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MACROPOROUS CERAMICS FROM CERAMIC-POLYMER DISPERSION METHODS

机译:陶瓷-聚合物分散法制备的大孔陶瓷

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Porous ceramics were fabricated by firing ceramic-polymer composites prepared by casting dispersions containing cellulose acetate, water and colloidal ceramic particles (alumina and silica). Composite microstructures were determined by polymer phase Separation. Polymer adsorption on the ceramic particles was necessary for the formation of controlled porosity in the composite and fired ceramic. Cellulose acetate adsorbed on alumina, but not silica particles. The micro structure of alumina-cellulose acetate composites was characterized by unagglomerated alumina particles in a polymer matrix; relatively large pores (pore diameter similar to 15 mu m) formed when the alumina concentration was low (< 50 vol % relative to the polymer in the dried composite), and smaller pores (pore diameter similar to 2 mu m) developed at higher alumina contents. By contrast, silica-cellulose acetate composites contained agglomerated silica particles and a large pore structure invariant to silica content. Firing of alumina-cellulose acetate composites with ceramic contents greater than 40 vol. % resulted in crack-free porous ceramics with pore structures comparable to the original composites. [References: 35]
机译:通过烧制陶瓷-聚合物复合材料来制备多孔陶瓷,该复合材料是通过浇铸含有醋酸纤维素,水和胶体陶瓷颗粒(氧化铝和二氧化硅)的分散体而制备的。通过聚合物相分离确定复合材料的微结构。聚合物在陶瓷颗粒上的吸附对于在复合材料和烧结陶瓷中形成受控的孔隙率是必要的。醋酸纤维素吸附在氧化铝上,但不吸附在二氧化硅颗粒上。氧化铝-醋酸纤维素复合材料的微观结构的特征是在聚合物基质中未团聚的氧化铝颗粒。当氧化铝浓度低时(相对于干燥复合物中的聚合物,<50 vol%)会形成相对较大的孔(孔径类似于15μm),而在较高的氧化铝中会形成较小的孔(孔径类似于2μm)内容。相比之下,二氧化硅-纤维素乙酸酯复合材料包含团聚的二氧化硅颗粒和不随二氧化硅含量变化的大孔结构。焙烧陶瓷含量大于40 vol。的氧化铝-醋酸纤维素复合材料。 %的结果得到无裂纹的多孔陶瓷,其多孔结构可与原始复合材料相比。 [参考:35]

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