PHOTOCHROMIC ANTI-FOG LENS AND METHOD FOR MAKING THE SAME
20190391309 ยท 2019-12-26
Assignee
Inventors
Cpc classification
B29D11/00865
PERFORMING OPERATIONS; TRANSPORTING
G02B1/18
PHYSICS
B29K2995/0018
PERFORMING OPERATIONS; TRANSPORTING
B29K2069/00
PERFORMING OPERATIONS; TRANSPORTING
A61F9/029
HUMAN NECESSITIES
International classification
G02B1/18
PHYSICS
B29D11/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A photochromic anti-fog lens and a method for making a photochromic anti-fog lens includes a step of mixing photochromic material in glue which is used to glue the second transparent plastic plate to the inner side of the first transparent plastic plate to get a photochromic material layer between the first and second transparent plastic plates. A step of attaching an anti-fog film to the inner side of the second transparent plastic plate to form a photochromic anti-fog composite lens. A step of putting the photochromic anti-fog composite lens in the cavity of a molding set. A step of injecting melted lens-forming material into the cavity of the molding set, the melted lens-forming material connected with the first transparent plastic plate to form the photochromic anti-fog lens that includes multiple layers with high structural strength.
Claims
1. A photochromic anti-fog lens comprising: a lens and a photochromic anti-fog composite lens, the photochromic anti-fog composite lens includes a first transparent plastic plate and a second transparent plastic plate which is glued to an inner side of the first transparent plastic plate by glue, the glue having photochromic material, the second transparent plastic plate having an anti-fog film attached to an inner side thereof, the lens being formed in a molding set and securely connected with the first transparent plastic plate located in a cavity of the molding set located beside the inner side of the first transparent plastic plate.
2. The photochromic anti-fog lens as claimed in claim 1, wherein the lens, the first transparent plastic plate and the second transparent plastic plate each are made of the Polycarbonate.
3. The photochromic anti-fog lens as claimed in claim 1, wherein the first transparent plastic plate and the second transparent plastic plate each have a thickness of 0.1 mm to 0.5 mm.
4. The photochromic anti-fog lens as claimed in claim 1, wherein the first transparent plastic plate and/or the second transparent plastic plate includes photochromic material therein.
5. The photochromic anti-fog lens as claimed in claim 1, wherein the lens is adapted to be used as helmet goggles or ski goggles, the lens includes an installation hole defined in each of two ends thereof, the photochromic anti-fog composite lens is overlapped to an inner side of the lens, the photochromic anti-fog composite lens includes two holes which are located corresponding to the two installation holes.
6. The photochromic anti-fog lens as claimed in claim 1, wherein the lens is adapted to be used as helmet goggles or ski goggles, the lens includes an installation hole defined in each of two ends thereof, the photochromic anti-fog composite lens is overlapped to an area between the two installation holes of an inner side of the lens.
7. The photochromic anti-fog lens as claimed in claim 5, wherein an adjustment device protrudes from the inner side of the lens and located beside each of the two installation holes.
8. The photochromic anti-fog lens as claimed in claim 6, wherein an adjustment device protrudes from the inner side of the lens and located beside each of the two installation holes.
9. A method for making a photochromic anti-fog lens, comprising: a step 1: mixing photochromic material in glue; a step 2: spreading the glue onto an inner side of a first transparent plastic plate and/or an outer side of the second transparent plastic plate, attaching the second transparent plastic plate to the inner side of the first transparent plastic plate, attaching an anti-fog film on an inner side of the second transparent plastic plate to form a photochromic anti-log composite lens; a step 3: putting the photochromic anti-fog composite lens in a cavity of a molding set, the first transparent plastic plate located at an inner side of a lens to be formed in the molding set, and a step 4: injecting a melted lens-forming material into the cavity of the molding set, the melted lens-forming material connected with the first transparent plastic plate to form a photochromic anti-fog lens that includes the lens connected to the photochromic anti-fog composite lens.
10. The method as claimed in claim 9, wherein the step 1 further including a process of mixing the photochromic material with melted lens-forming material of the first transparent plastic plate and/or melted lens-forming material of the second transparent plastic plate so as to form the first transparent plastic plate having the photochromic material and/or the second transparent plastic plate having the photochromic material.
11. The method as claimed in claim 9, wherein when the lens is a curved lens and the photochromic anti-fog composite lens is a flat lens, the photochromic anti-fog composite lens is processed to be curved before the photochromic anti-fog composite lens is put into the cavity of the molding set such that the photochromic anti-fog composite lens is connected to the lens.
12. The method as claimed in claim 9, wherein the melted lens-forming material is 260 to 280 degrees Celsius when the melted lens-forming material is injected into the cavity of the molding set.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0014]
[0015]
[0016]
[0017]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0018] Referring to
[0019] The photochromic anti-fog composite lens 2 comprises a first transparent plastic plate 21 and a second transparent plastic plate 23. The second transparent plastic plate 23 is glued to the inner side of the first transparent plastic plate 21 by glue. The glue has photochromic material mixed therein. An anti-fog film 24 is attached to the inner side of the second transparent plastic plate 23. A photochromic material layer 22 is formed between the first and second transparent plastic plates 21, 23 after the glue is dried. The photochromic material should be mixed with the glue as much as possible so as to ensure the photochromic features. The lens 1 is formed in a molding set which is not shown, and securely connected with the first transparent plastic plate 21 located in a cavity of the molding set located beside the inner side of the first transparent plastic plate 21. Specifically, the melted lens-forming material which can be Polycarbonate or Polymer resin, and has a temperature of 260 to 280 degrees Celsius, is injected into the cavity of the molding set, and the melted lens-forming material is connected with the first transparent plastic plate to form a photochromic anti-fog lens. The first and second transparent plastic plates 21, 23 are formed as an integral plate and do not separate from each other. The photochromic material layer 22 is formed between the first and second transparent plastic plates 21, 23 to avoid from being exposed to the air and foreign objects, and the photochromic material layer 22 is permanently protected between the first and second transparent plastic plates 21, 23 without worry of peeling off and being damaged.
