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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >The effect of dislocations on irradiation-induced vacancy-like defects in FeCu alloy and reactor pressure vessel steel
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The effect of dislocations on irradiation-induced vacancy-like defects in FeCu alloy and reactor pressure vessel steel

机译:脱位对辐射诱导的辐射诱导的空位样缺陷在粪便合金和反应器压力容器钢中的效果

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The effect of dislocations on irradiation-induced vacancy-like defects in FeCu alloy and RPV steel irradiated at room temperature by 3 MeV Fe ion at doses of 1 and 5 dpa was investigated by Doppler broadening spectroscopy (DBS), atom probe tomography (APT), and molecular dynamics (MD) simulations. We found that high-energy Fe-ion irradiation caused numerous large vacancy-like defects in FeCu alloy and RPV steel, resulting in an increase in S parameters and a decrease in W parameters. Note that Cu-vacancy complexes were detected in irradiated FeCu alloy, and high-density dislocations accelerate the formation of the Cu-vacancy complexes. However, higher dislocation density caused the decline of the S parameter and the increase of W parameter in both FeCu alloy and RPV steel. For the FeCu alloy, the change of S and W parameter is mainly due to the formation of Cu-vacancy complexes and sink effect of dislocations on point defects. For the RPV steel, only sink effect of dislocations on point effects suppress the formation and growth of vacancy-like defects, leading to the decline of S parameter and the increase of W parameter. The results of MD simulations confirmed that screw dislocations facilitate to promote the annihilation between interstitial- and vacancy-like defects produced by irradiation. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过多普勒展展光谱(DBS),研究了在1和5DPA时在室温下照射在室温下照射3meV Fe离子的FECU合金和RPV钢中的辐射诱导的空位样缺陷的效果。(DB),原子探测断层扫描(APT)和分子动力学(MD)模拟。我们发现,高能量的Fe离子照射引起了诸如FECU合金和RPV钢中的许多大型空位缺陷,导致S参数增加和W参数的减少。注意,在辐照的性uCu合金中检测到Cu空位复合物,高密度脱位加速了Cu空位复合物的形成。然而,较高的位错密度导致S参数的下降和FECU合金和RPV钢中的W参数的增加。对于中学合金,S和W参数的变化主要是由于Cu空空间复合物的形成和脱位对点缺陷的陷阱效应。对于RPV钢,仅脱位对点效应的沉降效果抑制了空位样缺陷的形成和生长,导致S参数的下降和W参数的增加。 MD模拟的结果证实,螺杆位错有助于促进通过照射产生的间质和空位缺陷之间的湮灭。 (c)2019 Elsevier B.v.保留所有权利。

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