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首页> 外文期刊>EPJ Web of Conferences >CoolGAL: a Galinstan bathed Be fast neutron production target at the NEPIR facility
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CoolGAL: a Galinstan bathed Be fast neutron production target at the NEPIR facility

机译:Coolgal:沐浴在尼泊尔设施的Galinstan沐浴是快速中子生产目标

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In this contribution, we present the CoolGAL fast neutron production target system, to be used in the initial phase of the NEPIR irradiation beamline at the SPES facility, that will be operational in 2022. Initially, NEPIR will be used for shielding studies against fast neutrons for space applications and to investigate neutron-induced single event effects in microelectronic devices and systems. In CoolGAL, the neutron production component, a thick Be cylinder, is immersed in a static bath of Galinstan, a liquid alloy of Ga, In and Sn, contained by an outer water cooled copper cladding. MCNPX calculations indicate that, by using a 1 μA current of 70 MeV protons, it can produce a fast neutron energy spectrum that is somewhat flat the 30-65 MeV energy range and with a sharp cut-off at the beam energy. At the standard test point, located 2.6 m downstream from the source, the beam spot diameter, defined by the peculiar collimation scheme of the initial phase of NEPIR, is 10 cm and the integral fast neutron flux is Φ_(n)(1< E_(n)<65 MeV) ~ 3×10~(6)n cm~(-2)s~(-1). Using proton beams with two different energies, one can calculate, by subtraction, the effects due to the neutrons in the energy interval defined by the two cut-off values. Preliminary results of ANSYS calculations, for a 1 μA proton current of 70 MeV protons (70 W), show a limited regime temperature (28 °C) of the Be component, capable of ensuring the exceptional safety level required for the operation at SPES. The thermal reliability of CoolGAL is very promising for future developments that require higher proton currents.
机译:在这一贡献中,我们介绍了Coolgal快节中子生产目标系统,用于SPES设施的Nepir辐射束线的初始阶段,这将在2022年进行。最初,尼泊尔将用于屏蔽屏蔽措施对快速中子的屏蔽研究对于空间应用,并调查中子诱导的微电子装置和系统中的单一事件效应。在Coolgal中,中子制造部件,厚圆柱体浸入Galinstan的静态浴中,由外部水冷铜包层含有Ga,In和Sn的液体合金。 MCNPX计算表明,通过使用1μA电流为70mEV质子,它可以产生略微平坦的快节中子能谱,并且在光束能量下具有急剧切断。在标准测试点处,位于源的下游2.6米,由尼泊尔初始阶段的特殊准直方案定义的光束点直径为10cm,而积分快中子通量是φ_(n)(1

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