Ultraviolet-proof coating and preparation method thereof
An anti-ultraviolet and coating technology, applied in the field of anti-ultraviolet coatings and its preparation, can solve the problems of high production cost, unreliable ultraviolet shielding rate, complicated process, etc., and achieve simple production process, stable ultraviolet shielding performance, and simple preparation process conditions Effect
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Embodiment 1
[0029] Anti-ultraviolet coating of the present invention, its preparation method is as follows:
[0030] 1. Preparation of iron-praseodymium magnetic oxide powder:
[0031] The weight percent of each component in the raw material is: MnO33%, ZnO10%, Pr 6 o 11 0.06%, CaO0.03%, SiO 2 0.02%, Co 2 o 3 0.15%, SnO 2 1.5%, the rest is Fe 2 o 3 Mix and crush the raw materials in a sand mill, then dry them at a temperature of 130°C, pass through a 220-mesh sieve, and pre-calcine at a temperature of 980°C for 105 minutes, and grind the ferro-praseodymium magnetic oxide obtained after pre-calcination Form iron-praseodymium magnetic oxide powder with a particle size of 100-130 microns;
[0032] 2. Waste glass powder preparation
[0033] Grinding the waste glass into waste glass powder with a particle size of 100-130 microns for subsequent use;
[0034] 3. Preparation of waste glass iron-praseodymium magnetic oxide composite powder
[0035] Mix the iron-praseodymium magnetic oxi...
Embodiment 2
[0039] Anti-ultraviolet coating of the present invention, its preparation method is as follows:
[0040] 1. Preparation of iron-praseodymium magnetic oxide powder
[0041] The ingredients in the raw materials are by weight percentage: MnO36%, ZnO10%, Pr 6 o 11 0.03%, CaO0.06%, SiO 2 0.005%, Co 2 o 3 0.01%, SnO 2 1%, the rest is Fe 2 o 3 Mix and crush the raw materials in a sand mill, then dry them at a temperature of 120°C, pass through a 180-mesh sieve, and pre-calcine at a temperature of 1100°C for 95 minutes, and magnetically oxidize the ferropraseodymium obtained after pre-calcination The material is ground into iron-praseodymium magnetic oxide powder, and the particle size of the powder is 100-130 microns;
[0042] 2. Waste glass powder preparation
[0043] Grinding the waste glass into waste glass powder with a particle size of 100-130 microns for subsequent use;
[0044] 3. Preparation of waste glass iron-praseodymium magnetic oxide composite powder
[0045] ...
Embodiment 3
[0049] Anti-ultraviolet coating of the present invention, its preparation method is as follows:
[0050] 1. Preparation of iron-praseodymium magnetic oxide powder
[0051]The ingredients in the raw materials are MnO35%, ZnO8%, Pr 6 o 11 0.05%, CaO0.06%, SiO 2 0.01%, Co 2 o 3 0.09%, SnO 2 1%, the rest is Fe 2 o 3 Dosing; mix and crush the raw materials in a sand mill, then dry them at a temperature of 120°C, pass through a 180-mesh sieve, and pre-fire at a temperature of 1000°C for 100 minutes, and magnetically oxidize the ferropraseodymium obtained after pre-burning The material is ground into iron-praseodymium magnetic oxide powder, and the particle size of the powder is 100-130 microns;
[0052] 2. Waste glass powder preparation
[0053] Grinding the waste glass into waste glass powder with a particle size of 100-130 microns for subsequent use;
[0054] 3. Preparation of waste glass iron-praseodymium magnetic oxide composite powder
[0055] Mix the iron-praseodymi...
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