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Shang Juan  尚 娟

Researcher Number 90998535
Other IDs
  • ORCIDhttps://orcid.org/0000-0002-3234-5199
Affiliation (Current) 2026: 九州大学, カーボンニュートラル・エネルギー国際研究所, 助教
Affiliation (based on the past Project Information) *help 2024 – 2025: 九州大学, カーボンニュートラル・エネルギー国際研究所, 助教
Review Section/Research Field
Principal Investigator
0301:Mechanics of materials, production engineering, design engineering, fluid engineering, thermal engineering, mechanical dynamics, robotics, aerospace engineering, marine and maritime engineering, and related fields / Basic Section 18010:Mechanics of materials and materials-related
Keywords
Principal Investigator
quantum mechanics / hydrogen embrittlement / hydrogen pipeline / Hydrogen pipeline / Quantum mechanics / Hydrogen embrittlement / fracture / gas inhibitor
  • Research Projects

    (2 results)
  • Research Products

    (4 results)
  •  Potential novel mitigation technology of hydrogen embrittlement in hydrogen pipelines based on synergistic effect of oxygen and carbon dioxidePrincipal Investigator

    • Principal Investigator
      尚 娟
    • Project Period (FY)
      2025 – 2027
    • Research Category
      Grant-in-Aid for Early-Career Scientists
    • Review Section
      Basic Section 18010:Mechanics of materials and materials-related
    • Research Institution
      Kyushu University
  •  Quantum mechanics computational and experimental study on the collective effects of natural gas constituents on hydrogen embrittlement of pipeline steelPrincipal Investigator

    • Principal Investigator
      尚 娟
    • Project Period (FY)
      2024 – 2025
    • Research Category
      Grant-in-Aid for Research Activity Start-up
    • Review Section
      0301:Mechanics of materials, production engineering, design engineering, fluid engineering, thermal engineering, mechanical dynamics, robotics, aerospace engineering, marine and maritime engineering, and related fields
    • Research Institution
      Kyushu University

All 2025 2024

All Journal Article Presentation

  • [Journal Article] Evolution and mechanism of hydrogen gas embrittlement susceptibility for X80 pipeline steel within the service temperature range2025

    • Author(s)
      Shang Juan、Zhang Ruiming、Gao Ruizhe、Xing Baihui、Staykov Aleksandar、Hua Zhengli、Kubota Masanobu
    • Journal Title

      Corrosion Science

      Volume: 251 Pages: 112928-112928

    • DOI

      10.1016/j.corsci.2025.112928

    • Peer Reviewed / Int'l Joint Research
    • Data Source
      KAKENHI-PROJECT-24K22931
  • [Journal Article] Pressure dependence of CO2 effect on hydrogen-assisted fatigue crack growth in two pipeline steels2024

    • Author(s)
      Shang Juan、Chi Shuanghe、Gao Ruizhe、Xing Baihui、Staykov Aleksander、Hua Zhengli
    • Journal Title

      International Journal of Hydrogen Energy

      Volume: 90 Pages: 842-852

    • DOI

      10.1016/j.ijhydene.2024.10.032

    • Peer Reviewed / Open Access / Int'l Joint Research
    • Data Source
      KAKENHI-PROJECT-24K22931
  • [Presentation] Effect of natural gas compositions on the hydrogen embrittlement of pipeline steel2025

    • Author(s)
      Juan Shang, Masanobu Kubota, Aleksandar Staykov, Jinyang Zheng
    • Organizer
      Challenges & Collaboration in the Research of Material Fracture 2025 (CCMF2025)
    • Int'l Joint Research
    • Data Source
      KAKENHI-PROJECT-24K22931
  • [Presentation] Enhanced hydrogen embrittlement of steel by the premature hydrogen dissociation with the increasing inert gas pressure in hydrogen mixtures2024

    • Author(s)
      Juan Shang, Masanobu Kubota, Aleksandar Staykov
    • Organizer
      The 11th Annual Meeting of the Society of Materials Science Kyushu Branch
    • Data Source
      KAKENHI-PROJECT-24K22931

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