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Evaluation of W–Si–C thick coating as a plasma facing material
We present tungsten alloy coating of 150–200 μm thickness with improved plasma erosion resistance fabricated by plasma spraying of granular W–SiC composite powders. During increasing the SiC concentration to 8 wt%, we observed the increase in the hardness of the coating from 250 to 440 Hv. The plasm...
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Published in: | Journal of nuclear materials 2009-04, Vol.386, p.834-836 |
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container_title | Journal of nuclear materials |
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creator | Seok, Hyun Kwang Jung, Kyung Ho Kim, Yu Chan Shim, Jae-Hyeok Kim, Dong-Ik Han, Seung-Hee Baik, Kyeong Ho Cha, Pil-Ryung |
description | We present tungsten alloy coating of 150–200
μm thickness with improved plasma erosion resistance fabricated by plasma spraying of granular W–SiC composite powders. During increasing the SiC concentration to 8
wt%, we observed the increase in the hardness of the coating from 250 to 440
Hv. The plasma erosion depth of the coating decreased by 10 times compared with pure tungsten in the same erosion environment. |
doi_str_mv | 10.1016/j.jnucmat.2008.12.247 |
format | article |
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μm thickness with improved plasma erosion resistance fabricated by plasma spraying of granular W–SiC composite powders. During increasing the SiC concentration to 8
wt%, we observed the increase in the hardness of the coating from 250 to 440
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μm thickness with improved plasma erosion resistance fabricated by plasma spraying of granular W–SiC composite powders. During increasing the SiC concentration to 8
wt%, we observed the increase in the hardness of the coating from 250 to 440
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subjects | Applied sciences Controled nuclear fusion plants Energy Energy. Thermal use of fuels Exact sciences and technology Fission nuclear power plants Fuels Installations for energy generation and conversion: thermal and electrical energy Nuclear fuels |
title | Evaluation of W–Si–C thick coating as a plasma facing material |
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