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Synthesis and electrical field-assisted sintering behaviour of yttria-stabilized tetragonal ZrO2 nanopowders by polyacrylamide gel method

机译:聚丙烯酰胺凝胶法制备氧化钇稳定的四方ZrO2纳米粉体及其合成及电场辅助烧结行为

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摘要

The tetragonal ZrO2 nanopowders stabilized with 3 mol% Y2O3 (3YSZ) were synthesized using a polyacrylamide gel method. The mean particle size of the 3YSZ nanopowders was found to decrease with increasing molecular ratio of monomer to the precursor salt. The 3YSZ nanopowders with mean particle size of 12 nm can be densified in 1 h at 800(a similar to)C, by the application of a d.c. electrical field. Under a constant d.c. electrical field, the current density through the specimen of 3YSZ rose rapidly when the temperature increased to a certain value. In the sintering process, the current density was restricted when the sharp increase occurred. By limiting current density to different values for one hour, it was found that current density was the most important factor in electrical field-assisted sintering process. The grain size of 3YSZ bulk increased with the enhanced current density. The stable stage of electrical field-assisted sintering process can be explained by Joule heating. Corresponding real temperature of specimens is estimated by applying black body radiation theory.
机译:使用聚丙烯酰胺凝胶法合成了用3 mol%Y2O3(3YSZ)稳定的四方ZrO2纳米粉。发现3YSZ纳米粉的平均粒径随着单体与前体盐的分子比的增加而减小。通过使用d.c,可以在800h(类似于a)下于1小时内将平均粒径为12 nm的3YSZ纳米粉体致密化。电场。在恒定的直流电下电场作用下,当温度升高到一定值时,通过3YSZ试样的电流密度迅速上升。在烧结过程中,当急剧增加时,电流密度受到限制。通过将电流密度限制为一个小时的不同值,发现电流密度是电场辅助烧结过程中最重要的因素。 3YSZ块体的晶粒尺寸随着电流密度的增加而增加。电场辅助烧结过程的稳定阶段可以通过焦耳加热来解释。应用黑体辐射理论估算出相应的标本实际温度。

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