A kind of method for preparing ultrafine ito powder by metal indium and metal tin
A technology of metal tin and metal indium, which is applied in the field of thermal ball milling oxidation to prepare ultra-fine ITO powder, can solve the problems of high process control requirements, large investment in spray equipment, difficult oxidation, etc., and achieve the simplification of the process, the reduction of equipment requirements, and the shortening of the process Effect
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Embodiment 1
[0039] In metal indium ingot used as raw material: In > 99.99%, total amount of impurities 99.99%, total amount of impurities < 0.01%.
[0040] This embodiment provides a method for preparing superfine ITO powder with metal indium and metal tin, and its process flow chart is as attached figure 1 As shown, the specific steps are as follows:
[0041]S1. Composition design: take metal indium ingot and metal tin ingot and weigh them accurately according to the mass ratio of 9.45:1, and weigh 1000g in total;
[0042] S2. Alloying pre-melting: The weighed metal indium ingot and metal tin ingot are pre-melted in a crucible at a temperature of 280°C, so that indium and tin form an alloy melt with a uniform composition, and stirred several times;
[0043] S3. Alloy melting: put the alloy melt obtained in step S2 into a hot ball mill, put in a corresponding number of zirconia balls according to the ball-to-material ratio of 5, and turn on the electric heating to make the inner cavity...
Embodiment 2
[0048] Metal indium ingot and metal tin ingot as raw material are the same as embodiment 1.
[0049] This embodiment provides a method for preparing superfine ITO powder with metal indium and metal tin, and its process flow chart is as attached figure 1 As shown, the specific steps are as follows:
[0050] S1. Composition design: take metal indium ingot and metal tin ingot and weigh them accurately according to the mass ratio of 9.45:1, and weigh 1000g in total;
[0051] S2. Alloying pre-melting: The weighed metal indium ingot and metal tin ingot are pre-melted in a crucible at a temperature of 300°C, so that indium and tin form an alloy melt with a uniform composition, and stirred several times;
[0052] S3. Alloy melting: Add the alloy melt obtained in step S2 into a hot ball mill, put in a corresponding number of corundum balls according to the ball-to-material ratio of 9, and turn on the electric heating to make the inner cavity temperature of the ball mill reach 120°C; ...
Embodiment 3
[0057] Metal indium ingot and metal tin ingot as raw material are the same as embodiment 1.
[0058] This embodiment provides a method for preparing superfine ITO powder with metal indium and metal tin, and its process flow chart is as attached figure 1 As shown, the specific steps are as follows:
[0059] S1. Composition design: take metal indium ingot and metal tin ingot and weigh them accurately according to the mass ratio of 9.45:1, and weigh 1000g in total;
[0060] S2. Alloying pre-melting: the weighed metal indium ingot and metal tin ingot are pre-melted in a crucible at a temperature of 250°C, so that the indium and tin form an alloy melt with a uniform composition, and stirred several times;
[0061] S3. Alloy melting: put the alloy melt obtained in step S2 into a hot ball mill, put in a corresponding number of zirconia balls according to the ball-to-material ratio of 3, and turn on the electric heating to make the inner cavity temperature of the ball mill reach 280...
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Abstract
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