A kind of preparation method of swimming goggles and lens thereof
A technology of lenses and swimming goggles, applied in the field of lens structure and preparation, can solve the problems of inconvenience, easy fogging of swimming goggles, obstructing the field of vision, etc., and achieve the effect of a clean field of view
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Embodiment 1
[0028] This embodiment provides a kind of swimming goggles, such as figure 1 As shown, it includes two lens units 10 that are mirror-symmetrical to each other, and a nose strip 20 connected between the inner edge ends of the two lens units 10; The headband 30 between the outer edge ends of the body 10. Wherein, the edge of the lens unit 10 extends out of the side view portion 11 toward the headband 30, and a waterproof gasket 12 is wound around the edge of the side view portion 11, so that the lens unit 10 is worn on the eye. After the circle (not shown in the figure), an airtight visible space 40 is formed with the eye circumference.
[0029] Further, combine figure 2 As shown, the lens part of the lens unit 10 comprises: an anti-fog layer 13 , a transparent substrate 14 and a hydrophobic layer 15 arranged in sequence away from the viewing space 40 . Wherein, the material of the transparent substrate 14 may be organic glass, for example.
[0030] Preferably, the anti-fog...
Embodiment 2
[0034] Below, in the above-mentioned swimming goggles, the preparation method of the lens is introduced, combined with Figure 4 shown, including the following steps:
[0035] Step 1: Provide a transparent substrate. The transparent substrate can be, for example, organic glass, and the impurities on the surface are removed by ultrasonic cleaning, dried and ready for use.
[0036] Step 2: Depositing an anti-fog layer on the transparent substrate by using a microwave plasma chemical vapor deposition method.
[0037] The prepared transparent substrate was placed in a reaction chamber, and a mixed gas of methane, hydrogen and oxygen was introduced into the reaction chamber at a volume flow ratio of 3:100:1. Preferably, in this embodiment, the standard gas flow rates for controlling methane, hydrogen and oxygen are respectively: 12 sccm for methane, 400 sccm for hydrogen, and 4 sccm for oxygen. Further, control the reaction conditions: microwave frequency 915MHZ, temperature 400...
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