Beryllium is a material extensively used in various particle accelerator beam lines and target facilities, as beam windows and, to a lesser extent, as secondary particle production targets. With increasing beam intensities of future multimegawatt accelerator facilities, these components will have to withstand even greater thermal and mechanical loads during operation. As a result, it is critical to understand the beam-induced thermal shock limit of beryllium to help reliably operate these components without having to compromise particle production efficiency by limiting beam parameters. As part of the RaDIATE (radiation damage in accelerator target environments) Collaboration, an exploratory experiment to probe and investigate the thermomec...
The experimental fusion reactor ITER, currently under construction in Cadarache, France, is transfer...
An experimental study to investigate thermal-induced damage to SSRL-designed beryllium foil windows ...
Beryllium has been chosen as a plasma facing material for the first wall of the experimental fusion ...
Beryllium is extensively used in various accelerator beam lines and target facilities as material fo...
Beside carbon materials and tungsten, beryllium will play an important role as plasma facing materia...
In order to simulate transient events on beryllium, thermal shock experiments have been carried out ...
Plasma facing materials and components for future fusion devices are subjected to high thermal and t...
Plasma facing materials and components for future fusion devices are subjected to high thermal and t...
The rising global energy consumption requires a broad research and development approach in the field...
The rising global energy consumption requires a broad research and development approach in the field...
A beryllium primary vacuum-to-air beam ‘window’ of the “Neutrinos at the Main Injector” (NuMI) beaml...
While numerous studies have investigated the low-strain-rate constitutive response of beryllium, the...
The experimental fusion reactor ITER will apply beryllium as first wall armor material. In present f...
The selection of the armour materials for the plasma facing components (PFC) was one of the importan...
The experimental fusion reactor ITER will apply beryllium as first wall armor material. In present f...
The experimental fusion reactor ITER, currently under construction in Cadarache, France, is transfer...
An experimental study to investigate thermal-induced damage to SSRL-designed beryllium foil windows ...
Beryllium has been chosen as a plasma facing material for the first wall of the experimental fusion ...
Beryllium is extensively used in various accelerator beam lines and target facilities as material fo...
Beside carbon materials and tungsten, beryllium will play an important role as plasma facing materia...
In order to simulate transient events on beryllium, thermal shock experiments have been carried out ...
Plasma facing materials and components for future fusion devices are subjected to high thermal and t...
Plasma facing materials and components for future fusion devices are subjected to high thermal and t...
The rising global energy consumption requires a broad research and development approach in the field...
The rising global energy consumption requires a broad research and development approach in the field...
A beryllium primary vacuum-to-air beam ‘window’ of the “Neutrinos at the Main Injector” (NuMI) beaml...
While numerous studies have investigated the low-strain-rate constitutive response of beryllium, the...
The experimental fusion reactor ITER will apply beryllium as first wall armor material. In present f...
The selection of the armour materials for the plasma facing components (PFC) was one of the importan...
The experimental fusion reactor ITER will apply beryllium as first wall armor material. In present f...
The experimental fusion reactor ITER, currently under construction in Cadarache, France, is transfer...
An experimental study to investigate thermal-induced damage to SSRL-designed beryllium foil windows ...
Beryllium has been chosen as a plasma facing material for the first wall of the experimental fusion ...