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Melt layer behavior of metal targets irradiatead by powerful plasma streams

In this paper melt layer erosion of metal targets under pulsed high-heat loads is studied. Experiments with steel, copper, aluminum and titanium samples were carried out in two plasma accelerator devices with different time durations of the heat load. The surfaces of the resolidified melt layers sho...

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Bibliographic Details
Published in:Journal of nuclear materials 2002-12, Vol.307, p.106-110
Main Authors: Bandura, A.N., Byrka, O.V., Chebotarev, V.V., Garkusha, I.E., Makhlaj, V.A., Solyakov, D.G., Tereshin, V.I., Wuerz, H.
Format: Article
Language:English
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Summary:In this paper melt layer erosion of metal targets under pulsed high-heat loads is studied. Experiments with steel, copper, aluminum and titanium samples were carried out in two plasma accelerator devices with different time durations of the heat load. The surfaces of the resolidified melt layers show a considerable roughness with microcraters and ridge like relief on the surface. For each material the mass loss was determined. Melt layer erosion by melt motion was clearly identified. However it is masked by boiling, bubble expansion and bubble collapse and by formation of a Kelvin–Helmholtz instability. The experimental results can be used for validation of numerical codes which model melt layer erosion of metallic armour materials in off-normal events, in tokamaks.
ISSN:0022-3115
1873-4820
DOI:10.1016/S0022-3115(02)00995-9