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Gadolinium oxysulfide powder for X-ray detection and preparation method of scintillation ceramic

A technology of gadolinium oxysulfide and scintillation ceramics, applied in chemical instruments and methods, inorganic chemistry, rare earth metal compounds, etc., can solve the problems of limited application, slow temperature rise, low production efficiency, etc., to improve product quality, improve yield, Easy-to-manufacture effects

Active Publication Date: 2019-09-27
江苏灵湾特种陶瓷科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the preferred parameters of this method require hot pressing pressure up to about 200-250MPa, and hot pressing molds with such a high pressure resistance are usually expensive and difficult to obtain, thus limiting the application of this method
In addition, the vacuum hot pressing method has a high sintering temperature and slow temperature rise, which seriously affects the carbon diffusion of graphite molds, and takes a long time, consumes high energy, and reduces production efficiency.

Method used

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  • Gadolinium oxysulfide powder for X-ray detection and preparation method of scintillation ceramic
  • Gadolinium oxysulfide powder for X-ray detection and preparation method of scintillation ceramic
  • Gadolinium oxysulfide powder for X-ray detection and preparation method of scintillation ceramic

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preparation example Construction

[0049] The preparation method of scintillation ceramics is:

[0050] Step 1: First weigh high-purity Gd 2 o 3 、Pr 6 o 11 , CeO 2 After mixing and ball milling, add elemental sulfur and high-purity flux soda ash and mix evenly in proportion to form raw materials;

[0051] Step 2: Add activated carbon granules and powder to the reaction ceramic crucible 6, after laying flat in the reaction ceramic crucible 6, put the backing plate 5 for charging, place the mold tube 2 on the backing plate 5, install the mold tube 2 Put in the raw material, press the raw material through the pressing block 21, fix the raw material into shape, take off the mold tube 2, add a cover plate 61 on the reaction ceramic crucible 6, try to achieve a sealed state, and heat up to 800 in the muffle furnace. -1300℃, keep warm for 2-7 hours;

[0052] Step 2: After the calcined powder is taken out, put it in a plastic bucket and add pure water. After several times of pure water washing, the measured condu...

Embodiment 1

[0056] Embodiment 1: being different from embodiment is, weigh 200gD50 in the high-purity Gd of 2-3um 2 o 3 , adding 0.15gPr 6 o 11 , 0.008gCeO 2 , (no need to add grinding balls) ball mill on a planetary ball mill for 2 hours, then add 100g of elemental sulfur and 100g of high-purity soda ash, and then ball mill for 4 hours. Put 100g of activated carbon particles and powder in the reaction ceramic crucible 6, spread it around the reaction ceramic crucible 6, then put into the alumina ceramic backing plate 5 of the charge, place the mold tube 2 on the backing plate 5, Pack the reacting material tightly in the mold, so that the protective and reducing atmosphere can fully contact with the material. After heating up to 1100°C, keep it warm for 5 hours and then cool naturally. The cooled material is lumpy. After taking it out, soak it in 50°C non-salt water for 1-2 hours. There will be no lumpy particles under the agitation of the stirrer, and then filter it with a centrifuge...

Embodiment 2

[0057] Embodiment 2: weighing 200gD50 in the high-purity Gd of 2-3um 2 o 3 , adding 0.15gPr 6 o 11 , 0.008gCeO 2 , (no need to add grinding balls) ball mill on a planetary ball mill for 2 hours, then add 90g of elemental sulfur and 90g of high-purity soda ash, and then ball mill for 4 hours. Put 100g of activated carbon particles and powder in the reaction ceramic crucible 6, spread it around the reaction ceramic crucible 6, then put into the alumina ceramic backing plate 5 of the charge, place the mold tube 2 on the backing plate 5, Tightly pack the reacting material in the mold tube 2, so that the protective and reducing atmosphere can fully contact the material, heat it up to 1100°C, keep it warm for 5 hours, and then cool it down naturally. The cooled material is lumpy, take it out and soak it in 50°C non-salt water for 1-2 hours, and there will be no lumpy particles under the agitation of the stirrer, then filter it with a high-speed centrifuge, and continue to add 50...

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Abstract

The invention discloses gadolinium oxysulfide powder for X-ray detection and a preparation method of scintillation ceramic. The method comprises the steps that high-purity gadolinium oxide, elemental sulfur, sodium carbonate and sodium carbonate powder are mixed to be raw materials, a mold for a special purpose is filled with the raw materials, the raw materials further include rare earth activated ions or rare earth oxide, and the raw materials are subjected to a high temperature reaction and washing to form Gd2O2S:Pr,Ce powder. Accordingly, an independent reduction reaction system is provided, the productivity is high, and the effect of uniform granulation is achieved.

Description

technical field [0001] The invention relates to the technical field of gadolinium oxysulfide powder, in particular to a preparation method of gadolinium oxysulfide powder for X-ray detection and scintillation ceramics. Background technique [0002] X-ray detection has important market application value nowadays, and is widely used in industrial non-destructive testing, safety inspection, medical imaging equipment, etc. Among the current mainstream medical imaging equipment, the equipment using X-ray imaging is computed tomography (CT) for three-dimensional internal structure imaging of the human body, and digital radiography (DR) for chest radiographs in daily physical examinations. The main scintillators in X-ray imaging equipment are: cesium iodide (C1sI) fluorescent screen and gadolinium oxysulfide (GOS) fluorescent screen in DR detector; GOS scintillation ceramics and gemstones (GEMStone) in CT detector. At present, manufacturers of X-ray flat panel detectors using GOS ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C01F17/00C04B35/50C04B35/622
CPCC04B35/50C04B35/622C04B2235/3224C04B2235/5436C01F17/294
Inventor 肖伟军蒋留扣
Owner 江苏灵湾特种陶瓷科技有限公司
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