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Analytic description of the chemical erosion of graphite by hydrogen ions

机译:氢离子对石墨的化学侵蚀的解析描述

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摘要

One main concern about the use of graphite as a plasma facing material is the enhanced erosion under hydrogen bombardment due to hydrocarbon formation. In view of the lifetime evaluation of plasma exposed carbon components and of impurity production in present and future machines such as ITER, an analytical expression for the erosion yield by chemical sputtering for the relevant energies, temperatures and incident fluxes is of special importance. An extrapolation to fluxes and energies relevant for high density divertor plasmas has not been possible up to now on the basis of semiempirical fits to laboratory data. Starting from a short review of the existing empirical formulas, recent detailed investigations of the atomistic processes for the thermally activated hydrocarbon emission are described, which enable the formulation of an improved analytical description including the ion flux as a parameter. The chemical erosion of graphite by hydrogen bombardment results from two processes: the thermally activated hydrocarbon emission, Ytherm, and a surface process at low energies and low temperatures resulting from the kinetic ejection of surface hydrocarbon complexes from collisional energy transfer, Ysurf. The new analytic description can be fitted well to the existing data for ion beam erosion, and extrapolation to divertor relevant fluxes is possible. At high ion fluxes the maximum of chemical erosion is shifted to higher temperatures, where annealing of damaged structures leads to a stronger reduction of Ytherm than previously estimated. There are no data on a possible flux dependence of Ysurf, leaving still some uncertainty in extrapolation.
机译:使用石墨作为面对等离子体的材料的主要关注点是由于烃形成而在氢轰击下增强了侵蚀。考虑到等离子体暴露的碳组分的寿命评估以及当前和未来机器(例如ITER)中杂质产生的影响,对于化学式溅射相关能量,温度和入射通量的腐蚀产量的解析表达式尤为重要。到目前为止,根据实验室数据的半经验拟合,尚不可能对与高密度偏滤器等离子体有关的通量和能量进行外推。从对现有经验公式的简短回顾开始,描述了对热活化碳氢化合物排放的原子过程的近期详细研究,这些研究使得能够制定包括离子通量作为参数的改进分析描述。氢轰击对石墨的化学腐蚀来自两个过程:热活化的碳氢化合物排放,Ytherm,以及低能量和低温下的表面过程,这是由于碰撞能量转移过程中表面碳氢化合物络合物的动力学喷射而产生的,这是Ysurf。新的分析描述可以很好地适合离子束腐蚀的现有数据,并且可以外推以分散相关通量。在高离子通量下,化学侵蚀的最大值转移到了更高的温度,在此温度下,受损结构的退火导致比以前估计的更强的Ytherm降低。没有关于Ysurf可能的通量依赖性的数据,在外推上仍然存在一些不确定性。

著录项

  • 来源
    《Nuclear fusion》 |1996年第12期|p. 1647-1659|共13页
  • 作者

    J. Roth; C. Garcia-Rosales;

  • 作者单位

    Max-Planck-Institut fur Plasmaphysik, Euratom Association, Garching, Germany;

    Max-Planck-Institut fur Plasmaphysik, Euratom Association, Garching, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 原子核物理学、高能物理学;
  • 关键词

  • 入库时间 2022-08-18 01:10:36

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