AR intelligent glasses convenient for battery replacement
Through the combination of refrigeration plate, fan and moisture absorbing plate, combined with the thermal expansion and contraction characteristics of the thermal conduction plate and filler, the problems of AR smart glasses are solved and hardware overheating are improved, comfort, efficiency and protection are improved, and battery replacement is simplified.
Patent Information
- Application Number
- CN202510810115.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-17
- Publication Date
- 2025-08-01
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing AR smart glasses are exposed to the user when wearing them, causing discomfort in the air conditioner, and continuous heat dissipation leads to overheating or overcooling of the hardware, affecting the comfort and efficiency of the equipment, and thermal deformation of the heat sink affects the protection of the equipment.
The cooling plate, fan and moisture absorbing plate are used to transport air conditioners through the gas conduit and air conduit pipes. The cooling direction is adjusted by using the thermal expansion and contraction characteristics of the thermal conduction plate and filler. Combined with the air shielding component to prevent dust and moisture from entering, the battery tank plate is connected by snap-on connection for easy replacement.
Improves user wear comfort, prevents hardware from overheating or overcooling, extends equipment life, enhances protection, and simplifies the battery replacement process.
Smart Images

Figure CN120405964A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of AR smart glasses, and particularly to an AR smart glass that is convenient for replacing the battery. Background Art
[0002] AR smart glasses are devices that use advanced technologies such as optical display, spatial positioning, and human-computer interaction to superimpose digital information in the form of images, text, or three-dimensional models onto the real environment, thus bringing an immersive visual experience to users. They are widely used in fields such as medical care, industry, education, entertainment, and navigation.
[0003] For example, the patent with the publication number CN119758598A in the prior art relates to an AR smart glass that is convenient for replacing the battery. The AR smart glass includes a frame body. Through the design of a heat dissipation component, when the frame body is operating, the light-absorbing and breathable cloth can further reduce the introduction of external light into the interior of the frame body. The guiding fan is started so that the gas outside the frame body can be introduced into the interior of the frame body through the through groove, passes through multiple groups of first guiding plates and contacts the conduction block. The refrigeration sheet is started. The end of the refrigeration sheet close to the conduction block is the refrigeration end. The conduction block is cooled through the refrigeration end. The introduced gas contacts the conduction block and the contact groove to perform heat exchange, generating low-temperature gas, which contacts the heat generated by the operation of the internal hardware of the frame body to dissipate the heat. At the same time, the low-temperature gas will be guided by the guiding fan and introduced into the inner side of the frame body through the ventilation groove, contacting the user's face, increasing the air circulation between the frame body and the user's face, and preventing the generation of water mist, which affects the use of the frame body.
[0004] However, the above device still has the following problems; First, when the user wears the device, the eyes are often directly opposite the frame. Therefore, when the cold air enters the wearing position, although it will cool the wearing position, it will also make the cold air contact the user's skin and eyes. Although when the temperature is relatively high, the contact between the cold air and the user's skin and eyes will improve the user's comfort, when the temperature of the wearing position decreases, if the cold air continues to contact the user's skin and eyes, it will cause dryness and discomfort in the user's eyes, thereby affecting the comfort of the device; Second, although the cold air can dissipate the heat of the hardware inside the frame body, when the cold air continues to dissipate heat for a certain period of time, the temperature of the hardware will be in a relatively low state, which will slow down the processing speed of the hardware, thereby increasing the response time of the hardware. Seriously, it will even cause the device to fail to work, thereby affecting the working efficiency of the device; III. The thermoelectric cooler not only has a cooling end, but also a heating end on the other side. Although the heat at the heating end is led out of the connection frame by the heat sink in contact with it, after the heat sink transfers the heat, it itself will also be in a relatively hot state. When the temperature of the heat sink reaches a certain level, it will not only cause thermal deformation of the heat sink, but also cause thermal deformation of the frame around the connection frame by the heat sink, thus affecting the overall protection of the device.
[0005] In view of the above technical deficiencies, a pair of AR smart glasses facilitating battery replacement is proposed to solve the above problems. Summary of the Invention
[0006] The purpose of the present invention is to solve the problems in the background technology, and a pair of AR smart glasses facilitating battery replacement is proposed.
