Effect of Microstructure on Stress Corrosion Cracking Susceptibility of Ultra-High Strength Steel

  • An, Woojin
  • Ham, Jinhee
  • Park, Tae Won
  • Son, Jinil
  • Jung, Im Doo
  • ... Kim, Sangshik
  • 외 1명
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초록

Microstructural effect on stress corrosion cracking ( SCC) susceptibility of ultra-high strength steel (UHSS) has been investigated by slow strain rate test (SSRT) in a 3.5% NaCl solution under applied potentials (E-corr -0.1 V and +0.1 V) at a strain rate of 10(-6) s(-1). Tempered martensite appeared in all planes together with elongated grains in transverse-direction (T-D) and rolling-direction (R-D) plane. Microstructure consists of packet, block, and lath inside of prior austenite grain (PAG) boundary classified by its misorientation angle. Under applied potential of E-corr -0.1 V, tensile elongation was 30 similar to 40% less than in air. Under applied potential of E-corr +0.1 V, tensile strength and elongation decreased together, and the reduction in tensile elongation was 50 similar to 70% in both R-D and T-D specimens. In our study, hydrogen embrittlement and anodic dissolution mechanisms were suggested to explain the decrease in tensile properties in environment over in air employing fractographic analysis.

키워드

Ultra-High Strength SteelMicrostructure AnisotropyStress Corrosion CrackingTempered MartensiteENHANCED LOCALIZED PLASTICITYMARTENSITEDECOHESIONTOUGHNESSBEHAVIORFRACTUREFE
제목
Effect of Microstructure on Stress Corrosion Cracking Susceptibility of Ultra-High Strength Steel
저자
An, WoojinHam, JinheePark, Tae WonSon, JinilJung, Im DooKim, SangshikSung, Hyokyung
DOI
10.1166/sam.2020.3811
발행일
2020-11
유형
Article
저널명
Science of Advanced Materials
12
11
페이지
1642 ~ 1648