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THERMODYNAMIC APPROACH OF SURFACE INSTABILITY UNDER IRRADIATION

机译:辐照下表面不稳定的热力学方法

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摘要

We analyze a model of deterioration of a solid material subjected to irradiation by energetic particles. In the frame of the thermodynamics of coherent phase transformations, the stability of the interface between the deteriorated layer and the undamaged substance has been investigated. Considering the linear regime of the roughness evolution, the growth rate of the surface fluctuations has been determined as a function of the relevant parameters of the problem: the shear modulus and Poisson' ratio of both phases; the thickness of the layer; and the initial stress. The wavelengths of the instabilities have bee then calculated in the particular case of a metal/oxide interface of an irradiated zirconium alloy claddings used in nuclear power stations.
机译:我们分析了受高能粒子照射的固体材料的劣化模型。在相干相变的热力学框架内,研究了变质层与未破坏物质之间界面的稳定性。考虑到粗糙度变化的线性规律,已确定表面波动的增长速度是问题的相关参数的函数:两个相的剪切模量和泊松比;层的厚度;和初始压力。然后,在核电站中使用的辐照锆合金覆层的金属/氧化物界面的特定情况下,计算了不稳定性的波长。

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