Wettability of pure metals with liquid sodium and liquid tin

被引:0
|
作者
Saito J.-I. [1 ]
Kobayashi Y. [2 ]
Shibutani H. [3 ]
机构
[1] Sector of Fast Reactor and Advanced Reactor Research and Development, Japan Atomic Energy Agency, Tsuruga
[2] Department of Mechanical Engineering, National Institute of Technology, Maizuru College, Maizuru
[3] Department of Mechanical Engineering, Kurume Institute of Technology, Kurume
来源
Nippon Kinzoku Gakkaishi/Journal of the Japan Institute of Metals | 2021年 / 85卷 / 03期
关键词
Atomic bonding; Contact angle; Interface; Liquid sodium; Liquid tin; Molecular orbital calculation; Pure metal; Wettability;
D O I
10.2320/JINSTMET.J2020042
中图分类号
学科分类号
摘要
Wettability of pure transition metals with liquid sodium or liquid tin has been evaluated using a contact angle droplet method. Titanium, iron, nickel, copper and molybdenum pure metals were selected as specimens in this experiment. All experiments were carried out in high purity argon gas and extremely low moisture to avoid influence of oxygen to liquid metal. Measurement temperature was set just above the melting temperature of each liquid metal. As a result, for both liquid sodium and liquid tin, the measured contact angle changed depending on the atomic number of substrate metals. An electronic structure of the interface between liquid metal and substrate metal was calculated by the molecular orbital method. Simple cluster models of the interface between liquid metal and substrate transition metals were used in this calculation. It was found that the calculation results well express an electronic state of interface. The atomic bonding between liquid metal atom and substrate metal atom changed depending on the kind of substrate metal. Also, the atomic bonding between substrate metal atoms changed similarly. It became clear that there was a reasonable relationship between an atomic bonding ratio and the contact angle. It clearly suggested the atomic bonding affected wettability between liquid metal and substrate metal. The atomic bonding was obtained as one of indications to reveal the wettability by transition metals with liquid metals. © 2021 The Japan Institute of Metals and Materials.
引用
收藏
页码:110 / 119
页数:9
相关论文
共 50 条
  • [1] Wettability of Pure Metals with Liquid Sodium and Liquid Tin
    Saito, Jun-ichi
    Kobayashi, Yohei
    Shibutani, Hideo
    JOURNAL OF THE JAPAN INSTITUTE OF METALS AND MATERIALS, 2021, 85 (03) : 110 - 119
  • [2] Wettability of Pure Metals with Liquid Sodium and Liquid Tin
    Saito, Jun-ichi
    Kobayashi, Yohei
    Shibutani, Hideo
    MATERIALS TRANSACTIONS, 2021, 62 (10) : 1524 - 1532
  • [3] Fundamental Study on Wettability of Pure Metal by Liquid Sodium
    Saito, Jun-ichi
    Shibutani, Hideo
    Kobayashi, Yohei
    CHARACTERIZATION OF MINERALS, METALS, AND MATERIALS 2020, 2020, : 563 - 571
  • [4] WETTABILITY OF DIAMOND BY LIQUID PURE METALS
    NOGI, K
    OKADA, Y
    OGINO, K
    IWAMOTO, N
    MATERIALS TRANSACTIONS JIM, 1994, 35 (03): : 156 - 160
  • [5] WETTABILITY OF DIAMOND BY LIQUID PURE METALS
    NOGI, K
    OKADA, Y
    OGINO, K
    IWAMOTO, N
    JOURNAL OF THE JAPAN INSTITUTE OF METALS, 1993, 57 (01) : 63 - 67
  • [6] Wettability of TiN by Liquid Iron and Steel
    Xuan, Changji
    Shibata, Hiroyuki
    Zhao, Zhe
    Jonsson, Par Goran
    Nakajima, Keiji
    ISIJ INTERNATIONAL, 2015, 55 (08) : 1642 - 1651
  • [7] Wettability and Reactivity of Liquid Magnesium with a Pure Silver Substrate
    S. Terlicka
    N. Sobczak
    J. J. Sobczak
    P. Darłak
    E. Ziółkowski
    Journal of Materials Engineering and Performance, 2023, 32 : 5689 - 5696
  • [8] Wettability and Reactivity of Liquid Magnesium with a Pure Silver Substrate
    Terlicka, S.
    Sobczak, N.
    Sobczak, J. J.
    Darlak, P.
    Ziolkowski, E.
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2023, 32 (13) : 5689 - 5696
  • [9] Electronic approach to understand the wettability of surface treated titanium with liquid sodium
    Namie, Masanari
    Saito, Jun-ichi
    Oka, Ryotaro
    Kim, Jae-Ho
    VACUUM, 2025, 234
  • [10] Applicability of Fluorine Gas Surface Treatment to Control Liquid Sodium Wettability
    Namie, Masanari
    Saito, Jun-ichi
    Ikeda, Asuka
    Oka, Ryotaro
    Kim, Jae-Ho
    SURFACES, 2024, 7 (03): : 550 - 559