3He continue to be explored. The L'/> Commercialization of the Li-Foil Multi-Wire Proportional Counter Neutron Detector, a Backpack Radiation Detector Design
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Commercialization of the Li-Foil Multi-Wire Proportional Counter Neutron Detector, a Backpack Radiation Detector Design

机译:Li-Foil多线比例计数中子探测器,背包辐射探测器设计的商业化

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Large-area neutron detectors as a cost-effective alternative to 3He continue to be explored. The Lithium Foil Multi-Wire Proportional Counter Neutron Detector (Li-Foil MWPC) is currently commercially available with complete electronics and readout software. The standard module was designed around a backpack, or portable, configuration, but can be customized to a specific application/system. The standard module consists of four - 6Li-enriched foils, two suspended and two along the walls of the device. The four-foil design results in a 39.2% thermal neutron detection efficiency and has approximately a 16inch x 2inch active detection area per device [1]. The device design results in a thermal neutron sensitivity of approximately 80.9 cpsν, which is comparable to a 1.5atm 3He device of approximately equal active area (18inch length x 2.0inch diameter) with a thermal neutron sensitivity of approximately 85 cpsν. The Li-Foil MWPC has an electronics package with microphonic rejection firmware coupled with each device that is customizable with a user-specified electrical interface, such as USB or M8. Including the electronics package, the standard device size is 19.5inch x 2.205inch x 1.375inch and weighs less than 1.6 lbs. The electronics package requires 2.7 – 4.5 volts input and has approximately a 400mW power draw. A backpack radiation detector (BRD) was built using a three-device Li-Foil MWPC configuration and was sent to PNNL for a test campaign. The angular sensitivity to a 252Cf source calibrated to irradiate the Li-Foil BRD with 1 n/cm2-s was measured from zero to 180 degrees in 45-degree increments. The neutron sensitivity to various neutron sources including 252Cf, AmBe, AmLi, and WGPu was also measured. Lastly a gamma-ray rejection ratio of 1.83 x 10-8 ± 2.83 x 10-9 for 60mR/hr of 60Co was measured, and an Absolute Gamma-Ray Rejection in the Presence of Neutrons (GARRn) of 1.00 ± 0.0036 was also measured.
机译:大面积中子探测器可作为高性价比的替代品 3 他继续被探索。锂箔多线比例计数器中子检测器(Li-箔MWPC)目前可通过完整的电子设备和读出软件在市场上买到。标准模块是围绕背包或便携式配置设计的,但是可以针对特定的应用程序/系统进行定制。标准模块包括四个- 6 富含锂的金属箔,其中两层悬浮,两层沿设备壁。四箔设计可实现39.2%的热中子探测效率,每个设备的有效探测区域约为16英寸x 2英寸[1]。该设备的设计产生了约80.9 cps /nν的热中子灵敏度,相当于1.5atm 3 该装置具有大约相等的有效面积(18英寸长x 2.0英寸直径),热中子灵敏度约为85 cps /nν。 Li-Foil MWPC具有一个电子封装,该电子封装带有可与每个设备耦合的麦克风拒斥固件,可通过用户指定的电接口(例如USB或M8)进行自定义。包括电子封装在内,标准设备尺寸为19.5英寸x 2.205英寸x 1.375英寸,重量不到1.6磅。电子封装需要2.7 – 4.5伏输入,并具有大约400mW的功耗。使用三装置的Li-Foil MWPC配置构建了背包辐射探测器(BRD),并将其发送到PNNL进行测试。角度灵敏度 252 校准f源以辐照1 n / cm的Li-Foil BRD 2 -s从零到180度以45度为增量进行测量。中子对各种中子源的敏感性,包括 252 还测量了Cf,AmBe,AmLi和WGPu。最后,伽玛射线抑制比为1.83 x 10 -8 ±2.83 x 10 -9 对于60mR / hr的 60 测量了Co,并且还测量了1.00±0.0036的中子存在下的绝对伽马射线抑制(GARRn)。

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