Intelligent glasses

By using composite materials and 3D printing technology, combined with metal component design, the problem of monotonous appearance of glasses has been solved, resulting in smart glasses that are more aesthetically pleasing and durable.

CN223611797UActive Publication Date: 2025-11-28HUIZHOU ZONGSHENG ELECTRONICS MATERIAL CO LTD +1
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Patent Information

Application Number
CN202422852983.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-11-28
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

The eyeglasses on the market have a rather monotonous appearance and lack a cool factor, which fails to effectively stimulate consumers' desire to buy.

Method used

The frames and temples are made of composite materials, including a base material, a first connecting layer, a base color layer, a 3D printing layer, and an encapsulation layer. Combined with metal parts and a hollow structure design, the aesthetics and durability are enhanced by utilizing 3D printing technology and the wear resistance of the metal parts.

Benefits of technology

The composite material design makes the smart glasses look cooler and more attractive, increasing consumers' desire to buy them and improving their lifespan and wearing stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of glasses, in particular to intelligent glasses. The intelligent glasses comprise a glasses frame and glasses legs, metal pieces are arranged between the glasses legs and the glasses frame and are hinged together; hollow structures are arranged in the glasses legs; wherein the glasses frame and the glasses legs are made of a composite board, and the composite board comprises a base material as well as a first connecting layer, a ground color layer, a 3D rubbing layer and a packaging layer which are sequentially arranged on the base material from inside to outside. The base material plays a role of a framework and can provide a supporting effect. The first connecting layer plays a role in bonding, so that the base material and the ground color layer are combined more firmly. And the bottom color layer has color and luster and can play a role in setting off the bottom color, so that the glasses have personalized color. The 3D rubbing layer can generate a 3D texture pattern effect, and the ground color is matched with the 3D effect, so that the 3D rubbing layer is very cool and more attractive, and can arouse the buying desire of consumers. And the packaging layer has certain hardness and wear-resistant effect, so that the service life of the intelligent glasses is prolonged.
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Description

TECHNICAL FIELD

[0001] The utility model relates to glasses technical field especially is a kind of intelligent glasses. BACKGROUND

[0002] With the continuous development of artificial intelligence technology, as a new intelligent wearable product, intelligent glasses are gradually popularized into people's daily life, and bring people more diversified life experience.

[0003] Glasses are optical devices used to improve vision, protect eyes or for decorative purposes, and can also be a kind of ornament. Good-looking glasses can improve a person's temperament. Therefore, the appearance of beautiful glasses will directly affect the purchasing desire of customers.

[0004] However, some glasses on the market are mostly metal or plastic shells. Such glasses have a relatively single appearance and are not cool enough, which is not conducive to promoting the purchasing desire of consumers.

[0005] For example, Chinese patent application No. CN201620788087.8, a metal glasses with plastic frame, is a metal and plastic glasses. Its appearance is relatively single and not cool enough, which cannot promote the purchasing desire of consumers. UTILITY MODEL CONTENT

[0006] Therefore, the utility model mainly aims to provide an intelligent glasses, which is more beautiful and cool, can promote the purchasing desire of consumers, and overcome the shortcomings of the prior art.

[0007] To achieve the above-mentioned purpose, the utility model adopts the following technical solutions:

[0008] The present application provides an intelligent glasses, comprising a frame and a temple, the temple and the frame are hinged together by a metal piece; the inside of the temple has a hollow structure;

[0009] The frame and the temple are made of a composite board, which comprises a base material, and a first connecting layer, a base color layer, a 3D transfer printing layer and a packaging layer arranged in the base material from inside to outside.

[0010] Preferably, the base material is a board made of one of glass fiber, carbon fiber, alumina fiber and plastic.

[0011] Preferably, the first connecting layer is epoxy resin or acrylic resin, and its thickness is between 8-28µm.

[0012] Preferably, the base color layer is epoxy resin or acrylic resin with color, and its thickness is between 15-35µm.

