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Neutron shielding behavior of thermoplastic natural rubber/boron carbide composites

机译:热塑性天然橡胶/碳化物复合材料的中子屏蔽行为

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Many shielding materials have been designed against the harm of different types of radiation to the human body. Today, polymer-based lightweight composites have been chosen by the radiation protection industry. In the present study, thermoplastic natural rubber (TPNR) composites with different weight percent of boron carbide (B4C) fillers (0% to 30%) were fabricated as neutron shielding through melt blending method. Neutron attenuation properties of TPNR/B4C composites have been investigated. The macroscopic cross section (Σ), half value layer (HVL) and mean free path length (λ.) of the composites have been calculated and the transmission curves have been plotted. The obtained results show that Σ, HVL and λ greatly depend on the B4C content. Addition of B4C fillers into TPNR matrix were found to enhance the macroscopic cross section values thus decrease the mean free path length (λ) and half value layer (HVL) of the composites. The transmission curves exhibited that the neutron transmission of the composites decreased with increasing shielding thickness. These results showed that TPNR/B4C composites have high potential for neutron shielding applications.
机译:许多屏蔽材料已经针对不同类型的辐射造成人体的危害。如今,辐射防护行业选择了基于聚合物的轻质复合材料。在本研究中,通过熔融共混法制造具有不同重量碳碳化硼(B4C)填料(B4C)填料(0%至30%)的热塑性天然橡胶(TPNR)复合材料作为中子屏蔽。已经研究了TPNR / B4C复合材料的中子衰减性能。已经计算了复合材料的宏观截面(σ),半值层(HVL)和平均自由路径长度(λ。)并绘制了传输曲线。所得结果表明,σ,HVL和λ大大依赖于B4C含量。发现B4C填料加入TPNR基质中,以增强宏观横截面值,从而降低复合材料的平均自由路径长度(λ)和半值层(HVL)。透射曲线表现出复合材料的中子透射随着屏蔽厚度的增加而降低。这些结果表明,TPNR / B4C复合材料具有高潜力的中子屏蔽应用。

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