首页> 外文期刊>Journal of the European Ceramic Society >Microstructure and growth characteristics of Al2O3/Er2O3/ZrO2 solidified ceramics with different compositions
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Microstructure and growth characteristics of Al2O3/Er2O3/ZrO2 solidified ceramics with different compositions

机译:不同组成的Al2O3 / ER2O3 / ZrO2凝固陶瓷的组织和生长特性

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摘要

Directionally solidified Al2O3/Er2O3/ZrO2 ceramics were prepared with high frequency induction zone melting. Their phase components, microstructure and growth characters were investigated. The results indicated that the raw material powder with uniform oxides' distribution could be obtained via the green body's crushing and second ball-milling, which was benefited to get the fined and unified eutectic microstructure. The phase components of each sample were consistent with the prediction originated from the position of their composition in the phase diagram. The microstructures of eutectic and hyper/hypo-eutectic were basically a network with interpenetrated crystal phases, and a small amount of coarsened phase existed in the form of colony structure in the latter, the microstructure was refined with the increase of the ZrO2 concentration. The quasi-eutectic with colony structure could be prepared at the molar ratio of raw materials determined by the volume fraction. In addition, a large number of coarsened phases appeared in the microstructures of the samples with the eutectic molar ratios, so the corresponding samples were non-eutectic. These results demonstrated that the composition might be more important than the growth rate in the preparation of non-eutectic samples with eutectic microstructure, and the selection of the composition of solidified ceramics should not depend too much on the phase diagram. The eutectic growth could be divided into four processes according to the microstructures of precursor and solidified ceramics.
机译:采用高频感应区熔法制备了定向凝固Al2O3/Er2O3/ZrO2陶瓷。研究了它们的相组成、显微结构和生长特性。结果表明,通过坯体粉碎和二次球磨,可以获得氧化物分布均匀的原料粉末,有利于获得细化、统一的共晶组织。每个样品的相组成与根据其组成在相图中的位置得出的预测一致。共晶和过/亚共晶组织基本上是一个互穿晶相的网络,后者中有少量粗晶相以团簇结构的形式存在,随着ZrO2浓度的增加,组织细化。在由体积分数决定的原料摩尔比下,可以制备具有团簇结构的准共晶。此外,在共晶摩尔比相同的样品中,有大量粗化相出现,因此相应的样品为非共晶。这些结果表明,在制备具有共晶微观结构的非共晶样品时,成分可能比生长速率更重要,并且凝固陶瓷成分的选择不应太依赖于相图。根据前驱体和凝固陶瓷的微观结构,共晶生长可分为四个过程。

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