[0007] To achieve the above purpose, the present invention adopts the following technical solution: A pair of AR smart glasses facilitating battery replacement, including AR glasses and two air transmission components. Head support straps are fixedly connected to both sides and the top of the AR glasses. A cooling component is fixedly connected to the rear end of the AR glasses. A light-blocking and breathable ring is fixedly connected to the rear end of the cooling component. The tops of the air transmission components are respectively screwed and fixed to the AR glasses and the cooling component. The cooling component includes a frame plate. An air transmission cavity, a device cavity and a cooling cavity are formed inside the frame plate. A storage battery is fixedly connected to the bottom of the device cavity. A thermoelectric cooler is fixedly connected to the center of the bottom of the air transmission cavity. A first filter plate is slidably clamped on one side of the air transmission cavity close to the center of the frame plate. A fan is fixedly connected to one side of the air transmission cavity away from the center of the frame plate. A moisture absorption plate is fixedly connected to the side of the fan close to the center of the frame plate. A second filter plate is fixedly connected to one side of the cooling cavity close to the center of the frame plate. A first heat conduction plate is fixedly connected to the side of the cooling cavity away from the sealing plug. A buckle groove is formed at the front end of the cooling cavity. When performing heat dissipation and cooling, the thermoelectric cooler is started, and its cooling end cools the gas introduced by the fan, thereby improving the cooling speed of the gas for the device. The moisture absorption plate can absorb the moisture in the gas introduced by the first filter plate, thus ensuring that the gas will not damage the device and improving the protection performance.
[0008] In the above AR smart glasses that are convenient for replacing the battery, the air transmission component includes an air transmission module. A first ventilation groove is opened at the rear end of the side of the air transmission module away from the center of the AR glasses. One side of the first ventilation groove away from the center of the AR glasses communicates with the air delivery cavity. A first receiving plate groove is opened at the rear end of the first ventilation groove, and a second receiving plate groove is opened at the front end of the first ventilation groove. A first limiting plate is fixedly connected to the front wall of the second receiving plate groove. A second ventilation groove is opened at the front end of the second receiving plate groove. A third receiving plate groove is opened on one side of the second ventilation groove, and a fourth receiving plate groove is opened on the other side of the second ventilation groove. A second limiting plate is fixedly connected to the side wall of the fourth receiving plate groove. A third ventilation groove is opened on the side of the fourth receiving plate groove away from the third receiving plate groove.
[0009] In the above AR smart glasses that are convenient for replacing the battery, a first operation groove and a second operation groove are opened inside the air transmission module. Second springs are fixedly connected to both the front end and the rear end of the first operation groove. The second springs are fixedly connected to a first moving plate near the center of the first operation groove. The first moving plate is fixedly connected to a first elastic bag near the center of the first operation groove. The inside of the first elastic bag is filled with a first filler. A second heat conduction plate is fixedly connected to the inside of the first elastic bag. The top of the second heat conduction plate penetrates through the air transmission module and extends to the inside of the frame plate. A first air transmission plate is fixedly connected to the bottom of one first moving plate, and a second air transmission plate is fixedly connected to the bottom of the other first moving plate. Third springs are fixedly connected to both sides of the second operation groove. The third springs are fixedly connected to a second moving plate on the side near the center of the second operation groove. The second moving plate is fixedly connected to a second elastic bag on the side near the center of the second operation groove. The inside of the second elastic bag is filled with a second filler. A third heat conduction plate is fixedly connected to the inside of the second elastic bag. The top of the third heat conduction plate penetrates through the air transmission module and extends to the inside of the AR glasses. A third air transmission plate is fixedly connected to the bottom of one second moving plate, and a fourth air transmission plate is fixedly connected to the bottom of the other second moving plate.
[0010] In the above AR smart glasses that are convenient for replacing the battery, an air passing groove is opened inside the AR glasses. One side of the air passing groove near the center of the frame plate communicates with the third ventilation groove. A first air duct is fixedly connected to the top of the air passing groove. The outer diameter of the first air duct is equal to the inner diameter of the buckle groove.
[0011] In the above AR smart glasses that are convenient for replacing the battery, a second air duct is fixedly connected to the top of the first ventilation groove. The top of the second air duct penetrates through the air transmission module and extends to the inside of the frame plate. A third air duct is fixedly connected to the top of the second ventilation groove. The top of the third air duct penetrates through the air transmission module and extends to the inside of the AR glasses.
