Intelligent industrial inspection glasses
By designing intelligent industrial inspection glasses, which adopt a carbon fiber frame and a dual-camera structure, combined with spring slide guide rods and battery compartment reinforcement, the problems of limited functionality and inconvenient assembly and disassembly of existing industrial intelligent glasses are solved. This achieves efficient and intelligent industrial inspection and control, and improves the durability and safety of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- HUNAN JINKANG OPTOELECTRONICS CO LTD
- Filing Date
- 2026-03-06
- Publication Date
- 2026-06-09
AI Technical Summary
Existing industrial smart glasses have limited functionality, poor camera module compatibility, inconvenient assembly and disassembly, insufficient battery life and safety protection, and lack of AI large-scale model inspection and analysis capabilities, making it difficult to meet the needs of efficient and intelligent industrial inspection and control.
The frame is made of carbon fiber honeycomb hollow substrate, with a dual-camera design. The temples house the microphone module and battery compartment, and the battery module can be detached inside the battery compartment. The camera module can be quickly installed and removed by combining spring, slide and guide rod structure. The protective window and reinforcement frame design of the cover panel ensure the stability and safety of the equipment.
It improves the durability and inspection efficiency of the equipment, enhances its flexibility and ease of operation, extends its battery life, improves its safety and reliability, and adapts to changing industrial working environments.
Smart Images

Figure CN122172468A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of smart wearable devices, and in particular to a smart industrial inspection and control glasses. Background Technology
[0002] Smart glasses are industrial wearable devices that integrate optical and electronic components. They typically include a frame, temples, and camera modules. They can help employees collect on-site images and record work data in manufacturing scenarios, providing basic support for standardized operations. However, existing industrial smart glasses mostly focus on simple data recording and do not deeply integrate intelligent analysis capabilities, resulting in relatively limited functionality.
[0003] In high-end intelligent manufacturing, quality inspection relies on the experience of skilled employees, and efficiency is easily constrained by human factors. Furthermore, existing equipment has poor camera module compatibility, limited system functions, and inconvenient disassembly and assembly. The battery compartment has insufficient battery life and safety protection design, and it lacks the inspection and analysis functions of large AI models. As a result, it is difficult to meet the needs of efficient and intelligent industrial inspection and control, and there are obvious technical shortcomings. Summary of the Invention
[0004] The purpose of this application is to provide an intelligent industrial inspection and control glasses to solve the problems mentioned in the background art.
[0005] The intelligent industrial inspection glasses provided in this application adopt the following technical solution: including a frame body, with a set of expansion seats connected to the rear left and right ends of the frame body, a set of camera modules provided inside the two sets of expansion seats, and a set of temples hinged to the rear ends of the two sets of expansion seats.
[0006] Both sets of expansion seats have a set of mounting slots at their front ends. The rear ends of the mounting slots are connected to a set of contact panels by springs. The upper and lower surfaces of the mounting slots are provided with a set of slides. Both sets of expansion seats have a set of cover panels hinged to their outer sides. The front middle of the cover panels is provided with a protective window.
[0007] By adopting the above technical solution, the main body of the frame is connected to the expansion base, and the camera module is set in the expansion base, which can realize the industrial inspection and control function of dual cameras. The spring can make the contact panel extend and retract in the mounting groove through elasticity, and with the help of the slide rail, the camera module can be automatically unloaded, which is conducive to the disassembly of the camera module and improves the speed of disassembly. The cover panel can protect the camera module, and the protective window ensures that the field of view of the camera module is not obstructed, effectively improving the durability of the equipment and the inspection and control efficiency.
[0008] Preferably, the slide rail includes a fixed slide rail and a guide slide rail. A set of heart-shaped fixed slide rails are provided at the upper and lower rear ends of the mounting groove. A set of guide slide rails is connected to the front end of each fixed slide rail. The front end of each guide slide rail extends through to the front end of the mounting groove.
