Showing 1 - 5 results of 5 for search 'Mitsuhiro Itakura' Skip to content
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  • Mitsuhiro Itakura
Showing 1 - 5 results of 5 for search 'Mitsuhiro Itakura', query time: 0.03s Refine Results
  1. 1
    Atomistic weak interaction criterion for the specificity of liquid metal embrittlement

    Atomistic weak interaction criterion for the specificity of liquid metal embrittlement by Masatake Yamaguchi, Tomohito Tsuru, Mitsuhiro Itakura, Eiji Abe

    Published 2022-07-01
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    Article
  2. 2
    Improved mechanical properties of Co-free high-entropy Cantor alloy: A first-principles study

    Improved mechanical properties of Co-free high-entropy Cantor alloy: A first-principles study by Ivan Lobzenko, Daixiu Wei, Mitsuhiro Itakura, Yoshinori Shiihara, Tomohito Tsuru

    Published 2023-03-01
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    Article
  3. 3
    Behavior of a self-interstitial-atom type dislocation loop in the periphery of an edge dislocation in BCC-Fe

    Behavior of a self-interstitial-atom type dislocation loop in the periphery of an edge dislocation in BCC-Fe by Sho Hayakawa, Taira Okita, Mitsuhiro Itakura, Masaatsu Aichi, Satoshi Fujita, Katsuyuki Suzuki

    Published 2016-12-01
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    Article
  4. 4
    Machine learning molecular dynamics reveals the structural origin of the first sharp diffraction peak in high-density silica glasses

    Machine learning molecular dynamics reveals the structural origin of the first sharp diffraction peak in high-density silica glasses by Keita Kobayashi, Masahiko Okumura, Hiroki Nakamura, Mitsuhiro Itakura, Masahiko Machida, Shingo Urata, Kentaro Suzuya

    Published 2023-11-01
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    Article
  5. 5
    Machine learning molecular dynamics simulations toward exploration of high-temperature properties of nuclear fuel materials: case study of thorium dioxide

    Machine learning molecular dynamics simulations toward exploration of high-temperature properties of nuclear fuel materials: case study of thorium dioxide by Keita Kobayashi, Masahiko Okumura, Hiroki Nakamura, Mitsuhiro Itakura, Masahiko Machida, Michael W. D. Cooper

    Published 2022-06-01
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    Article

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