Epoxy-based Light Weight Gamma Ray Shielding Materials

S. Joshia, S. Chandrasekaranb, I. Vijayalakshmia, K. Sivasubramaniana, V. Jayaramanc
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引用次数: 1

Abstract

Lightweight epoxy-based X-ray /gamma-ray shielding materials were synthesized by blending epoxy resin with the different weight percent of lead oxide, bismuth oxide, and tungsten oxide powders. The synthesized composites were characterized using FTIR, elemental analyzer, and X-ray radiography for their chemical structure, elemental composition, and filler distribution. The photon interaction parameters such as linear/mass attenuation coefficient, attenuation percentage, and half value layer were determined for all composites at photon energies 59.5, 364, and 661.7 keV. The measured mass attenuation coefficients of epoxy composites matched well with the obtained from XCOM. Moreover, the shielding effectiveness of the composites was analyzed by the half-value layer and heaviness of the composites and was compared with conventional shielding materials (concrete, lead, and steel).
环氧基轻质伽马射线屏蔽材料
将环氧树脂与不同重量百分比的氧化铅、氧化铋和氧化钨粉末共混,合成了轻质环氧基x射线/伽马射线屏蔽材料。利用FTIR、元素分析仪和x射线摄影对合成的复合材料进行了化学结构、元素组成和填料分布的表征。在光子能量为59.5、364和661.7 keV时,测定了复合材料的线性/质量衰减系数、衰减百分比和半值层等光子相互作用参数。所得环氧复合材料的质量衰减系数与XCOM计算结果吻合较好。通过半值层和复合材料的重量分析了复合材料的屏蔽效果,并与常规屏蔽材料(混凝土、铅和钢)进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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