IEAP - Institute of Experimental and Applied Physics CTU - Czech Technical University in Prague
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IEAP - Institute of Experimental and Applied Physics CTU - Czech Technical University in Prague
CTU - Czech Technical University in Prague
Grants  > Facility for nondestructive testing, diagnostics and 3D imaging based on neutron radiography and tomography
Facility for nondestructive testing, diagnostics and 3D imaging based on neutron radiography and tomography

The method of neutron transmission radiography allows distinguishing materials which are invisible for other imaging methods. The method is suitable for imaging of structures made of modern industrial materials e.g. composites or glued joints. This project aims in construction of facility for neutron transmission radiography and tomography. The facility will allow Czech companies to use this progressive technique of nondestructive testing. The existing nuclear reactor LWR-15 in Řež will be used as a source of slow neutrons. The two neutron beam lines will be built: One will serve for radiography and tomography of large objects and the second will use the neutron mirrors for intensity enhancement and ill serve for neutron microradiography and microtomography. The important part of the project is development of neutron imaging detectors based on pixel technology Timepix. The detector with large area (15 x 15 cm) and the detector with very high spatial resolution (about 10 microns) will be developed.

number
TA01010237

duration
1.1.2011 - 31.12.2015

responsible person
team members

Articles in Impacted Journals
(8)
Text format
Year

Ocenění Name Author Scientific journal OceněníYear
High-contrast X-ray Radiography Using Hybrid Semiconductor Pixel Detectors with 1 mm thick Si sensor as a Tool for Monitoring Liquids in Natural Building Krejčí F.; Slavíková M.; Žemlička J.; Jakůbek J.; Kotlík P. Journal of Instrumentation 9 C07014 2014
Large area pixel detector WIDEPIX with full area sensitivity composed of 100 Timepix assemblies with edgeless sensors Jakůbek J.; Jakůbek M.; Platkevič M.; Soukup P.; Tureček D.; Sýkora V.; Vavřík D. JINST 9 C04018 2014
Modular pixelated detector system with the spectroscopic capability and fast parallel read-out Vavřík D.; Holík M.; Jakůbek J.; Jakůbek M.; Kraus V.; Krejčí F.; Soukup P.; Tureček D.; Vacík J.; Žemlička J. Journal of Instrumentation 9 C06006 2014
Neutron and high-contrast X-ray micro-radiography as complementary tools for monitoring organosilicon consolidants in natural building stones Slavíková M.; Krejčí F.; Kotlík P.; Jakůbek J.; Tomandl I.; Vacík J. Nucl. Instr. Methods B: Beam Interactions with Materials and Atoms 338, 42-47 2014
3D imaging of radiation damage in silicon sensor and spatial mapping of charge collection efficiency Jakůbek M.; Jakůbek J.; Žemlička J.; Platkevič M.; Havránek V.; Semian V. JINST 8 C03023 2013
Evaluation of local radiation damage in silicon sensor via charge collection mapping with the Timepix read-out chip Platkevič M.; Jakůbek J.; Havránek V.; Jakůbek M.; Semian V.; Žemlička J. JINST 8 C04001 2013
Processing and characterization of edgeless radiation detectors for large area detection Kalliopuska J.; Wu X.; Jakůbek J.; Eränen S.; Virolainen T. Nuclear Instruments and Methods in Physics Research A, Volume 731, p. 205-209 2013
Probe and scanning system for 3D response mapping of pixelated semiconductor detector with X-rays and the timepix device Jakůbek M.; Jakůbek J.; Žemlička J.; Kroupa M.; Krejčí F. AIP Conf. Proc. 1423, pp. 461-466; doi:10.1063/1.3688846 2012
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