[0009] By adopting the above technical solution, the heart-shaped structure of the fixed slide can lock the camera module in a specific position to prevent accidental movement and improve the stability during installation. The guide slide can guide the camera module to move smoothly, realize quick fixing and disassembly, and effectively improve the flexibility and ease of operation of the camera module.
[0010] Preferably, the camera module has a set of sliding grooves at both the top and bottom rear ends, and a set of sliders is slidably connected in each of the sliding grooves. The sides of the upper and lower sets of sliders that are far apart from each other are connected to a set of guide rods corresponding to the sliding track. The camera module has no less than two sets of sliding grooves on both the left and right sides.
[0011] By adopting the above technical solution, the camera module is connected to the guide rod through the slide groove and the slider, so that the camera module can slide and be fixed in the slide, realizing quick fixing and disassembly. The slide groove can improve the movement stability of the camera module in the mounting groove, avoid tilting and misalignment, and ensure clear and reliable inspection images.
[0012] Preferably, each of the two sets of temples has a microphone module at its front end, the outer side of the middle of each of the two sets of temples is covered with an anti-slip sleeve, and the rear end of each of the two sets of temples has a battery compartment.
[0013] By adopting the above technical solutions, the temples are equipped with microphone modules to facilitate voice input and control, improving ease of operation. The anti-slip sleeves increase the friction between the temples and the head, preventing the inspection glasses from slipping. The battery compartment provides power to the inspection glasses, extending their service life and effectively improving practicality and reliability.
[0014] Preferably, each battery compartment is provided with a set of battery modules, and the rear ends of both sets of battery compartments are connected to the outside through openings. Each opening is connected to a set of cover panels, and each battery compartment is provided with a set of reinforcing frames on the outside. Each of the two sets of battery compartments is provided with no less than two sets of heat dissipation vents on the side that is far apart from each other.
[0015] By adopting the above technical solution, modular battery modules are installed in the battery compartment, which facilitates timely replacement of the battery modules, extends the battery life of the inspection glasses, and the opening and the second cover panel work together to achieve the replacement and protection of the battery modules. The reinforcement frame can further reinforce the second cover panel, which can prevent the second cover panel from being accidentally opened, forming a secondary protection effect. This can effectively ensure the normal use of the inspection glasses, and the heat dissipation vents promote heat dissipation, prevent the battery module from overheating, and effectively improve safety and equipment life.
[0016] Preferably, a set of guide grooves is provided on both the left and right sides of the opening, and a set of fixing grooves is provided at the bottom of both sets of guide grooves, with the bottom of the fixing grooves communicating with the outside.
[0017] By adopting the above technical solution, a guide groove and a fixing groove are opened in the opening. The guide groove can be used to guide the movement of the second cover panel to realize the opening opening or covering. The fixing groove provides a fixing point to ensure a tight connection between the second cover panel and the battery compartment, improve installation stability, and effectively prevent dust and moisture from entering the battery compartment.
[0018] Preferably, the top of the cover panel 2 is provided with a set of guide rods 2, the left and right ends of the guide rods 2 extend into the left and right sets of guide grooves respectively, the bottom of the left and right sides of the cover panel 2 are provided with fixing members corresponding to the fixing grooves, and the rear end of the cover panel 2 is provided with a set of flanges.
[0019] By adopting the above technical solution, the second cover panel can slide precisely within the opening through the cooperation of the second guide rod and the guide groove. The fixing component can be inserted into the fixing groove and combined with the fixing groove to enhance the installation effect of the second cover panel and the opening. The flange can cooperate with the reinforcement frame to provide additional support, prevent the second cover panel from being accidentally unfolded, and improve the overall safety.
[0020] Preferably, the reinforcing frame has an inverted "U" shaped structure, with its upper and lower ends connected to the upper and lower surfaces of the battery compartment, respectively.
[0021] By adopting the above technical solution, the reinforcement frame can rotate at the rear end of the battery compartment, which is beneficial for secondary reinforcement of the battery compartment.
