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Influence of the Carbidized Tungsten Surface on the Processes of Interaction with Helium Plasma

This paper presents the results of experimental studies of the interaction of helium plasma with a near-surface tungsten carbide layer. The experiments were implemented at the plasma-beam installation. The helium plasma loading conditions were close to those expected in the ITER divertor. The techno...

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Autores principales: Skakov, Mazhyn, Miniyazov, Arman, Batyrbekov, Erlan, Baklanov, Viktor, Koyanbayev, Yerbolat, Gradoboev, Aleksandr, Kozhakhmetov, Yernat, Sokolov, Igor, Tulenbergenov, Timur, Zhanbolatova, Gainiya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9654725/
https://www.ncbi.nlm.nih.gov/pubmed/36363413
http://dx.doi.org/10.3390/ma15217821
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author Skakov, Mazhyn
Miniyazov, Arman
Batyrbekov, Erlan
Baklanov, Viktor
Koyanbayev, Yerbolat
Gradoboev, Aleksandr
Kozhakhmetov, Yernat
Sokolov, Igor
Tulenbergenov, Timur
Zhanbolatova, Gainiya
author_facet Skakov, Mazhyn
Miniyazov, Arman
Batyrbekov, Erlan
Baklanov, Viktor
Koyanbayev, Yerbolat
Gradoboev, Aleksandr
Kozhakhmetov, Yernat
Sokolov, Igor
Tulenbergenov, Timur
Zhanbolatova, Gainiya
author_sort Skakov, Mazhyn
collection PubMed
description This paper presents the results of experimental studies of the interaction of helium plasma with a near-surface tungsten carbide layer. The experiments were implemented at the plasma-beam installation. The helium plasma loading conditions were close to those expected in the ITER divertor. The technology of the plasma irradiation was applied in a stationary type linear accelerator. The impact of the helium plasma was realized in the course of the experiment with the temperatures of ~905 °C and ~1750 °C, which were calculated by simulating heat loading on a tungsten monoblock of the ITER divertor under the plasma irradiation at the load of 10 MW/m(2) and 20 MW/m(2), respectively. The structure was investigated with scanning microscopy, transmitting electron microscopy and X-ray analysis. The data were obtained showing that the surface morphology changed due to the erosion. It was found that the carbidization extremely impacted the plasma–tungsten interaction, as the plasma–tungsten interaction with the carbide layer led to the carbon sputtering and partial diffusion towards to the depth of the sample. According to these results, WC-based tungsten carbide is less protected against fracture by helium than W and W(2)C. An increase in temperature leads to much more extensive surface damage accompanied by the formation of molten and recrystallized flanges.
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spelling pubmed-96547252022-11-15 Influence of the Carbidized Tungsten Surface on the Processes of Interaction with Helium Plasma Skakov, Mazhyn Miniyazov, Arman Batyrbekov, Erlan Baklanov, Viktor Koyanbayev, Yerbolat Gradoboev, Aleksandr Kozhakhmetov, Yernat Sokolov, Igor Tulenbergenov, Timur Zhanbolatova, Gainiya Materials (Basel) Article This paper presents the results of experimental studies of the interaction of helium plasma with a near-surface tungsten carbide layer. The experiments were implemented at the plasma-beam installation. The helium plasma loading conditions were close to those expected in the ITER divertor. The technology of the plasma irradiation was applied in a stationary type linear accelerator. The impact of the helium plasma was realized in the course of the experiment with the temperatures of ~905 °C and ~1750 °C, which were calculated by simulating heat loading on a tungsten monoblock of the ITER divertor under the plasma irradiation at the load of 10 MW/m(2) and 20 MW/m(2), respectively. The structure was investigated with scanning microscopy, transmitting electron microscopy and X-ray analysis. The data were obtained showing that the surface morphology changed due to the erosion. It was found that the carbidization extremely impacted the plasma–tungsten interaction, as the plasma–tungsten interaction with the carbide layer led to the carbon sputtering and partial diffusion towards to the depth of the sample. According to these results, WC-based tungsten carbide is less protected against fracture by helium than W and W(2)C. An increase in temperature leads to much more extensive surface damage accompanied by the formation of molten and recrystallized flanges. MDPI 2022-11-05 /pmc/articles/PMC9654725/ /pubmed/36363413 http://dx.doi.org/10.3390/ma15217821 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Skakov, Mazhyn
Miniyazov, Arman
Batyrbekov, Erlan
Baklanov, Viktor
Koyanbayev, Yerbolat
Gradoboev, Aleksandr
Kozhakhmetov, Yernat
Sokolov, Igor
Tulenbergenov, Timur
Zhanbolatova, Gainiya
Influence of the Carbidized Tungsten Surface on the Processes of Interaction with Helium Plasma
title Influence of the Carbidized Tungsten Surface on the Processes of Interaction with Helium Plasma
title_full Influence of the Carbidized Tungsten Surface on the Processes of Interaction with Helium Plasma
title_fullStr Influence of the Carbidized Tungsten Surface on the Processes of Interaction with Helium Plasma
title_full_unstemmed Influence of the Carbidized Tungsten Surface on the Processes of Interaction with Helium Plasma
title_short Influence of the Carbidized Tungsten Surface on the Processes of Interaction with Helium Plasma
title_sort influence of the carbidized tungsten surface on the processes of interaction with helium plasma
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9654725/
https://www.ncbi.nlm.nih.gov/pubmed/36363413
http://dx.doi.org/10.3390/ma15217821
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