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回收CRT锥玻璃部分替代高密度磁铁矿砂在防辐射混凝土中应用的可行性(英文) 被引量:3

Feasibility of using recycled CRT funnel glass as partial replacement of high density magnetite sand in radiation shielding concrete
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摘要 将回收的阴极射线管(CRT)锥玻璃作为辐射屏蔽混凝土中磁铁矿砂的替代材料,其质量替代率分别为0、20%、40%和60%。研究此防辐射混凝土的流动性、表观密度和力学性能,同时采用实验、理论计算和蒙特卡洛粒子(MCNP)模拟程序等方法研究混凝土γ射线的线性衰减系数(μ),质量衰减系数(μ_m)、半值层厚度(h_(HVL))和十分之一层厚度(h_(TVL))等辐射屏蔽参数。实验结果表明,混凝土的流动性显著提高,而表观密度、抗压强度和静弹性模量均略微下降。在相同的γ射线光子能量条件下,μ_m、μ、h_(HVL)和h_(TVL)等参数的计算、模拟和实验结果吻合较好,这表明用MCNP代码模拟材料的γ射线辐射屏蔽参数是可行的。计算结果表明,用CRT锥玻璃部分代替磁铁矿砂制作的混凝土可以在广泛的γ射线光子能量范围内有效地提高μm值,与对照混凝土(M-1)相比,这种混凝土具有几乎相同的辐射屏蔽性能。对流动性能、力学性能和γ射线辐射屏蔽性能的综合比较发现,锥玻璃细骨料替代率为20%-40%的混凝土具有良好的性能。 The recycled cathode ray tube(CRT)funnel glass was used as replacement of magnetite sand in the concrete,and its mass replacement rates were 0,20%,40%and 60%,respectively.The flowability,apparent density and mechanical properties of the radiation shielding concrete were investigated,while itsγ-ray radiation shielding parameters such as linear and mass attenuation coefficients(μandμm,respectively),thickness values of half-value layer(hHVL)and tenth-value layer(hTVL)were obtained by theoretical calculation,experiment and Monte.Carlo N-Particle(MCNP)simulation code.The experimental results show that the flowability of the concrete increases significantly,whilst its apparent density,compressive strength and static elastic modulus decrease slightly.The calculated,simulated and experimentalμm,μ,hHVL and hTVL values of all concrete samples are very consistent at the sameγ-ray photon energy,and it is feasible to use MCNP code to simulateγ-ray radiation shielding parameters of materials.The calculated results show that in a wide range ofγ-ray photon energy,theμm value of the concrete with CRT funnel glass replacing magnetite sand is improved effectively,and its radiation shielding performances are the same as those of the control concrete(M.1).By comprehensively comparing the flowability,mechanical properties andγ-ray radiation shielding properties,the concrete samples with 20%.40%funnel glass as fine aggregate have good performances.
作者 刘华良 石建军 屈慧琼 丁德馨 Hua-liang LIU;Jian-jun SHI;Hui-qiong QU;De-xin DING(School of Resources and Safety Engineering,Central South University,Changsha 410083,China;School of Civil Engineering,University of South China,Hengyang 421001,China;School of Nuclear Resources Engineering,University of South China,Hengyang 421001,China)
出处 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第4期831-839,共9页 中国有色金属学报(英文版)
基金 Project(14JJ2083)supported by the Natural Science Foundation of Hunan Province,China Project(2015JC3090)supported by the Science and Technology Department of Hunan Province,China
关键词 阴极射线管 锥玻璃 混凝土 Γ射线 辐射屏蔽 力学性能 Monte-Carlo粒子模拟 cathode ray tube funnel glass concrete γ-ray radiation shielding mechanical properties Monte-Carlo N-Particle simulation
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