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Newly Developed Vanadium-Based Glasses and Their Potential for Nuclear Radiation Shielding Aims: A Monte Carlo Study on Gamma Ray Attenuation Parameters

机译:新开发的基于钒的眼镜及其核辐射屏蔽的潜力:伽马射线衰减参数的蒙特卡罗研究

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摘要

This study aimed to investigate different types of glasses based on the 46V2O5-46P2O5-(8-x) B2O3-xCuO system in terms of their nuclear radiation shielding properties. Accordingly, five different CuO-doped vanadate glasses were investigated extensively to determine the necessary gamma shielding parameters along with effective conductivity at 300,000 and buildup factors. Phy-x PSD software was used for determination of these vital parameters. Furthermore, these parameters, such as half value layer, tenth value layer, and mean free path were investigated in a broad energy range between 0.015 and 15 MeV. The results revealed that the amount of CuO reinforced in each sample plays an essential role in determination of the shielding abilities of the samples. The sample with the highest CuO content had the highest linear attenuation coefficient and mass attenuation coefficient values. Additionally, the lowest mean free path, half value layer, and tenth value layer values were recorded for glass sample VPCu8. There was an inverse relation between the effective conductivity and effective atomic number and photon energy; that is, as energy increases, the effective conductivity and effective atomic number decreased rapidly, especially in the regions of low energy. Glass sample VPCu8 reported the highest values for both parameters. Moreover, glass sample VPCu8 had the lowest exposure buildup factor and energy absorption buildup factor values. Our findings showed that CuO-reinforced vanadate glass composition, namely 46V2O5-46P2O5-8CuO, with a glass density of 2.9235 g/cm3, was reported to have superior gamma ray attenuation properties. These results would be helpful for scientists in determining the most appropriate additive rare earth type, as well as the most appropriate glass composition, to offer shielding characteristics similar to those described above, taking into consideration the criteria for usage and the needs of the community. The results of this research will be useful to the scientific community in evaluating the prospective characteristics of CuO-doped glass systems and related glass compositions. CuO-doped glass systems and associated glass compositions have a wide range of properties.
机译:本研究旨在根据其核辐射屏蔽性能来研究基于46V205-46P2O5-(8-X)B2O3-XCUO系统的不同类型的眼镜。因此,广泛研究了五种不同的Cuo掺杂的钒酸盐玻璃,以确定必要的伽马屏蔽参数以及300,000的有效电导率和积聚因子。 PHY-X PSD软件用于确定这些重要参数。此外,在0.015和15meV之间的宽能量范围内研究了这些参数,例如半值层,第十值层和平均自由路径。结果表明,在每个样品中加强的CuO量在测定样品的屏蔽能力中起重要作用。具有最高CuO含量的样品具有最高的线性衰减系数和质量衰减​​系数值。另外,为玻璃样品VPCU8记录最低平均自由路径,半值层和第十值层值。有效电导率和有效原子数和光子能量之间存在反向关系;也就是说,随着能量增加,有效的导电性和有效原子数迅速下降,特别是在低能量区域中。玻璃样本VPCU8报告了两个参数的最高值。此外,玻璃样品VPCU8具有最低的曝光累积因子和能量吸收累积因子值。我们的研究结果表明,Cuo加强钒酸盐玻璃组合物,即46V205-46p2O5-8CuO,玻璃密度为2.9235g / cm3,具有优异的γ射线衰减性能。这些结果对于科学家来说有助于确定最合适的添加剂稀土类型以及最合适的玻璃组合物,以提供与上述相似的屏蔽特性,同时考虑到使用的标准和社区的需求。该研究的结果对于评估Cuo掺杂的玻璃系统和相关玻璃组合物的前瞻性特征,对科学界有用。 Cuo掺杂的玻璃系统和相关的玻璃组合物具有广泛的性质。

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