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Liquid Foam Templates Associated with the Sol-Gel Process for Production of Zirconia Ceramic Foams

机译:溶胶-凝胶法生产氧化锆陶瓷泡沫的液体泡沫模板

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摘要

The unique properties of ceramic foams enable their use in a variety of applications. This work investigated the effects of different parameters on the production of zirconia ceramic foam using the sol-gel process associated with liquid foam templates. Evaluation was made of the influence of the thermal treatment temperature on the porous and crystalline characteristics of foams manufactured using different amounts of sodium dodecylsulfate (SDS) surfactant. A maximum pore volume, with high porosity (94%) and a bimodal pore size distribution, was observed for the ceramic foam produced with 10% SDS. Macropores, with an average size of around 30 μm, were obtained irrespective of the SDS amount, while the average size of the supermesopores increased systematically as the SDS amount was increased up to 10%, after which it decreased. X-ray diffraction analyses showed that the sample treated at 500 °C was amorphous, while crystallization into a tetragonal metastable phase occurred at 600 °C due to the presence of sulfate groups in the zirconia structure. At 800 and 1000 °C the monoclinic phase was observed, which is thermodynamically stable at these temperatures.
机译:陶瓷泡沫的独特性能使其可以用于多种应用。这项工作使用与液体泡沫模板相关的溶胶-凝胶工艺研究了不同参数对氧化锆陶瓷泡沫生产的影响。评估了热处理温度对使用不同量的十二烷基硫酸钠(SDS)表面​​活性剂生产的泡沫的多孔性和结晶性的影响。对于用10%SDS生产的陶瓷泡沫,观察到最大孔隙体积,具有高孔隙率(94%)和双峰孔径分布。不论SDS量如何,均获得了平均大小为30μm左右的大孔,而随着SDS量增加到10%,超中孔的平均大小逐渐增加。 X射线衍射分析表明,在500℃处理的样品是无定形的,而由于在氧化锆结构中存在硫酸根基团,在600℃发生结晶成四方亚稳态相。在800和1000°C下观察到单斜晶相,在这些温度下热力学稳定。

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