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首页> 外文期刊>Journal of the European Ceramic Society >Preparation of high open porosity ceramic foams via direct foaming molded and dried at room temperature
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Preparation of high open porosity ceramic foams via direct foaming molded and dried at room temperature

机译:通过直接发泡成型并在室温下干燥制备高孔隙率陶瓷泡沫

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摘要

Herein an alternative approach was considered for addressing one difficulty of ceramic foams that the foam slurry with a high content of bubbles which were obtained via direct foaming, cannot maintain well for a long time at room temperature. It is fascinating that the foam slurry mentioned above could stably mold and dry at room temperature, based on an animal protein as foaming agent, kaolin, talc powder and alumina as raw materials, alpha-tricalcium phosphate prepared via co-precipitation as curing agent, and hydrophobic activated carbon powders as stabilizing agent. Effects of the calcination temperatures, the contents of alpha-tricalcium phosphate and activated carbon powder on microstructures, crystal phases compressive strength and open porosities of ceramic foams were studied systematically. The results indicated that ceramic foams with a high open porosity and uniform pore distribution and sizes sought for application in catalysts supports, could be produced by adjusting these parameter.
机译:在本文中,考虑了解决陶瓷泡沫的一个困难的替代方法,即通过直接发泡获得的具有高气泡含量的泡沫浆料不能在室温下长时间保持良好状态。令人着迷的是,以动物蛋白为发泡剂,高岭土,滑石粉和氧化铝为原料,通过共沉淀制备的α-三磷酸三钙为固化剂,上述泡沫浆液可以在室温下稳定地成型和干燥。疏水性活性炭粉作为稳定剂。系统地研究了煅烧温度,α-磷酸三钙和活性炭粉的含量对泡沫陶瓷微观结构,晶相抗压强度和开孔率的影响。结果表明,可以通过调节这些参数来制备具有高开孔率,均匀的孔分布和尺寸的陶瓷泡沫,以寻求在催化剂载体中的应用。

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