快中子共振射线照相用高压气体靶的设计与测试

W. Raas, B. Blackburn, E. Boyd, J. Hall, G. Kohse, R. Lanza, B. Rusnak, J. Watterson
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引用次数: 3

摘要

设计了一种高压氘靶,利用D(D,n)3He反应提供高通量快中子作为中子源。氘气电池在298 K下可容纳4atm D2气体,预计可承受3.0 MeV氘核的~50 muA束流连续使用8小时。高压气池的设计目的是在一米处提供105n /cm2-s数量级的快中子通量。对氘撞击产生的伽马射线的测量表明,钨产生的伽马射线最少;气体靶的主要成分由钨构成,以减少伽马射线的数量。为了适应高压气体,薄箔钨窗在结构上进行了加固,钨支架允许超过60%的光束透射,同时大大提高了薄窗的结构可靠性。大量的模拟和实验测试证明了气体靶薄窗的耐热性,并表明薄箔的峰值温度不超过600摄氏度,而箔的边缘不超过100摄氏度,完全在箔窗和气体密封结构的限制范围内
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Design and testing of a high pressure gas target for fast neutron resonance radiography
A high pressure deuterium gas target has been designed to provide high-flux fast neutrons using the D(d,n)3He reaction for use as a neutron source. The deuterium gas cell holds 4 atm D2 gas at 298 K and is projected to tolerate a beam current of ~50 muA of 3.0 MeV deuterons for 8 hours of continuous use. The high-pressure gas cell is designed to provide a fast neutron flux on the order of 105 n/cm2-s at one meter. Measurements of gamma ray production from deuterium impingement have shown tungsten to generate the fewest gamma rays; the primary components of the gas target have been constructed out of tungsten to decrease the number of gamma rays. To accommodate the high gas pressure, thin foil tungsten windows have been structurally reinforced with a tungsten support allowing for more than 60% beam transmission while greatly increasing the structural reliability of the thin windows. Extensive simulation and experimental testing have demonstrated the heating tolerances of the gas target thin windows and have shown that the peak temperature of the thin foils does not exceed 600degC, while the edges of the foil do not exceed 100degC, well within the limits of the foil windows and the gas sealing structures
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