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首页> 外文期刊>Inorganic materials: applied research >Zirconia-Based Solid Electrolyte Obtained by Tape Casting
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Zirconia-Based Solid Electrolyte Obtained by Tape Casting

机译:通过流延获得氧化锆基固体电解质

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摘要

The possibility of using tape casting to produce solid electrolyte films with a thickness of 100-300 urn from zirconia stabilized with oxides of scandium and cerium is considered. A method of slip casting onto a moving tape is used to produce rather thin ceramic sheets with a thickness of less than 1 mm. An organic slip based on azeotropic mixture of isopropyl alcohol and methyl ethyl ketone is used in the present work. The effect of solvents on the properties of the obtained film and sintered ceramic is analyzed. Dibu-tylphthalate, polyethylene glycol, and benzyl butylphthalate are used as plasticizers. The effectiveness of these plasticizers is based on the possibility of producing a slip with a viscosity of 2000-4000 mPa s by using them. Polyvinyl butyral appears to be the most optimal temporary binder, because it is satisfactorily removed in a continuous mode of annealing of plated ceramic blanks. The maximum density of ceramic plates is achieved at the annealing temperature of 1500℃. It is shown that the working range of the obtained solid electrolyte is 800-850℃, as the maximum ionic conductivity (more than 0.15 Ω~(-1) cm~(-1)) is registered in it.
机译:考虑到有可能使用流延铸造法,由用scan和铈的氧化物稳定的氧化锆生产厚度为100-300微米的固体电解质膜。使用滑动浇铸到移动带上的方法来生产厚度小于1毫米的相当薄的陶瓷板。在本工作中使用基于异丙醇和甲基乙基酮的共沸混合物的有机浆料。分析了溶剂对所得膜和烧结陶瓷性能的影响。邻苯二甲酸二叔丁基酯,聚乙二醇和邻苯二甲酸苄基丁酯用作增塑剂。这些增塑剂的有效性是基于通过使用它们而产生粘度为2000-4000 mPa s的泥浆的可能性。聚乙烯醇缩丁醛似乎是最理想的临时粘合剂,因为以连续的方式对镀覆的陶瓷坯料进行退火可以令人满意地将其除去。陶瓷板的最大密度在1500℃的退火温度下达到。结果表明,所获得的固体电解质的工作范围为800-850℃,其中记录到最大离子电导率(大于0.15Ω〜(-1)cm〜(-1))。

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