Wettability of SiC and alumina particles by liquid Bi under liquid Al

被引:0
|
作者
I. Budai
G. Kaptay
机构
[1] BAY-NANO Research Institute for Nanotechnology,Department of Nano
[2] University of Debrecen,Composites
[3] University of Miskolc,Faculty of Engineering
来源
Journal of Materials Science | 2010年 / 45卷
关键词
Contact Angle; Rotational Speed; Liquid Metal; Solid Particle; Interfacial Energy;
D O I
暂无
中图分类号
学科分类号
摘要
In this paper a new experimental method to measure contact angle of liquid metals on solid particles under an immiscible second liquid metal is described. This includes efficient mixing of the three-phase system (two immiscible liquid metals with solid dispersed particles) with subsequent solidification. The micrographs of the cross sections of samples are analyzed for the distribution of the particles between the bulk of the two metals and the interface between them. As an alternative, exact positions of the particles can be measured at the interface between the two solidified metals. These two measurements are used to estimate the contact angle of one liquid metal on the solid particles under another, immiscible liquid metal. As an example, contact angle of a liquid Bi-rich alloy on SiC and alumina particles is measured under liquid Al-rich alloy. The liquid Bi-rich alloy was found to wet perfectly (with zero contact angle) alumina particles under liquid Al-rich alloy, while the contact angle on SiC is found to be around 88°. These contact angle data are shown to be relevant to control the stability of liquid metallic emulsions formed between the two immiscible liquid metals stabilized by the solid particles.
引用
收藏
页码:2090 / 2098
页数:8
相关论文
共 50 条
  • [31] WETTABILITY OF AL2O3 SUBSTRATE BY LIQUID-IRON - EFFECTS OF OXYGEN IN LIQUID-IRON AND PURITY OF AL2O3 SUBSTRATE
    NAKASHIMA, K
    TAKIHIRA, K
    MORI, K
    SHINOZAKI, N
    JOURNAL OF THE JAPAN INSTITUTE OF METALS, 1991, 55 (11) : 1199 - 1206
  • [32] SURFACE TENSION OF Cu-Bi ALLOYS AND WETTABILITY IN A LIQUID ALLOY - REFRACTORY MATERIAL - GASEOUS PHASE SYSTEM
    Oleksiak, B.
    Labaj, J.
    Wieczorek, J.
    Blacha-Grzechnik, A.
    Burdzik, R.
    ARCHIVES OF METALLURGY AND MATERIALS, 2014, 59 (01) : 281 - 285
  • [33] Influences of substrate wettability and liquid viscosity on isothermal spreading of liquid droplets on solid surfaces
    C. Yang
    K. Leong
    Experiments in Fluids, 2002, 33 : 728 - 731
  • [34] Solid-liquid-liquid wettability and its prediction with surface free energy models
    Stammitti-Scarpone, A.
    Acosta, E. J.
    ADVANCES IN COLLOID AND INTERFACE SCIENCE, 2019, 264 : 28 - 46
  • [35] Wettability of Al2O3, MgO, and TiB2 Inclusions with Liquid Silicon
    Harish Iyer
    Leili Tafaghodi Khajavi
    Damian Durlik
    Karim Danaei
    Mansoor Barati
    Silicon, 2018, 10 : 2219 - 2226
  • [36] Wettability of Al2O3, MgO, and TiB2 Inclusions with Liquid Silicon
    Iyer, Harish
    Khajavi, Leili Tafaghodi
    Durlik, Damian
    Danaei, Karim
    Barati, Mansoor
    SILICON, 2018, 10 (05) : 2219 - 2226
  • [37] Detachment of particles and particle clusters from liquid/liquid interfaces
    Sinn, N.
    Alishahi, M.
    Hardt, S.
    JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2015, 458 : 62 - 68
  • [38] 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
  • [39] Fabrication of SiC-Particles-Shielded Al Spheres upon Recycling Al/SiC Composites
    D. Madarasz
    I. Budai
    G. Kaptay
    Metallurgical and Materials Transactions A, 2011, 42 : 1439 - 1443
  • [40] 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