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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Determination of very low concentrations of hydrogen in zirconium alloys by neutron imaging
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Determination of very low concentrations of hydrogen in zirconium alloys by neutron imaging

机译:中子成像测定锆合金中氢氢浓度的测定

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Zr-based alloys are used in nuclear power plants because of a unique combination of very low neutron absorption and excellent mechanical properties and corrosion resistance at operating conditions. However, Hydrogen (H) or Deuterium ingress due to waterside corrosion during operation can embrittle these materials. In particular, Zr alloys are affected by Delayed Hydride Cracking (DHC), a stress-corrosion cracking mechanism operating at very low H content (similar to 100-300 wt ppm), which involves the diffusion of H to the crack tip. H content in Zr alloys is commonly determined by destructive techniques such as inert gas fusion and vacuum extraction. In this work, we have used neutron imaging to non-destructively quantify the spatial distribution of H in Zr alloys specimens with a resolution of similar to 5 wt ppm, an accuracy of similar to 10 wt ppm and a spatial resolution of similar to 25 mu m x 5 mm x 10 mm. Non-destructive experiments performed on a comprehensive set of calibrated specimens of Zircaloy-2 and Zr2.5%Nb at four neutron facilities worldwide show the typical precision and repeatability of the technique. We have observed that the microstructure of the alloy plays an important role on the homogeneity of H across a specimen. We propose several strategies for performing H determinations without calibrated specimens, with the most precise results for neutrons having wavelengths longer than 5.7 angstrom. (C) 2018 Elsevier B.V. All rights reserved.
机译:Zr系合金用于核电站,因为在操作条件下具有非常低的中子吸收和优异的机械性能和耐腐蚀性的独特组合。然而,由于在操作期间,由于水域腐蚀,氢气(H)或氘入口可以蚕食这些材料。特别地,Zr合金受延迟氢化物裂化(DHC)的影响,应力 - 腐蚀裂解机构在非常低的H含量(类似于100-300wt ppm),这涉及H扩散到裂缝尖端。 Zr合金中的H含量通常通过惰性气体融合和真空萃取等破坏性技术来确定。在这项工作中,我们已经使用中子成像以非破坏性地量化H在ZR合金标本中H的空间分布,其分辨率类似于5wt ppm,精度与10wt ppm相似,类似于25亩的空间分辨率MX 5 mm x 10 mm。在全球四个中子设施下对锆罗基-2和Zr2.5%NB综合校准标本进行的非破坏性实验表明了该技术的典型精度和可重复性。我们已经观察到,合金的微观结构在跨样品中的H均匀性上起重要作用。我们提出了几种在没有校准标本的情况下进行H测定的策略,对于长度超过5.7埃的中子,中子的最精确结果。 (c)2018年elestvier b.v.保留所有权利。

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