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The radiation field measurement and analysis outside the shielding of A 10 MeV electron irradiation accelerator

机译:10 MeV电子辐照加速器屏蔽外的辐射场测量与分析

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Electron accelerators are employed widely for diverse purposes in the irradiation-processing industry, from sterilizing medical products to treating gemstones. Because accelerators offer high efficiency, high power, and require little preventative maintenance, they are becoming more and more popular than using the ~(60)Co isotope approach. However, the electron accelerator exposes potential radiation hazards. To protect workers and the public from exposure to radiation, the radiation field around the electronic accelerator must be assessed, especially that outside the shielding. Thus, we measured the radiation dose at different positions outside the shielding of a 10-MeV electron accelerator using a new data-acquisition unit named Mini-DDL (Mini-Digital Data Logging). The measurements accurately reflect the accelerator's radiation status. In this paper, we present our findings, results and compare them with our theoretical calculations. We conclude that the measurements taken outside the irradiation hall are consistent with the findings from our calculations, except in the maze outside the door of the accelerator room. We discuss the reason for this discrepancy.
机译:电子加速器广泛用于辐照加工行业中的各种目的,从消毒医疗产品到治疗宝石。由于加速器具有高效率,高功率且几乎不需要预防性维护的优点,因此与使用〜(60)Co同位素方法相比,它们变得越来越受欢迎。然而,电子促进剂暴露出潜在的辐射危害。为了保护工人和公众免受辐射的侵害,必须评估电子加速器周围的辐射场,尤其是屏蔽层外部的辐射场。因此,我们使用名为Mini-DDL(小型数字数据记录)的新型数据采集单元,在10 MeV电子加速器的屏蔽之外的不同位置测量了辐射剂量。这些测量准确地反映了加速器的辐射状态。在本文中,我们介绍了我们的发现,结果,并将其与我们的理论计算进行了比较。我们得出的结论是,除了在加速室门外的迷宫中,在辐射大厅外进行的测量与我们的计算结果相符。我们讨论了这种差异的原因。

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