UV (ultraviolet) door number plate ink and preparation method and application method thereof
A technology of ink and door plate, applied in the field of UV door plate ink and its preparation, can solve problems such as constraints, high energy consumption, and long curing time, and achieve the effects of improving uniformity, promoting dispersion, and promoting mutual integration
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Embodiment 1
[0039] 1. Preparation of filler:
[0040] Mix and grind talc powder, calcium carbonate, nano-cerium oxide, and titanium dioxide until the particle size of the mixture is 20-30 μm, then add polycarboxylate water reducer and antioxidant 264, and continue grinding for 15 minutes to obtain the filler; The mass ratio of the talcum powder, calcium carbonate, nano cerium oxide, titanium dioxide, polycarboxylate superplasticizer and antioxidant 264 is 1:0.85:0.09:0.07:0.12:0.01.
[0041] 2. Preparation of polyurethane acrylic resin:
[0042] Under a nitrogen atmosphere, add polypropylene glycol 400 into a reactor equipped with a stirring device, control the stirring speed to 300r / min, adjust the temperature to 90°C, and then add isophorone diisocyanate into the reactor to react Measure the mass fraction of free isocyanate during the process, when the mass fraction of free isocyanate is 10%, add hydroxyethyl acrylate, adjust the temperature to 30 ° C, then add polymerization inhibitor...
Embodiment 2-10
[0052] Compared with Example 1, the differences of Examples 2-10 are: the mass ratio of the components in the filler is different, the mass ratio of the components in the polyurethane acrylic resin is different, and the mass percentage of the components in the UV door plate ink is different.
[0053] Component mass ratio in the embodiment 1-10 filler is as shown in the following table:
[0054]
[0055] The component mass ratio in embodiment 1-10 polyurethane acrylic resin is as shown in the following table:
[0056]
[0057] The component mass percent in the embodiment 1-10UV door plate ink is shown in the table below:
[0058]
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