Optical glasses capable of intelligently adjusting lengths of glasses legs

Through intelligent adjustment of temple length and deformation plate design, the problem of temple inability to adjust and ear pain is solved, and the flexible adaptation and comfortable wearing of temples is achieved.

CN120507898AActive Publication Date: 2025-08-19WENZHOU SHANGXUAN OPTICS CO LTD
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Patent Information

Application Number
CN202511005880.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-22
Publication Date
2025-08-19
Estimated Expiration
2045-07-22

AI Technical Summary

Technical Problem

The temples of existing glasses cannot be adjusted, resulting in poor facial adaptability for different groups of people, and the increased weight of the device squeezed the ears caused pain, affecting the user experience.

Method used

An optical glasses that intelligently adjust the length of temples are designed, and the temple spacing is adjusted through the adjustment plate and the drive module, and the deformation plate bend is controlled by using the pressure sensor and the drive module to reduce the squeezing on the ears.

Benefits of technology

It realizes flexible adjustment of temple length, adapts to facial conditions in different groups, reduces ear pain, and provides a comfortable wearing experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of glasses, in particular to optical glasses capable of intelligently adjusting the length of glasses legs, which comprise a first glasses leg and a second glasses leg, an adjusting plate which is fixedly connected with the first glasses leg and is used for adjusting the distance between the first glasses leg and the second glasses leg is arranged between the first glasses leg and the second glasses leg; the outer side of the adjusting plate is slidably connected with a second glasses leg; a deformation plate is embedded below one end, far away from the first glasses leg, of each second glasses leg, and one end of each deformation plate is fixedly connected with a second connecting part; a driving module for adjusting the bending degree of the deformation plate is also mounted in the second glasses leg; when the intelligent optical glasses are used, the fixing pin is taken down, the distance between the first glasses leg and the second glasses leg and the length of the glasses leg are adjusted to adapt to the face conditions of different people, the fixing pin is matched with the threaded hole of the adjusting plate in the second glasses leg to be used for fixing the adjusting plate so that people can use the glasses conveniently, and the distance adjusting position is located at the position close to the intelligent optical glasses; the position is not in contact with skin and hair, so that the use experience of the glasses is not influenced.
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Description

Technical Field

[0001] The present invention relates to the technical field of glasses, and in particular to optical glasses with intelligently adjustable temple lengths. Background Art

[0002] Currently, there are many kinds of glasses on the market, which are generally fixed and cannot be adjusted according to the facial conditions of different people. Therefore, the comfort is poor. In addition, compared with traditional glasses, the weight of smart optical glasses has increased. The increased device weight is generally set inside the temples. When in use, when the temples contact the ears for a long time and squeeze the top of the ears, it is easy to cause pain in the ear contact area, affecting the user experience. Therefore, to address the above problems, a pair of optical glasses with intelligent adjustable temple length are proposed. Summary of the Invention

[0003] The purpose of the present invention is to provide an optical pair of glasses with intelligently adjustable temple lengths to solve the problems raised in the above-mentioned background technology.

[0004] To achieve the above object, the present invention provides the following technical solutions: As an optional solution of the optical glasses with intelligently adjustable temple lengths described in the present invention, wherein: the optical glasses with intelligently adjustable temple lengths include a first temple and a second temple; An adjustment plate fixedly connected to the first temple leg and used for adjusting the distance between the first temple leg and the second temple leg is provided between the first temple leg and the second temple leg; The outer side of the adjustment plate is slidably connected with a second temple; A deformation plate is embedded below one end of the second temple away from the first temple, one end of the deformation plate is fixedly connected to the second connecting portion, and the outer side of the second connecting portion is fixedly connected to the second temple; A driving module for adjusting the curvature of the deformation plate is also installed inside the second temple.

[0005] As an optional solution for the optical glasses with intelligent adjustment of temple length described in the present invention, two groups of symmetrically arranged optical lenses are embedded in the interior of the intelligent optical glasses on the other side of the first temple.

[0006] As an optional solution for the optical glasses with intelligent adjustment of the length of the temples described in the present invention, one side of the adjustment plate is provided with multiple evenly distributed threaded holes, and one side of the second temple is provided with a fixing pin, which passes through the second temple and is connected to the threaded hole provided on the surface of the adjustment plate.

