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3D reconstruction of radioactive sample utilizing gamma tomography

机译:利用伽玛层析成像技术对放射性样品进行3D重建

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摘要

Unique three-dimensional (3D) tomography apparatus was developed and successfully tested at Research Centre Rez, which concentrates at investigation of the degradation of microstructural and mechanical properties of structural materials of nuclear reactors components after a long-term operating exposure. The apparatus allows a 3D view into the interior of low-dimension radioactive samples with a diameter up to several centimeters and a resolution in order of cubic millimeters. It is designed to detect domains with different levels of radioactivity such as cavities, cracks or regions with different chemical composition.The unique collimator design, the use of stepper motors for fine and accurate sample scanning, along with advanced 3D image reconstruction software developed at Research Centre Rez, enables a resolution approaching 1 mm3.Devices working on a similar principle have been used for decades, e.g., in nuclear medicine for the diagnosis of malignant tumors, and are increasingly being applied in the nuclear industry. However, for the first time similar equipment is used for non-destructive testing of low-dimension radioactive samples.
机译:开发了独特的三维(3D)层析成像设备,并在研究中心Rez上成功进行了测试,该设备主要研究长期运行暴露后核反应堆部件结构材料的微结构和机械性能的下降。该设备可对低维放射性样品的内部进行3D查看,其直径可达几厘米,分辨率约为立方毫米。它旨在检测具有不同放射性水平的区域,例如空腔,裂缝或具有不同化学成分的区域。独特的准直仪设计,使用步进电机进行精确,精确的样品扫描以及Research开发的高级3D图像重建软件Center Rez能够实现接近1mm3的分辨率。基于类似原理的设备已经使用了数十年,例如在核医学中用于诊断恶性肿瘤,并且正在越来越多地应用于核工业。但是,首次将类似设备用于低维放射性样品的无损检测。

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