Betke Ulf, Schelm Katja, Rodak Andreas, Scheffler Michael
Institute for Materials and Joining Technology-Nonmetallic Inorganic Materials and Composites, Otto-von-Guericke-University Magdeburg, Große Steinernetischstraße 6, 39104 Magdeburg, Germany.
Materials (Basel). 2020 May 26;13(11):2437. doi: 10.3390/ma13112437.
Open-celled ceramic composite foams were prepared from NiO and yttria-stabilized zirconia (YSZ) powders by the polymer sponge replication (Schwartzwalder) technique using the respective aqueous dispersions. Mechanically stable NiO-YSZ foams with an average porosity of 93 vol.% were obtained. After chemical reduction of the NiO phase with hydrogen, cellular Ni-YSZ cermet structures were obtained. They are characterized by an electric conductivity up to 19∙10 S∙m which can be adjusted by both, the Ni volume fraction, and the sintering/reduction procedure. The NiO-YSZ ceramic foams, as well as the cellular Ni-YSZ cermets prepared therefrom, were characterized with respect to their microstructure by scanning electron microscopy, confocal Raman microscopy and X-ray diffraction with Rietveld analysis. In addition, the compressive strength, the electric conductivity and the thermal conductivity were determined. The collected data were then correlated to the sample microstructure and porosity and were also applied for modelling of the mechanical and electric properties of the bulk Ni-YSZ strut material.
通过聚合物海绵复制(施瓦茨瓦尔德)技术,使用各自的水分散体,由氧化镍和氧化钇稳定的氧化锆(YSZ)粉末制备开孔陶瓷复合泡沫。获得了平均孔隙率为93体积%的机械稳定的NiO-YSZ泡沫。在用氢气对NiO相进行化学还原后,得到了多孔Ni-YSZ金属陶瓷结构。它们的特征在于电导率高达19×10 S·m,这可以通过Ni体积分数以及烧结/还原过程来调节。通过扫描电子显微镜、共焦拉曼显微镜和带有Rietveld分析的X射线衍射对NiO-YSZ陶瓷泡沫以及由此制备的多孔Ni-YSZ金属陶瓷的微观结构进行了表征。此外,还测定了抗压强度、电导率和热导率。然后将收集到的数据与样品的微观结构和孔隙率相关联,并应用于块状Ni-YSZ支柱材料的力学和电学性能建模。