London Centre for Nanotechnology and Department of Physics and Astronomy, University College London, , Gower Street, London WC1E 6BT, UK.
Philos Trans A Math Phys Eng Sci. 2010 Jul 28;368(1923):3315-28. doi: 10.1098/rsta.2010.0060.
The selection and design of materials that will withstand the extreme conditions of a fusion power plant has been described as one of the greatest materials science challenges in history. The high particle flux, high thermal load, thermal mechanical stress and the production of transmutation elements combine to produce a uniquely hostile environment. In this paper, the materials favoured for the diverse roles in a fusion power plant are discussed, along with the experimental and modelling techniques that are used to advance the understanding of radiation damage in materials. Areas where further research is necessary are highlighted.
将能够承受核聚变发电厂极端条件的材料进行选择和设计,这被描述为历史上最具挑战性的材料科学难题之一。高粒子通量、高热负荷、热机械应力以及嬗变元素的产生共同作用,产生了一种独特的恶劣环境。本文讨论了在核聚变发电厂中各种用途所青睐的材料,以及用于提高对材料辐射损伤理解的实验和建模技术。还强调了需要进一步研究的领域。