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首页> 外文期刊>Materials at High Temperatures >Observation of crack microstructure in oxides and its correlation to oxidation and hydrogen-uptake by 3D FIB Tomography - case of Zr-ZrO2 in reactor
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Observation of crack microstructure in oxides and its correlation to oxidation and hydrogen-uptake by 3D FIB Tomography - case of Zr-ZrO2 in reactor

机译:氧化物裂纹组织的观察及其与氧化和氢摄取的相关性 - Zr-ZrO2在反应器中的情况下

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Zirconium based alloys are used as fuel claddings in Light Water Reactors due to their good resistance to degradation and low neutron absorption cross section. However, life limiting processes occur during the service of the cladding such as oxidation and hydrogen-uptake. During the oxidation of the material, hydrogen enters the metal and it precipitates as brittle hydrides. In this study the 3D microstructure of a high burn-up and a low-burnup LK3/L Zircaloy-2 cladding is characterized and compared using FIB Tomography. 3D reconstruction of the oxides of the claddings shows that the crack volume fraction increases with the number of cycles in the reactor, reducing its protectiveness against further corrosion and H-uptake. The visualization of the metal-oxide interface revealed that the oxidation of the hydrides in the metal could induce crack formation in the oxide and therefore it could be one of the causes of the increasing oxidation and H-uptake in this material.
机译:由于其良好的降解和低中子吸收横截面,锆基合金用作轻水反应器中的燃料包层。 然而,寿命限制过程在诸如氧化和氢摄取的包层的服务期间发生。 在材料的氧化过程中,氢气进入金属并且其沉淀为酸氢化物。 在该研究中,使用FIB层析术进行了和比较了高烧伤和低燃烧LK3 / L Zircaloy-2包层的3D微观结构。 三维重建包层的氧化物表明,裂缝体积分数随反应器中的循环次数增加,降低了其防止进一步腐蚀和H-摄取的保护性。 金属氧化物界面的可视化显示,金属中的氢化物氧化可以诱导氧化物中的裂缝形成,因此它可能是该材料中增加氧化和H吸收的原因之一。

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