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Denuded zones in zirconium pressure vessels: oxygen's role examined via multi-scale diffusion model

机译:锆压力容器中的区域:氧气通过多尺度扩散模型检查的作用

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Zirconium alloys are extensively used as cladding material in nuclear reactors. They are vulnerable to hydrogen degradation under the harsh service conditions of the reactors. Optical micrographs taken in some pressure tubes shows the presence of hydride denuded zones closer to the surface, where the hydrides formed in this region are smaller in size compared to the bulk. We investigated the effect of oxygen on diffusivity of hydrogen in alpha Zr, to check the hypothesis that oxygen slows the diffusion of hydrogen and thereby encourages the occurrence of hydride denuded zones. We used a multi-scale model to simulate H diffusion in Zr with different O concentrations to identify the effect that O has on H diffusivity. From the study we found that oxygen indeed decreases the diffusivity of hydrogen in alpha Zr for moderate oxygen concentrations. We investigated the diffusion processes of individual H atoms, which showed that the reduction in diffusivity is caused by a decrease in the hopping rates and the formation of hydrogen traps by the combination of several interstitial sites. Though the diffusivity of H seems to be reduced by O, looking at the O concentration profiles found in Zircaloy pressure tubes, we see that the slowing down is insufficient to cause a significant enough change to the size of hydride precipitates. This causes us to reject the hypothesis as the main reason for the formation of denuded zones in Zircaloy pressure tubes.
机译:锆合金广泛用作核反应堆中的包层材料。它们在反应器的苛刻服务条件下容易受到氢气降解的影响。在一些压力管中拍摄的光学显微照片显示出更接近表面的氢化物的存在,其中在该区域中形成的氢化物的尺寸较小,与块状相比较小。我们研究了氧对αZr氢扩散率的影响,检查氧气减慢氢气扩散的假设,从而促进氢化物剥蚀的区域的发生。我们使用多尺度模型来模拟Zr中的H扩散,不同的o浓度识别O对H扩散性的影响。从研究来看,我们发现氧气确实降低了αZr中氢气的扩散性,以进行中等氧浓度。我们研究了单个H原子的扩散过程,表明扩散性降低是由跳跃速率的降低和通过几种间质部位的组合形成氢陷阱。虽然H的扩散效果似乎通过O降低,但是在锆瓦尔(锆瓦尔)压力管中发现的o浓度曲线,我们看到减速不足以使氢化物沉淀的大小变化。这导致我们拒绝假设是在锆铝压力管中形成剥离区的主要原因。

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