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The corrosion of Zr(Fe, Cr)2 and Zr2Fe secondary phase particles in Zircaloy-4 under 350 °C pressurised water conditions

机译:Zrcaloy-4中Zr(Fe,Cr)2和Zr2Fe二次相颗粒的腐蚀在350°C加压水条件下

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摘要

Using Scanning Transmission Electron Microscopy (STEM) coupled with Dual Electron Energy Loss Spectroscopy (DualEELS) and scanned diffraction, the corrosion and incorporation of Secondary Phase Particles (SPPs) in the oxide layer of Zircaloy-4 material has been investigated. This study focuses on mapping the corrosion of Zr₂Fe and Zr(Fe, Cr)₂ precipitates during the oxidation process and depicting their morphology as the oxidation front advances through the material. It has been found that Zr₂Fe SPPs retain the same general shape as in their pre oxidation stage, and transform to a nanocrystalline homogeneous mixed oxide, with a strong crystallographic texture, but hitherto unknown structure. The Zr(Fe, Cr)₂ Laves-phase SPPs however, oxidise in a notably more complicated manner. As the α-Zr around an SPP begins to oxidise, the SPP is completely encapsulated by the ZrO₂ whilst much of the SPP remains initially unoxidised. But, on oxidation, significant elemental segregation takes place, usually leaving a Cr₂O3-rich cap, a nanocrystalline Zr,Cr mixed oxide body and veins of well-crystallised metallic iron. Both forms of SPP have a different expansion on oxidation compared to the Zr, resulting in cracking of the ZrO₂.
机译:使用扫描透射电子显微镜(STEM),双电子能量损失谱(DualEELS)和扫描衍射,研究了Zircaloy-4材料氧化层中次生相粒子(SPP)的腐蚀和结合。这项研究的重点是绘制在氧化过程中Zr 2 Fe和Zr(Fe,Cr)2沉淀物的腐蚀情况,并描绘出随着氧化前沿前进而穿过材料的形态。已经发现,Zr 2 Fe SPPs保持与它们的预氧化阶段相同的一般形状,并转变成具有强晶体学纹理但迄今未知的结构的纳米晶均匀混合氧化物。但是,Zr(Fe,Cr)2 Laves相SPP氧化的方式更为复杂。当SPP周围的α-Zr开始氧化时,SPP完全被ZrO2包裹,而许多SPP最初仍未被氧化。但是,在氧化时,会发生明显的元素偏析,通常会留下富Cr 2 O 3的帽,纳米晶Zr,Cr混合氧化物体和晶化良好的金属铁矿脉。与Zr相比,两种形式的SPP的氧化膨胀都不同,从而导致ZrO 2裂解。

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