Science popularization glasses based on AR technology
By improving the design of fixed and movable face pads and the AR system, the issues of fit and light blocking of AR science glasses have been resolved, enhancing wearing comfort and interactive experience, and adapting to the personalized needs of different users.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG MEDICAL COLLEGE
- Filing Date
- 2025-04-03
- Publication Date
- 2026-04-24
AI Technical Summary
Traditional AR science glasses have poor fit to the human face, resulting in poor wearing comfort. Furthermore, in bright light environments, light can interfere with vision, affecting the interactive experience. Additionally, the universality and hygiene requirements of the device need to be considered.
Featuring a fixed and movable face pad design, the fixed face pad is made of air capsules or polyurethane elastomer, while the movable face pad is made of silicone. Combined with elastic bands and goggles, it enhances fit and light blocking. It is equipped with an AR system and goggles to improve the user experience.
It improves the wearing comfort and light-blocking properties of AR glasses, meets the personalized needs of different users, maintains hygiene, and enhances the interactive experience in bright light environments.
Smart Images

Figure CN224163865U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of AR glasses technology, and in particular to a science popularization glasses based on AR technology. Background Technology
[0002] AR science glasses capture real-world scenes using cameras and sensors, then overlay relevant science information onto the user's field of vision. They can also be equipped with voice recognition and translation functions to help users understand science content in different languages. Through vivid images, videos, and interactive content, AR technology can stimulate users' learning interest and make science knowledge more intuitive and understandable. Whether in museums, schools, or outdoors, AR glasses can provide users with a science experience anytime, anywhere. Therefore, AR science glasses can create an immersive learning environment for users.
[0003] Chinese Patent Publication No. CN207780375U discloses an AR glasses system, including a frame and a display mounted on the frame. The AR glasses also include auxiliary glasses. The frame has a receiving portion, and the auxiliary glasses are disposed within the receiving portion. The display is located on the outer side of the frame, and the receiving portion is located on the inner side of the frame. This invention provides glasses suitable for people who wear nearsighted or farsighted glasses, thereby enhancing the user experience.
[0004] The aforementioned technology allows users who already wear glasses to directly wear AR glasses. However, AR glasses have poor fit to the human face, resulting in poor wearing comfort. Furthermore, in bright light environments, the light can interfere with the user's vision, affecting the interactive experience. When AR glasses are used as educational glasses, the versatility of the device needs to be fully considered to meet the needs of different users for personalized experiences and hygiene requirements. Therefore, this utility model discloses an educational glasses based on AR technology to solve the above problems. Utility Model Content
[0005] The purpose of this invention is to provide a science popularization glasses based on AR technology to solve the problems mentioned in the background art, such as poor fit between traditional AR science popularization glasses and the human face, poor wearing comfort, and interference with the user's vision and interaction experience when used in strong light environments. Furthermore, the use of AR glasses as science popularization glasses requires full consideration of the device's versatility to meet the needs of different users for personalized experience and hygiene requirements.
[0006] To achieve the above objectives, the present invention provides the following solution to the above technical problems: A science popularization glasses based on AR technology, comprising a shell, an elastic band, an AR system, protective lenses, a fixed face pad, and a movable face pad. The shell has a receiving space on the side facing the human face, and a fixed face pad is provided on the outer edge of the receiving space. Two movable face pads are symmetrically provided on the outer side of the fixed face pad.
[0007] The movable face pad is made of silicone, and the fixed face pad is connected to the movable face pad with Velcro. The adjacent sides of the two movable face pads are provided with grooves for accommodating the temples of the eyeglasses.
[0008] As a further embodiment of this invention, the fixed surface pad is either an air capsule or a polyurethane elastomer.
[0009] As a further embodiment of this utility model, the AR system includes a PCB board and a display, speaker, microphone, lithium battery, button, camera and charging port electrically connected to the PCB board. The camera, PCB board, lithium battery and display are fixed in sequence. The button and charging port are installed in the upper middle part of the display. A speaker is installed at each of the upper two ends of the display. A microphone is installed on the lower side of the display.
[0010] As a further embodiment of this utility model, the outer shell includes a front shell and a rear shell, the edges of the front shell and the rear shell are fastened together, a display is clamped and fixed between the front shell and the rear shell, and an accommodating space is provided on the rear shell in the area directly opposite the display.
