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Electrochemical etching technique for neutron dosimetry

机译:中子剂量学的电化学蚀刻技术

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In the present work we have employed allyl diglycol carbonate (CR-39) and cellulose triacetate (CTA) plastic for detection of neutron recoil tracks without radiator. For CR-39, the results reveal that registration efficiency is a function of duration of chemical pre-etching and the best results are obtained with chemical pre-etching of 3 hours. It was also investigated that the ac field strength of 28 kV/cm having 2.5 kHz frequency was optimum for revelation of tracks. Interestingly the sensitivity is fluence dependent and it was constant up to a fluence of about 108 n/cm2. The sensitivity abruptly decreased with increased fluence. At optimum experimental conditions the minimum detection limit for CR-39 was found to be 0.47 mSv. For CTA, the tracks have been revealed by electrochemical etching (ECE) only and the minimum detection limit was found to be 0.85 mSv at optimum experimental parameters. Keywords Electrochemical etching - neutron dosimetry - CR-39 - CTA PACS Nos. 87.53.Pb - Qc
机译:在目前的工作中,我们采用了碳酸烯丙二乙二醇酯(CR-39)和三乙酸纤维素(CTA)塑料来检测没有散热器的中子反冲轨道。对于CR-39,结果表明配准效率是化学预蚀刻持续时间的函数,而化学预蚀刻3小时可获得最佳结果。还研究了频率为2.5 kHz的28 kV / cm的交流场强对于磁道的显示是最佳的。有趣的是,灵敏度是依赖于注量的,并且在直到约10 8 n / cm 2 的注量下都是恒定的。灵敏度随着通量的增加而突然降低。在最佳实验条件下,发现CR-39的最低检出限为0.47 mSv。对于CTA,仅通过电化学蚀刻(ECE)揭示了痕迹,并且在最佳实验参数下发现的最低检测限为0.85 mSv。电化学蚀刻-中子剂量法-CR-39-CTA PACS Nos.87.53.Pb-Qc

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