[0022] Preferably, the inner rear end of the reinforcing frame is provided with a groove corresponding to the flange, and after the reinforcing frame is rotated to the rear end of the battery compartment, the flange is engaged in the groove.
[0023] By adopting the above technical solution, a dual locking mechanism can be formed, which can effectively prevent the second cover panel from loosening or falling off, and ensure the sealing and safety of the battery compartment.
[0024] Preferably, friction plates are provided on both the front and rear sides of the fixing groove, and they are in contact with the outer side of the fixing member.
[0025] By adopting the above technical solution, the fixing groove increases the friction between itself and the fixing component through the friction plate, so that the fixing component is more firmly fixed in the fixing groove, avoiding loosening due to vibration or impact, and effectively improving the installation reliability of the second cover panel.
[0026] In summary, this application includes at least one of the following beneficial technical effects:
[0027] 1. This application utilizes a frame body made of carbon fiber honeycomb hollow substrate, which effectively reduces the overall weight of the inspection glasses and improves wearing comfort. At the same time, the temples are covered with silicone anti-slip sleeves, which not only increase friction with the head to prevent the glasses from slipping during operation, but also relieve pressure from prolonged wear and reduce fatigue. In addition, the lightweight design of the frame body combined with the reasonable layout of the expansion mount ensures the balanced installation of the dual camera modules, allowing users to move flexibly in industrial inspection and control, avoiding neck strain caused by excessive equipment weight, thereby improving work efficiency and adaptability, and making it suitable for various high-intensity working environments.
[0028] 2. This application features two sets of camera modules installed within an expansion base. One set is a conventional miniature camera, and the other is an ultraviolet-sensing camera, which can meet different industrial inspection and control needs. The mounting slot is connected to the contact panel by a spring, and together with the slide rail and guide rod, the camera module can be quickly inserted and automatically locked in place. During disassembly, the spring force pushes the contact panel, causing the guide rod to move along the fixed slide rail, enabling easy material removal. The cover panel has a protective window, which protects the camera module from dust and impact damage while ensuring a clear field of view, thereby improving inspection and control accuracy and equipment reliability. It also facilitates quick replacement and maintenance of the camera module and adapts to changing working scenarios.
[0029] 3. This application features a battery compartment located at the rear of the temple, inside which a removable battery module is installed. The rear of the battery compartment is connected to the outside through an opening, facilitating quick replacement of the battery module to extend the device's battery life. The second cover panel inside the opening can control the opening and closing, and together with the inverted "U"-shaped reinforcement frame on the outside of the battery compartment, as well as the double locking of the flange at the rear of the second cover panel and the groove of the reinforcement frame, it effectively prevents the second cover panel from being accidentally unfolded. At the same time, the outside of the battery compartment is provided with no less than two sets of heat dissipation vents to ensure ventilation and heat dissipation of the battery module, effectively preventing the battery from overheating and improving the safety and battery life stability of the device. Attached Figure Description
[0030] Figure 1 This is a schematic diagram of the overall structure of this application;
[0031] Figure 2 This is a top view of the internal structure of the expansion seat in this application;
[0032] Figure 3 This is a top view of the slide structure of this application;
[0033] Figure 4 This is a schematic diagram of the camera module structure of this application;
[0034] Figure 5 This is a schematic diagram of the right-side internal structure of the battery compartment in this application;
[0035] Figure 6 This is a schematic diagram of the rear view structure of the opening in this application;
[0036] Figure 7 yes Figure 6 Enlarged structural diagram at point A in the middle;
[0037] Figure 8 This is a schematic diagram of the connection structure between the flange and the reinforcing frame in this application;
[0038] Explanation of reference numerals in the attached drawings: 1. Frame body; 2. Expansion mount; 3. Camera module; 4. Temple; 21. Mounting slot; 22. Spring; 23. Contact panel; 24. Slide rail; 25. Cover panel one; 26. Protective window; 241. Fixed slide rail; 242. Guide slide rail; 31. Slide groove one; 32. Slider; 33. Guide rod one; 34. Slide groove two; 41. Microphone module; 42. Anti-slip sleeve; 43. Battery compartment; 431. Battery module; 432. Opening; 433. Cover panel two; 434. Reinforcing frame; 435. Heat dissipation vent; 4321. Guide groove; 4322. Fixed groove; 4331. Guide rod two; 4332. Fixing component; 4333. Flange. Detailed Implementation
[0039] The following is in conjunction with the appendix Figure 1 - Appendix Figure 8 This application will be described in further detail below.
