Tensile and fracture behaviors of austenitic high-manganese steels subject to different hydrogen embrittlement test methods

  • Lee, Sang-In
  • Lee, Ji-Min
  • Lee, Seung-Yong
  • Kim, Han-Jin
  • Suh, Jin-Yoo
  • ... Lee, Joonho
  • 외 4명
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초록

The hydrogen-embrittlement susceptibility of austenitic high-manganese steels according to different hydrogen-charging test methods was discussed in terms of hydrogen-embrittlement process and fracture mechanism. Exsitu electrochemical and high-pressure thermal hydrogen-charging methods exhibited a difference in hydrogen-embrittlement susceptibility because they affect the permeability and diffusivity of hydrogen. Moreover, the insitu high-pressure gaseous hydrogen-charging method showed the most apparent hydrogen-embrittlement susceptibility because higher triaxial stress in the necked region caused by plastic instability accelerates hydrogen charging in the specimen during tensile testing in hydrogen environment, thus leading to intergranular fracture in all regions.

키워드

Hydrogen embrittlementAusteniticHigh-manganese steelHydrogen chargingFractureSTACKING-FAULT ENERGYSTAINLESS-STEELSENVIRONMENT EMBRITTLEMENTSTRAIN LOCALIZATIONPLASTICITYMICROSTRUCTURESUSCEPTIBILITYDEFORMATIONMECHANISMRESISTANCE
제목
Tensile and fracture behaviors of austenitic high-manganese steels subject to different hydrogen embrittlement test methods
저자
Lee, Sang-InLee, Ji-MinLee, Seung-YongKim, Han-JinSuh, Jin-YooShim, Jae-HyeokBaek, Un-BongNahm, Seung-HoonLee, JoonhoHwang, Byoungchul
DOI
10.1016/j.msea.2019.138367
발행일
2019-10-24
유형
Article
저널명
Materials Science and Engineering: A
766