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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Materials needs for fusion, Generation IV fission reactors and spallation neutron sources - similarities and differences
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Materials needs for fusion, Generation IV fission reactors and spallation neutron sources - similarities and differences

机译:聚变,第四代裂变反应堆和散裂中子源的材料需求-异同

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Fusion reactors, advanced fission reactors and high power accelerator spallation targets subject materials to damaging particle irradiation. Although these technologies derive their utility from different nuclear reactions and divergent applications, they experience many common features. Further, the physical mechanisms of radiation response are crosscutting. For example, swelling, phase instability, hardening, flow localization, and embrittlement must be understood in order to estimate component lifetimes. Additional commonalities include reliance on the same classes of materials and sometimes on the identical alloy for critical components. In addition, databases supporting designs are mainly derived from the same relatively few irradiation facilities and from similar types of experiments. Opportunities are examined for coordinated efforts. Emphasis is placed on the development of fundamental knowledge to support alloy design strategies for resistance to irradiation and to form a scientific basis to develop better materials. Published by Elsevier B.V.
机译:聚变反应堆,先进裂变反应堆和高功率加速器散裂的目标是使材料遭受有害的粒子辐照。尽管这些技术的用途来自不同的核反应和不同的应用,但它们具有许多共同的特征。此外,辐射响应的物理机制是交叉的。例如,必须理解溶胀,相不稳定性,硬化,流动局部化和脆化,以便估计组件的寿命。其他共性包括对关键部件的依赖于相同种类的材料,有时甚至依赖于相同的合金。此外,支持设计的数据库主要来自相同的相对较少的照射设施和相似的实验类型。检查机会以进行协调努力。重点放在基础知识的开发上,以支持合金设计抗辐射的策略,并为开发更好的材料奠定科学基础。由Elsevier B.V.发布

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