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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Application of arc-dpa model to estimate the primary radiation damage of structural materials by neutrons and the necessity of rescaling dpa versus final experimental damage correlations
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Application of arc-dpa model to estimate the primary radiation damage of structural materials by neutrons and the necessity of rescaling dpa versus final experimental damage correlations

机译:ARC-DPA模型在中子估算结构材料的主要辐射损伤及重新敏捷DPA与最终实验损伤相关性的必要性

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The primary radiation damage (PRD) in structural materials is generally assessed in terms of the displacements per atom (dpa). The athermal recombination corrected displacements per atom (arc-dpa) model, used to predict PRD in materials has been incorporated in the Kalpakkam code CRaD. A recent parameterization of the arc-dpa model for various materials by Konobeyev et al. is available. This parameterization has facilitated a comparison between the predictions of the PRD levels in structural materials from NRT and arc-dpa models by using the CRaD code. A reference database of neutron dpa cross sections has been created by CRaD based on these two models by using the data from ENDF/B-VII.1 nuclear data library. The erstwhile design manuals of nuclear systems would have a specified limit of dpa towards life time integrity corresponding to methods and nuclear data used at that time. The new design manuals will have the same engineering damage correlated to the revised value of the dpa corresponding to the use of improved models of dpa and updated nuclear data for the same irradiation conditions. Therefore, the rescaling of dpa versus engineering damage is necessary, as the dpa is presently calculated using improved basic evaluated nuclear data and models for atom-displacement damage. The design life of nuclear systems is determined by the irradiation conditions, but the rescaling of dpa in the correlations of dpa versus damage makes sure that the updated dpa obtained with new data and methods is used correctly in design studies. (C) 2019 Elsevier B.V. All rights reserved.
机译:结构材料中的主要辐射损伤(PRD)通常在每种原子(DPA)的位移方面进行评估。用于预测材料中的PRD的每个原子(ARC-DPA)模型的静脉内重组校正位移已经结合在Kalpakkam Code Crad中。 Konobeyev等人的各种材料的ARC-DPA模型的最近参数化。可用。该参数化通过使用CRAD代码,在NRT和ARC-DPA模型的结构材料中的PRD水平预测方面已经有助于比较。通过使用来自ENDF / B-VII.1核数据库的数据,通过CRAD创建了中子DPA横截面的参考数据库。核系统的Erstwhile设计手册将对与当时使用的方法和核数据相对应的生命时间完整的DPA的特定极限。新的设计手册将具有与对应于使用改进的DPA模型和更新的核数据的DPA的修正值相关的工程损伤以及相同的照射条件。因此,需要对DPA与工程损伤的重构是必要的,因为DPA使用改进的基本评估的核数据和用于原子排量损伤的模型来计算。核系统的设计寿命由辐照条件决定,但DPA在DPA与损伤的相关性中的重构,确保在设计研究中正确使用新数据和方法获得的更新DPA。 (c)2019 Elsevier B.v.保留所有权利。

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