[0040] A smart industrial inspection and control glasses, referring to Figures 1-2The system includes a frame body 1, which is made of carbon fiber honeycomb hollow substrate, effectively reducing the weight of the inspection glasses and improving user comfort. An expansion mount 2 is fixedly connected to both the left and right rear ends of the frame body 1. A camera module 3 is installed inside each of the two expansion mounts 2. One of the camera modules 3 is a conventional miniature camera, and the other is an ultraviolet-sensing camera, adaptable to the inspection needs of different work positions. A temple 4 is rotatably connected to the rear end of each of the two expansion mounts 2 via a titanium alloy damping hinge. Furthermore, a mounting groove 21 is provided at the front end of each of the two expansion mounts 2, allowing the camera module 3 to be placed within the mounting groove 21. A contactor is connected to the rear end of each mounting groove 21 via a spring 22. The front end of the contact panel 23 can be connected to the rear end of the camera module 3, and the front middle of the contact panel 23 is also provided with a corresponding connection port for the camera module 3. After the camera module 3 is sent into the mounting slot 21, it can be automatically inserted, improving the flexibility of use. A set of slides 24 are provided on both the top and bottom of the mounting slot 21. An "L"-shaped cover panel 25 is hinged to the outside of the two sets of expansion seats 2, which can cover and protect the mounting slot 21 and press the camera module 3 into the mounting slot 21, so that its compression spring 22 is connected to the contact panel 23. The front middle of the cover panel 25 is provided with a protective window 26, which is opposite to the lens of the camera module 3, so as to protect the camera module 3 and avoid damage to the camera module 3.
[0041] Specifically, the main body 1 of the frame is connected to the expansion base 2, and the camera module 3 is set in the expansion base 2, which can realize the industrial inspection and control function of dual cameras. The spring 22 can make the contact panel 23 extend and retract within the mounting groove 21 through elastic force, and in conjunction with the slide 24, it can realize the automatic unloading of the camera module 3, which is conducive to the disassembly of the camera module 3 and improves the speed of disassembly. The cover panel 25 can protect the camera module 3, and the protective window 26 ensures that the field of view of the camera module 3 is not obstructed, effectively improving the durability of the equipment and the inspection and control efficiency.
[0042] Reference Figures 2-4 The slide 24 includes a fixed slide 241 and a guide slide 242. A set of heart-shaped fixed slides 241 are provided on the upper, lower and rear ends of the mounting groove 21. A set of guide slides 242 are connected to the front end of each fixed slide 241. The front end of each guide slide 242 extends through to the front end of the mounting groove 21. The guide rod 33 can enter the fixed slide 241 through the guide slide 242 and is locked in the fixed slide 241 by the pushing action of the spring 22 and the contact panel 23 on the camera module 3, thereby realizing the connection effect between the mounting groove 21 and the camera module 3.
[0043] Specifically, the heart-shaped structure of the fixed slide 241 can lock the camera module 3 in a specific position to prevent accidental movement and improve the stability during installation. The guide slide 242 can guide the camera module 3 to move smoothly, enabling quick fixing and disassembly, which can effectively improve the flexibility and ease of operation of the camera module 3.
