Nano low-frequency electromagnetic shielding coating and preparation method thereof
An electromagnetic shielding coating and nanotechnology, applied in anti-corrosion coatings, polyurea/polyurethane coatings, coatings, etc., can solve the problems of incompatibility with high-efficiency industrial coating, low shielding efficiency, complex processing technology, etc., and achieve low-frequency electromagnetic shielding range. Wide, fast drying, good anti-corrosion performance
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Embodiment 1-3
[0023] Adopt the components and proportions shown in Table 1 respectively
[0024] The preparation methods are as follows: add the raw materials of the three formula ratios in Table 1 into three tanks according to the resin-solvent-powder process, mix evenly in a high-speed mixer, and add volatile ethanol solvent to adjust the viscosity to reach Tu 4# cup 180- After 240 seconds, the mixture is mixed and sampled for inspection, and if it is qualified, it can be filtered and packaged with a 150-mesh filter.
[0025] Spraying environment: temperature: 5-30°C, relative humidity: 30-75%.
[0026] Wet film thickness: 30~60μm.
[0027] Spray viscosity: 4# viscosity cup: 20-26 seconds.
[0028] Spraying times: once.
[0029] Maintenance environment: temperature 20±5℃, relative humidity: 50±5%, maintenance time 7 days.
[0030] The first component of the coating of table 1. embodiment 1-3 and ratio table thereof
[0031]
[0032]
Embodiment 4
[0034] The component A product obtained in Example 1-3 is proportioned with the component B product in Table 2 respectively. Components A and B were mixed evenly and placed for 10 minutes, and coated on a 1.5mm thick ABS engineering plastic plate with a coating thickness of 45μm. The indicators were tested respectively, and the results are shown in Table 3:
[0035] Table 2. Embodiment 1-3 A and B component ratio table
[0036] project Example 1 Example 2 Example 3 A:B ratio 100::8.48 100::8.15 100:7.8
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