Blue light filtering, dazzling preventing and wear resisting lens and preparation method thereof
A technology that filters blue light and prevents glare. It is applied in the field of lenses and can solve problems such as high price, human eye fatigue, and reduced versatility.
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Embodiment 1
[0067] A method for preparing anti-glare and wear-resistant lenses for filtering blue light, when the substrate is molded by resin, the preparation method specifically includes the following steps:
[0068] 1) Clean and dry the substrate;
[0069] 2) Coating the inner and outer surfaces of the substrate respectively;
[0070] A. Coating the first film layer:
[0071] Adjust the vacuum degree in the vacuum coating chamber to less than or equal to 5.0×10 -3 Pa, and control the temperature in the vacuum coating chamber to 50-70°C, and use an electron gun to bombard the film material of the first film layer, and the film material of the first film layer evaporates and deposits on the outer surface of the substrate in the form of nano-scale molecules. Control the evaporation rate of the first film layer to be 2.5? / S, and the final thickness of the first film layer after formation is 10-100nm; wherein, the film material of the first film layer is trititanium pentoxide, forming tri...
Embodiment 2
[0088] A method for preparing anti-glare and wear-resistant lenses for filtering blue light. When the substrate is formed from glass, the preparation method specifically includes the following steps:
[0089] 1) Clean and dry the substrate;
[0090] 2) Coating the inner and outer surfaces of the substrate respectively;
[0091] A. Coating the first film layer:
[0092] Adjust the vacuum degree in the vacuum coating chamber to less than or equal to 5.0×10 -3 Pa, and control the temperature in the vacuum coating chamber to be 200-300°C, use an electron gun to bombard the film material of the first film layer, and the film material of the first film layer evaporates and deposits on the outer surface of the substrate in the form of nano-scale molecules. Control the evaporation rate of the first film layer to be 2.5? / S, and the final thickness of the first film layer after formation is 10-100nm; wherein, the film material of the first film layer is trititanium pentoxide, forming ...
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