[0013] Preferably, the 3D layer is an epoxy resin or acrylic resin with a texture, and the thickness is between 8-18µm.

[0014] Preferably, the encapsulation layer is a transparent epoxy resin or acrylic resin, and the thickness is between 20-45µm.

[0015] Preferably, the temple includes a first temple shell and a second temple shell, the first temple shell and the second temple shell are buckled together, and the buckled position of the first temple shell and the second temple shell is provided with a hot melt adhesive seal.

[0016] Preferably, the hollow structure is provided with a battery and a circuit board, the battery is connected to the circuit board, and a microphone on the circuit board faces a microphone hole on the temple.

[0017] Preferably, the metal piece is embedded in a mounting groove on the frame, and the temple is connected to the metal piece through a pin shaft.

[0018] Preferably, the frame is provided with a mirror holder, and the inner side surfaces of the mirror holder and the temple are provided with a non-slip layer made of silicone or rubber.

[0019] The utility model discloses a composite board material for manufacturing a frame and a temple, and the composite board material comprises a base material, a first connecting layer, a base color layer, a 3D layer and an encapsulation layer.

[0020] The base material serves as a framework and provides support. The first connecting layer serves as an adhesive to make the base material and the base color layer more firmly combined. The base color layer has a color and serves as a base color to make the glasses have a personalized color. The 3D layer produces a 3D texture pattern effect, and the base color cooperates with the 3D effect to make the glasses very cool and more beautiful, which can arouse the purchasing desire of consumers. The encapsulation layer has a certain hardness and wear resistance to improve the service life of the smart glasses. BRIEF DESCRIPTION OF DRAWINGS

[0021] Fig. 1 is a schematic view of the layered structure of the composite board material of the embodiment of the utility model.

[0022] Fig. 2 is a schematic view of the whole of the embodiment of the utility model.

[0023] Fig. 3 is a schematic view of the exploded view of the embodiment of the utility model.

[0024] BRIEF DESCRIPTION OF DRAWINGS

[0025] 10, composite board; 11, base material; 12, first connecting layer; 13, base color layer; 14, 3D printing layer; 15, packaging layer; 16, anti-skid layer; 20, mirror frame; 21, mounting groove; 22, metal piece; 23, pin shaft; 24, mirror holder; 30, mirror leg; 31, hollow structure; 32, microphone hole; 33, first mirror leg shell; 34, second mirror leg shell. DETAILED DESCRIPTION

[0026] In order to further illustrate the technical means and effects taken by the present application to achieve the predetermined practical purpose, the specific embodiments, structures, features and effects according to the present application will be described in detail below in combination with the preferred embodiments and the drawings.

[0027] Please refer to Figs. 1 to 3 The figure shows the specific structure of the preferred embodiment of the present application, which is an intelligent glasses.

[0028] Among them, the first connecting layer 12, the base color layer 13, the 3D printing layer 14 and the packaging layer 15 are sequentially arranged from inside to outside on the base material 11, which can make the intelligent glasses more cool and beautiful, and can arouse the purchasing desire of consumers.

