Antimicrobial coated resin lens and manufacturing method thereof
A resin lens and antibacterial coating technology, which is applied in the manufacture of coated spectacle lenses, antibacterial coated resin lenses and their manufacturing fields, can solve the problems of long-term antibacterial coating effect, reduce the chance of eye disease infection, limited antibacterial effect, etc., and achieve long-term effective antibacterial performance, reducing the chance of infection, and alleviating the effects of dark wounds
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Embodiment 1
[0037] The present invention prepares a kind of antibacterial coating resin lens, and concrete steps are as follows:
[0038] (1) The resin lens has a refractive index of 1.60 (MR-8), and adopts a dip-coating and hardening process to obtain a wear-resistant hardened layer with a thickness of 2.5 μm.
[0039] (2) Then under vacuum condition 3.5×10 -5 Under mbar, the ion source is used to generate argon ions to bombard the hardening layer for 120S to enhance the adhesion between the film layer and the hardening layer. The process conditions of the ion source assisted coating technology used are anode voltage 80V, anode current 0.8A, Ar The flow rate is 18sccm, and then use the vacuum sputtering coating technology to sequentially coat a silicon dioxide layer of 49.22nm, a zirconium dioxide layer of 21.70nm, a silicon dioxide layer of 44.89nm, a zirconium dioxide layer of 67.10nm, and an indium oxide layer on the hardened layer. The 5.00nm tin layer and the 73.58nm silicon dioxi...
Embodiment 2
[0047] The present invention prepares a kind of antibacterial coating resin lens, and concrete steps are as follows:
[0048] (1) The refractive index of the resin lens is 1.74, and the dip-coating and hardening process is adopted to obtain a wear-resistant and hardened layer with a thickness of 2.5 μm and good wear resistance.
[0049] (2) Then in a vacuum of 2.0×10 -5 Under mbar, the ion source is used to generate argon ions to bombard the hardening layer for 180S to enhance the adhesion between the film layer and the hardening layer. The process conditions of the ion source assisted coating technology are anode voltage 120V, anode current 1.0A, Ar The flow rate is 25 sccm. Then use vacuum sputtering coating technology to sequentially plate silicon dioxide layer, zirconium dioxide layer, silicon dioxide layer, zirconium dioxide layer, silicon dioxide layer, zirconium dioxide layer, indium tin oxide layer, The silicon dioxide layer constitutes the anti-reflection film laye...
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