[0020] In the first embodiment of the present invention, the first and second transparent plastic plates 21, 23 are made of Polycarbonate so that the first and second transparent plastic plates 21, 23 are thin and can be firmly connected to each other. The first and second transparent plastic plates 21, 23 can also be made by other material such as Polypropylene. Specifically, the first transparent plastic plate 21 and the second transparent plastic plate 23 each have a thickness of 0.1 mm to 0.5 mm, such as 0.1 mm, 0.15 mm, 0.2 mm, 0.25 mm, 0.3 mm, 0.35 mm, 0.4 mm, 0.45 mm, or 0.5 mm.
[0021] The photochromic material and the anti-fog film 24 both are well-known materials in this field. The anti-fog film 24 can be made of Triacetate fiber film (TAC film). The TAC film can be well connected with a surface that has less smoothness and hardness of the second transparent plastic plate 23, such that the anti-fog film 24 does not separated from the second transparent plastic plate 23.
[0022] Furthermore, first and second transparent plastic plates 21, 23 have photochromic material mixed therein so as to perform better photochromic features for the photochromic anti-fog composite lens 2.
[0023] When the lens 1 and the photochromic anti-fog composite lens 2 each are a flat lens, the photochromic anti-fog composite lens 2 can be directly put in the cavity of the molding set to be combined with the lens 1. When the lens 1 is a curved lens and the photochromic anti-fog composite lens 2 is a flat lens, then the photochromic anti-fog composite lens 2 is processed to be curved before the photochromic anti-fog composite lens 2 is put into the cavity of the molding set such that the photochromic anti-fog composite lens 2 is connected to the lens 1.
[0024] When the lens 1 be used as helmet goggles or ski goggles, the lens 1 includes an installation hole 11 defined in each of two ends thereof so as to be connected to the helmet frame or the goggle frame (not shown). The photochromic anti-fog composite lens 2 is overlapped to the inner side of the lens 1, wherein the photochromic anti-fog composite lens 2 includes two holes (not shown) which are located corresponding to the two installation holes 11. Alternatively, when the photochromic anti-fog composite lens 2 is overlapped to an area between the two installation holes 11 of an inner side of the lens 1, then the photochromic anti-fog composite lens 2 does not have the holes. An adjustment device 12 protrudes from the inner side of the lens 1 and located beside each of the two installation holes 11 so as to adjust the angle of the photochromic anti-fog lens.
[0025] The present invention provides a method for making a photochromic anti-fog lens, and the method comprises:
[0026] a step 1: mixing photochromic material in glue;
[0027] The photochromic material is Ultraviolet photochromic material which is mixed with the glue as much as possible.
[0028] a step 2: spreading the glue onto the inner side of a first transparent plastic plate 21 and/or the outer side of the second transparent plastic plate 23, attaching the second transparent plastic plate 23 to the inner side of the first transparent plastic plate 21, attaching an anti-fog film 24 on the inner side of the second transparent plastic plate 23 to form a photochromic anti-fog composite lens 2;
[0029] The anti-fog film 24 is the Triacetate fiber film (TAO film), and the thickness of each of the first and second transparent plastic plates 21, 23 is 0.1 mm to 0.5 mm. A photochromic material layer 22 is formed between the first and second transparent plastic plates 21, 23 after the glue is dried. The anti-fog film 24 can be well connected with a surface that has less smoothness and hardness of the second transparent plastic plate 23, such that the anti-fog film 24 does not separated from the second transparent plastic plate 23.
[0030] a step 3: putting the photochromic anti-fog composite lens 2 in a cavity of a molding set, the first transparent plastic plate 21 located at an inner side of a lens 1 to be formed in the molding set;
[0031] When the lens 1 and the photochromic anti-fog composite lens 2 each are a flat lens, the photochromic anti-fog composite lens 2 can be directly put in the cavity of the molding set to be combined with the lens 1. When the lens 1 is a curved lens and the photochromic anti-fog composite lens 2 is a flat lens, then the photochromic anti-fog composite lens 2 is processed to be curved before the photochromic anti-fog composite lens 2 is put into the cavity of the molding set such that the photochromic anti-fog composite lens 2 is connected to the lens 1.
[0032] a step 4: injecting a melted lens-forming material into the cavity of the molding set, the melted lens-forming material connected with the first transparent plastic plate 21 to form a photochromic anti-fog lens that includes the lens 1 connected to the photochromic anti-fog composite lens 2;
[0033] When the lens 1 be used as helmet goggles or ski goggles, the lens 1 includes an installation hole 11 defined in each of two ends thereof so as to be connected to the helmet frame or the goggle frame (not shown). The photochromic anti-fog composite lens 2 is overlapped to the inner side of the lens 1, wherein the photochromic anti-fog composite lens 2 includes two holes (not shown) which are located corresponding to the two installation holes 11. Alternatively, when the photochromic anti-fog composite lens 2 is overlapped to an area between the two installation holes 11 of an inner side of the lens 1, then the photochromic anti-fog composite lens 2 does not have the holes. An adjustment device 12 protrudes from the inner side of the lens 1 and located beside each of the two installation holes 11 so as to adjust the angle of the photochromic anti-fog lens.
[0034] It is noted that the term inner side represents the side located close to the user's eyes, on the contrary, the term outer side represents the side located remote from the user's eyes.
[0035] While we have shown and described the embodiment in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.