[0007] There are many kinds of glasses on the market at present, which are generally fixed and cannot be adjusted according to the facial conditions of different groups of people, so the comfort is poor. In addition, the weight of smart optical glasses is increased compared to traditional glasses. The increased device weight is generally set inside the temples. When in use, when the temples contact the ears for a long time and squeeze above the ears, it is easy to cause pain in the ear contact area, affecting the user experience. By removing the fixing pin and adjusting the distance between the first temple and the second temple, the length of the temple can be adjusted to make it suitable for the facial conditions of different groups of people, and the fixing pin cooperates with the threaded hole of the adjustment plate inside the second temple to fix the adjustment plate, which is convenient for people to use, and the position for adjusting the distance is located close to the smart optical glasses, which does not contact the skin and hair and will not affect the user experience of the glasses.

[0008] As an optional solution for the optical glasses with intelligent adjustment of the temple length described in the present invention, a supporting soft layer for contacting the back of the ear is installed at the bottom of the deformable plate, and second pressure sensors are evenly distributed and arranged side by side inside the supporting soft layer, and one side of the second pressure sensor is fixedly connected to the deformable plate.

[0009] As an optional solution for the optical glasses with intelligent adjustment of temple length described in the present invention, the supporting soft layer is made of rubber block material.

[0010] As an optional solution for the optical glasses with intelligent adjustment of temple length described in the present invention, the bottom of the second temple is also equipped with multiple first pressure sensors evenly distributed and arranged side by side for monitoring purposes, which are in contact with the skin.

[0011] When the second temple of the smart optical glasses is in contact with the ear for a long time, it is easy to squeeze the ear and cause pain. After the first pressure sensor presses the ear for a long time, the control unit inside the second temple controls the driving module to drive the deformation plate to bend. The supporting soft layer on one side of the deformation plate contacts the back of the ear and provides support. At this time, the second temple can be separated from the top of the ear to reduce the squeezing on the top of the ear. Alternating between the two methods can avoid ear pain and provide a comfortable wearing environment.

[0012] As an optional solution for the optical glasses with intelligent adjustment of the length of the temples described in the present invention, the driving module includes an outward-expanding frame with a raised arrangement, a micro motor is installed inside the outward-expanding frame, a micro gear is fixedly connected to the end of the main shaft of the micro motor, a gear plate is meshed with the outer side of the micro gear, a bendable elastic plate is fixedly connected to one side of the gear plate, and the other end of the elastic plate is fixedly connected to a first connecting part, the first connecting part is embedded in the deformation plate and is fixedly connected to the deformation plate.

[0013] As an optional solution for the optical glasses with intelligent adjustment of the temple length described in the present invention, a guide groove is provided above the gear plate, and a limit block fixedly connected to the second temple is provided inside the guide groove.

[0014] As an optional solution for the optical glasses with intelligent adjustment of temple length described in the present invention, the deformation plate is made of a superelastic memory titanium alloy plate.

[0015] When the supporting soft layer bends, the control unit controls the micro motor to start, the micro motor drives the micro gear to rotate, the micro gear drives the gear plate to move, the gear plate drives the elastic plate on one side to move, and the elastic plate drives the first connecting part to push the supporting soft layer. The elastic plate bends, which can ensure that the supporting soft layer bends and contacts the back of the ear, providing a certain support force to relieve the pressure above the ear.

[0016] Compared with the prior art, the present invention has the following beneficial effects: By removing the fixing pin and adjusting the distance between the first and second temples, the length of the temples can be adjusted to suit the facial conditions of different people. The fixing pin cooperates with the threaded hole of the adjustment plate inside the second temple to fix the adjustment plate, making it convenient for people to use. The position for adjusting the distance is located close to the smart optical glasses, where it does not come into contact with the skin and hair, and does not affect the wearing experience of the glasses. When the second temple of the smart optical glasses contacts the ear for a long time, it is easy to squeeze the ear and cause pain. However, when the first pressure sensor is set to press the ear for a long time, the control unit inside the second temple controls the driving module to drive the deformation plate to bend. The supporting soft layer on one side of the deformation plate contacts the back of the ear and provides support. At this time, the second temple can be separated from the upper part of the ear, reducing the pressure on the upper part of the ear. Alternating between the two methods can avoid ear pain and provide a comfortable wearing environment. When the supporting soft layer bends, the control unit controls the micro motor to start, the micro motor drives the micro gear to rotate, the micro gear drives the gear plate to move, the gear plate drives the elastic plate on one side to move, and the elastic plate drives the first connecting part to push the supporting soft layer. The elastic plate bends, which can ensure that the supporting soft layer bends and contacts the back of the ear, providing a certain support force to relieve the pressure above the ear. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 A schematic diagram of the overall structure of optical glasses with intelligent adjustment of temple length; Figure 2 A schematic diagram of the structure of an optical glasses temple with intelligently adjustable temple length; Figure 3 This is a structural diagram of an optical glasses driving module that can intelligently adjust the length of temples; Figure 4 This is a schematic diagram of the structure of an optical glasses adjustment plate that can intelligently adjust the length of the temples; Figure 5 Optical glasses with intelligent adjustment of temple length Figure 3 Schematic diagram of the structure at point A.

