength of 2256 MPa and 9.2% elongation.

Cite This Study

Pan et al. (2026) studied this question.

synapsesocial.com/papers/69abc0b85af8044f7a4e9580https://doi.org/10.1016/j.jmrt.2026.03.022
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