• Title of article

    Calculation of contact angles at triple phase boundary in solid oxide fuel cell anode using the level set method

  • Author/Authors

    Sun، نويسنده , , Xiaojun and Hasegawa، نويسنده , , Yosuke and Kohno، نويسنده , , Haruhiko and Jiao، نويسنده , , Zhenjun and Hayakawa، نويسنده , , Koji and Okita، نويسنده , , Kohei and Shikazono، نويسنده , , Naoki، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2014
  • Pages
    8
  • From page
    100
  • To page
    107
  • Abstract
    A level set method is applied to characterize the three dimensional structures of nickel, yttria stabilized zirconia and pore phases in solid oxide fuel cell anode reconstructed by focused ion beam-scanning electron microscope. A numerical algorithm is developed to evaluate the contact angles at the triple phase boundary based on interfacial normal vectors which can be calculated from the signed distance functions defined for each of the three phases. Furthermore, surface tension force is estimated from the contact angles by assuming the interfacial force balance at the triple phase boundary. The average contact angle values of nickel, yttria stabilized zirconia and pore are found to be 143°–156°, 83°–138° and 82°–123°, respectively. The mean contact angles remained nearly unchanged after 100 hour operation. However, the contact angles just after reduction are different for the cells with different sintering temperatures. In addition, standard deviations of the contact angles are very large especially for yttria stabilized zirconia and pore phases. The calculated surface tension forces from mean contact angles were close to the experimental values found in the literature. Slight increase of surface tensions of nickel/pore and nickel/yttria stabilized zirconia were observed after operation. Present data are expected to be used not only for the understanding of the degradation mechanism, but also for the quantitative prediction of the microstructural temporal evolution of solid oxide fuel cell anode.
  • Keywords
    Contact angle , Surface Tension , Focused ion beam scanning electron microscopy , level set method , microstructure , Solid oxide fuel cell anode
  • Journal title
    Materials Characterization
  • Serial Year
    2014
  • Journal title
    Materials Characterization
  • Record number

    2269638