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首页> 外文期刊>Open Journal of Biophysics >Studying of Common Factors Affecting Reading of Lithium Fluoride Thermo-Luminescence Dosimeter Crystal
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Studying of Common Factors Affecting Reading of Lithium Fluoride Thermo-Luminescence Dosimeter Crystal

机译:影响氟化锂热发光剂量计晶体读数的常见因素的研究

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The aim of this study was to study the technical factors affecting the reading of TLD (LiF:Mg:Ti) for radiation dosimetry. The method adapted was an exposure of LiF:Mg:Ti crystal with?γ-ray with the following filters (Hp 0.07 and Hp?10), before and after usage of filter Hp?(0.07), annealing, cooling by nitrogen flux and crystal morphology by scanning electron microscope. The collected data analyzed by EXCELL software showed that: TLD average count/second (C/s) with filter Hp?(10) was greater than that obtained with filter Hp?(0.07) with an amount of 1191 c/s?(19%). Also the analysis showed that: the average C/s without filter Hp?(0.07) was greater than that with filter by an amount of 994.5 C/s (16.4%), and there was proportional linear relationship; as the applied dose increased the TLD C/s increased significantly (R2?=?0.9) based on the equations: y = 885.1x???286.5 and y = 860.5x?+ 856.8 for filtered and without filtered beam respectively, where?x?refers to applied dose in mGy and?y?refers to C/s. Also the average C/s without nitrogen flux (cooling) was greater than with nitrogen count with an amount of 52.4 C/s (11%). The annealing (without filter) causes a reduction in dose by 82.2?μGy (19.2%), and in case of annealing with filter, the dose reduced by 66.7?μGy (21.9%) relative to annealing without filter. The morphology of TLD crystal shown by scanning electron microscope SEM was a darkening surface after irradiation.
机译:这项研究的目的是研究影响辐射剂量法的TLD(LiF:Mg:Ti)读数的技术因素。适用的方法是在使用过滤器Hp?(0.07)之前和之后,使用以下过滤器(Hp 0.07和Hp?10),用下列过滤器(Hp 0.07和Hp?10)对LiF:Mg:Ti晶体进行γ射线曝光,退火,通过氮气流冷却和通过扫描电子显微镜观察晶体形态。用EXCELL软件分析的收集数据表明:用Hp?(10)过滤器的TLD平均计数/秒(C / s)大于用Hp?(0.07)过滤器获得的TLD平均计数/秒(1191 c / s?(19) %)。分析还表明:没有过滤器的平均C / s Hp?(0.07)比有过滤器的平均C / s大994.5 C / s(16.4%),并且存在比例线性关系。当施加的剂量增加时,TLD C / s显着增加(R2α=α0.9),基于以下方程式:y = 885.1x≥286.5和y = 860.5x?+ 856.8分别针对已过滤和未过滤的光束,其中? x是指施加剂量,单位为mGy,y是指C / s。同样,没有氮气流量(冷却)的平均C / s大于带有氮气数量的平均C / s,为52.4 C / s(11%)。退火(不带过滤器)可使剂量减少82.2µGy(19.2%),而在带过滤器进行退火的情况下,相对于不带过滤器的退火,剂量可以减少66.7µGy(21.9%)。扫描电子显微镜SEM显示的TLD晶体的形态为照射后的表面变黑。

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