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MULTI-ELEMENT X-RAY DETECTOR, ITS REAR-EARTH LUMINESCENT MATERIALS, PRODUCTION OF MULTI-ELEMENT SCINTILLATOR AND DETECTOR IN GENERAL

机译:多元素X射线探测器,其稀土发光材料,通用的多元素闪烁器和探测器的生产

摘要

The invention relates to X-ray technology and medical diagnostics, and can be used for carrying out gamma flaw detection on various articles and piping systems. The technical result is an increase in contrast of the integrated image that is produced. A multi-element X-ray radiation detector consists of a flat multi-element scintillator in the form of a discrete set of hetero-phase luminescent elements which are arranged in the cells of a mesh made from a metal which absorbs X-ray radiation and reflects light, the increment size of which mesh corresponds to the increment size of the photo receiver matrix. The metallic mesh that forms the multi-element luminescent scintillator is made from elements having an atomic number from N=26 (iron) to N=74 (tungsten), has silver-plated coils, and separates the scintillator elements optically from one another. The coils of the mesh have a diameter from 0.06 mm to 0.16 mm, and the area of the effective cross section of the mesh is between 45% to 82%. The scintillator consists of an X-ray luminophore based on a multi-ligand oxysulphide of gadolinium-lutetium-europium with the addition of bismuth and rhenium, and also fluorine, chlorine, bromine and iodine. The process of synthesis is carried out in two stages. In the first stage, oxyhalides of the elements making up a cationic subgroup are formed by reacting the initial coprecipitated oxides of rare earth elements, Bi and Re, with ammonium halides. The resulting product is then subjected to repeated thermal treatment in an alkali chalcogenide melt.
机译:本发明涉及X射线技术和医学诊断,并可用于对各种物品和管道系统进行伽马探伤。技术结果是提高了所产生的集成图像的对比度。多元素X射线辐射探测器由扁平的多元素闪烁体组成,形式为离散的一组异相发光元件,它们排列在由吸收X射线辐射的金属制成的网孔中,并且反射光,其网格的增量大小对应于光接收器矩阵的增量大小。形成多元素发光闪烁体的金属网是由原子序数从N = 26(铁)到N = 74(钨)的元素制成的,具有镀银的线圈,并将闪烁体元素彼此光学隔离。网格的线圈的直径为0.06mm至0.16mm,并且网格的有效横截面的面积在45%至82%之间。闪烁体由基于on- lu-eur的多配体氧硫化物的X射线发光体加上铋和rh以及氟,氯,溴和碘组成。合成过程分两个阶段进行。在第一阶段,通过使稀土元素Bi和Re的初始共沉淀氧化物与卤化铵反应,形成组成阳离子亚基的元素的卤氧化物。然后将所得产物在碱性硫属化物熔体中进行重复热处理。

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