Effect of irradiation with pulsed fluxes of high-temperature deuterium plasma and fast ions on the structure of the surface layer of W-1% La2O3 alloy

Scanning electron microscopy, X-ray electron probe analysis, and X-ray phase analysis are used to investigate the surface structure of W-1% La 2 O 3 alloy after irradiation with submicrosecond pulses of deuterium ions and high-temperature deuterium plasma in a Plasma Focus installation for simulatio...

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Veröffentlicht in:Inorganic materials : applied research 2014-05, Vol.5 (3), p.211-218
Hauptverfasser: Demina, E. V., Gribkov, V. A., Pimenov, V. N., Maslyaev, S. A., Prusakova, M. D., Shirokova, V., Laas, T., Ugaste, Yu
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Sprache:eng
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Zusammenfassung:Scanning electron microscopy, X-ray electron probe analysis, and X-ray phase analysis are used to investigate the surface structure of W-1% La 2 O 3 alloy after irradiation with submicrosecond pulses of deuterium ions and high-temperature deuterium plasma in a Plasma Focus installation for simulation of a plasma disruption in the ITER tokamak. It is established that melting of the tungsten surface and formation of micro-cracks take place under irradiation with a power flux density up to 10 12 W/cm 2 . Introduction of La 2 O 3 particles in the alloy leads to the formation of complex La-W-O oxides with lower melting points, which results in the formation of a nonuniform structure affecting the high-temperature response of the material.
ISSN:2075-1133
2075-115X
DOI:10.1134/S2075113314030058