Method for increasing color saturation of yellow fluorescent powder used for LED (light-emitting diode)
A yellow phosphor powder and saturation technology, which is applied in the field of increasing the color saturation of yellow phosphor powder for LEDs, can solve problems such as the weakening of the luminous intensity of yellow phosphor powder, and achieve increased color saturation, good fluidity, and regular appearance. Effect
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Embodiment 1
[0021] (1) Raw material selection: first use the air-flow grading sieve to classify the particle size of all raw materials, select the raw materials with a central particle diameter D50 of 5-6 μm, weigh the raw materials according to the stoichiometric ratio, and the matrix material is Y 2 o 3 、Al 2 o 3 , CeO 2 , Flux selection composite flux, that is, calcium carbonate (accounting for 0.5% by weight of the matrix raw material YAG), magnesium fluoride (accounting for 0.1% by weight of the matrix raw material YAG), boric acid (accounting for 0.1% by weight of the matrix raw material YAG) ;
[0022] (2) Mixing: Pour the above-mentioned raw materials into the mixing tank (the tank is filled with deionized water whose mass is 1 times that of the raw materials, and several agate balls of different sizes), mix the materials for 24 hours, take them out and ultrasonically disperse them at room temperature ;
[0023] (3) Burning: Sinter the uniformly mixed raw materials in a reduc...
Embodiment 2
[0028] (1) Raw material selection: first use the air-flow grading sieve to classify the particle size of all raw materials, select the raw materials with a central particle diameter D50 of 5-6 μm, weigh the raw materials according to the stoichiometric ratio, and the matrix material is Y 2 o 3 、Al 2 o 3 , CeO 2 , Flux selection composite flux, namely calcium carbonate (accounting for 2% by weight of the matrix raw material YAG), magnesium fluoride (accounting for 0.8% by weight of the matrix raw material YAG), boric acid (accounting for 0.5% by weight of the matrix raw material YAG) ;
[0029] (2) Mixing: Pour the above raw materials into the mixing tank (the tank is filled with deionized water 1.5 times the quality of the raw materials, and a number of agate balls of different sizes), mix for 24 hours, take out and ultrasonically disperse at room temperature ;
[0030] (3) Burning: Sinter the uniformly mixed raw materials in a reducing atmosphere at 1450oC for 6 hours; ...
Embodiment 3
[0035] (1) Raw material selection: first use the air-flow grading sieve to classify the particle size of all raw materials, select the raw materials with a central particle diameter D50 of 5-6 μm, weigh the raw materials according to the stoichiometric ratio, and the matrix material is Y 2 o 3 、Al 2 o 3 , CeO 2 , Flux selection composite flux, that is, calcium carbonate (accounting for 5% by weight of the matrix raw material YAG), magnesium fluoride (accounting for 2% by weight of the matrix raw material YAG), boric acid (accounting for 1% by weight of the matrix raw material YAG) ;
[0036] (2) Mixing: Pour the above raw materials into the mixing tank (the tank is filled with deionized water twice the quality of the raw materials, and a number of agate balls of different sizes), mix for 24 hours, take out and ultrasonically disperse at room temperature ;
[0037](3) Burning: Sinter the uniformly mixed raw materials in a reducing atmosphere at 1250oC for 10 hours;
[003...
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