[0044] Reference Figure 4 The camera module 3 has a set of horizontal sliding grooves 31 on both the top and bottom rear ends. A set of sliders 32 are slidably connected in each sliding groove 31. A set of guide rods 33 corresponding to the slide rail 24 are connected to the side of the upper and lower sets of sliders 32 that are far apart from each other. When the guide rods 33 move along the fixed slide rail 241, the sliders 32 can move left and right along the sliding grooves 31 and are locked in the fixed slide rail 241 with the guide rods 33. The camera module 3 has at least two sets of sliding grooves 34 on both the left and right sides. The mounting groove 21 has corresponding sliding strips on both the left and right sides. The sliding grooves 34 and the sliding strips are designed with thicker thickness, which not only facilitates the movement of the camera module 3 in the mounting groove 21, but also forms a foolproof design to avoid the reverse installation of the camera module 3.
[0045] Specifically, the camera module 3 is connected to the guide rod 33 via the slide groove 31 and the slider 32, allowing the camera module 3 to slide and be fixed in the slide 24, achieving quick fixing and disassembly. The slide groove 34 can improve the movement stability of the camera module 3 in the mounting groove 21, avoid tilting and misalignment, and ensure clear and reliable inspection images.
[0046] Reference Figure 1 Each of the two sets of temples 4 has a microphone module 41 at the front end facing each other. The wearer can control the camera module 3 to turn on or off via voice commands. The outer side of the middle of each set of temples 4 is covered with a silicone anti-slip sleeve 42, which can increase the friction with the wearer's head to prevent the glasses from falling off and improve wearing comfort. Each of the two sets of temples 4 has a battery compartment 43 at the rear end.
[0047] Specifically, the temple 4 is equipped with a microphone module 41 to facilitate voice input and control, improving ease of operation. The anti-slip sleeve 42 increases the friction between the temple 4 and the head, preventing the inspection glasses from slipping. The battery compartment 43 provides power to the inspection glasses, extending their service life and effectively improving practicality and reliability.
[0048] Reference Figure 1 and Figure 5Each battery compartment 43 is equipped with a set of battery modules 431. The rear ends of both battery compartments 43 are connected to the outside through openings 432, which facilitates the installation and removal of battery modules 431. Each opening 432 is connected to a set of cover panels 433, which can control the opening and closing of the openings 432. Each battery compartment 43 is equipped with a set of reinforcing frames 434 on the outside. The reinforcing frames 434 have an inverted "U" shape, with the upper and lower ends connected to the upper and lower surfaces of the battery compartment 43 respectively. The reinforcing frames 434 can rotate at the rear end of the battery compartment 43, which is beneficial for secondary reinforcement of the battery compartment 43. Each of the two battery compartments 43 has at least two sets of heat dissipation vents 435 on the side that is far apart from each other, which can ensure the ventilation and heat dissipation effect of the battery modules 431.
[0049] Specifically, the battery compartment 43 is equipped with a modular battery module 431, which facilitates timely replacement of the battery module 431 and extends the battery life of the inspection glasses. The opening 432 and the second cover panel 433 work together to achieve the replacement and protection of the battery module 431. The reinforcement frame 434 can further reinforce the second cover panel 433, preventing the second cover panel 433 from being accidentally opened, forming a secondary protection effect, which can effectively ensure the normal use of the inspection glasses. The heat dissipation vent 435 promotes heat dissipation, prevents the battery module 431 from overheating, and effectively improves safety and equipment life.
