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Complementary analysis techniques applied on optimizing suspensions of yttria stabilized zirconia

机译:用于优化氧化钇稳定氧化锆悬浮液的互补分析技术

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摘要

Three different polymers with different functional groups and similar molecular weight were tested as dispersing agents for suspensions of yttria stabilized zirconia in ethanol: polyvinyl pyrrolidone, polyethylene imine, polyvinyl butyral/acetal. The stability of the system was assessed considering, in details, all the processing steps, including suspension de-agglomeration, slurry manipulation, quality of sintered tapes microstructure, and final layer leak tightness. Different analytical techniques were used to monitor ceramic de-agglomeration and stability as a function of time, for different types of dispersing agent and to optimize the dispersants concentration: Electrokinetic Sonic Amplitude was used to obtain zeta potential, Multiple Light Scattering for evaluating sedimentation rate, and multi-wavelength laser light scattering for measuring particle size distribution. All the results agree upon excellent performance of polyvinyl pyrrolidone and polyethylene imine as dispersing agents. The stability and dispersing power were finally utilized for preparing concentrated suspensions for tape casting and subsequently to sinter the tapes into dense ceramic pieces.
机译:测试了三种具有不同官能团和相似分子量的不同聚合物作为氧化钇稳定的氧化锆在乙醇中的悬浮液的分散剂:聚乙烯吡咯烷酮,聚乙烯亚胺,聚乙烯醇缩丁醛/乙缩醛。详细考虑所有处理步骤,包括悬浮液解聚,浆料处理,烧结带微观结构质量和最终层密封性,评估了系统的稳定性。针对不同类型的分散剂,使用了不同的分析技术来监测陶瓷的解聚和稳定性随时间的变化,并优化了分散剂的浓度:使用了电动声波幅值来获得zeta电位,通过多次光散射来评估沉积速率,和多波长激光散射测量粒度分布。所有结果均表明聚乙烯吡咯烷酮和聚乙烯亚胺作为分散剂的优异性能。最终,将稳定性和分散能力用于制备用于流延的浓缩悬浮液,然后将流延烧结成致密的陶瓷片。

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