论文标题
基于无机闪烁体的粒子探测器的添加剂制造
Additive manufacturing of inorganic scintillator-based particle detectors
论文作者
论文摘要
无机闪烁体被广泛用于科学,工业和医学应用。使用无机闪烁体的3D打印的开发将允许快速创建检测器原型来注册电离辐射,例如Alpha和beta,在活性材料的薄层和软X射线辐射的薄层中的伽马颗粒。本文报告了旨在开发新的无机闪光灯丝的技术工作和科学成就,用于复合闪烁体材料的3D打印:闪烁体组成的研究和定义;开发无机闪光灯丝生产的方法,并在可用的3D打印技术中进一步实施;研究不同3D打印模式对材料闪烁特性的影响。此外,3D打印闪烁体可用于为高能物理学创建组合检测器。
Inorganic scintillators are widely used for scientific, industrial and medical applications. The development of 3D printing with inorganic scintillators would allow fast creation of detector prototypes for registration of ionizing radiation, such as alpha and beta, gamma particles in thin layers of active material and soft X-ray radiation. This article reports on the technical work and scientific achievements that aimed at developing a new inorganic scintillation filament to be used for the 3D printing of composite scintillator materials: study and definition of the scintillator composition; development of the methods for the inorganic scintillator filament production and further implementation in the available 3D printing technologies; study of impact of the different 3D printing modes on the material scintillation characteristics. Also, 3D printed scintillators can be used for creation of combined detectors for high-energy physics.