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A novel comprehensive utilization of vanadium slag/epoxy resin/antimony trioxide ternary composite as gamma ray shielding material by MCNP 6.2 and BXCOM

机译:MCNP 6.2和BXCOM综合利用钒渣/环氧树脂/锑三氧化物三元氧化物三氧化物三元组复合材料作为伽马射线屏蔽材料

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摘要

New research on composite materials was proposed for both gamma ray shielding and fireproofing. When compared to concrete, composite materials show up higher shielding properties in the 0.015 MeV-15 MeV incident energy range. The composite was prepared with vanadium slag, epoxy resin and antimony-trioxide. Different ratios of ternary composite were investigated in order to determine the optimum ratio for shielding and anti-flame properties. Photon atomic parameters with shielding were determined by BXCOM and MCNP 6.2. BXCOM program determines the buildup factors (both EBF and EABF) in the 0.015-15 MeV energy range for up to 40 mean free path (mfp) penetration depth. It uses geometric progression (G-P) fitting method. The effective electron number (N-eff) and the effective atomic number (N-eff) were also obtained with the BXCOM software. Furthermore, parameters such as the mass attenuation coefficients (mu/rho), half-value layer (HVL) and tenth-value layer (TVL) were determined by MCNP 6.2 in order to confirm and compare with WinXCOM results. Obtained results may be concluded to have preferable shielding properties for the composite as an alternative to concrete. Antimony-trioxide (x = 0.03), was found to exhibit the minimum EBF and EABF values, and is a convenient radiation shielding material. The Epoxy resin-vanadium slag and antimony-trioxide ternary glassy composite indicates better radiation shielding properties than concrete, but weaker than lead.
机译:提出了伽马光线屏蔽和防火的复合材料新研究。与混凝土相比,复合材料在0.015 MEV-15 MEV入射能量范围内显示出更高的屏蔽性能。用钒渣,环氧树脂和锑 - 三氧化物制备复合材料。研究了三元复合材料的不同比例以确定屏蔽和抗火焰性质的最佳比率。具有屏蔽的光子原子参数由BxCom和MCNP 6.2测定。 BXCOM程序在0.015-15 MEV能量范围内确定最多40个平均自由路径(MFP)穿透深度的增强因子(BEBF和EABF)。它使用几何进展(G-P)拟合方法。还使用BXCOM软件获得有效的电子数(N-EFF)和有效原子序数(N-EFF)。此外,通过MCNP 6.2确定诸如质量衰减系数(MU / RHO),半值层(HVL)和第十值(TVL)的参数,以便与Winxcom结果进行确认和比较。可以得出获得的结果,将复合材料具有优选的屏蔽性能作为混凝土的替代品。发现锑 - 三氧化物(x = 0.03),显示出最小的EBF和EABF值,是一种方便的辐射屏蔽材料。环氧树脂 - 钒渣和锑 - 三氧化锑三元玻璃复合材料表示比混凝土更好的辐射屏蔽性能,但弱于铅。

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