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Shielding properties of the ordinary concrete loaded with micro- and nano-particles against neutron and gamma radiations

机译:用微型和纳米颗粒对中子和γ辐射负载的普通混凝土的屏蔽性能

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摘要

The shielding properties of ordinary concrete doped with some micro and nano scaled materials were studied in the current study. Narrow beam geometry was simulated using MCNPX Monte Carlo code and the mass attenuation coefficient of ordinary concrete doped with PbO2, Fe2O3, WO3 and H4B (Boronium) in both nano and micro scales was calculated for photon and neutron beams. Mono-energetic beams of neutrons (100-3000 keV) and photons (142-1250 keV) were used for calculations. The concrete doped with nano-sized particles showed higher neutron removal cross section (7%) and photon attenuation coefficient (8%) relative to micro-particles. Application of nano-sized material in the composition of new concretes for dual protection against neutrons and photons are recommended. For further studies, the calculation of attenuation coefficients of these nano-concretes against higher energies of neutrons and photons and different particles are suggested.
机译:研究目前的研究,研究了掺杂有一些微型和纳米缩放材料的普通混凝土的屏蔽性能。 使用MCNPX蒙特卡罗码模拟窄梁几何形状,并且针对光子和中子束计算掺杂有PBO2,Fe2O3,WO3和H4b(硼镓)的普通混凝土的质量衰减系数。 中子(100-3000keV)和光子(142-1250keV)的单能量束用于计算。 掺杂有纳米尺寸颗粒的混凝土显示出相对于微粒的中子去除横截面(7%)和光子衰减系数(8%)。 建议使用纳米尺寸材料在新型防治中子和光子的新型混凝土组成中的应用。 为了进一步研究,提出了这些纳米混凝土的衰减系数对较高的中子和光子和不同颗粒的计算。

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