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Comparative neutron-shielding properties of metal oxide/HDPE composites using a Monte Carlo Code of PHITS

机译:使用Monte Carlo Phits的金属氧化物/ HDPE复合材料的比较中子屏蔽性能

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Development of efficient neutron-shielding materials has become one of the most important issues in radiation safety.In order to estimate shielding performances of the materials of interest,simulations of neutron-shielding characteristics using well-proved methods are necessary.In this work,a Monte Carlo code of Particle and Heavy Ion Transport code System(PHITS)was used to simulate neutron-shielding properties of HDPE composites that were added with either B2O3,Sm2O3,Gd2O3,or CdO as a filler at various contents.The energy of the incoming neutrons was fixed at 0.025 eV with the beam direction pointing at the right angle to the material's surface.The results showed that Gd2O3/HDPE composites had the lowest neutron transmission ratio compared with other fillers at the same contents,implying the highest neutron-shielding ability.Furthermore,the simulations also showed that the values of neutron transmission ratios of all fillers decreased with increasing filler's contents.Other information such as half-value-layer(HVL)and tenth-value-layer(TVL)were also simulated and reported in this work.We encouraged further investigation of this work by comparing the simulated results with the actual experiment in order to validate the accuracy of the simulation.
机译:高效中子屏蔽材料的开发已成为辐射安全中最重要的问题之一。为了估算感兴趣的材料的屏蔽性能,使用熟练的方法模拟中子屏蔽特性。在这项工作中,a粒子和重离子传输代码系统(pHITS)的蒙特卡罗代码用于模拟HDPE复合材料的中子屏蔽性能,所述HDPE复合材料的中子屏蔽性能在各种内容物中作为填料作为填料加入的HDPE复合材料的中子屏蔽性能。进入的能量中子以0.025eV固定在0.025eV,光束方向指向与材料表面的直角。结果表明,与相同内容物的其他填料相比,Gd2O3 / HDPE复合材料具有最低的中子传动比,暗示了最高的中子屏蔽能力。繁殖,仿真还表明,所有填料的中子透射比的值随着填料的内容增加而降低。其他信息还在这项工作中模拟和报告了如半值层(HVL)和第十值(TVL)。我们通过将模拟结果与实际实验进行比较以便验证,我们鼓励进一步调查这项工作。为了验证模拟的准确性。

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