Waterproof and antibacterial perforated graphene eyeshade and production process thereof
A graphene eye mask and graphene technology are applied in the field of open-hole graphene eye mask and its manufacturing process, which can solve the problems of easy breeding of bacterial microorganisms, pressure on the eyeball, inconvenience to carry, etc., so as to prevent the occurrence of ciliary spasm, increase the Comfort, effectiveness against bacterial eye infections
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Embodiment 1
[0036] A waterproof and antibacterial open-cell graphene eye mask, comprising an eye mask body 1 and an eye mask strap 2, the eye mask body 1 includes a nano-silver coating film 101 with antibacterial effect, a first acetate cloth 102, FPC from the inside to the outside The flexible circuit board 103, the second acetate cloth 104 and the nano waterproof coating 105. Each layer is formed by ion spraying and thermal bonding. The upper surface of the FPC flexible circuit board 103 is covered with a graphene heating coating 106. The graphene heating coating 106 is olive-shaped and distributed in two orbital positions. The permanent circuit board 103 is connected to the positive and negative poles of the power supply, and the two ends of the eye mask strap 2 are respectively sewn with Velcro velvet 201 and Velcro hook 202, and the width of the Velcro velvet 201 is 3 to 4 times the width of the Velcro hook 202. The eye mask body 1 is equipped with a nose pad 3 at the corresponding p...
Embodiment 2
[0044] Embodiment 2 The present invention also provides a kind of manufacturing process that possesses waterproof, antibacterial perforated graphene eye mask, specifically comprises the following steps:
[0045] S1. Add silver nitrate solid particles and polyvinyl alcohol solid particles into high-purity water with a conductivity of <0.15μS / cm, heat until the solid particles are completely dissolved, and the mixed solution after the solid particles dissolve is used as the electrolyte, after electrolysis for 3 to 4 hours , put the electrified electrolyte together with the eye mask substrate in a dark place for 8 to 12 hours, so that the eye mask substrate has ample opportunity to combine with the electrolyzed nano-silver particles, and then take the substrate out of the electrolyte After drying, the side in contact with the nano-silver particles is the prepared nano-silver coating film 101;
[0046] S2, using the shape of the FPC flexible circuit board 103 as a silk screen temp...
Embodiment 3
[0052] The difference from Example 2 is that in Example 3, some processes are replaced sequentially, specifically including the following steps:
[0053] S1, take the second acetate cloth 104 that has been cut, and use the design shape of the eye mask body 1 as a template, and press the second acetate cloth 104 to spray nano-waterproof paint through a high-temperature ion gun;
[0054] S1, using the shape of the FPC flexible circuit board 103 as a silk screen template, pressing the silk screen template on the FPC flexible circuit board 103 and spraying graphene powder with a high-temperature ion gun to form a graphene heating coating 106;
[0055] S2. Add silver nitrate solid particles and polyvinyl alcohol solid particles into high-purity water with a conductivity of <0.15 μS / cm, heat until all the solid particles are dissolved, and the mixed solution after the solid particles dissolve is used as the electrolyte, after 3 to 4 hours of electrolysis , put the electrified electr...
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