The method enables the observation of material density variations with micrometric accuracy. The test sample is illuminated by X rays during the loading process. Measured changes in transmission represent effective alterations in the sample thicknesses which are understood as weakening of the material due to damage volume fraction.
Sensitivity of the XRDD method depends on the ratio between incident and transmitted X ray beam intensity and on the fraction of scattered photons, the efficiency of the Medipix2 device at the X-ray energy used and the spectra of the X-ray tube.
Number | Name | Agency |
LC06041 | Research center "Fabrication, modification and characterization of materials by energetic radiation" | MŠMT |
106/04/0567 | Study of damage zone in high ductile materials in vicinity of crack tip by X-Ray Dynamic Defectoscopy method | GAČR |
MSM 6840770040 | Research Program 40: Usage of radionuclides and ionizing radiation. | MŠMT |
![]() | Name | Author | Scientific journal | ![]() |
Microradiographic measurement of copper distribution in duralumin sample | Vavřík D.; Holý T.; Jakůbek J.; Jakůbek M.; Valach J. | Československý Časopis pro Fyziku, 1/2008, 58-61 | 2008 | |
Microradiography in material science | Vavřík D.; Jakůbek J.; Jakůbek M.; Holý T. | Československý Časopis pro Fyziku, 1/2008, 53-57 | 2008 | |
Non-destructive Observation of Damage Processes in precracked specimens by X-Ray Dynamic Defectoscopy | Vavřík D.; Jakůbek J.; Pospíšil S.; Visschers J.; Zemánková J. | Annals of the Marie Curie fellowships-Vol.3, pp. 69-75, ISBN 92 92 894 7233¬2 | 2004 |