Neutron irradiation is one of the most concerning issues to design plasma facing components and reactor inner structures in fusion devices, especially for high power density ones, like ARC reactor. This study addresses the main aspects of neutron irradiation on solid materials of ARC reactor. In particular it deeply analizes the effect of neutron induced activation proposing low activation structures, like vanadium alloys and different optimization methods like isotopic tailoring, detritiation and impurity control. Furthermore, irradiation damage issues and their dependence on the energy spectrum are highlighted. It resulted that V-Cr-Ti alloys dramatically reduce the radioactive inventory of ARC with respect to its baseline configuration, ...
For the realization of fusion as an energy source, the development of suitable materials is one of t...
Bombardment of a solid by nuclear radiation causes alterations in its physical properties. The damag...
Plasma-facing components (PFCs) will be exposed to 14 MeV neutrons from deuterium-tritium (D-T) fusi...
Nowadays, Fusion Energy is one of the most important sources under study. During the last years, dif...
The development of appropriate materials for fusion reactors that can sustain high neutron fluence a...
The Affordable Robust Compact (ARC) reactor is a conceptual design for a Tokamak conceived by Massac...
The neutronics of a fusion reactor is crucial in the conceptual design of all in-vessel components a...
The proposed blanket for Affordable Robust Compact (ARC) reactor is one of the simplest blanket conc...
The neutronics of a fusion reactor is crucial in the conceptual design of all in-vessel components a...
Ion irradiations on the Ti6-4 titanium alloy were conducted at the JANNUS French platform in two dif...
Samples of lanthanum, erbium and titanium which are constituents of structural materials, insulating...
Abstract Tungsten is a candidate material for a protective armour on the plasma-facing first wall of...
Cladding materials in next-generation fast reactors are expected to reach damage levels of 500 displ...
Activation calculations are an important tool for the investigation of materials behaviour under neu...
Neutron damage is a major deciding factor in the commercialisation of a fusion power plant. Neutron ...
For the realization of fusion as an energy source, the development of suitable materials is one of t...
Bombardment of a solid by nuclear radiation causes alterations in its physical properties. The damag...
Plasma-facing components (PFCs) will be exposed to 14 MeV neutrons from deuterium-tritium (D-T) fusi...
Nowadays, Fusion Energy is one of the most important sources under study. During the last years, dif...
The development of appropriate materials for fusion reactors that can sustain high neutron fluence a...
The Affordable Robust Compact (ARC) reactor is a conceptual design for a Tokamak conceived by Massac...
The neutronics of a fusion reactor is crucial in the conceptual design of all in-vessel components a...
The proposed blanket for Affordable Robust Compact (ARC) reactor is one of the simplest blanket conc...
The neutronics of a fusion reactor is crucial in the conceptual design of all in-vessel components a...
Ion irradiations on the Ti6-4 titanium alloy were conducted at the JANNUS French platform in two dif...
Samples of lanthanum, erbium and titanium which are constituents of structural materials, insulating...
Abstract Tungsten is a candidate material for a protective armour on the plasma-facing first wall of...
Cladding materials in next-generation fast reactors are expected to reach damage levels of 500 displ...
Activation calculations are an important tool for the investigation of materials behaviour under neu...
Neutron damage is a major deciding factor in the commercialisation of a fusion power plant. Neutron ...
For the realization of fusion as an energy source, the development of suitable materials is one of t...
Bombardment of a solid by nuclear radiation causes alterations in its physical properties. The damag...
Plasma-facing components (PFCs) will be exposed to 14 MeV neutrons from deuterium-tritium (D-T) fusi...