© 2020 The bulk irradiation of materials with 10–30 MeV protons promises to advance the study of radiation damage for fission and fusion power plants. Intermediate energy proton beams can now be dedicated to materials irradiation within university-scale laboratories. This paper describes the first such facility, with an Ionetix ION-12SC cyclotron producing 12 MeV proton beams. Samples are mm-scale tensile specimens with thicknesses up to 300 μm, mounted to a cooled beam target with control over temperature. A specialized tensile tester for radioactive specimens at high temperature (500+ °C) and/or vacuum represents the conditions in fission and fusion systems, while a digital image correlation system remotely measures strain. Overall, the f...
The technology described has been developed for safe activation of pressed powder materials (up to 5...
International audienceIon accelerators have been used by material scientists for decades to investig...
AbstractThe ESS-Bilbao (ESS-B) proton linear accelerator has been conceived as a multipurpose machin...
© 2020 The bulk irradiation of materials with 10–30 MeV protons promises to advance the study of rad...
© 2021 Fusion and advanced fission power plants require advanced nuclear materials to function under...
Fusion and next-generation fission power plants will require thermal and structural materials to per...
We have developed a new irradiation facility that allows to perform accelerated damage tests of nucl...
A new Proteus (IBA) proton therapy facility will be installed at the Charleroi hospital in Belgium. ...
The KVI is conducting radiobiology research using protons up to 190 MeV from the superconducting AGO...
AbstractWe have developed a new irradiation facility that allows to perform accelerated damage tests...
The development of instrumentation for operation in high-radiation environments represents a challen...
Applied nuclear physics is an essential part of the research activity at many particle accelerators....
Space radiation often affects the electronic components' performance during the mission duration. In...
The RaDIATE collaboration (Radiation Damage In Accelerator Target Environments) was founded in 2012 ...
The technology described has been developed for safe activation of pressed powder materials (up to 5...
International audienceIon accelerators have been used by material scientists for decades to investig...
AbstractThe ESS-Bilbao (ESS-B) proton linear accelerator has been conceived as a multipurpose machin...
© 2020 The bulk irradiation of materials with 10–30 MeV protons promises to advance the study of rad...
© 2021 Fusion and advanced fission power plants require advanced nuclear materials to function under...
Fusion and next-generation fission power plants will require thermal and structural materials to per...
We have developed a new irradiation facility that allows to perform accelerated damage tests of nucl...
A new Proteus (IBA) proton therapy facility will be installed at the Charleroi hospital in Belgium. ...
The KVI is conducting radiobiology research using protons up to 190 MeV from the superconducting AGO...
AbstractWe have developed a new irradiation facility that allows to perform accelerated damage tests...
The development of instrumentation for operation in high-radiation environments represents a challen...
Applied nuclear physics is an essential part of the research activity at many particle accelerators....
Space radiation often affects the electronic components' performance during the mission duration. In...
The RaDIATE collaboration (Radiation Damage In Accelerator Target Environments) was founded in 2012 ...
The technology described has been developed for safe activation of pressed powder materials (up to 5...
International audienceIon accelerators have been used by material scientists for decades to investig...
AbstractThe ESS-Bilbao (ESS-B) proton linear accelerator has been conceived as a multipurpose machin...