首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Laser-induced removal of co-deposits from graphitic plasma-facing components: Characterization of irradiated surfaces and dust particles
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Laser-induced removal of co-deposits from graphitic plasma-facing components: Characterization of irradiated surfaces and dust particles

机译:激光诱导的石墨等离子组件中的沉积物的去除:辐照表面和灰尘颗粒的表征

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摘要

Laser-induced fuel desorption and ablation of co-deposited layers on limiter plates from the TEXTOR tokamak have been studied. Gas phase composition was monitored in situ, whereas the ex situ studies have been focused on the examination of irradiated surfaces and broad analysis of dust generated by ablation of co-deposits. The size of the dust grains is in the range of few nanometers to hundreds of micrometers. These are fuel-rich dust particles, as determined by nuclear reaction analysis. The presence of deuterium in dust indicates that not all fuel species are transferred to the gas phase during irradiation. This also suggests that photonic removal of fuel and the ablation of co-deposit from plasma-facing components may lead to the redistribution of fuel-containing dust to surrounding areas.
机译:研究了从TEXTOR托卡马克喷出的激光诱导的燃料解吸和共沉积层在限制板上的消融。气相组成是在原位监测的,而异位研究则集中在辐照表面的检查和对共沉积物的烧蚀产生的粉尘的广泛分析。尘粒的尺寸在几纳米到几百微米的范围内。通过核反应分析确定这些是富含燃料的尘埃颗粒。尘埃中存在氘表明在辐照过程中并非所有的燃料种类都转移到了气相中。这也表明,以光子方式去除燃料以及从面对等离子体的组件中清除共沉积物可能导致含燃料的粉尘重新分布到周围区域。

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