Radiation Shielding Properties of Synthetic Ca-Al2O3 Polymer Based Composites

Mufutau A. Salawu, Ibrahim K. Ayinla, Sabastine C. Ezike, Mojeed O. Bello, Usman O. Usman, Abdulmojeed O. Yussuf, Julius A. Gbolahan, Aderemi B. Alabi
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Abstract

The optical and radiation shielding capabilities of Ca-Al2O3polymer-based composites were explored by combining synthesized aluminum oxide (Al2O3) with calcium (Ca) obtained from different shells. The obtained powders were dispersed into polymeric materials in a ratio of 2:1 via the melt-mixing process and then cast in a 10cm x10cm mold with a thickness of 10 mm and allowed to set at ambient temperature. The X-ray transmission through the composite samples was investigated using a well-collimated point source, and a linear attenuation coefficient was estimated. X-ray fluorescence results revealed calcium contents of 32 %, 37 %, and 34 % for snail shells, seashells, and periwinkle shells, respectively. The X-ray diffraction result confirmed the Al2O3polymorphs at approximately 32oand 57oand the aluminum phase at 46o. The X-ray photon transmittance of the composites is quite low at 40 keV to 60 keV and comparatively higher at 100 keV to 200 keV. For Ca-Al2O3polymer-based composites with calcium contents sourced from seashells, periwinkle shells, and snail shells, the maximum linear attenuation coefficients were 1.0 cm-1,0.79 cm-1, and 0.65 cm-1, respectively. The half-value layer (HVL) and relaxation length of all the samples under investigation decreased abruptly at 40 keV and 60 keV and grew linearly as the energy increased from 100 keV to 200 keV. A Ca-Al2O3polymer-based composite with calcium contents sourced from seashells was found to have higher x-ray attenuating characteristics than other composites.
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合成Ca-Al2O3聚合物基复合材料的辐射屏蔽性能
通过将合成的氧化铝(Al2O3)与不同壳层制备的钙(Ca)结合,研究了Ca-Al2O3聚合物基复合材料的光学和辐射屏蔽性能。将获得的粉末以2:1的比例通过熔融混合工艺分散到聚合物材料中,然后在10cm × 10cm的模具中浇注,模具厚度为10mm,并在室温下凝固。利用准直的点源研究了复合材料样品的x射线透射特性,并估计了其线性衰减系数。x射线荧光结果显示,蜗牛壳、海贝和长春花壳的钙含量分别为32%、37%和34%。x射线衍射结果证实al2o3在32°和57°左右多晶,铝相在46°左右多晶。复合材料的x射线光子透过率在40kev ~ 60kev范围内较低,在100kev ~ 200kev范围内较高。对于来自贝壳、长春花贝壳和蜗牛壳的ca - al2o3聚合物基复合材料,其最大线性衰减系数分别为1.0 cm-1、0.79 cm-1和0.65 cm-1。所有样品的半值层(HVL)和弛豫长度在40 keV和60 keV时急剧下降,并随着能量从100 keV增加到200 keV而线性增加。从贝壳中提取钙的ca - al2o3聚合物基复合材料比其他复合材料具有更高的x射线衰减特性。
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