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An experimental micro-CT system for X-ray NDT

机译:X射线NDT的实验微型CT系统

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This work describes the set-up of an experimental system for micro-tomography developed in the framework of a collaboration between the Physics Department of the University of Bologna (Italy) and the Geosphaera Research Center of Moscow (Russia). The main goal of this inspection system is to carry out high-resolution analysis in vitro of biomedical samples as well as nondestructive testing (NDT) of industrial components. The detection system consists of a 30x15 mm~2 rectangular fiber-optic taper (ratio 2:1) optically coupled to a cooled 12-bits CCD camera (1024x512 pixels). On the entrance window of the taper is deposited a thin layer of Gd_2O_2S:Tb phosphor which provides the X-light conversion. The image readout is carried out by means of a commercial frame grabber installed on a personal computer and specific software is used for data acquisition and control of the tomographic process. The object under investigation is arranged on a 3-degrees micro-positioning system (x-y translation and rotation) and irradiated by an X-ray microfocus beam (up to 200 kVp). The sample can be positioned easily along the source-detector axis in order to obtain a large magnification of details of interest. The X-ray detector has been intensively tested in order to determine its performance in terms of MTF, NPS, and DQE. Moreover, preliminary tests have been carried out on several samples in order to evaluate the performance of the micro-CT system.
机译:这项工作描述的设立在博洛尼亚大学物理系(意大利)和莫斯科的Geosphaera研究中心(俄罗斯)之间的合作的框架下开发的微断层扫描实验系统。该检验系统的主要目的是在生物医学样本的体外进行高分辨率分析,以及工业部件的无损检测(NDT)。检测系统由30x15mm〜2的矩形光纤锥形(比率2:1)光学耦合到冷却的12位CCD相机(1024×512像素)。在锥度的入口窗口上沉积薄层GD_2O_2S:Tb磷光体,其提供X光转换。通过安装在个人计算机上的商业帧抓取器进行图像读数,并且特定软件用于数据采集和控制断层过程。正在进行研究的物体布置在3°微定位系统(X-Y平移和旋转)上,并由X射线微孔束(高达200 kVp)照射。样品可以沿源检测器轴容易地定位,以获得感兴趣的细节的大放大率。 X射线检测器已经集中测试,以便在MTF,NPS和DQE方面确定其性能。此外,已经在几个样品上进行了初步测试,以评估微型CT系统的性能。

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