The MultiMat experiment was successfully conducted at CERN's HiRadMat facility, aiming to test novel high-performance materials for use in beam intercepting devices, allowing the derivation and validation of material constitutive models. This article provides an analysis of results for two materials tested in the experiment, namely Silicon Carbide and Titanium Zirconium Molybdenum, with the aim of benchmarking the material constitutive models currently available in literature with experimental results. The material models were implemented in numerical simulations, successfully modelling dynamic longitudinal and flexural phenomena. The article further studies the modelling of the complex boundary conditions present in the experiment, the int...
The introduction in recent years of new, extremely energetic particle accelerators such as the Large...
International audienceSimulations of the elastic-viscoplastic behaviour of ceramic-metal composite, ...
Les composites SiC/SiC sont envisagés comme matériaux pour des composants de cœur de réacteurs nuclé...
The MultiMat experiment was successfully conducted at CERN's HiRadMat facility, aiming to test novel...
The introduction at CERN of new extremely energetic particle accelerators, such as the high-luminosi...
The introduction at CERN of new extremely energetic particle accelerators, such as the high-luminosi...
The introduction at CERN of new extremely energetic particle accelerators, such as the high-luminosi...
The introduction at CERN of new extremely energetic particle accelerators, such as the high-luminosi...
The introduction at CERN of new extremely energetic particle accelerators, such as the high-luminosi...
An innovative and comprehensive experiment (named "Multimat") was successfully carried out at CERN H...
An innovative and comprehensive experiment (named "Multimat") was successfully carried out at CERN H...
Predicting the consequences of highly energetic particle beams impacting protection devices as colli...
Predicting by simulations the consequences of LHC particle beams hitting Collimators and other Beam ...
Beam Intercepting Devices (BID) are designed to operate in a harsh radioactive environment and are h...
The High-Luminosity Large Hadron Collider upgrade at CERN will result in an increase in the energy s...
The introduction in recent years of new, extremely energetic particle accelerators such as the Large...
International audienceSimulations of the elastic-viscoplastic behaviour of ceramic-metal composite, ...
Les composites SiC/SiC sont envisagés comme matériaux pour des composants de cœur de réacteurs nuclé...
The MultiMat experiment was successfully conducted at CERN's HiRadMat facility, aiming to test novel...
The introduction at CERN of new extremely energetic particle accelerators, such as the high-luminosi...
The introduction at CERN of new extremely energetic particle accelerators, such as the high-luminosi...
The introduction at CERN of new extremely energetic particle accelerators, such as the high-luminosi...
The introduction at CERN of new extremely energetic particle accelerators, such as the high-luminosi...
The introduction at CERN of new extremely energetic particle accelerators, such as the high-luminosi...
An innovative and comprehensive experiment (named "Multimat") was successfully carried out at CERN H...
An innovative and comprehensive experiment (named "Multimat") was successfully carried out at CERN H...
Predicting the consequences of highly energetic particle beams impacting protection devices as colli...
Predicting by simulations the consequences of LHC particle beams hitting Collimators and other Beam ...
Beam Intercepting Devices (BID) are designed to operate in a harsh radioactive environment and are h...
The High-Luminosity Large Hadron Collider upgrade at CERN will result in an increase in the energy s...
The introduction in recent years of new, extremely energetic particle accelerators such as the Large...
International audienceSimulations of the elastic-viscoplastic behaviour of ceramic-metal composite, ...
Les composites SiC/SiC sont envisagés comme matériaux pour des composants de cœur de réacteurs nuclé...