[0050] Reference Figures 6-8 The opening 432 has a set of guide grooves 4321 on both the left and right sides. Each set of guide grooves 4321 has a set of fixing grooves 4322 at its bottom end, with the bottom end of the fixing grooves 4322 communicating with the outside. The top of the cover panel 433 has a set of guide rods 4331, with both ends extending into the left and right guide grooves 4321 respectively. The cover panel 433 can move along the guide grooves 4321 via the guide rods 4331. The bottom ends of both the left and right sides of the cover panel 433 have fixing members 4332 corresponding to the fixing grooves 4322. Friction plates are provided on both the front and rear sides of the fixing grooves 4322, and these plates interact with the fixing members 4332. The outer contact groove 4322 can increase the friction between the fixing plate and the fixing member 4332, so that the fixing member 4332 is more firmly fixed in the fixing groove 4322, avoiding loosening due to vibration or impact, effectively improving the installation reliability of the second cover panel 433. The rear end of the second cover panel 433 is provided with a set of flanges 4333, and the rear end of the reinforcing frame 434 is provided with a groove corresponding to the flanges 4333. After the reinforcing frame 434 is rotated to the rear end of the battery compartment 43, the flanges 4333 are inserted into the grooves, which can form a double locking mechanism, effectively preventing the second cover panel 433 from loosening or falling off, and ensuring the sealing and safety of the battery compartment 43.
[0051] Specifically, a guide groove 4321 and a fixing groove 4322 are provided within the opening 432. The guide groove 4321 can be used to guide the movement of the second cover panel 433, enabling the opening 432 to be unfolded or covered. The fixing groove 4322 provides a fixing point to ensure a tight connection between the second cover panel 433 and the battery compartment 43, improving installation stability and effectively preventing dust and moisture from entering the battery compartment 43. The second cover panel 433, through the cooperation of the second guide rod 4331 and the guide groove 4321, achieves precise sliding within the opening 432. The fixing member 4332 can be inserted into the fixing groove 4322 and combined with the fixing groove 4322 to enhance the installation effect of the second cover panel 433 and the opening 432. The flange 4333 can cooperate with the reinforcing frame 434 to provide additional support, preventing the second cover panel 433 from being accidentally unfolded and improving overall safety.
[0052] This application provides a smart industrial inspection glasses. The frame body 1, made of carbon fiber honeycomb hollow substrate, effectively reduces the overall weight of the glasses, improving wearing comfort. Simultaneously, the temples 4 are covered with silicone anti-slip sleeves 42, increasing friction with the head to prevent slippage during operation and relieving pressure from prolonged wear, reducing fatigue. Furthermore, the lightweight design of the frame body 1, combined with the rational layout of the expansion base 2, ensures balanced installation of the dual camera modules 3, allowing users to move flexibly in industrial inspection, avoiding neck strain caused by excessive equipment weight, thereby improving work efficiency and adaptability, suitable for various high-intensity working environments. Two sets of camera modules 3 are installed within the expansion base 2, one a conventional miniature camera and the other an ultraviolet-sensing camera, meeting different industrial inspection needs. A spring 22 connects to the contact panel 23 within the mounting slot 21, and together with the slide 24 and guide rod 33, allows for quick insertion and automatic locking of the camera modules 3. During disassembly, the spring force of the spring 22 pushes the contact panel 23. The guide rod 33 moves along the fixed slide 241, enabling easy unloading. The cover panel 25 has a protective window 26, which protects the camera module 3 from dust and impact damage while ensuring a clear lens field of view, thereby improving inspection accuracy and equipment reliability. It also facilitates quick replacement and maintenance of the camera module 3, adapting to various working scenarios. The battery compartment 43 is located at the rear end of the temple 4, and the battery module 431 is installed inside the battery compartment 43. The rear end of the battery compartment 43 is connected to the outside through an opening 432, facilitating quick replacement. The battery module 431 extends the device's battery life. The second cover panel 433 inside the opening 432 can control the opening and closing of the opening 432. It works in conjunction with the inverted "U"-shaped reinforcement frame 434 on the outside of the battery compartment 43, and the double locking of the flange 4333 at the rear end of the second cover panel 433 and the groove of the reinforcement frame 434 to effectively prevent the second cover panel 433 from being accidentally opened. At the same time, the battery compartment 43 has at least two sets of heat dissipation vents 435 on the outside to ensure ventilation and heat dissipation of the battery module 431, effectively preventing the battery from overheating and improving the safety and battery life stability of the device.
