Electrical Transport Properties and Gamma-Ray Attenuation Coefficient of Some Phosphate Glasses Containing By-Pass Cement Dust

Salem Sm, Mostafa Ag, Ah-Ram Ma, Yassin Om, Abu Gasser Ra
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引用次数: 1

Abstract

Some phosphate glasses containing different amounts of by-pass cement dust (BCD) were prepared by the melt quenching method. The selected molecular composition was [(100-x)% - P2O5 (x)% BCD (where 30≤ x≥60)]. The obtained experimental density and molar volume values were inspected and were then compared with those obtained empirically for the close packed structure of the corresponding compounds. The comparison between experimental and emperical values evidenced the short range order of the studied samples. The electric and dielectric properties were thoroughly investigated. The appearance of maxima and minima in the total conductivity BCD concentration dependence can be attributed to the mixed alkali – alkaline earth effect (MAAE) and to the presence of considerable amount of CaO. The suitability of such glasses to act as gamma-ray shielding materials was thoroughly investigated, and correlation between the chemical composition (the BCD concentration) and gamma-ray attenuation behavior was established.
含旁通水泥粉尘的磷酸盐玻璃的电输运特性和γ射线衰减系数
采用熔体淬火法制备了不同掺量旁通水泥粉(BCD)的磷酸盐玻璃。选择的分子组成为[(100-x)% - P2O5 (x)% BCD(其中30≤x≥60)]。对得到的实验密度和摩尔体积值进行了检验,然后与经验所得的结果进行了比较,以确定相应化合物的紧密排列结构。实验值与经验值的比较证明了所研究样品的范围顺序较短。对其电性能和介电性能进行了深入的研究。总电导率BCD浓度依赖性的最大值和最小值的出现可归因于混合碱-碱土效应(MAAE)和大量CaO的存在。深入研究了这种玻璃作为伽马射线屏蔽材料的适用性,并建立了化学成分(BCD浓度)与伽马射线衰减行为之间的相关性。
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