60Co γ-ray attenuation coefficient of barite concrete
- 1. Shahid Sadoghi University of Medical Sciences, Department of Medical Physics, Yazd(Iran, Islamic Republic of)
- 2. Center for Education and Training, Department of Medical Physics, Zanjan(Iran, Islamic Republic of)
- 3. Shahid Sadoghi University of Medical Sciences, Department of Physiology, Yazd(Iran, Islamic Republic of)
- 4. Yazd University, Department of Physics, Yazd(Iran, Islamic Republic of)
- 5. Yazd University, Department of Architecture, Yazd(Iran, Islamic Republic of)
Description
Recently, the use of medium and high energy X-rays has increased in Iran, and radiotherapy centers along with a variety of accelerators have been installed in some provinces. Hence, there is not sufficient skill in designing and installing radiotherapy treatment rooms. This study was conducted to evaluate the efficacy of different mixtures of barite concrete for shielding the radiotherapy rooms. This way, we have emphasized on determining the size and amount of barite aggregations to achieve the maximum radiation attenuation which leads to minimizing wall thickness in treatment room. Materials and Methods: To increase concrete density, the barite aggregation was added to concrete. Different size variations of barite aggregates mixed with different water/cement ratio were examined. The dimension of cubic concrete specimens for compression strength test was 15*15*15 cm. The rectangular barite concrete blocks with different compressions as used for strength test with cross section of 10*10 cm, and thicknesses from 5 to 40 cm were used for radiation attenuation test. To do so, concrete specimens were irradiated by gamma beam of 60Co (Phoenix Theratron). The transmission radiation through the blocks was measured by a Farmer ionization chamber (Fc65P). Results: Our findings showed that in all specimens the highest mean compression strength was related to the specimens with equal ratio of fine to coarse barite aggregates, but the lowest half value layer was obtained from mixtures with fine to coarse ratio of 35/65. The concrete sample with a 0.45 water/cement ratio, 350 kg/m3 cement and equal amounts of fine and coarse barite sands had nearly minimum half value layer (half value layer), and maximum compression strength, so the sample was considered as the best barite concrete sample. Conclusion: Since half value layer of the barite concrete specimens with the same compression strength is markedly lower than the conventional concrete, and that there are quite a number of barite mines in our country, it is recommended to use barite concrete with the most suitable mixture condition based on our findings for shielding the radiotherapy rooms
Availability note (English)
Available from Atomic Energy Organizartion of IranAdditional details
Publishing Information
- Journal Title
- Iranian Journal of Radiation Research (Print)
- Journal Volume
- 4
- Journal Issue
- no.2
- Journal Page Range
- p. 71-75
- ISSN
- 1728-4554
INIS
- Country of Publication
- Iran, Islamic Republic of
- Country of Input or Organization
- Iran, Islamic Republic of
- INIS RN
- 38040337
- Subject category
- S61: RADIATION PROTECTION AND DOSIMETRY;
- Descriptors DEI
- ATTENUATION; BARITE; COBALT 60; COMPRESSION STRENGTH; CONCRETES; GAMMA RADIATION; RADIATION PROTECTION; RADIOTHERAPY; SHIELDING MATERIALS; TRANSMISSION
- Descriptors DEC
- BETA DECAY RADIOISOTOPES; BETA-MINUS DECAY RADIOISOTOPES; BUILDING MATERIALS; COBALT ISOTOPES; ELECTROMAGNETIC RADIATION; INTERMEDIATE MASS NUCLEI; INTERNAL CONVERSION RADIOISOTOPES; IONIZING RADIATIONS; ISOMERIC TRANSITION ISOTOPES; ISOTOPES; MATERIALS; MECHANICAL PROPERTIES; MEDICINE; MINERALS; MINUTES LIVING RADIOISOTOPES; NUCLEAR MEDICINE; NUCLEI; ODD-ODD NUCLEI; RADIATIONS; RADIOISOTOPES; RADIOLOGY; SULFATE MINERALS; THERAPY; YEARS LIVING RADIOISOTOPES