[0012] In the above AR smart glasses facilitating battery replacement, the first air transfer plate is located inside the first plate receiving groove, the second air transfer plate is located inside the second plate receiving groove. A first L-shaped groove is formed inside the second air transfer plate, and the inner surface of the first L-shaped groove is adapted to the outer surface of the first limiting plate. The third air transfer plate is located inside the third plate receiving groove, the fourth air transfer plate is located inside the fourth plate receiving groove. A second L-shaped groove is formed inside the fourth air transfer plate, and the inner surface of the second L-shaped groove is adapted to the outer surface of the second limiting plate.
[0013] In the above AR smart glasses facilitating battery replacement, a battery slot plate is fixedly connected to the top of the AR glasses. A cover plate is hermetically connected to the top of the battery slot plate. Two sides of the bottom of the cover plate are fixedly connected with buckle plates, and the cover plate is snap-connected to the AR glasses through the buckle plates.
[0014] In the above AR smart glasses facilitating battery replacement, air outlet grooves are formed on both sides of the AR glasses. Moving grooves are formed at the front and rear ends of the air outlet grooves, and a gas shielding component is fixedly connected inside the moving grooves.
[0015] In the above AR smart glasses facilitating battery replacement, the gas shielding component includes a limiting rod and a first spring. Both sides of the limiting rod are connected to the moving groove. One side of the first spring away from the center of the AR glasses is connected to the moving groove, and one side of the first spring close to the center of the AR glasses is fixedly connected with a gas passing plate. A sealing plug is fixedly connected to the side of the gas passing plate away from the first spring. The sealing plug penetrates through the AR glasses and extends to its interior. The inner diameter of the slot openings on both sides of the gas passing plate is equal to the outer diameter of the limiting rod.
[0016] Compared with the existing technology, the advantages of the AR smart glasses facilitating battery replacement are as follows: 1. In the AR smart glasses facilitating battery replacement, through the combined use of a thermoelectric cooler, a fan, and a moisture absorption plate, during the operation of the device, cold air can be delivered to the first ventilation groove, the second plate receiving groove, the second ventilation groove, the fourth plate receiving groove, the third ventilation groove, and the air passing groove. Then, in cooperation with the second air ducts, the third air ducts, and the first air ducts installed at the first ventilation groove, the second ventilation groove, and the air passing groove, the device can deliver cold air to the wearing position, the interior of the AR glasses, and the cooling chamber, and then can cool the first heat conducting plates at the wearing position, the interior of the AR glasses, and the cooling chamber. Among them, the cooling work at the wearing position can improve the comfort of the user after wearing the device. The cooling work inside the AR glasses can prevent the devices inside the AR glasses from being damaged due to overheating. The cooling work of the first heat conducting plates can ensure the heat dissipation efficiency of the first heat conducting plates for the heating ends of the thermoelectric coolers, and further can prevent the overheated first heat conducting plates and thermoelectric coolers from damaging the device housing, thereby improving the service life of the device.
[0017] 2. The AR smart glasses with easy battery replacement can transmit the temperature of the wearing position and the temperature inside the AR glasses to the first filler and the second filler through the second heat conduction plate in contact with the wearing position space and the third heat conduction plate in contact with the space inside the AR glasses. Then, the first filler and the second filler, which can quickly expand and contract with heat, drive the first elastic bag and the second elastic bag to deform, thereby allowing the first and second air conduction plates connected to the first movable plate and the third and fourth air conduction plates connected to the second movable plate to move. The movement of the first and second air conduction plates and the third and fourth air conduction plates can change the temperature of the air entering The direction of cold air delivery at the first ventilation slot allows the device to perform specified cooling work according to the wearing position and the conditions inside the AR glasses, thereby ensuring the cooling efficiency of the device. Moreover, because the first filler and the second filler drive the first and second air transfer plates, as well as the third and fourth air transfer plates, to move through rapid thermal expansion and contraction, once the temperature at the wearing position and the inside of the AR glasses drops, the device will no longer perform cooling work on the wearing position and the inside of the AR glasses, thereby preventing damage to the user's eyes caused by continuous cooling and preventing the equipment inside the AR glasses from being overcooled and reduced in power, thereby improving the protection of the device.
[0018] 3. The AR smart glasses that are easy to replace batteries can prevent external dust and liquid from entering the interior of the AR glasses and causing damage to the equipment inside the AR glasses through the setting of the air shield component. It can also discharge the hot air inside the AR glasses in conjunction with the internal pressure of the AR glasses when the device cools the inside of the AR glasses, thereby improving the cooling efficiency of the AR glasses.
