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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >The EU programme for modelling radiation effects in fusion reactor materials: An overview of recent advances and future goals
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The EU programme for modelling radiation effects in fusion reactor materials: An overview of recent advances and future goals

机译:欧盟聚变反应堆材料辐射效应建模程序:最新进展和未来目标概述

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摘要

The EU fusion materials modelling programme was initiated in 2002 with the objective of developing a comprehensive set of computer modelling techniques and approaches, aimed at rationalising the extensive available experimental information on properties of irradiated fusion materials, developing capabilities for predicting the behaviour of materials under conditions not yet accessible to experimental tests, assessing results of tests involving high dose rates, and extrapolating these results to the fusion-relevant conditions. The programme presently gives emphasis to modelling a single class of materials, which are ferritic-martensitic EUROFER-type steels, and focuses on the investigation of key physical phenomena and interpretation of experimental observations. The objective of the programme is the development of computational capabilities for predicting changes in mechanical properties, hardening and embrittlement, as well as changes in the microstructure and phase stability of EUROFER and FeCr model alloys occurring under fusion reactor relevant irradiation conditions.
机译:欧盟聚变材料建模计划始于2002年,目的是开发一套全面的计算机建模技术和方法,旨在合理化有关辐照聚变材料特性的大量可用实验信息,提高在一定条件下预测材料性能的能力尚无法进行实验测试,评估涉及高剂量率的测试结果,并将这些结果外推至与融合相关的条件。目前,该程序着重于对单类材料(铁素体-马氏体EUROFER型钢)进行建模,并着重于关键物理现象的研究和实验观察的解释。该计划的目标是开发计算能力,以预测在聚变反应堆相关辐照条件下发生的EUROFER和FeCr模型合金的机械性能,硬化和脆化以及微观结构和相稳定性的变化。

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