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Mechanical and radiation shielding properties of flexible material based on natural rubber/Bi2O3 composites

机译:基于天然橡胶/ Bi2O3复合材料的柔性材料的机械和辐射屏蔽性能

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The purpose of this investigation have been developed lead-free and flexible radiation shielding materials. Composites of natural rubber (NR) were prepared by incorporating bismuth oxide (Bi2O3) with various loading levels. The variation mechanical properties of the composite with different loading levels have been studied. The gamma ray shielding properties were measured with Cs-137 (662 keV) source by Compton scattering technique. The X-ray shielding characterization were measured with high frequency digital radiography X-ray machine Shimadzu model RAD Speed Pro. The results show that addition of Bi2O3 into natural rubber enhances the modulus at 100% elongation, hardness and specific gravity of the composites, whereas tensile strength and elongation at break reduces. For gamma ray shielding properties, the experimental values of mass attenuation coefficients (mu(m)), effective atomic number(Z(eff)), effective electron densities (N-e) and lead equivalent of the NR composites were found to increase with the increasing of Bi2O3 concentrations, while these value were decrease with the increasing of photon energy from 223 keV to 662 keV. The half value layer (HVL) values of all samples were decreased with the increasing of Bi2O3 concentrations. The NR of 150 phr Bi2O3 composites found to be the lowest HVL values in comparison with commercial window, serpentine, ordinary concrete and hemimatite-serpentine. For X-ray shielding properties, the linear attenuation coefficient (mu) and lead equivalent (dPb) were increased with increased Bi2O3 add in NR and show the decreasing of X-ray energies range.
机译:该研究的目的已经开发出无铅和柔性辐射屏蔽材料。通过将氧化物(Bi2O3)掺入各种负载水平,制备天然橡胶(NR)的复合材料。已经研究了具有不同负载水平的复合材料的变异机械性能。通过CS-137(662keV)来源通过COPTON散射技术测量伽马射线屏蔽性能。用高频数字射线照相X射线机Shimadzu Model rad Speed Pro测量X射线屏蔽表征。结果表明,将Bi2O3添加到天然橡胶中,增强了复合材料的100%伸长,硬度和比重的模量,而抗拉强度和断裂伸长率降低。对于伽马射线屏蔽性能,发现质量衰减系数(MU(M)),有效原子数(Z(QU)),有效电子密度(NE)和NR复合材料的铅相当于NR复合材料的实验值增加Bi2O3浓度的浓度,而这些值随着223keV至662keV的光子能量的增加而降低。随着Bi2O3浓度的增加,所有样品的半值层(HVL)值减少。与商业窗口,蛇纹碱,普通混凝土和六肽相比,150phl Bi2O3复合材料的NR是最低的HVL值。对于X射线屏蔽性能,随着BI2O3的增加,增加了线性衰减系数(MU)和铅当量(DPB),并显示了X射线能量范围的降低。

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