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Study on gamma shielding polymer composites reinforced with different sizes and proportions of tungsten particles using MCNP code

机译:使用MCNP代码研究不同尺寸和比例的钨粒子增强的伽玛屏蔽聚合物复合材料

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Metal polymer composites (MPCs) are new category of advanced materials whose effectiveness in the field of radiation protection has been confirmed experimentally and theoretically. By using MCNP code, this paper describes a modified model to study effect of size and proportion of tungsten (W) particles on shielding properties of light density polyethylene (LDPE). Indeed, LDPE/W composite is composed of LDPE as a background in which W particles in different sizes and proportions are distributed. Accordingly, we designed a structure containing W particles in sizes of 100 nm, 1 mu m, 10 mu m, 100 mu m and proportions of 1, 5, 10, 15, 20, 25 wt% inside LUPE matrix. Shielding properties of LDPE reinforced with W particles in terms of size and proportion of W have been discussed. The results showed that transmission factor increases sharply in low energy region up to the maximum, then follows a slow descending trend. It was found that the values of transmission factor decrease with an increase in the proportion of W, as it was observed in all W sizes. Besides, the lower the filler proportion is, the more significant the size effect occurs. To find more, we introduced a formula to compute relative reduction of transmission (RRT) from 1 to 25 wt% at each energy point. The maximum value of RRT occurred at 0.05 MeV which enhanced up to 89% while W proportion increased. Besides, the maximum buildup factor was observed at 0.1 MeV which is lower in LDPE/25 wt% W composites compared to 1 wt% ones. In other word, increasing W proportion up to 25 wt% resulted in decreasing the maximum buildup factors and this reduction was more notable in greater W sizes. Furthermore, it was proved that the filler proportion plays more effective role than the filler size in attenuating gamma rays.
机译:金属聚合物复合材料(MPC)是高级材料的新类别,其在辐射防护领域的有效性已在实验和理论上得到证实。通过使用MCNP代码,本文描述了一种改进的模型,以研究钨(W)颗粒的尺寸和比例对光密度聚乙烯(LDPE)的屏蔽性能的影响。实际上,LDPE / W复合材料是由LDPE构成的,背景中分布着不同大小和比例的W粒子。因此,我们设计了一种结构,该结构在LUPE基质内部包含尺寸为100 nm,1μm,10μm,100μm和比例为1、5、10、15、20、25 wt%的W粒子。讨论了用W颗粒增强的LDPE的屏蔽性能,包括W的尺寸和比例。结果表明,在低能量区域,传输因子急剧增加直至最大值,然后呈缓慢下降的趋势。如在所有W尺寸中观察到的,发现透射因子的值随W比例的增加而降低。此外,填料比例越低,发生尺寸效应越显着。为了找到更多信息,我们引入了一个公式来计算每个能量点的透射率(RRT)从1到25 wt%的相对减少。 RRT的最大值出现在0.05 MeV,增加了89%,而W的比例增加了。此外,观察到最大堆积因子为0.1 MeV,这在LDPE / 25 wt%W复合材料中比在1 wt%复合材料中低。换句话说,将W比例提高到25 wt%会导致最大堆积因子的减小,并且这种减小在更大的W尺寸中更为明显。此外,已经证明,在衰减γ射线中,填料比例比填料尺寸更有效。

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