FIELD: chemistry.
SUBSTANCE: invention relates to scintillation equipment, primarily efficient, high-speed scintillation detectors. Described is a method of producing a transparent ceramic, which involves adding magnesium metal powder to zinc metal powder, performing power synthesis using a gas-phase technique to obtain granules in form of tetrapods and having a three-dimensional nanostructure, containing 0.5-2.3 wt % magnesium oxide; the obtained mixture is then subjected to hot pressing at temperature of 1100-1200°C and pressure of 100-200 MPa.
EFFECT: high light output and low energy losses.
2 dwg, 3 ex
Title | Year | Author | Number |
---|---|---|---|
METHOD OF OBTAINING TRANSPARENT CERAMIC AND SCINTILLATOR BASED ON SUCH CERAMIC | 2007 |
|
RU2328755C1 |
METHOD OF PRODUCING TRANSPARENT SCINTILLATION ZnO CERAMIC AND SCINTILLATOR | 2010 |
|
RU2416110C1 |
ZnO CERAMIC-BASED SCINTILLATION MATERIAL, METHOD FOR PRODUCTION THEREOF AND SCINTILLATOR | 2012 |
|
RU2499281C1 |
BARIUM FLUORIDE-BASED HIGH-SPEED SCINTILLATION MATERIAL AND METHOD FOR PRODUCTION THEREOF (VERSIONS) | 2011 |
|
RU2467354C1 |
METHOD OF PRODUCING SCINTILLATION CERAMIC AND SCINTILLATOR | 2010 |
|
RU2436122C1 |
CRYSTALLINE SCINTILLATION MATERIAL BASED ON BARIUM FLUORIDE AND METHOD OF OBTAINING THEREOF | 2011 |
|
RU2519084C2 |
INORGANIC POLYCRYSTALLINE SCINTILLATOR BASED ON Sc, Er:YAG AND A METHOD FOR PRODUCTION THEREOF | 2019 |
|
RU2717158C1 |
METHOD OF MANUFACTURING SCINTILLATOR FOR DETECTORS OF IONIZING RADIATION, DEVICE FOR IMPLEMENTATION THEREOF AND SCINTILLATOR FOR DETECTORS OF IONIZING RADIATION | 2020 |
|
RU2737506C1 |
METHOD OF OBTAINING OPTIC CERAMICS | 2012 |
|
RU2515642C2 |
COMPOSITION AND METHOD FOR SYNTHESIS OF SCINTHILLATION CERAMICS BASED ON NANOPOWDER | 2020 |
|
RU2748274C1 |
Authors
Dates
2013-10-10—Published
2012-03-26—Filed