Preparation method and product of rare earth luminescent material containing crystal defect repairing process
A rare earth luminescence and crystal defect technology, applied in the field of powder metallurgy to achieve the effect of improving internal quantum efficiency, reducing luminescence defects, improving internal quantum efficiency and luminescence thermal stability
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Embodiment 1
[0074] Step 1: After uniformly mixing the flux, the fluorescent material base material used for primary sintering, and the activator containing cerium (Ce), in 10% H 2 and 90%N 2 Calcined at 1500°C for 8 hours under reducing atmosphere. After being released from the furnace, the product is crushed, ball milled, washed with water, filtered and dried to obtain clinker.
[0075] The fluorescent material base material used for primary sintering is Y 2 o 3 and Al 2 o 3 powder mixture. Y in this example 2 o 3 、Al 2 o 3 and CeO 2 The molar ratio of 2.94:3:0.06, the chemical formula of the obtained clinker is Y 2.94 Ce 0.06 Al 5 o 12 . Described flux is boric acid (H 3 BO 3 ) and barium fluoride (BaF 2 ) mixed powder, wherein, respectively weigh H 3 BO 3 and BaF 2 .
[0076] Step 2: adding raw meal to the clinker obtained in step 1, and uniformly mixing by dry method to obtain clinker mixed with raw meal. In this embodiment, the raw material is the phosphor-base...
Embodiment 2
[0083] Step 1: After uniformly mixing the flux, the fluorescent material base material used for primary sintering, and the activator containing cerium (Ce), in 25% H 2 and 75%N 2 After calcining at 1500° C. for 8 hours under reducing atmosphere, clinker was obtained. The fluorescent material base material used for primary sintering is Y 2 o 3 and Al 2 o 3 powder mixture. Y in this example 2 o 3 、Al 2 o 3 and CeO 2 The molar ratio of 2.94:3:0.06, the chemical formula of the obtained clinker is Y 2.94 Ce 0.06 Al 5 o 12 . That is, RE is Y in this embodiment 3+ . Described flux is boric acid (H 3 BO 3 ) and barium fluoride (BaF 2 ) of mixed powder, H 3 BO 3 and BaF 2 All are weighed according to 2% of the mass of the fluorescent material base material used for primary sintering.
[0084] Step 2: Add raw meal to the clinker obtained in step 1 to obtain clinker mixed with raw meal.
[0085] In this embodiment, the raw material is a fluorescent matrix material...
Embodiment 3
[0090] Step 1: After uniformly mixing the flux, the fluorescent material base material used for primary sintering, and the activator containing cerium (Ce), in 25% H 2 and 75%N 2 Calcined at 1500°C for 8 hours under reducing atmosphere. After being released from the furnace, the product is crushed, ball milled, washed with water, filtered and dried to obtain clinker. The fluorescent material base material used for primary sintering is Y 2 o 3 and Al 2 o 3 powder mixture. Y in this example 2 o 3 、Al 2 o 3 and CeO 2 The molar ratio is 2.94:3:0.06. Described flux is boric acid (H 3 BO 3 ) and barium fluoride (BaF 2 ) mixed powder, wherein, respectively weigh H 3 BO 3 and BaF 2 .
[0091] Step 2: adding raw meal to the clinker obtained in step 1, and uniformly mixing by dry method to obtain clinker mixed with raw meal. In this embodiment, the raw material is Y 2 o 3 , Tb 4 o 7 and Al 2 o 3 A mixture whose composition satisfies the chemical formula (Y 1-x ...
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