[0029] The application provides an intelligent glasses, comprising a frame 20 and a temple 30, the temple 30 and the frame 20 are hinged together by a metal piece 22; the inside of the temple 30 has a hollow structure 31; wherein the frame 20 and the temple 30 are made of a composite board 10, which comprises a base material 11, and a first connecting layer 12, a base color layer 13, a 3D printing layer 14, and an encapsulation layer 15 arranged in the base material 11 in turn from inside to outside. The metal piece 22 can be fixed on the frame 20 by adhesive bonding, and the temple 30 is hinged to the metal piece 22, so that the temple 30 can be folded together with the frame 20. The metal piece 22 can be made of copper / stainless steel / aluminum, which has good wear resistance. The base material 11 has certain toughness and bending ability. The first connecting layer 12 plays a bonding role, which can make the base material 11 and the base color layer 13 more firmly combined and bonded into a whole. The base color layer 13 has color, which can play the role of base color contrast, so that the intelligent glasses have personalized color. The color of the base color layer 13 can be set according to needs, such as red, white, black, blue, etc. 3D printing technology is a technology that uses digital model files as the basis to construct objects layer by layer. It is an additive manufacturing technology, also known as rapid prototyping technology or additive manufacturing (Additive Manufacturing, AM). 3D printing technology uses powder-like metal or plastic and other adhesive materials to construct objects layer by layer according to digital model files, thereby achieving precise manufacturing of objects. 3D printing technology is also used in high-precision fields such as jewelry and mobile phone cases, and UV ultraviolet forming technology is used to achieve high precision and high efficiency. The 3D printing layer 14 produces a 3D texture pattern effect, and the base color matches the 3D pattern effect, which is very cool and more beautiful, and can better attract the purchase desire of consumers. The texture of the 3D printing layer 14 can be any shape. The encapsulation layer 15 has a certain hardness and wear resistance effect, which improves the service life of the intelligent glasses. The encapsulation layer 15 can be plastic or epoxy resin or acrylic resin, etc., which has good protection effect. The frame 20 is provided with a lens.

[0030] The composite board 10 manufacturing steps are as follows: 1. The base material 11 is formed in a mold, and then a cnc device is used to finish machining the base material into a frame / temple. 2. The first connecting layer 12 is sprayed on the base material, and when the first connecting layer 12 is semi-solid, the base color layer 13 is sprayed on the first connecting layer 12. 3. When the base color layer 13 is semi-solid, the 3D printing layer 14 is printed on the base color layer 13. 4. When the 3D printing layer 14 is semi-solid, the encapsulation layer 15 is sprayed on the 3D printing layer 14 and solidified.

[0031] Preferably, the substrate 11 is a plate made of one of glass fiber, carbon fiber, alumina fiber, and plastic. The substrate 11 has a thickness of 0.2-2 mm. When the substrate 11 is made of glass fiber, carbon fiber, or alumina fiber, the glass fiber, carbon fiber, or alumina fiber is placed in a mold, and the substrate 11 is formed by extrusion and heating, and then is placed in a CNC setup for finishing.

[0032] Preferably, the first connecting layer 12 is epoxy resin or acrylic resin, and has a thickness of 8-28 µm, such as 8 µm, 10 µm, 16 µm, 20 µm, 24 µm, or 28 µm. The first connecting layer 12 is applied to the substrate 11 by spraying. When the first connecting layer 12 is in a semi-melted state, the base color layer 13 is sprayed on the first connecting layer 12, so that the adhesion is better.

[0033] Preferably, the base color layer 13 is epoxy resin or acrylic resin with color, and has a thickness of 15-35 µm. After the base color layer 13 is sprayed, it is quickly cured by a UV lamp, which helps to improve the production efficiency.

[0034] Preferably, the 3D printing layer 14 is epoxy resin or acrylic resin with texture, and has a thickness of 8-18 µm, such as 8 µm, 10 µm, 12 µm, 14 µm, 16 µm, or 18 µm. The 3D printing layer 14 prints a planar / stereoscopic pattern on the base color layer 13, so that the smart glasses show a 3D stereoscopic pattern, which is more beautiful and cool.

[0035] Preferably, the encapsulation layer 15 is transparent epoxy resin or acrylic resin, and has a thickness of 20-45 µm, such as 20 µm, 24 µm, 26 µm, 28 µm, 30 µm, 32 µm, 34 µm, 36 µm, 40 µm, 44 µm, or the like. The encapsulation layer 15 has a certain hardness after curing, and has good scratch resistance.

[0036] Preferably, the temple 30 includes a first temple shell 33 and a second temple shell 34, the first temple shell 33 and the second temple shell 34 are buckled together, and the buckled position of the first temple shell 33 and the second temple shell 34 is provided with a hot melt adhesive seal. When the first temple shell 33 and the second temple shell 34 are buckled together, the hot melt adhesive is used for sealing, which can improve the waterproof ability of the glasses.

