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A COMPARATIVE STUDY ON THE PERFORMANCE OF DIGITAL DETECTOR SYSTEMS FOR HIGH ENERGY APPLICATIONS

机译:高能量应用数字检测系统性能的比较研究

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For cast components reaching or exceeding total material thicknesses of 150mm, high energy sources such as linear accelerators or Betatrons are required in order to obtain reasonable exposure times. In this study, the performance of digital detector systems, involving imaging plates (IP) and digital detector arrays (DDA), was evaluated with respect to the testing class B requirements as formulated in the standard EN ISO 17636-2. As a reference, traditional radiographic film and a Cobalt-60 source was used. With film exposures, testing class B was achieved with Co-60 and Betatron (7.5 MV) at longer exposure times. The preliminary results show that the testing class B was not obtained with the examined digital detector arrays (DDA) and the high resolution imaging plates (IP), even at 40, 60 and 80 minutes exposure time with a 7.5 MV Betatron. Class A was achieved using high resolution imaging plates with optimized metal filters between object and IPs and a high resolution DDA with intermediate Cu filters. Class A was also achieved applying a DDA with lower basic spatial resolution than required by Table B.13 of EN ISO 17636-2, but using the compensation principle as described in this standard. The next generation of digital detector arrays might potentially be able to obtain class B performance with the expected spatial resolution and sensitivity improvements.
机译:对于达到或超过150mm的总材料厚度的铸造组件,需要高能源,例如线性促进剂或缩放量以获得合理的暴露时间。在该研究中,在标准EN ISO 17636-2中配制的测试B类要求评估了数字检测器系统的性能,涉及成像板(IP)和数字检测器阵列(DDA)。作为参考,使用传统的放射线照相膜和钴-60源。通过薄膜曝光,在较长的曝光时间内使用CO-60和Betatron(7.5mV)实现测试B类。初步结果表明,使用70,60和80分钟的曝光时间,使用70,60和80分钟,未获得测试B类,并且高分辨率成像板(DDA)和高分辨率成像板(IP)。使用高分辨率成像板实现A级,具有物体和IPS之间的优化金属滤波器以及带有中间Cu滤波器的高分辨率DDA。还达到了DDA的DDA,该DDA具有比EN ISO 17636-2的表B.13所需的基本空间分辨率较低,而是使用如本标准所述的补偿原理。下一代数字探测器阵列可能能够以预期的空间分辨率和灵敏度改进获得B类性能。

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