[0018] In the figure: 1. smart optical glasses; 2. optical lens; 3. first temple; 4. adjustment plate; 5. fixing pin; 6. second temple; 7. outward-expanding frame; 8. micro motor; 9. micro gear; 10. gear plate; 11. guide groove; 12. limit block; 13. elastic plate; 14. first connecting part; 15. deformation plate; 16. second connecting part; 17. supporting soft layer; 18. first pressure sensor; 19. second pressure sensor. DETAILED DESCRIPTION

[0019] Example 1: Please refer to Figure 1 、 Figure 2 and Figure 4 , the present invention provides a technical solution: Optical glasses with intelligently adjustable temple lengths, comprising a first temple 3 and a second temple 6; An adjustment plate 4 is provided between the first temple 3 and the second temple 6 and is fixedly connected to the first temple 3 and is used to adjust the distance between the first temple 3 and the second temple 6; The outer side of the adjustment plate 4 is slidably connected to the second temple 6; A deformation plate 15 is embedded below one end of the second temple 6 away from the first temple 3. One end of the deformation plate 15 is fixedly connected to a second connecting portion 16. The outer side of the second connecting portion 16 is fixedly connected to the second temple 6. A driving module for adjusting the curvature of the deformation plate 15 is also installed inside the second temple 6 .

[0020] Two groups of symmetrically arranged optical lenses 2 are embedded in the interior of the smart optical glasses 1 on the other side of the first temple 3 .

[0021] A plurality of evenly distributed threaded holes are provided on one side of the adjustment plate 4, and a fixing pin 5 is provided on one side of the second temple 6. The fixing pin 5 passes through the second temple 6 and is connected to the threaded hole provided on the surface of the adjustment plate 4.

[0022] At present, there are many kinds of glasses on the market, which are generally fixed and cannot be adjusted according to the facial conditions of different people. Therefore, the comfort is poor. In addition, compared with traditional glasses, the weight of smart optical glasses has increased. The increased weight of the components is generally set inside the temples. When in use, when the temples touch the ears for a long time and squeeze the top of the ears, it is easy to cause pain in the ear contact area, affecting the user's experience. By removing the fixing pin 5 and adjusting the distance between the first temple 3 and the second temple 6, the length of the temple can be adjusted to suit the facial conditions of different people. The fixing pin 5 is matched with the threaded hole at the corresponding position of the adjustment plate 4 inside the second temple 6, which can be used to fix the adjustment plate 4, making it convenient for people to use. The position for adjusting the distance is located near the smart optical glasses 1, which does not contact the skin and hair, and will not affect the user experience of the glasses. The specific operations are as follows; When the smart optical glasses 1 are in use, the bottom of the second temple 6 is placed above the ear. If the smart optical glasses 1 are worn for a long time, the weight of the second temple 6 of the smart optical glasses 1 will increase compared to the traditional temples, which will increase the pressure on the top of the ear and easily cause pain in the contact area. The internal control unit of the smart optical glasses 1 can control the driving module to drive the deformation plate 15 to bend and fit the curvature of the back of the ear to achieve large-area contact with the skin behind the ear. By increasing the contact area, the pressure is shared, and at the same time, the bottom of the second temple 6 can be separated from the top of the ear or the pressure on the top of the ear can be reduced, thereby avoiding pain in the ear caused by long-term pressure.

[0023] Example 2: This example is an improvement on Example 1. Figure 2 and Figure 3 Specifically, a supporting soft layer 17 for contacting the back of the ear is installed at the bottom of the deformation plate 15, and evenly distributed second pressure sensors 19 arranged side by side are installed inside the supporting soft layer 17. One side of the second pressure sensor 19 is fixedly connected to the deformation plate 15.

