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首页> 外文期刊>Progress in Nuclear Energy >Low cost radiation shielding material for low energy radiation applications: Epoxy/Yahyali Stone composites
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Low cost radiation shielding material for low energy radiation applications: Epoxy/Yahyali Stone composites

机译:低能量辐射应用的低成本辐射屏蔽材料:环氧树脂/ yahyali石复合材料

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In the present study, the gamma-ray shielding performance of the epoxy polymer matrix has been tried to develop by loading the matrix with a natural stone named as Yahyali Stone (YS), The YS has been collected from the Fairy Chimneys of Kayseri, Turkey. The chemical composition of the YS, which has been analyzed by X-Ray Fluorescence (XRF) spectroscopy, revealed that the main components of the stone are Fe2O3 (75.28 wt%), SiO2 (17.21 wt%), and Al2O3 (4.24 wt%). The Epoxy/YS composites that include 5 wt%, 10 wt%, 20 wt% and, 30 wt% YS have been prepared by mechanical mixing technique. The experimental setup contained a133Ba, 137Cs, and 60Co point radioactive sources, which emit 81 keV, 356 keV, 662 keV, 1173 keV, and 1332 keV photons, and a NaI(Tl) detector. The gamma-ray shielding capability of the samples has been discussed in the context of mass attenuation coefficient (?/?), half-value layer (HVL), and mean free path (MFP). The mass attenuation coefficient, HVL, and MFP have also been calculated by WinXCom software. The experimental and WinXCom software results have been compared and good consistency has been established between these results. Finally, the effective atomic number (Zeff) and effective electron density (Neff) have been calculated by using the interpolation method. In conclusion, it can be suggested that low cost, natural and non-toxic reinforcing YS material has a promising role in enhancing the radiation shielding ability of the epoxy matrix for low energy radiation applications.
机译:在本研究中,通过将基质装载与作为Yahyali Stone(YS)的天然石头装载矩阵来试图开发环氧聚合物基质的伽马射线屏蔽性能,从土耳其坎默里的仙女烟囱收集了YS 。通过X射线荧光(XRF)光谱分析的Ys的化学成分显示,石材的主要成分是Fe2O3(75.28wt%),SiO2(17.21wt%)和Al 2 O 3(4.24wt%) )。通过机械混合技术制备包含5wt%,10wt%,20wt%的环氧/ ys复合材料,包括5wt%,10wt%,,30wt%y。实验设置含有133Ba,137cs和60co点放射源,其发射81keV,356keV,662keV,1173keV和1332keV光子,以及Nai(T1)检测器。样品的伽马射线屏蔽能力已经在质量衰减系数(β),半值层(HV1)的背景下讨论,并且是平均自由路径(MFP)。 Winxcom软件还计算了大规模衰减系数,HVL和MFP。实验和Winxcom软件结果已经进行了比较,在这些结果之间建立了良好的一致性。最后,通过使用插值方法计算有效原子序数(Zeff)和有效的电子密度(Neff)。总之,可以提出低成本,自然和无毒的增强ys材料在提高环氧基质的辐射屏蔽能力方面具有很大的作用,用于低能量辐射应用。

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