[0011] As a further embodiment of this utility model, the rear shell is provided with a sound hole unit at the position corresponding to the speaker and microphone, and the rear shell is provided with a rear mounting groove at the position corresponding to the button and charging port.
[0012] As a further embodiment of this utility model, a front mounting groove is provided at the position corresponding to the camera on the front shell.
[0013] As a further embodiment of this utility model, the protective lens is adhered to the working surface of the display, and the protective lens is either an anti-blue light lens or an anti-fog lens.
[0014] As a further embodiment of this utility model, both ends of the elastic band are clamped and fixed between the front shell and the rear shell.
[0015] Compared with the prior art, the beneficial effects of this utility model are:
[0016] This utility model discloses a science popularization glasses based on AR technology. The movable face pad is detachable, allowing users to easily replace it as needed. It can be adapted to different users' face shapes and can also be replaced with a new face pad after prolonged use to maintain hygiene. When the user wears the glasses, the large capacity allows the user to wear their existing glasses without removing them. It eliminates the need for professional customization for nearsighted or farsighted users, making it highly versatile and suitable for widespread application. Furthermore, the temples are embedded in the grooves of the movable face pad, which reduces light entering the glasses from the sides. Compared with ordinary AR glasses, it significantly improves light blocking, especially in strong light environments, better protecting the user's eyes and avoiding light interference. This allows users to see the content displayed by the AR system more clearly, enhancing the interactive experience. Attached Figure Description
[0017] The present invention will be further described below with reference to the accompanying drawings and embodiments:
[0018] Figure 1 This is a front view of a science popularization glasses based on AR technology according to this utility model;
[0019] Figure 2 This is a rear view of a science popularization glasses based on AR technology according to this utility model;
[0020] Figure 3 This is a structural breakdown diagram of the AR system in a science popularization glasses based on AR technology according to this utility model;
[0021] Figure 4 This is a structural diagram of the front shell of a science glasses based on AR technology according to this utility model.
[0022] The attached diagram lists the components represented by each number as follows:
[0023] 1. Outer shell; 2. Elastic band; 3. AR system; 4. Protective lens; 5. Fixed face pad; 6. Removable face pad; 11. Front shell; 111. Front mounting slot; 12. Rear shell; 121. Sound unit; 122. Rear mounting slot; 31. PCB board; 32. Display; 33. Speaker; 34. Microphone; 35. Lithium battery; 36. Button; 37. Camera; 38. Charging port; 61. Recess. Detailed Implementation
[0024] The present invention will be further described below with reference to the embodiments.
[0025] Please see Figure 1-4This utility model provides a science popularization glasses based on AR technology, including a shell 1, an elastic band 2, an AR system 3, protective lenses 4, a fixed face pad 5 and a movable face pad 6. The shell 1 has a receiving space on the side facing the human face, and the fixed face pad 5 is provided on the outer edge of the receiving space. The fixed face pad 5 is either an air capsule or a polyurethane elastomer.
[0026] Specifically, the air capsule is an inflatable pad filled with air, giving it excellent softness and elasticity. This material conforms well to the user's facial contours, providing a comfortable wearing experience. Polyurethane elastomer is a highly elastic material that can well recover its shape and is not easily deformed, allowing the fixed face pad 5 to maintain good performance even after long-term use, reducing the frequency of replacement. Its high elasticity also allows the fixed face pad 5 to conform to the user's face.
[0027] Furthermore, two movable face pads 6 are symmetrically provided on the outer side of the fixed face pad 5. The movable face pads 6 are made of silicone. The fixed face pad 5 and the movable face pads 6 are connected by Velcro. The adjacent sides of the two movable face pads 6 are provided with grooves 61 for accommodating the temples of the eyeglasses.
[0028] Specifically, Velcro is a reusable connection method that allows users to easily install or remove the movable face pad 6. Users can choose the appropriate movable face pad 6 according to their face shape and needs, and adjust it with Velcro to ensure the best wearing experience. New users can easily replace the movable face pad 6 to maintain hygiene. The movable face pad 6 is available in different sizes and styles, and different sizes of the movable face pad 6 are suitable for all age groups. The movable face pad 6 is divided into grooved 61 and non-grooved 61 models to suit people with and without myopia.
