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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Structural behavior of beta-thorium phosphate diphosphate (beta-TPD) irradiated with ion beams
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Structural behavior of beta-thorium phosphate diphosphate (beta-TPD) irradiated with ion beams

机译:离子束辐照的β-磷酸二氢th(β-TPD)的结构行为

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摘要

beta-thorium phosphate diphosphate ceramic (beta-TPD), beta-Th-4(PO4)(4)P2O7, was proposed as a potential actinide-bearing phase for nuclear waste storage. Self-irradiation by alpha-decays, due to the actinide loading, could affect the good intrinsic performances of this material. The evaluation of irradiation effects on the chemical durability of the ceramic is a crucial issue. Radiation effects were simulated by external ion beam irradiations. Under high-energy ion irradiation, amorphization was achieved above a critical threshold for electronic energy loss (S-e = 5 MeV mu m(-1)). Thermal annealing enables to fully recover the initial crystalline structure after heating for 15 h above 973 K. Amorphization appears thus completely reversible. The activation energy of annealing is equal to 2.8 eV. Ion beam induced amorphization and recrystallization by thermal annealing were found to be isotropic processes. Irradiations in the nuclear stopping regime lead to a complete amorphization of beta-TPD at a critical dose of 0.2 dpa. (C) 2007 Elsevier B.V. All rights reserved.
机译:有人建议将β-磷酸di二磷酸陶瓷(β-TPD),β-Th-4(PO4)(4)P2O7作为潜在的含act系元素的核废料储存阶段。由于act系元素的负载,α衰变引起的自辐照会影响该材料的良好固有性能。辐射对陶瓷化学耐久性的影响评估是至关重要的问题。通过外部离子束辐照来模拟辐射效应。在高能离子辐射下,非晶化达到了高于电子能量损失的临界阈值(S-e = 5 MeVμm(-1))。热退火能够在973 K以上加热15小时后完全恢复初始晶体结构。因此非晶化似乎是完全可逆的。退火的活化能等于2.8 eV。发现离子束通过热退火引起的非晶化和再结晶是各向同性的过程。核停止状态下的辐照导致在0.2 dpa的临界剂量下β-TPD完全非晶化。 (C)2007 Elsevier B.V.保留所有权利。

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