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Electrophoretic Deposition of Different Yttria-stabilized Zirconia Powder on Stainless Steel and Carbon Electrodes

机译:不同氧化钇稳定的氧化锆粉对不锈钢和碳电极的电泳沉积

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Stabilized zirconia is a common material for oxygen sensors as a solid electrolyte. The electrophoretic deposition (EPD) behavior of 8Y-YSZ (Yttria-stabilized zirconia with 8 mol percent Y_2O_3) powder was investigated on stainless steel and carbon based substrates. This study will be the starting point for the fabrication of complex shaped (even in micro-scale) YSZ based devices. Ethanol + HNO_3 based suspensions were used for the EPD experiments and three different YSZ powders were deposited, one commercially available powder and two own-made coprecipitated powder. The latter powders were calcined at respectively 900 and 1200 deg C. The concentration of the suspension was 3 g/300 cm~3, and a small amount of HNO_3 solution was added as a dispersant. DC electric field of 100-200 V/15 mm was applied between parallel electrodes. It was found that on stainless steel electrodes the calcined own-made coprecipitated powder showed the best best deposition properties, whereas the commercial YSZ powder showed the best deposition properties on carbon electrodes. These experimental results are discussed with regard to some powder properties (e.g. particle size distribution and packing behavior) and the adhesion between the particles and the substrate.
机译:稳定化氧化锆是用于氧传感器作为固体电解质的常用材料。 8Y-YSZ的电泳沉积(EPD)的行为(氧化钇稳定的氧化锆,8%(摩尔)Y_2O_3)粉末在不锈钢和碳基基板进行了研究。该研究将是复杂的形状(即使在微观尺度)基于YSZ器件的制造开始点。基于乙醇+ HNO_3悬浮液用于EPD实验和三种不同的YSZ粉末沉积,从市场上得到的粉末和两个自己制作的共沉淀粉末。后者的粉末分别在900和1200℃。将悬浮液的浓度为3g /300厘米〜3,并加入HNO_3少量溶液作为分散剂煅烧。平行电极之间施加的100-200 V / 15毫米直流电场。结果发现,在不锈钢电极煅烧自己制造的共沉淀粉末显示出最好的最好的沉积特性,而商业YSZ粉末显示出对碳电极的最佳沉积性能。这些实验结果被相对于一些粉末性质(例如颗粒大小分布和包装的行为)和所述颗粒与基板之间的密合性进行讨论。

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