The W-1%La2O3 alloy has been irradiated by a single laser pulse (λ = 1064 nm) to simulate transient thermal loads of high energy occurring in a tokamak under operative conditions. A zone with a diameter of ~2 mm, namely, much larger than the focal spot, results to be affected by the pulse, and a crater of about 300 μm is observed in its center. La2O3 particles are not present inside the crater. The change of surface morphology is accompanied by elemental redistribution. Multipoint XPS analysis evidenced that the concentration of La is very low in the crater and increases moving toward the border of the affected zone while that of W shows an opposite trend. The composition changes involve only the outmost 5 nm of the sample: through depth profiling, no differences of chemical composition were detected deeper in the alloy between the center and external border of the affected area.

Kaciulis, S., Mezzi, A., Montanari, R., Richetta, M., Pakhomova, E., Varone, A. (2020). La distribution on the crater surface of W-1%La2O3 produced by a single laser pulse. SURFACE AND INTERFACE ANALYSIS, 52(12), 1093-1097 [10.1002/sia.6822].

La distribution on the crater surface of W-1%La2O3 produced by a single laser pulse

Montanari R.;Richetta M.;Pakhomova E.;Varone A.
2020-01-01

Abstract

The W-1%La2O3 alloy has been irradiated by a single laser pulse (λ = 1064 nm) to simulate transient thermal loads of high energy occurring in a tokamak under operative conditions. A zone with a diameter of ~2 mm, namely, much larger than the focal spot, results to be affected by the pulse, and a crater of about 300 μm is observed in its center. La2O3 particles are not present inside the crater. The change of surface morphology is accompanied by elemental redistribution. Multipoint XPS analysis evidenced that the concentration of La is very low in the crater and increases moving toward the border of the affected zone while that of W shows an opposite trend. The composition changes involve only the outmost 5 nm of the sample: through depth profiling, no differences of chemical composition were detected deeper in the alloy between the center and external border of the affected area.
2020
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore ING-IND/21 - METALLURGIA
Settore ING-IND/15 - DISEGNO E METODI DELL'INGEGNERIA INDUSTRIALE
English
laser
microstructure
nuclear fusion reactor
W-La
2
O
3
XPS
Kaciulis, S., Mezzi, A., Montanari, R., Richetta, M., Pakhomova, E., Varone, A. (2020). La distribution on the crater surface of W-1%La2O3 produced by a single laser pulse. SURFACE AND INTERFACE ANALYSIS, 52(12), 1093-1097 [10.1002/sia.6822].
Kaciulis, S; Mezzi, A; Montanari, R; Richetta, M; Pakhomova, E; Varone, A
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/260976
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