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The paper provides an overview of the nuclear design activities conducted in the EU on the development of TBMs for ITER and the layout of material test modules for IFMIF.
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The foreseen irradiation and Post Irradiation Examination programmes presented in this paper are based on the IFMIF specifications proposed by IFMIF users' community, available irradiation volumes in the test modules and materials properties required to compile the materials database needed for design of DEMO reactors.
On the other hand, Japan (JASS 7), which shows considerable use of the form block, which is often used in seismic retrofit, offers equations for the compression strength, elastic module, and shear module of block walls using the material test results of the bearing mortar, grout, and masonry unit.
On the basis of systematic screening studies of different material combinations and test module shapes, MCNP4c Monte Carlo calculations have shown that the IFMIF neutron spectrum could be largely adjusted to DEMO reactor conditions by combining tungsten plates serving as spectral shifter and carbon jackets of the test modules acting as neutron reflector.
Besides irradiation of material samples in the high flux test module, in situ creep-fatigue tests for structural materials in the creep-fatigue test module (CFTM) and tritium release experiments for breeder blanket materials in the tritium release module (TRM) are foreseen in the medium flux test module (MFTM) of IFMIF.
material testing system.
Reduced activation ferritic martensitic (RAFM) steel is chosen as a structural material for test blanket modules (TBMs) to be constructed in International Thermonuclear Experimental Reactor ITERR) and China Fusion Engineering Test Reactor CFETRR).
The reduced activation martensitic steel (RAFM) EUROFER is foreseen as a structural material in test breeder module (TBM) in ITER and breeder blanket in DEMO design.
The present work aims to prepare an Al2O3/Fe-Al-Si Tritium Permeation Barrier (TPB) on Reduced Activation Ferritic-Martensitic Steel (RAFMS) an ideal material for Test Blanket Module (TBM) by employing Hot Dip Aluminizing (HDA), annealing and oxidation processes.
The high-flux-test-module was redesigned.
This facility consists of two modules: the porosity and permeability testing module and the diagenetic simulation module.
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