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Evaluation of The Thermal Performance of Multi-Element Doped Graphite under Steady-State High Heat F Evaluation of The Thermal Performance of Multi-Element Doped Graphite under Steady-State High Heat F

Evaluation of The Thermal Performance of Multi-Element Doped Graphite under Steady-State High Heat F

  • 期刊名字:等離子體科學(xué)和技術(shù)
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  • 論文作者:陳俊凌,李建剛,野田信明,久保田雄輔,郭全貴,裘亮
  • 作者單位:Institute of Plasma Physics,National Institute for Fusion Science,Institute of Coal Chemistry
  • 更新時(shí)間:2023-02-07
  • 下載次數(shù):
論文簡(jiǎn)介

Multi-element doped graphite, GBST1308 has been developed as a plasma facing material (PFM) for high heat flux components of the HT-7U device. The thermal performance of the material under steady-state (SS) high heat flux was evaluated under actively cooling conditions, the specimens were mechanically joined to copper heat sink with supercarbon sheet as a compliant layer between the interfaces. The experiments have been performed in a facility of ACT (actively cooling test stand) with a 100 kW electron gun in order to test the suitability and the loading limit of such materials. The surface temperature and bulk temperature distribution of the specimens were investigated. The experimental results are very encouraging that when heat flux is not more than 6 MW/m2, the surface temperature of GBST1308 is less than 1000 ℃, which is the lowest, compared with IG-430U and even with CX-2002U (CFC); The primary results indicate that the mechanically-joined material system by such a proper design as thin tile, super compliant layer, GBST as a PFM and copper-alloy heat sink, can be used as divertor plates for HT-7U in the first phase.

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