Study on the correlation between radioactive counting time and measurement uncertainty of ceramic materials

IF 2.2 4区 材料科学 Q2 MATERIALS SCIENCE, CERAMICS Journal of Asian Ceramic Societies Pub Date : 2022-10-02 DOI:10.1080/21870764.2022.2133378
Hong Wei, Li Wen-jie, Weng Xiao-wei, Zhang Yi-qin, Liu Xiao-Hui, Xu Wen-Chao, Tian Hao, Wang Ming
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Abstract

ABSTRACT This paper sketched the basic principles of ceramic materials radioactivity measurement and mathematical calculation formula of testing time. When the sample measurement conditions and the way of data analysis are constant, using sodium iodide gamma spectrometer for getting the radioactive spectra data of 5 groups of samples. In condition of the background count time tb or sample measurement time ts increasing gradually, study the radioactivity specific activity measurement error range of all samples. It is derived when the background count rate of nb and sample counting rate ns is constant, the measurement error ν2 and the sum of reciprocal of the background count time tb and reciprocal of the sample measuring time ts for approximately linear positive correlation. The measurement error of 226Ra, 232Th, 40K radioactive specific activity of different ceramic samples presents the corresponding fluctuations as their initial energy spectrum count rate differences. This study for coordination of the contradiction between ceramic materials radioactive measurement time and the uncertainty has certainly theoretical and practical value.
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陶瓷材料放射性计数时间与测量不确定度的相关性研究
简述了陶瓷材料放射性测量的基本原理和测试时间的数学计算公式。在样品测量条件和数据分析方式一定的情况下,利用碘化钠伽马能谱仪获得5组样品的放射性能谱数据。在本底计数时间tb或样品测量时间ts逐渐增加的情况下,研究各样品的放射性比活度测量误差范围。当背景计数率nb与样本计数率ns一定时,测量误差ν2与背景计数时间倒数tb与样本测量时间倒数ts的和近似为线性正相关。不同陶瓷样品的226Ra、232Th、40K放射性比活度的测量误差表现为其初始能谱计数率差的相应波动。本研究对于协调陶瓷材料放射性测量时间与不确定度之间的矛盾具有一定的理论和实用价值。
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来源期刊
Journal of Asian Ceramic Societies
Journal of Asian Ceramic Societies Materials Science-Ceramics and Composites
CiteScore
5.00
自引率
4.30%
发文量
78
审稿时长
10 weeks
期刊介绍: The Journal of Asian Ceramic Societies is an open access journal publishing papers documenting original research and reviews covering all aspects of science and technology of Ceramics, Glasses, Composites, and related materials. These papers include experimental and theoretical aspects emphasizing basic science, processing, microstructure, characteristics, and functionality of ceramic materials. The journal publishes high quality full papers, letters for rapid publication, and in-depth review articles. All papers are subjected to a fair peer-review process.
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