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中子探测器中应用最广的是~3He气体,但由于近年来其供货短缺,需求大增,导致相应的中子探测器面临无气可用的困境。~(10)B作为中子探测核素可作为一种替代的选择,我们对ZnS/B_2O_3陶瓷闪烁体的制备技术进行了研究。研究中采用了天然的B_2O_3、硼酸和ZnS:Ag粉。将硼酸和ZnS:中子探测器中应用最广的是3He气体,但由于近年来其供货短缺,需求大增,导致相应的中子探测器面临无气可用的困境。10B作为中子探测核素可作为一种替代的选择,我们对ZnS/B2O3陶瓷闪烁体的制备技术进行了研究。研究中采用了天然的B2O3、硼酸和ZnS:Ag粉。将硼酸和ZnS:Ag粉按一定比例均匀混合,然后将其压制成薄片,或采用流延成型制成薄片,然后将制成的薄片
The most widely used neutron detector is the ~ 3He gas, but due to the shortage of supply in recent years, the demand for it has risen, resulting in the corresponding neutron detector facing the problem of airless availability. ~ (10) B as a neutron detector nuclide can be used as an alternative, we have prepared ZnS / B_2O_3 ceramic scintillator technology. The study used natural B 2 O 3, boric acid and ZnS: Ag powder. The most widely used 3He gas in boric acid and ZnS: neutron detectors has been experiencing an airless availability of the corresponding neutron detectors due to the increased demand for its supply in recent years. 10B as a neutron detection nuclide can be used as an alternative, we have ZnS / B2O3 ceramic scintillator preparation techniques were studied. The study used natural B2O3, boric acid and ZnS: Ag powder. Boric acid and ZnS: Ag powder in a certain proportion of uniform mixing, and then pressed into a sheet, or cast into a sheet, and then the resulting sheet