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Recent progress in the commercialization of the Li Foil multi-wire proportional counter neutron detectors

机译:李箔多线比例计逆中子检测器商业化的最新进展

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The scarcity and rising cost of He-3 gas has introduced a push in alternative neutron detector technologies. The Li foil multi-wire proportional counter (Li Foil MWPC) neutron detectors have shown promise as a He-3 replacement technology. Large, gas-filled proportional counters with five layers of 75 mu m thick Li-6 foils have been built and characterized, yielding over 55% thermal neutron detection efficiency, with the possibility of increasing the efficiency above 70% with ten 96% enriched Li-6 foil layers. Most recently, a backpack radiation detector (BRD) was fabricated, equipped with four Li Foil MWPC devices. The neutron sensitivity-to-weight ratio of the Li Foil MWPC devices was first optimized using MCNP6 by simulating the angular response to an ANSI-moderated-Cf-252 source positioned 1.5 m away from the devices. The simulated neutron sensitivity results were compared and benchmarked to that of the commercially-available Thermo-Fisher PackEye v. 1.0 that contains two 14 in. long, 2 in. diameter, 2.5 atm He-3 tubes. The experimental efforts studied the performance of the Li Foil MWPCs in the backpack instrument configuration. Fabrication advancements were implemented to the Li Foil MWPC devices to increase the device manufacturability and improve the commercialization capabilities. These advancements included weight reduction, new hermetic sealing techniques, optimizing active area, and anode wire cost reduction. The Li Foil MWPC BRD was evaluated as a part of a PNNL test campaign for neutron sensitivity where 0.36 cps/ng of Cf-252 at 1.5 m was measured. The gamma-ray rejection ratio (GRR) of the BRD was also evaluated, yielding a measured value of 3.1 x 10(-8) for a Cs-137 exposure rate of 50 mR/Hr. Further evaluations were performed under the PNNL test campaign including detector response to neutron sources of Cf-252, AmBe, AmLi and WGPu, detector angular response, and the gamma absolute rejection ratio in the presence of neutrons (GARRn).
机译:He-3天然气的稀缺性和升高成本引入了替代中子探测器技术的推动。李箔多线比例计数器(Li Foil MWPC)中子探测器已作为HE-3更换技术所示。具有五层75μm厚的Li-6箔的大型气体填充比例计数器已经建成并表现出了超过55%的热中子检测效率,随着10 96%的浓度增加了70%以上的效率。 -6箔层。最近,制造了背包辐射探测器(BRD),配备了四种Li箔MWPC器件。通过模拟与装置远离设备的ANSI-Superated-CF-252源的角度响应,首先使用MCNP6优化Li箔MWPC器件的中子敏感性 - 重量比。比较模拟中子敏感性结果并将其与市售的Thermo-Fisher PACKeye v的基准测试。1.0含有两个14英寸的。长,2英寸。直径,2.5瓦HE-3管。实验努力研究了Li Foil MWPCS在背包仪器配置中的性能。制造前进进展于李箔MWPC器件,以提高器件可制造性,提高商业化能力。这些进步包括减轻重量,新的密封技术,优化有源区和阳极线成本降低。评估Li箔MWPC BRD作为NNNL测试运动的一部分,用于中子敏感性,测量1.5μm的0.36cps / ng CF-252。还评估了BRD的γ射线抑制比(GRR),得到50mR / HR的CS-137曝光率的3.1×10(-8)的测量值。在PNNL测试活动下进行进一步的评估,包括对中子(GARR)存在的CF-252,AMBE,AMLI和WGPU,检测器角度响应和γ绝对排斥比的检测器响应。

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