不同纳米尺寸和高密度聚乙烯复合材料富集WO3对x射线窄谱衰减的影响

IF 0.9 4区 工程技术 Q3 NUCLEAR SCIENCE & TECHNOLOGY Nuclear Technology & Radiation Protection Pub Date : 2021-01-01 DOI:10.2298/ntrp2104315o
Amro Obeid, B. El, Samad El, Z. Alsayed, R. Awad, M. Badawi
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引用次数: 5

摘要

用40 ~ 150 kV窄谱n系列x射线测定了一种新型屏蔽高分子复合材料的辐射衰减能力。通过压缩成型技术合成高密度聚乙烯,并加入不同数量(10、15、25和35 wt.%)的体积微尺寸wo3(样品a),两个45 nm(样品B)和24 nm(样品C)的wo3纳米颗粒。利用x射线衍射和透射电子显微镜对wo3填料进行了鉴定和表征。利用能量色散x射线分析测定了合成的复合材料中化学元素的质量分布。不同衰减参数得到的结果表明,WO颗粒的粒径和质量分数对复合材料的x射线屏蔽能力有显著影响。将质量衰减系数的3个实验测量值与NIST数据库XCOM和FFAST中的理论值进行了比较。质量衰减系数随wo3 wt %的增加和wo3粒径的减小而增大。NP(C)复合材料衰减参数的改进表明其在诊断水平的辐射防护中具有广阔的应用前景。
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Effects of different nano size and bulk WO3 enriched by HDPE composites on attenuation of the X-ray narrow spectrum
The X-rays of the narrow-spectrum N-series ranging from 40 kV to 150 kV were used to determine the radiation attenuation ability of a new category of a polymer composite fabricated for shielding purposes. High density polyethylene was synthesized through a compression molding technique, and incorporated with various filler amounts (10, 15, 25, and 35 wt.%) of bulk micro-sized WO 3 (Sample A), two WO 3 nanoparticles 45 nm (Sample B), and 24 nm (Sample C). The WO 3 filler was identified and characterized using X-ray diffraction and a transmission electron microscope. The mass distribution of the chemical elements of the synthesized composites was determined by energy dispersive X-ray analysis. The obtained results of the different attenuation parameters revealed that the particle size and weight fraction of WO particles have an outstanding effect on the X-ray shielding ability of this composite. The 3 experimental measurements of the mass attenuation coefficients were compared to the theoretical values tabulated in the NIST databases XCOM and FFAST. The mass attenuation coefficient was increased with the increment of WO 3 wt.% as well as with the decrease of the WO 3 particle size. This improvement in the attenuation parameters of the NP(C) composite suggests their promising applications in radiation protection at the diagnostic level.
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来源期刊
Nuclear Technology & Radiation Protection
Nuclear Technology & Radiation Protection NUCLEAR SCIENCE & TECHNOLOGY-
CiteScore
2.00
自引率
41.70%
发文量
10
审稿时长
6-12 weeks
期刊介绍: Nuclear Technology & Radiation Protection is an international scientific journal covering the wide range of disciplines involved in nuclear science and technology as well as in the field of radiation protection. The journal is open for scientific papers, short papers, review articles, and technical papers dealing with nuclear power, research reactors, accelerators, nuclear materials, waste management, radiation measurements, and environmental problems. However, basic reactor physics and design, particle and radiation transport theory, and development of numerical methods and codes will also be important aspects of the editorial policy.
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