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Nano Structuration of Zirconia under Irradiation: a Way to Enhance the Mechanical Stability of Zirconia Layer

机译:辐照下氧化锆的纳米结构:一种增强氧化锆层机械稳定性的方法

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Zirconia is one of the most important ceramic materials because of the large range of industrial applications (catalysis, coatings, spacecraft shielding, paint additives, oxygen sensors, fuel cells, nuclear fuel matrix, alternative high permitivity material to replace silicon oxide as gate dielectric in MOS devices...). It is now well established that a monoclinic to tetragonal phase transition occurs in this material. This transition can for instance be trigged by the grain size. The mechanism of this phase transition is now clearly understood. Zirconia can be considered a textbook example for describing these effects. In this paper, we will discuss the mechanism of the tetragonal to monoclinic martensitic phase transition induced by irradiation within the Landau theory framework, pointing out the peculiar effects related to nanostructuration of this material by irradiation. Such a work is an illustrative example of structural modification of solids induced by irradiation.
机译:氧化锆是最重要的陶瓷材料之一,因为它具有广泛的工业应用(催化,涂料,航天器屏蔽,涂料添加剂,氧气传感器,燃料电池,核燃料基质,替代高介电常数的材料来代替氧化硅作为栅极电介质) MOS装置...)。现在已经确定在这种材料中发生单斜相到四方相的转变。该过渡例如可以通过晶粒尺寸触发。现在已经清楚地了解了这种相变的机理。氧化锆可以看作是描述这些影响的教科书示例。在本文中,我们将在Landau理论框架内讨论辐照引起的四方相到单斜相马氏体相变的机理,指出与这种材料的纳米结构有关的独特作用。这项工作是辐照引起的固体结构改性的示例。

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