研究阻挡662 KeV伽马射线穿透的标准材料和玻璃屏蔽

Berun N. Ghafoor, Y. Shwan
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引用次数: 1

摘要

为了确保工作人员暴露在辐射中,需要对屏蔽进行计算。用来评价介质辐射扩散和吸收特性的一种测量方法是线性衰减系数()。尽管辐射在介质中运动时,其吸收受到辐射波长以及介质的厚度和成分的影响,但在辐射与物质的相互作用中,线性吸收系数是至关重要的。本研究使用多种材料作为屏蔽由铯-137发射的伽马辐射源。利用带闪烁计数器的伽马源得到的结果表明,玻璃和铝的半值厚度分别为3.57 cm和3.39 cm,而标准材料(混凝土、铁和铅)的半值厚度分别为2.98 cm、1.195 cm和0.58 cm。
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Investigate shielding of standard materials and glass for stopping 662 KeV gamma ray penetrations
Calculations on shielding are required for the building of a gamma ray radiography exposure room to ensure worker exposure to radiation. A measurement used to evaluate the radiation diffusive and absorption characteristics of a medium is the linear attenuation coefficient ( ). Despite the fact that, as radiation moves through a medium, its absorption is influenced by the wavelength of the radiation as well as the thickness and composition of the medium, the linear absorption coefficient is crucial in the interaction of radiation with matter. This research uses a variety of materials as a shield for a gamma radiation source of  emitted by Cs-137. The results obtained using a gamma source with a scintillation counter showed that the Half Value Thickness (HVT) of glass and aluminum were 3.57 cm, and 3.39 cm while for standard materials (concrete, iron, and lead) were 2.98 cm, 1.195 cm, and 0.58 cm respectively.
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