[0024] The supporting soft layer 17 is made of rubber block material.

[0025] The bottom of the second temple 6 is also equipped with a plurality of first pressure sensors 18 evenly distributed and arranged side by side for monitoring purposes in contact with the skin.

[0026] The deformation plate 15 is made of a super elastic memory titanium alloy plate.

[0027] When the second temple 6 of the smart optical glasses 1 is in contact with the ear for a long time, it is easy to squeeze the ear and cause pain. When the first pressure sensor 18 is set to press the ear for a long time, the control unit inside the second temple 6 controls the driving module to drive the deformation plate 15 to bend. The supporting soft layer 17 on one side of the deformation plate 15 contacts the back of the ear and plays a supporting role. At this time, the second temple 6 can be separated from the upper part of the ear, reducing the squeezing of the upper part of the ear. Alternating between the two methods can avoid ear pain and provide a comfortable wearing environment. The specific operations are as follows: After the deformable plate 15 is bent under the action of the driving module, the supporting soft layer 17 on one side of the deformable plate 15 directly contacts the skin behind the ear to provide support, and the second pressure sensor 19 is squeezed by the supporting soft layer 17. For a set time, when the second pressure sensor 19 is continuously compressed for 1 hour, the built-in control unit of the smart optical glasses 1 controls the driving module to drive the deformable plate 15 to reset. At this time, the first pressure sensor 18 under the second temple 6 is squeezed and activated. For a set time, when the first pressure sensor 18 is continuously compressed for 1 hour, the built-in control unit of the smart optical glasses 1 controls the driving module to drive the deformable plate 15 to bend and deform. Such alternating use can ensure comfortable wearing and avoid local pain caused by long-term compression, which affects the experience. The supporting soft layer 17 is made of silicone, which is relatively soft and more comfortable to contact with the skin. The second pressure sensor 19 is arranged inside but does not penetrate through it. Therefore, when the supporting soft layer 17 is squeezed, the second pressure sensor 19 can detect the pressure. When the deformation plate 15 is not in use, the deformation plate 15 and the supporting soft layer 17 are located inside the second temple 6 without protruding parts, and the overall appearance is beautiful. The deformation plate 15 can be made of a super-elastic memory titanium alloy plate, which has the ability to return to normal after bending.

[0028] Example 3: This example is an improvement on Example 2. Figure 3 and Figure 5 Specifically, the driving module includes an outward expansion frame 7 with a raised configuration, a micro motor 8 is installed inside the outward expansion frame 7, a micro gear 9 is fixedly connected to the end of the main shaft of the micro motor 8, a gear plate 10 is meshed with the outer side of the micro gear 9, a bendable elastic plate 13 is fixedly connected to one side of the gear plate 10, and a first connecting portion 14 is fixedly connected to the other end of the elastic plate 13, and the first connecting portion 14 is embedded in the deformation plate 15 and is fixedly connected to the deformation plate 15.

[0029] A guide groove 11 is provided above the gear plate 10 , and a limit block 12 fixedly connected to the second temple 6 is provided inside the guide groove 11 .

[0030] When the supporting soft layer 17 bends, the control unit controls the micro motor 8 to start, the micro motor 8 drives the micro gear 9 to rotate, the micro gear 9 drives the gear plate 10 to move, the gear plate 10 drives the elastic plate 13 on one side to move, and the elastic plate 13 drives the first connecting part 14 to push the supporting soft layer 17. The elastic plate 13 bends, which can ensure that the supporting soft layer 17 bends and contacts the back of the ear, providing a certain support force and relieving the pressure above the ear; The specific operations are as follows: The outer side of the outward-expanding frame 7 is inclined and fixed to the second temple 6. This arrangement can prevent the corners of the smart optical glasses 1 from contacting other objects and causing scratches when in use. The inclined arrangement is not easy to be deformed and damaged by severe contact with external objects. The gear plate 10 moves under the drive of the micro motor 8 and the micro gear 9, and a strip-shaped guide groove 11 is provided above the gear plate 10. The guide groove 11 cooperates with the limit block 12 to ensure the stable movement of the gear plate 10. The first connecting portion 14 on one side of the elastic plate 13 is inserted into the interior of the deformable plate 15 and fixedly connected thereto. At this time, the first connecting portion 14 and the deformable plate 15 are unlikely to separate, ensuring the normal use of the elastic plate 13 and the deformable plate 15. The interior of the second temple 6 is located outside the elastic plate 13 and is arranged in a cavity, providing bending space for the elastic plate 13 and pushing the deformation plate 15 to bend. The elastic plate 13 can also be made of a super-elastic memory titanium alloy plate. The first connecting portion 14 on one side of the deformation plate 15 and the elastic plate 13 can be thickened to ensure that the deformation plate 15 is not easy to break.