[0029] Specifically, the movable face pad 6 has an overall "C" shape structure, with the openings of the two movable face pads 6 facing each other. The movable face pad 6 is wider in the middle and gradually narrows towards both ends, which can distribute facial pressure and make it comfortable to wear. The movable face pad 6 made of silicone provides excellent wearing comfort. The soft material can conform well to the user's facial contours, reducing discomfort caused by wearing it for a long time. In addition, the movable face pad 6 made of silicone is easy to clean and disinfect, which is conducive to maintaining personal hygiene.
[0030] Furthermore, the AR system 3 includes a PCB board 31 and a display 32, a speaker 33, a microphone 34, a lithium battery 35, a button 36, a camera 37, and a charging port 38 electrically connected to the PCB board 31. The camera 37, the PCB board 31, the lithium battery 35, and the display 32 are fixed in sequence. The button 36 and the charging port 38 are installed in the upper middle part of the display 32. A speaker 33 is installed at each of the upper two ends of the display 32. A microphone 34 is installed on the lower side of the display 32.
[0031] Specifically, PCB board 31 is the core control unit of the entire AR system 3. All other components are electrically connected and transmit data through it. It is worth noting that PCB board 31 can also be equipped with a wireless transceiver module or a Bluetooth module to realize network control and input functions. Among them, display 32 is used to display AR content, such as popular science information, images, videos, etc.; speaker 33 is used to output sound, such as voice prompts and explanations; microphone 34 is used to capture the user's voice to realize voice interaction function; lithium battery 35 provides power support for the entire AR system 3; button 36 is used for user operation, such as activating AR function, switching modes, etc.; camera 37 is used to capture images and videos in the real scene and provide input data for AR system 3; charging port 38 is used to charge lithium battery 35.
[0032] Specifically, the microphone 34 at the bottom of the science glasses can more easily collect user commands. There is one speaker 33 on each side inside the science glasses to avoid mutual interference. The two speakers 33 can achieve a stereo effect, allowing users to feel sounds from different directions. In AR interaction, the direction and intensity of sound can provide important information.
[0033] Furthermore, the outer shell 1 includes a front shell 11 and a rear shell 12, which are fastened together at their edges. A display 32 is clamped and fixed between the front shell 11 and the rear shell 12, and an accommodating space is provided on the rear shell 12 in the area directly opposite the display 32.
[0034] Specifically, the front shell 11 and the rear shell 12 can be fastened together without the need for additional tools or glue. Simply align the front shell 11 and the rear shell 12 and fasten them together. This greatly simplifies the assembly process. It not only has a certain degree of sealing, which helps protect the internal electronic components, but also makes it easy to disassemble, which is convenient for users or maintenance personnel to inspect, repair or replace the internal components.
[0035] Specifically, the storage space provides ample room so that users do not feel pressure or discomfort when wearing the science glasses, improving wearing comfort. The design of the storage space can also reduce light entering the glasses from the sides, especially in bright light environments, which can better protect the user's eyes, avoid light interference, and enhance the interactive experience.
[0036] Furthermore, both ends of the elastic band 2 are clamped and fixed between the front shell 11 and the rear shell 12;
[0037] Specifically, the elastic band 2 has a certain degree of elasticity and can automatically adjust the tightness according to the user's head size to meet the wearing needs of different users and provide a personalized wearing experience. The two ends of the elastic band 2 are clamped and fixed, making installation convenient. The part of the elastic band 2 between the front shell 11 and the back shell 12 is provided with a thicker and wider strap, so that the elastic band 2 will not easily loosen or fall off during use.
[0038] Furthermore, a sound hole unit 121 is provided at the position corresponding to the speaker 33 and the microphone 34 on the back cover 12, and a rear mounting groove 122 is provided at the position corresponding to the button 36 and the charging port 38 on the back cover 12.
[0039] Specifically, the design of the sound hole unit 121 ensures the sound transmission effect of the speaker 33 and the microphone 34, allowing users to clearly hear voice prompts and popular science explanations. At the same time, users can also conduct voice interaction through the microphone 34, which enhances the interactive experience. The design of the rear mounting slot 122 ensures the convenience of installing and operating the button 36 and the charging port 38. Users can easily press the button 36 to operate the device and conveniently insert and unplug the charging cable, which improves the usability of the product.
