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Percolation transitions in pyrochlore: Radiation-damage and thermally induced structural reorganization

机译:柏油中的渗透过渡:辐射损伤和热诱导的结构重组

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摘要

Finite element mechanical modeling is used to follow the evolution of the hardness (H), Young's modulus (E), and Poisson's ratio (ν) during the radiation-damage related crystalline-to-amorphous transition in pyrochlore (average main composition Ca_2Nb_2O_6F). According to the model, two percolation transitions have been identified around 16% and 84% amorphous volume fraction, respectively. In this context, earlier results from thermally induced recrystallization experiments have found to indicate noticeable modifications on the short- and long-range order by passing the percolation thresholds. Both percolation points have found to act as specific kinetic barriers during stepwise annealing induced structural reorganization. As phases with pyrochlore structure have been considered as host structures for the long-term disposal of actinides, it is essential to gain better knowledge of their mechanical behavior under radiation-damage and subsequent temperature treatment. The obtained results validate the used models' robustness in predicting radiation-damage related mechanical modifications, at least for ceramics.
机译:有限元机械建模用于遵循硬度(H),杨氏模量(e)和泊松比(ν)在辐射损伤的烧结中的结晶与无定形过渡期间的变化(平均主要组合物Ca_2NB_2O_6F)。根据该模型,分别鉴定了两种渗透过渡率为约16%和84%的无定形体积分数。在这种情况下,热诱导的再结晶实验的前述结果已经发现通过通过渗透阈值来指示短路和远程顺序的显着修改。在逐步退火诱导的结构重组期间发现两种渗透点都被用作特定的动力学屏障。随着柏树结构的阶段被认为是用于长期处理的宿主结构,必须在辐射损伤和随后的温度处理下更好地了解它们的机械行为。所获得的结果至少针对陶瓷验证使用模型在预测辐射损坏的辐射损坏的鲁棒性方面的鲁棒性。

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  • 来源
    《Applied Physics Letters》 |2021年第13期|131905.1-131905.3|共3页
  • 作者

    Tobias Beirau; Norbert Huber;

  • 作者单位

    Institute of Ceosciences and Geography Mineralogy/Geochemistry Martin Luther University Halle-Wittenberg 06120 Halle Germany;

    Institute of Materials Mechanics Helmholtz-Zentrum Hereon 21502 Geesthacht Germany Institute of Materials Physics and Technology Hamburg University of Technology (TUHH) 21073 Hamburg Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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