[0031] This article uses specific examples to illustrate the principles and implementation methods of the present invention. The above examples are only used to help understand the method of the present invention and its core ideas. The above is only a preferred implementation method of the present invention. It should be pointed out that due to the limitations of textual expression, there are objectively infinite specific structures. For ordinary technicians in this technical field, without departing from the principles of the present invention, they can make several improvements, modifications or changes, and can also combine the above technical features in an appropriate manner; these improvements, modifications, changes or combinations, or the direct application of the inventive concept and technical solution to other occasions without improvement, should be regarded as the scope of protection of the present invention.

Claims

1. A pair of optical glasses with intelligent temple length adjustment, characterized by: It comprises a first temple (3) and a second temple (6); An adjustment plate (4) is provided between the first temple (3) and the second temple (6) and is fixedly connected to the first temple (3) and is used to adjust the distance between the first temple (3) and the second temple (6); The outer side of the adjustment plate (4) is slidably connected to a second temple (6); A deformation plate (15) is embedded below one end of the second temple (6) away from the first temple (3); one end of the deformation plate (15) is fixedly connected to a second connecting portion (16); and the outer side of the second connecting portion (16) is fixedly connected to the second temple (6); A driving module for adjusting the curvature of the deformation plate (15) is also installed inside the second temple (6).

2. The optical glasses with intelligent temple length adjustment according to claim 1, characterized in that: Two groups of symmetrically arranged optical lenses (2) are embedded in the interior of the smart optical glasses (1) on the other side of the first temple (3).

3. The optical glasses with intelligent temple length adjustment according to claim 1, characterized in that: A plurality of evenly distributed threaded holes are provided on one side of the adjustment plate (4), and a fixing pin (5) is provided on one side of the second temple (6). The fixing pin (5) passes through the second temple (6) and is connected to the threaded hole provided on the surface of the adjustment plate (4).

4. The optical glasses with intelligent temple length adjustment according to claim 1, characterized in that: A supporting soft layer (17) for contacting the back of the ear is installed at the bottom of the deformation plate (15), and evenly distributed second pressure sensors (19) arranged side by side are installed inside the supporting soft layer (17), and one side of the second pressure sensor (19) is fixedly connected to the deformation plate (15).

5. The optical glasses with intelligent temple length adjustment according to claim 4, characterized in that: The supporting soft layer (17) is made of rubber block material.

6. The optical glasses with intelligent temple length adjustment according to claim 1, characterized in that: The bottom of the second temple (6) is also equipped with a plurality of first pressure sensors (18) evenly distributed and arranged side by side for monitoring purposes, which are in contact with the skin.

7. The optical glasses with intelligent temple length adjustment according to claim 1, characterized in that: The drive module comprises an outer expansion frame (7) arranged in a raised manner, a micro motor (8) is further installed inside the outer expansion frame (7), a micro gear (9) is fixedly connected to the end of the main shaft of the micro motor (8), a gear plate (10) is meshed with the outer side of the micro gear (9), a bendable elastic plate (13) is fixedly connected to one side of the gear plate (10), and a first connecting portion (14) is fixedly connected to the other end of the elastic plate (13), and the first connecting portion (14) is embedded in the deformation plate (15) and is fixedly connected to the deformation plate (15).

8. The optical glasses with intelligent temple length adjustment according to claim 7, characterized in that: A guide groove (11) is provided above the gear plate (10), and a limit block (12) fixedly connected to the second temple (6) is provided inside the guide groove (11).

9. The optical glasses with intelligent temple length adjustment according to claim 7, characterized in that: The deformation plate (15) is made of a superelastic memory titanium alloy plate.

Citation Information

Patent Citations

  • Intelligent glasses

    CN215006110U

  • Glasses

    CN218037570U

  • Titanium glasses

    CN220983658U