[0037] Preferably, the hollow structure 31 is provided with a battery and a circuit board, the battery is connected to the circuit board, and a microphone on the circuit board faces a sound hole 32 on the temple 30. The battery supplies power to the circuit board, and sound enters the microphone from the sound hole 32. The hollow structure 31 provides a mounting function, and components are mounted in the hollow structure 31.

[0038] Preferably, the metal part 22 is embedded in the mounting groove 21 on the frame 20, and the temple 30 is connected to the metal part 22 by a pin 23. The metal part 22 can be made of stainless steel, aluminum alloy, or copper alloy. The metal part 22 has an L-shaped structure. The metal part 22 is embedded in the mounting groove 21 on the frame 20, and glue firmly adheres the metal part 22 to the mounting groove 21.

[0039] Preferably, the frame 20 is provided with a lens holder 24, and the inner surfaces of the lens holder 24 and the temples 30 are provided with an anti-slip layer 16, which is made of silicone or rubber. The anti-slip layer 16 has an anti-slip function, which can prevent the smart glasses from slipping off and improve the stability when worn.

[0040] In summary, the key design feature of this utility model lies in the fact that its substrate 11 is sequentially provided with a first connecting layer 12, a base color layer 13, a 3D printing layer 14, and an encapsulation layer 15 from the inside out. The substrate 11 acts as a skeleton, the first connecting layer 12 acts as an adhesive, the base color layer 13 has color and serves as a background, and the 3D printing layer 14 produces a 3D textured pattern effect. The combination of the base color and the 3D effect creates a very cool and aesthetically pleasing result, which can stimulate consumers' desire to purchase.

[0041] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Although the present utility model has been disclosed above with reference to a preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can make some modifications or alterations to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present utility model. Any simple modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of the present utility model without departing from the scope of the present utility model shall still fall within the scope of the present utility model.

Claims

1. A smart glasses, comprising a frame and a temple; characterized in that: The metal piece is embedded in the mounting groove on the frame, and the temple is connected to the metal piece through a pin shaft. The frame and the temple are made of a composite board, which includes a base material, a first connecting layer, a base color layer, a 3D printing layer, and an encapsulation layer arranged in the base material from inside to outside.

2. The smart glasses of claim 1, wherein: The base material is a board made of one of glass fiber, carbon fiber, alumina fiber, and plastic.

3. The smart glasses of claim 1, wherein: The first connecting layer is epoxy resin or acrylic resin, and its thickness is between 8-28µm.

4. The smart glasses of claim 1, wherein: The base color layer is epoxy resin or acrylic resin with color, and its thickness is between 15-35µm.

5. The smart glasses of claim 1, wherein: The 3D printing layer is epoxy resin or acrylic resin with texture, and its thickness is between 8-18µm.

6. The smart glasses of claim 1, wherein: The encapsulation layer is transparent epoxy resin or acrylic resin, and its thickness is between 20-45µm.

7. The smart glasses of claim 1, wherein: The temple includes a first temple shell and a second temple shell, which are fastened together, and the fastened position of the first temple shell and the second temple shell is sealed with hot melt adhesive.

8. The smart glasses of claim 1, wherein: The hollow structure is provided with a battery and a circuit board, the battery is connected to the circuit board, and a microphone on the circuit board faces a microphone hole on the temple.

9. The smart glasses of claim 1, wherein: The metal piece is embedded in the mounting groove on the frame, and the temple is connected to the metal piece through a pin shaft.

10. The smart glasses of claim 1, wherein: The frame is provided with a mirror holder, and the inner side of the mirror holder and the temple is provided with a non-slip layer made of silicone or rubber.

Citation Information

Patent Citations

  • Take plastic frame's metal glasses

    CN205880398U