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Preparation and properties of porous zirconiaickel composites

机译:多孔氧化锆/镍复合材料的制备与性能

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Porous zirconiaickel composites were prepared from yttria-stabilized zirconia, nickel and corn-starch powder as starting materials in reduced condition. In expectation of the application to the anode of the solid oxide fuel cell, mechanical and thermal properties of composites with different porosity levels were measured. With increasing additive corn-starch as the pore-former, the porosity of the composites with continuous and constant-sized pores increased. larger nickel particles were observed in the zirconia network structure. The fracture strength and toughness decreased with increasing porosity. Especially, the connected pores and cracks at the interface between nickel and zirconia particles have a large effect on the strength of the composites. The specific heat of the porous composites was constant almost. The thermal conductivity increased with nickel content but decreased with the porosity. The latter phenomenon was discussed by assuming a minimum matrix area model or a network model.
机译:以氧化钇稳定的氧化锆,镍和玉米淀粉粉末为原料,在还原条件下制备了多孔氧化锆/镍复合材料。期望将其应用于固体氧化物燃料电池的阳极,测量了具有不同孔隙率水平的复合材料的机械和热性能。随着增加的添加剂玉米淀粉作为孔形成剂,具有连续且恒定尺寸的孔的复合材料的孔隙率增加。在氧化锆网络结构中观察到较大的镍颗粒。断裂强度和韧性随着孔隙率的增加而降低。特别地,在镍和氧化锆颗粒之间的界面处的连通孔和裂纹对复合材料的强度具有很大的影响。多孔复合材料的比热几乎恒定。导热率随镍含量的增加而增加,但随孔隙率的降低而减小。通过假设最小矩阵面积模型或网络模型来讨论后一种现象。

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