利用具有多相位置偏差校正功能的 3D-FIB-SEM 对熔融铈-混凝土相互作用碎片内部的裂缝尖端进行纳米级可视化。

Hotaka Miyata, Kenta Yoshida, Kenji Konashi, Yufeng Du, Toru Kitagaki, Takahisa Shobu, Yusuke Shimada
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引用次数: 0

摘要

表征福岛反应堆熔融核混凝土相互作用(MCCI)燃料碎片对开发有效的清除方法至关重要。为了提高聚焦离子束(FIB)对MCCI燃料碎片的显微观察和显微采样精度,提出了一种带有多相位置错位(MPPM)校正方法的三维FIB扫描电子显微镜(SEM)技术。该系统自动对齐体素位置,校正对比度,并从一系列超过500 SEM图像中去除伪影。MPPM校正方法侧重于时间调制对比度,大大减少了玻璃相中的充电伪影,首次在3D/纳米尺度上对两种MCCI碎屑的裂纹尖端进行了三维形态观察和透射电子显微镜分析。在Fe- zrsio4基碎屑中,在裂纹尖端处观察到由Fe、Cr2O3和ZrO2组成的金属球,表面上有直径约为2 ~ 58µm的韧窝。在(Zr, U)SiO4基碎屑中,在裂纹尖端的复杂熔融堆芯-混凝土相互作用燃料碎屑中,形成了由直径约为1 ~ 5 μm的(U, Zr)O2芯和直径约为2 ~ 9 μm的(Zr, U)SiO4壳组成的核壳结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nanoscale visualization of crack tips inside molten corium-concrete interaction debris using 3D-FIB-SEM with multiphase positional misalignment correction.

Characterizing molten corium-concrete interaction (MCCI) fuel debris in Fukushima reactors is essential to develop efficient methods for its removal. To enhance the accuracy of microscopic observation and focused ion beam (FIB) microsampling of MCCI fuel debris, we developed a three-dimentional FIB scanning electron microscopy (SEM) technique with a multiphase positional misalignment (MPPM) correction method. This system automatically aligns voxel positions, corrects contrast, and removes artifacts from a series of over 500 SEM images. The MPPM correction method, which focuses on time-modulated contrast, considerably reduces charge-up artifacts in glass phases, enabling 3D morphological observation and analytical transmission electron microscopy of crack tips in two types of MCCI debris at the 3D/nanoscale for the first time. In the Fe-ZrSiO4-based debris, metallic balls composed of Fe, Cr2O3, and ZrO2 with dimples on the surface of about 2-58 µm in diameter were observed at the crack tips. In the (Zr, U)SiO4 based debris, a core-shell structure composed of a (U, Zr)O2 core with a diameter of about 1-5 μm and a (Zr, U)SiO4 shell with a diameter of about 2-9 μm in complex molten corium-concrete interaction fuel debris at the crack tips.

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