Linear absorption coefficients and mass absorption coefficients of glass types when exposed to radiation at certain energy levels were compared experimentally in the X-ray fluorescence laboratory. In this study, Fe-55 X-ray source and Am-241 gamma ray source were used to determine the radiation transmittance of optical glass, frosted glass, laminated glass, black glass and double glass samples. Experimentally, linear absorption coefficients and mass absorption coefficients of glass samples were found at energies of 5.9 keV, 17 keV, 26 keV and 59.543 keV. The absorption coefficient of the glass samples was calculated and the percentages were compared. As a result of experimental work and calculations, it has been shown that all samples absorbed the beam at 5.9 keV. The linear absorption coefficient was observed higher in optical glass at 17 keV and 26 keV, and higher in black glass at 59.543 keV. Percent transmittances of the glasses are given in the table.
Glass Optical glass Frosted glass Laminated glass Radiation transmittance Radiation transmittance, Xrf
Cam çeşitlerinin belirli enerji seviyelerinde radyasyona maruz bırakıldığında lineer soğurma katsayıları ve kütle soğurma katsayıları X-ışını flüoresans laboratuvarında deneysel çalışarak karşılaştırılmıştır. Bu çalışmada optik cam, buzlu cam, lamine cam, siyah cam ve çift cam numunelerinin radyasyon geçirgenliğinin tespiti için Fe-55 X-ışını kaynağı ve Am-241 gama ışını kaynağı kullanılmıştır. Cam numunelerinin 5,9 keV, 17 keV, 26 keV ve 59,543 keV’lik enerjilerde deneysel olarak lineer soğurma katsayıları ve kütle soğurma katsayıları bulunmuştur. Cam numunelerinin soğurma katsayısı hesaplanarak yüzdeleri karşılaştırılmıştır. Deneysel çalışma ve hesaplamalar sonucu 5,9 keV’de numulerin hepsi ışını soğurmuştur. Lineer soğurma katsayısı 17 keV ve 26 keV’ de optik camda, 59,543 keV’de siyah cam da daha yüksek gözlemlenmiştir. Camların yüzde geçirgenlikleri tablo halinde verilmiştir.
Cam Optik cam Buzlu cam Lamine cam Radyasyon geçirgenliği Xrf
Primary Language | Turkish |
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Subjects | Metrology, Applied and Industrial Physics, Material Production Technologies |
Journal Section | RESEARCH ARTICLES |
Authors | |
Publication Date | December 12, 2022 |
Submission Date | March 10, 2022 |
Acceptance Date | June 1, 2022 |
Published in Issue | Year 2022 Volume: 5 Issue: 3 |
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