Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
A validated ballistic-He fuzz-growth model for high temperature erosive-plasma regimes
An analytical model of helium-induced fuzz growth on heated tungsten (Patino et al., 2023) is expanded to include the effects of material exposure temperature via an Arrhenius relation and helium-induced sputtering. The expanded model is able to replicate experimental measurements of fuzz thickness for a range of helium fluences from 0.7–110×1026 m−2, sample temperatures from 993–1300 K, and ion energies from 50–500 eV.
A validated ballistic-He fuzz-growth model for high temperature erosive-plasma regimes
An analytical model of helium-induced fuzz growth on heated tungsten (Patino et al., 2023) is expanded to include the effects of material exposure temperature via an Arrhenius relation and helium-induced sputtering. The expanded model is able to replicate experimental measurements of fuzz thickness for a range of helium fluences from 0.7–110×1026 m−2, sample temperatures from 993–1300 K, and ion energies from 50–500 eV.
A validated ballistic-He fuzz-growth model for high temperature erosive-plasma regimes
M.I. Patino (Autor:in) / M.J. Baldwin (Autor:in)
2024
Aufsatz (Zeitschrift)
Elektronische Ressource
Unbekannt
Metadata by DOAJ is licensed under CC BY-SA 1.0
A validated ballistic-He fuzz-growth model for high temperature erosive-plasma regimes
Elsevier | 2024
|A model of ballistic helium transport during helium-induced fuzz growth in tungsten
DOAJ | 2023
|Headcut erosive regimes influenced by groundwater on disturbed agricultural soils
Online Contents | 2011
|Critical variables in high temperature erosive wear
British Library Online Contents | 1997
|