Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Elvis Fornasiere"'
Autor:
Federica Mingrone, Marco Calviani, Claudio Torregrosa Martin, Oliver Aberle, Michael Bacak, Enrico Chiaveri, Elvis Fornasiere, Antonio Perillo-Marcone, Vasilis Vlachoudis, the n_TOF Collaboration
Publikováno v:
Instruments, Vol 3, Iss 2, p 32 (2019)
A neutron radiography testing station has been developed exploiting the neutron beam of CERN’s n_TOF Experimental Area 2, located at the shortest distance to the neutron producing-target. The characteristics of the n_TOF neutron beam for the imagin
Externí odkaz:
https://doaj.org/article/55fb7520653d45b98080cb5cf830e748
Autor:
E. Chiaveri, Antonio Perillo-Marcone, Marco Calviani, F. Mingrone, M. Bacak, Elvis Fornasiere, V. Vlachoudis, O. Aberle, C. Torregrosa Martin
Publikováno v:
EPJ Web of Conferences, Vol 239, p 01042 (2020)
A neutron radiography station has been developed at the n_TOF facility of CERN. The characteristics of the neutron beam line and the imaging setup are presented in this paper together with first experimental results. A comparison of two different col
Autor:
Claudio Torregrosa Martin, Elvis Fornasiere, Philippe Spätig, Marco Calviani, Nicola Solieri, Joao Canhoto Espadanal, Antonio Perillo-Marcone, Josep Busom Descarrega
Publikováno v:
European Journal of Mechanics - A/Solids. 85:104149
Spalling in tantalum has been observed in an experiment aiming at testing an antiproton production target prototype at CERN’s HiRadMat Facility. The experiment consisted in impacting 47 intense and high-energy proton beams onto a target equipped wi
Autor:
Elvis Fornasiere, Claudio Torregrosa Martin, Nicola Solieri, Josep Busom Descarrega, Marco Calviani, Romain Ferriere, Antonio Perillo-Marcone, Benjamin Dickinson, Joao Canhoto Espadanal
For antiproton production at CERN, high‐energy (26 GeV/c), intense, and short proton beams are impacted into a small rod-target core-made of a dense metal. Temperature rises in the order of 2000°C, and subsequent dynamic stresses of several gigapa
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::466e8739d23080ad1c8db80e24282395
http://cds.cern.ch/record/2689151
http://cds.cern.ch/record/2689151
Publikováno v:
Journal of the Mechanical Behavior of Biomedical Materials. 4:610-617
Hydrogels are promising materials for bioengineering applications, and are good model materials for the study of hydrated biological tissues. As these materials often have a structural function, the measurement of their mechanical properties is of fu