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IEAP - Institute of Experimental and Applied Physics CTU - Czech Technical University in Prague
CTU - Czech Technical University in Prague
Grants  > Evaluation of the energy responsible for fracture advancing
Evaluation of the energy responsible for fracture advancing

Many high performance structures are manufactured from thin wall ductile materials. The mechanical behaviour of such materials is different from thick wall materials due to size effects. Therefore, fracture mechanics (FM) theories and conclusions appropriate for thick wall structures can not be straightforward applicable when analyzing thin wall structures. Resistance of the structures to crack growth is usually characterized by the fracture toughness. Standardized approaches are based on assumption that fracture toughness may be measured indirectly using some characteristic fracture parameter. However it is difficult apriori guarantee that the assumptions of FM theory used are satisfied for given measurement especially if ductile material is used. Consequently we can receive different values of fracture toughness measured in dependence on FM theory applied. Much more appropriate determination of the fracture toughness would be evaluation of the energy responsible for fracture advancing. Related problems of energy dissipated in process and plastic zones in dependence on specimen geometry and material used are basis of the project proposed. Solution will be done experimental-numerically.

number
103/09/2101

duration
1.1.2009 - 31.12.2012

responsible person
team members

All
(8)
Text format
Year

Ocenění Name Author Scientific journal OceněníYear
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
CT Artefact Reduction by Signal to Thickness Calibration Function Shaping Vavřík D. NIM A, Volume 633, Supplement 1, May 2011, Pages S152-S155 2011
Combined Medipix based imaging system with Si and CdTe sensor Vykydal Z.; Fauler A.; Fiederle M.; Jakůbek J.; Soukup P.; Fauler A. 2011 IEEE Nuclear Science Symposium Conference Record, Pages: 4761 - 4765, doi: 10.1109/NSSMIC.2011.6154710 2011
Evaluation of strain field in microstructures using micro-CT and digital volume correlation Jiroušek O.; Jandejsek I.; Vavřík D. JINST 6 C01039 doi:10.1088/1748-0221/6/01/C01039 2011
High Contrast Laminography Using Iterative Algorithms Kroupa M.; Jakůbek J. JINST 6 C01045, doi: 10.1088/1748-0221/6/01/C01045 2011
Metal Grain Structure Resolved with Table-top micro-Tomographic System Vavřík D.; Soukup P. JINST_007P_1011 2011
Real-time X-ray microradiographic imaging and image correlation for local strain mapping in single trabecula under mechanical load Doktor T.; Jiroušek O.; Zlámal P.; Jandejsek I. JINST 6 C11007 doi:10.1088/1748-0221/6/11/C11007 2011
X-ray dynamic defectoscopy utilizing digital image correlation Jandejsek I.; Nachtrab F.; Uhlmann N.; Vavřík D. NIM A, Volume 633, Supplement 1, May 2011, Pages S185-S18 2011
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