High-heat-flux performance limit of tungsten monoblock targets: Impact on the armor materials and implications for power exhaust capacity - ScienceDirect
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Development of a reliable high-heat-flux (HHF) technology is one of the crucial requirements of power exhaust strategy for a fusion reactor. The basel…

High-heat-flux performance limit of tungsten monoblock targets: Impact on the armor materials and implications for power exhaust capacity - ScienceDirect

High-heat-flux performance limit of tungsten monoblock targets: Impact on the armor materials and implications for power exhaust capacity - ScienceDirect

FIP/1-1 Development of Tungsten Monoblock Technology for ITER Full-Tungsten Divertor in Japan 25th Fusion Energy Conference (FEC 2014) Saint Petersburg, - ppt download

PDF) Structural impact of creep in tungsten monoblock divertor target at 20 MW/m 2

Thermal damage of tungsten-armored plasma-facing components under high heat flux loads

High-heat-flux performance limit of tungsten monoblock targets: Impact on the armor materials and implications for power exhaust capacity - ScienceDirect

PDF) A numerical model for the recrystallization kinetics of tungsten monoblocks under cyclic heat loads

PDF) Structural impact of creep in tungsten monoblock divertor target at 20 MW/m 2

Nuclear analyses for the design of the ITER-like plasma facing components vertical targets of the DEMO divertor - ScienceDirect

High-heat-flux performance limit of tungsten monoblock targets: Impact on the armor materials and implications for power exhaust capacity - ScienceDirect

High-heat-flux performance limit of tungsten monoblock targets: Impact on the armor materials and implications for power exhaust capacity - ScienceDirect
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