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Synthesis and Monte Carlo Simulation of Improved Concrete Composites for Enhanced X-Ray/Gamma Ray Radiation Shielding

机译:增强X射线/γ射线辐射屏蔽的改进混凝土复合材料的合成与蒙特卡罗模拟。

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Synthesis and Monte Carlo simulation of improved concrete composites as x-ray/gamma ray shielding materials were performed. Samples of shieldings were synthesized using the base materials of Portland-type cement concrete with fillers of alloy steel, Co, Mn, and Cr, mixed separately as additives. The samples were characterized using Scanning Electron Microscopy-Energy Dispersive X-ray Spectrometry (SEM-EDS) to determine the constituent elements quantitatively. Linear attenuation coefficients of the samples were measured in the experiments and also simulated using Monte Carlo transport code MCNP5 in order to evaluate their shielding performance. The results of the experimentation and computer simulation reveal concrete with alloy steel added as having the best shielding properties, although concrete with other fillers added also exhibited enhanced shielding performance. It was demonstrated that 6.06 w% of fillers enhanced the x-ray/gamma ray shielding capability of ordinary concrete composites by improving their attenuation coefficient values by 40–60%.
机译:进行了改进的混凝土复合材料作为X射线/γ射线屏蔽材料的合成和Monte Carlo模拟。使用波特兰型水泥混凝土的基础材料以及合金钢,Co,Mn和Cr的填料作为添加剂单独混合来合成屏蔽样品。使用扫描电子显微镜-能量色散X射线光谱法(SEM-EDS)对样品进行表征,以定量确定组成元素。在实验中测量了样品的线性衰减系数,并使用蒙特卡洛运输代码MCNP5对其进行了模拟,以评估其屏蔽性能。实验和计算机模拟的结果表明,添加合金钢的混凝土具有最佳的屏蔽性能,尽管添加其他填料的混凝土也具有增强的屏蔽性能。结果表明,6.06 w%的填料通过将其衰减系数值提高40-60%,增强了普通混凝土复合材料的x射线/γ射线屏蔽能力。

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