Algethami Merfat, Ibraheem Awad A, Issa Shams A M, Tekin Huseyin O, Ene Antoaneta, Pyshkina Maria, Rashad Mohamed, ALMisned Ghada, Zakaly Hesham M H
Physics Department, Faculty of Science, Taif University, P.O. Box 11099, Taif 21944, Saudi Arabia.
Physics Department, King Khalid University, P.O.Box 9004, Abha 61421, Saudi Arabia.
Materials (Basel). 2022 Mar 27;15(7):2464. doi: 10.3390/ma15072464.
In this study, three different sliding bearing alloy samples were investigated in terms of their performance on attenuation characteristics and behavioral attitudes under 0.015-15 MeV gamma-ray exposure. Accordingly, different types of advanced calculation methods were utilized to calculate the radiation shielding parameters. Next, several gamma-ray shielding parameters and exposure rates in addition to fast neutron removal cross-section were determined. Furthermore, exposure and energy absorption buildup factors were determined by using G-P fitting method. Mass attenuation coefficients (MAC) values were recorded as 2.5246, 2.5703, and 2.5827 (cm/g) for Alloy1, Alloy2, and Alloy3 samples at 15 MeV photon energy, respectively. At 40 mfp, the highest EBF values were reported as 1,376,274, 1,003,593, and 969,373 for Alloy1, Alloy2, and Alloy3 samples. The results of this extended investigation showed that the Alloy3 sample with the highest Pb reinforcement amount has superior shielding capability among the investigated samples. It can be concluded from the results that substitution of Pb with Bi in the recent alloy structure has a monotonic effect on different types of shielding parameters. Therefore, it can also be concluded that Pb is a remarkable tool for the improvement of the shielding properties of studied alloy structures.
在本研究中,对三种不同的滑动轴承合金样品在0.015 - 15 MeV伽马射线照射下的衰减特性和行为态度方面的性能进行了研究。相应地,利用不同类型的先进计算方法来计算辐射屏蔽参数。接下来,除了快中子去除截面外,还确定了几个伽马射线屏蔽参数和暴露率。此外,通过使用G-P拟合方法确定了暴露和能量吸收积累因子。在15 MeV光子能量下,合金1、合金2和合金3样品的质量衰减系数(MAC)值分别记录为2.5246、2.5703和2.5827(cm/g)。在40个平均自由程时,合金1、合金2和合金3样品的最高能量吸收积累因子(EBF)值分别报告为1,376,274、1,003,593和969,373。这项扩展研究的结果表明,铅增强量最高的合金3样品在所研究的样品中具有卓越的屏蔽能力。从结果可以得出结论,在最近的合金结构中用铋替代铅对不同类型的屏蔽参数有单调影响。因此,也可以得出结论,铅是改善所研究合金结构屏蔽性能的一个显著工具。