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首页> 外文期刊>Journal of Materials Science >Influences of Ni content and porosity on mechanical properties of Ni-YSZ composites under solid oxide fuel cell operating conditions
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Influences of Ni content and porosity on mechanical properties of Ni-YSZ composites under solid oxide fuel cell operating conditions

机译:Ni含量和孔隙率对固体氧化物燃料电池运行条件下Ni-YSZ复合材料力学性能的影响

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Mechanical properties of nickel and yttria-stabilized zirconia (Ni-YSZ) anodes of solid oxide fuel cells undergo changes not only because of extrinsic conditions but also because of Ni, YSZ and pore proportions. In this study, elastic modulus and fracture behavior of Ni(NiO)-YSZ composites are investigated with changing Ni and pore volume fractions as the main parameters. NiO-YSZ composite stiffness at 800 degrees C monotonically increases with increasing NiO. However, the reduced form of Ni-YSZ shows drastic changes in elastic modulus and strength around 30 vol% Ni where the deformation behavior and fracture made transition from brittle-like to ductile. Both stiffness and strength show linear decreases with porosity, of which the degree of deterioration at 800 degrees C was duller than at room temperature. The influences of Ni content and porosity on elasticity are quantified using multiple-linear regression analysis. Pore volume fraction shows large negative effects on elasticity at room temperature in air. However, at 800 degrees C, Ni volume shows larger negative effects than pore volume under reducing atmospheres.
机译:固体氧化物燃料电池的镍和氧化钇稳定的氧化锆(Ni-YSZ)阳极的机械性能不仅是因为外在条件,而且因Ni,YSZ和孔比例也是如此。在该研究中,通过改变Ni和孔体积分数作为主要参数,研究了Ni(NIO)-OI- Z复合材料的弹性模量和断裂行为。 800摄氏度的Nio-YSZ复合刚度随着NIO的增加而单调增加。然而,降低的Ni-YSZ形式显示出弹性模量的激烈变化和强度约为30体积%的Ni,其中变形行为和断裂从脆性转变为延展性。刚度和强度显示线性降低孔隙率,其中800℃的劣化程度比室温钝化。使用多线性回归分析量化Ni含量和孔隙率对弹性的影响。孔隙体积分数对空气中的室温下对弹性进行大的负面影响。然而,在800摄氏度下,Ni体积显示出比还原气氛下的孔体积更大的阴性效果。

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