[0040] Furthermore, a front mounting groove 111 is provided on the front shell 11 at the position corresponding to the camera 37;
[0041] Specifically, by setting a front mounting slot 111 on the front shell 11, the camera 37 can be firmly installed in the designated position of the glasses, ensuring that it will not loosen or shift during use, and also facilitating the acquisition of image and video information by the camera 37. The PCB board 31 can analyze the scene content in real time and overlay relevant popular science information on the display 32.
[0042] Furthermore, the protective lens 4 is adhered to the working surface of the display 32, and the protective lens 4 is either a blue light blocking lens or an anti-fog lens;
[0043] Specifically, the protective lens 4 can effectively protect the display 32 from external damage. If the user mainly uses the science glasses indoors, choosing a model with anti-blue light lenses can effectively filter the blue light emitted by the display 32, reduce the damage of blue light to the eyes, and protect the user's vision. If the user often uses the science glasses outdoors or in humid environments, choosing a model with anti-fog lenses can ensure that the lenses will not fog up in environments with large temperature differences or humidity.
[0044] Working principle:
[0045] In use, the user first puts the science glasses on their face, embedding the temples into the grooves 61 on the movable face pad 6, and then straps the elastic band 2 to their head. This operation ensures wearing comfort and significantly improves light blocking. After that, pressing the button 36 activates the AR system 3. The microphone 34 collects the user's voice commands, the camera 37 collects the drug packaging information, and the PCB board 31 controls the display 32 to show the drug science animation based on the user's voice commands and drug packaging information. The PCB board 31 also controls the speaker 33 to issue voice prompts and contraindication warnings, improving medication safety.
Claims
1. A science popularization glasses based on AR technology, characterized in that, It includes a shell (1), an elastic band (2), an AR system (3), goggles (4), a fixed face pad (5) and a movable face pad (6). The shell (1) has a receiving space on the side facing the human face, and the outer edge of the receiving space is provided with a fixed face pad (5). The outer side of the fixed face pad (5) is symmetrically provided with two movable face pads (6). The movable face pad (6) is made of silicone, the fixed face pad (5) is connected to the movable face pad (6) with Velcro, and the adjacent sides of the two movable face pads (6) are provided with grooves (61) for accommodating the temples of the glasses. The AR system (3) includes a PCB board (31) and a display (32), a speaker (33), a microphone (34), a lithium battery (35), a button (36), a camera (37), and a charging port (38) electrically connected to the PCB board (31). The camera (37), PCB board (31), lithium battery (35), and display (32) are fixed in sequence. The button (36) and charging port (38) are installed in the middle of the upper side of the display (32). A speaker (33) is installed at each of the two ends of the upper side of the display (32). A microphone (34) is installed on the lower side of the display (32).
2. The science popularization glasses based on AR technology according to claim 1, characterized in that: The fixed face pad (5) is either an air capsule or a polyurethane elastomer.
3. The science popularization glasses based on AR technology according to claim 1, characterized in that: The outer shell (1) includes a front shell (11) and a rear shell (12), which are fastened together at their edges. A display (32) is clamped and fixed between the front shell (11) and the rear shell (12), and a receiving space is provided on the rear shell (12) in the area directly opposite the display (32).
4. The science popularization glasses based on AR technology according to claim 3, characterized in that: The rear shell (12) is provided with a sound hole unit (121) at the position corresponding to the speaker (33) and microphone (34), and the rear shell (12) is provided with a rear mounting groove (122) at the position corresponding to the button (36) and charging port (38).
5. The science popularization glasses based on AR technology according to claim 4, characterized in that: The front housing (11) is provided with a front mounting groove (111) at the position corresponding to the camera (37).
6. The science popularization glasses based on AR technology according to claim 1, characterized in that: The protective lens (4) is attached to the working surface of the display (32), and the protective lens (4) is either a blue light blocking lens or an anti-fog lens.
7. The science popularization glasses based on AR technology according to claim 1, characterized in that: Both ends of the elastic band (2) are clamped and fixed between the front shell (11) and the rear shell (12).
Citation Information
Patent Citations
AR glasses
CN207780375U