Antistatic AF coating material and preparation method thereof
An antistatic and coating technology, applied in optical components, optics, instruments, etc., to achieve wide adaptability, improve antistatic effect, and improve lubricity.
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Embodiment 1
[0016] An antistatic AF coating material, comprising the following components by weight: 45 parts by weight of nano silicon dioxide, 40 parts by weight of magnesium fluoride, 14 parts by weight of titanium dioxide, 0.2 parts by weight of graphite fluoride and 0.8 parts by weight of nanometer antistatic material , the nano-antistatic material is a mixture of nano-zinc oxide, nano-silver oxide and nano-silicon carbide, and the weight of each component in the mixture is: 50% of nano-zinc oxide, 40% of nano-silver oxide and 10% of nano-silicon carbide .
Embodiment 2
[0018] An antistatic AF coating material, comprising the following components by weight: 50 parts by weight of nano silicon dioxide, 38 parts by weight of magnesium fluoride, 11 parts by weight of titanium dioxide, 0.2 parts by weight of graphite fluoride and 0.8 parts by weight of nanometer antistatic material , the nano-antistatic material is a mixture of nano-zinc oxide, nano-silver oxide and nano-silicon carbide, and the weight of each component in the mixture is: 45% of nano-zinc oxide, 45% of nano-silver oxide and 10% of nano-silicon carbide .
Embodiment 3
[0020] An antistatic AF coating material, comprising the following components by weight: 50 parts by weight of nano silicon dioxide, 33.5 parts by weight of magnesium fluoride, 15 parts by weight of titanium dioxide, 0.3 parts by weight of graphite fluoride and 1.2 parts by weight of nanometer antistatic material , the nano-antistatic material is a mixture of nano-zinc oxide, nano-silver oxide and nano-silicon carbide, and the weight of each component in the mixture is: 40% of nano-zinc oxide, 45% of nano-silver oxide and 15% of nano-silicon carbide .
[0021] The preparation method of the antistatic AF coating material corresponding to above-mentioned embodiment 1-3, comprises the steps:
[0022] S1, prepare each raw material according to the composition proportioning in embodiment 1-3;
[0023] S2. Mixing nano-silica and fluoride according to the proportion, mixing evenly, then sintering at 800°C for 3 hours, and then vacuum melting above 1260°C for 3 hours to obtain a pret...
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