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Electron tomography of unirradiated and irradiated nuclear graphite

机译:未照射和辐照核石墨的电子断层扫描

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摘要

Graphite is the moderator material of several Generation IV nuclear reactor concepts, as well as the British Advanced Gas-cooled Reactors (AGR). Porosity can heavily influence the material properties, mechanical irradiation response, and neutron induced shrinkage or swelling of nuclear-grade graphite. Due to the sub-micron size of several types of pores found in graphite, only a high-resolution imaging technique such as electron tomography are capable of visualizing these features in three dimensions. In this research, we used electron tomography to characterize as-received and neutron irradiated samples of IG-110 nuclear-grade graphite to show for the first time the 3D structure of both native and irradiation-induced nano-cracks. This technique also reveals unique characteristics of graphite such as the structure that surrounds pores and could be used to inform molecular dynamic simulations of irradiated graphite and experimental techniques such as gas-absorption. This research also shows the utility of this technique for the study of other nuclear porous carbon-based materials. (C) 2020 Elsevier B.V. All rights reserved.
机译:石墨是几个第四代核反应堆概念以及英国先进气冷反应堆(AGR)的慢化剂材料。孔隙率会严重影响核级石墨的材料性能、机械辐照响应和中子引起的收缩或膨胀。由于石墨中存在几种亚微米大小的孔隙,只有高分辨率成像技术(如电子断层扫描)能够在三维显示这些特征。在这项研究中,我们使用电子断层成像技术对IG-110核级石墨的接收和中子辐照样品进行了表征,首次显示了天然和辐照诱导纳米裂纹的三维结构。这项技术还揭示了石墨的独特特性,如孔隙周围的结构,并可用于辐射石墨的分子动力学模拟和气体吸收等实验技术。这项研究还显示了该技术在其他核多孔碳基材料研究中的实用性。(C) 2020爱思唯尔B.V.版权所有。

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