Claims
1. A smart industrial inspection and control glasses, characterized in that, The frame includes a main body (1), and an expansion seat (2) is connected to both the left and right ends of the frame (1). A camera module (3) is provided inside the two expansion seats (2), and a temple (4) is hinged to the rear end of the two expansion seats (2). Both sets of expansion seats (2) have a set of mounting grooves (21) at their front ends, and the rear ends of the mounting grooves (21) are connected to a set of contact panels (23) by springs (22). The mounting grooves (21) have a set of slides (24) on their top and bottom surfaces, and the outer sides of both sets of expansion seats (2) are hinged with a set of cover panels (25), and the front middle of the cover panels (25) is provided with a protective window (26).
2. The intelligent industrial inspection and control glasses according to claim 1, characterized in that, The slide (24) includes a fixed slide (241) and a guide slide (242). The upper, lower and rear ends of the mounting groove (21) are provided with a set of heart-shaped fixed slides (241). The front end of each fixed slide (241) is connected to a set of guide slides (242). The front end of each guide slide (242) extends through to the front end of the mounting groove (21).
3. The intelligent industrial inspection and control glasses according to claim 2, characterized in that, The camera module (3) has a set of sliding grooves (31) on both the upper and lower surfaces and at the rear end. A set of sliders (32) are slidably connected in each of the sliding grooves (31). A set of guide rods (33) corresponding to the slide rails (24) are connected to the side of the upper and lower sets of sliders (32) that are far apart from each other. The camera module (3) has at least two sets of sliding grooves (34) on both the left and right sides.
4. The intelligent industrial inspection and control glasses according to claim 1, characterized in that, Both sets of temples (4) are provided with a microphone module (41) at the front end of each other, both sets of temples (4) are covered with a non-slip sleeve (42) at the middle outer side, and both sets of temples (4) are provided with a battery compartment (43) at the rear end.
5. The intelligent industrial inspection and control glasses according to claim 4, characterized in that, Each of the battery compartments (43) is equipped with a set of battery modules (431). The rear ends of both sets of battery compartments (43) are connected to the outside through openings (432). Each opening (432) is connected to a set of cover panels (433). Each of the battery compartments (43) is equipped with a set of reinforcing frames (434) on the outside. Each of the two sets of battery compartments (43) is equipped with at least two sets of heat dissipation vents (435) on the side of each other that is far apart from each other.
6. The intelligent industrial inspection and control glasses according to claim 5, characterized in that, The opening (432) has a set of guide grooves (4321) on both the left and right sides. The bottom of the two sets of guide grooves (4321) is provided with a set of fixing grooves (4322). The bottom of the fixing grooves (4322) is connected to the outside.
7. The intelligent industrial inspection and control glasses according to claim 6, characterized in that, The top of the cover panel 2 (433) is provided with a set of guide rods 2 (4331). The left and right ends of the guide rods 2 (4331) extend into the left and right guide grooves (4321) respectively. The bottom of the left and right sides of the cover panel 2 (433) are provided with fixing parts (4332) corresponding to the fixing grooves (4322). The rear end of the cover panel 2 (433) is provided with a set of flanges (4333).
8. The intelligent industrial inspection and control glasses according to claim 7, characterized in that, The reinforcing frame (434) has an inverted "U" shaped structure, with its upper and lower ends connected to the upper and lower surfaces of the battery compartment (43) respectively.
9. The intelligent industrial inspection and control glasses according to claim 8, characterized in that, The inner rear end of the reinforcing frame (434) is provided with a groove corresponding to the flange (4333). After the reinforcing frame (434) is rotated to the rear end of the battery compartment (43), the flange (4333) is inserted into the groove.
10. The intelligent industrial inspection and control glasses according to claim 7, characterized in that, Friction plates are provided on both the front and rear sides of the fixing groove (4322) and contact the outside of the fixing member (4332).