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Analysis of Electrical Conduction Paths in Ni/YSZ Particulate Composites Using Percolation Theory

机译:渗流理论分析Ni / YSZ颗粒复合材料的导电路径

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Electrical conduction paths through the Ni phase in Ni/yttria-stabilized zirconia (YSZ) cermet heve been analyzed using a Monte Carlo simulation based on percolation theory and electrical conductivity measurement. The minimum Ni-volume fraction of total solids determined from the electrical conductivity measurement is 0.32. This value agrees with the percolation threshold, 0.324, determined for site percolation on a 36 x 36 x 36 simple cubic lattice. This confirms the fact that the site percolation model is effective for the electrical conduction of Ni/YSZ cermet. This simulation shows that at a 0.324 volume fraction of Ni, only 20% of the total Ni contributes to electrical conduction path formation; and at above a 0.44 volume fraction of Ni, at least 90% of the total Ni forms the electrical conduction paths. Moreover, the decrease with time in the electrical conductivity of the cermet is caused by the partial disconnection of the electrical conduction paths because of the sintering of Ni particles at high temperatures.
机译:使用基于渗流理论和电导率测量的蒙特卡罗模拟分析了镍/氧化钇稳定的氧化锆(YSZ)金属陶瓷中通过Ni相的导电路径。由电导率测量确定的总固体的最小Ni体积分数为0.32。此值与在36 x 36 x 36简单立方晶格上确定的站点渗滤阈值0.324一致。这证实了以下事实:位点渗流模型对于Ni / YSZ金属陶瓷的导电有效。该模拟表明,在Ni的体积分数为0.324时,只有总Ni的20%有助于形成导电路径。当镍的体积分数大于0.44时,至少90%的镍形成导电路径。此外,由于高温下Ni颗粒的烧结,导电路径的部分断开导致金属陶瓷电导率随时间的下降。

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