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Zircaloy-4 high temperature oxidation in atmospheres representative of SFP-LOCA: Investigation of the influence of a low temperature pre-oxidation scale

机译:锆瓦洛-4高温氧化在SFP-LOCA的大气中:对低温预氧化量表的影响研究

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Within the framework of the French DENOPI project dedicated to the study of Spent Fuel Pool accidents, the high temperature degradation of Zircaloy-4 cladding material has been investigated in the 700-950 degrees C range, in air and air-steam atmospheres. In particular, we focused on the effect of the pretransient corrosion-oxide scale formed on the cladding materiel during in-reactor use, here simulated by an out-off-pile low-temperature pre-oxidation step. In-situ X-Ray Diffraction evidenced strong evolutions of the stress state and grain size of these laboratory-grown pre-oxidation scales upon high temperature exposures. From O-18 tracer experiments and thermogravimetric analysis, the pre-oxide was shown to be a rather efficient barrier against further high temperature attack by the nitrogen-containing atmosphere, despite its multi-layered, porous microstructure. Oxygen apparent diffusion coefficients were derived from the O-18 tracer experiments. These diffusion coefficients suggest that the pre-oxide rather behaves like a dense monoclinic zirconia layer. The protective effect was sometimes observed to be maintained during very long exposure times at high temperature, depending on the presence of defects in the scale. Where the protective effect was first lost, the nitrogen-"catalyzed" oxidation initiated and progressively propagated to the whole specimen surface. A propagation mechanism is proposed, which involves progressive mechanical failure of the pre-oxide scale, below which the high temperature, nitrogen-assisted, porous oxidation formation occurs. The cladding degradation kinetics, driven by this propagation mechanism, is only weakly affected by the presence of steam. However, where the porous oxide formed, strong hydrogen pick-up in the underlying metallic substrate was observed. (C) 2018 Elsevier B.V. All rights reserved.
机译:在法国DENOPI项目的框架内,致力于燃料池事故的研究,在空气和空气蒸汽大气中的700-950摄氏度中,研究了锆石覆盖材料的高温降解。特别地,我们专注于在反应器中使用的包层材料上形成的预翻转腐蚀氧化浆的效果,这里通过外落桩低温预氧化步骤模拟。原位X射线衍射证明了在高温曝光时这些实验室生长的预氧化尺度的应力状态和晶粒尺寸的强烈演变。从O-18示踪实验和热重分析,尽管其多层多孔的微观结构,所示的预氧化物被显示为含氮气氛的进一步高温攻击的相当有效的屏障。氧观漫射系数来自O-18示踪实验。这些扩散系数表明预氧化物的表现类似于致密的单斜氧化锆层。有时观察到保护效果在高温下在很长的曝光时间内保持,这取决于规模中的缺陷的存在。在第一次丢失保护作用的情况下,氮 - “催化”氧化引发并逐渐繁殖到整个样本表面。提出了一种繁殖机理,其涉及预氧化物尺度的渐进式机械失效,低于该氧化物刻度的逐渐发生率,因此发生高温,氮气辅助的多孔氧化形成。由该传播机制驱动的包层降解动力学仅受蒸汽的存在弱影响。然而,在形成多孔氧化物的情况下,观察到在下面的金属基板中的强氢拾取。 (c)2018年elestvier b.v.保留所有权利。

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    PSN RES Inst Radioprotect &

    Surete Nucl Cadarache BP 3 F-13115 St Paul Les Durance France;

    PSN RES Inst Radioprotect &

    Surete Nucl Cadarache BP 3 F-13115 St Paul Les Durance France;

    PSN RES Inst Radioprotect &

    Surete Nucl Cadarache BP 3 F-13115 St Paul Les Durance France;

    PSN RES Inst Radioprotect &

    Surete Nucl Cadarache BP 3 F-13115 St Paul Les Durance France;

    Ecole Natl Super Mines Ctr SPIN CNRS Lab George Friedel UMR 5307 158 Cours Fauriel F-42023 St Etienne France;

    Ecole Natl Super Mines Ctr SPIN CNRS Lab George Friedel UMR 5307 158 Cours Fauriel F-42023 St Etienne France;

    Univ Clermont Auvergne LVEEM 8 Rue JB Fabre CS 10219 F-43009 Le Puy En Velay France;

    Univ Clermont Auvergne LVEEM 8 Rue JB Fabre CS 10219 F-43009 Le Puy En Velay France;

    Univ Clermont Auvergne LVEEM 8 Rue JB Fabre CS 10219 F-43009 Le Puy En Velay France;

    Univ Grenoble Alpes UMR CNRS 5279 LEPMI F-38402 St Martin dHeres France;

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