[0019] 4. The AR smart glasses that are easy to replace batteries have a buckle plate connected by a snap, so that users can remove the cover by simply pulling it, which allows users to quickly replace the battery, thereby increasing the speed of battery replacement in the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a front view schematic diagram of the overall structure of the present invention; Figure 2 It is a schematic diagram of the reverse side of the overall structure of the present invention; Figure 3 It is a schematic bottom view of the overall structure of the present invention; Figure 4 This is a front cross-sectional view of the battery slot plate structure of the present invention; Figure 5 This is a front cross-sectional view of the cooling assembly structure of the present invention; Figure 6 This invention Figure 5 A magnified view of the structure in the middle; Figure 7 is a side sectional view of the first air duct structure of the present invention; Figure 8 is a top sectional view of the air outlet groove structure of the present invention; Figure 9 is the present invention Figure 8 enlarged view of structure B therein; Figure 10 is a top sectional view of the first heat conducting plate structure of the present invention; Figure 11 is the present invention Figure 10 enlarged view of structure C therein; Figure 12 is a top sectional view of the first air transfer plate structure of the present invention; Figure 13 is the present invention Figure 12 enlarged view of structure D therein; Figure 14 is a top sectional view of the first elastic bag structure of the present invention; Figure 15 is the present invention Figure 14 enlarged view of structure E therein; Figure 16 is a top sectional view of the first air vent groove structure of the present invention.
[0021] In the figure: 1. AR glasses; 2. Head support band; 3. Cooling component; 4. Light-blocking and breathable ring; 5. Air transfer component; 6. Air outlet groove; 7. Activity groove; 8. Air-blocking component; 9. Battery slot plate; 10. Cover plate; 11. Insert buckle plate; 12. Limiting rod; 13. First spring; 14. Air passage plate; 15. Sealing plug; 16. Frame plate; 17. Air delivery cavity; 18. Equipment cavity; 19. Cooling cavity; 20. Storage battery; 21. Refrigeration sheet; 22. First filter plate; 23. Fan; 24. Moisture absorption plate; 25. Second filter plate; 26. First heat conducting plate; 27. Buckle groove; 28. Air passage groove; 29. First air duct; 30. Air transfer module; 31. First air vent groove; 32. First plate receiving groove; 33. Second plate receiving groove; 34. First limiting plate; 35. Second air vent groove; 36. Third plate receiving groove; 37. Fourth plate receiving groove; 38. Second limiting plate; 39. Third air vent groove; 40. First operation groove; 41. Second operation groove; 42. Second spring; 43. First moving plate; 44. First elastic bag; 45. First filler; 46. Second heat conducting plate; 47. First air transfer plate; 48. Second air transfer plate; 49. Third spring; 50. Second moving plate; 51. Second elastic bag; 52. Second filler; 53. Third heat conducting plate; 54. Third air transfer plate; 55. Fourth air transfer plate; 56. Second air duct; 57. Third air duct. Detailed implementation manners
[0022] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.
[0023] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention.
[0024] Refer to Figures 1 - 11 , an AR smart glasses convenient for replacing the battery, including an AR glasses 1 and two air transmission components 5. Head support belts 2 are fixedly connected to both sides and the top of the AR glasses 1. A cooling component 3 is fixedly connected to the rear end of the AR glasses 1. A light-blocking and breathable ring 4 is fixedly connected to the rear end of the cooling component 3. The tops of the air transmission components 5 are respectively screwed and fixed to the AR glasses 1 and the cooling component 3; the cooling component 3 includes a frame plate 16. An air transmission cavity 17, a device cavity 18, and a cooling cavity 19 are opened inside the frame plate 16. A storage battery 20 is fixedly connected to the bottom of the device cavity 18. A refrigeration sheet 21 is fixedly connected to the center of the bottom of the air transmission cavity 17. A first filter plate 22 is slidably clamped on one side of the air transmission cavity 17 close to the center of the frame plate 16. A fan 23 is fixedly connected to the side of the air transmission cavity 17 far from the center of the frame plate 16. A moisture absorption plate 24 is fixedly connected to the side of the fan 23 close to the center of the frame plate 16. The operation of the moisture absorption plate 24 can introduce the external natural wind into the inside of the air transmission cavity 17, and then blow it to the air transmission component 5. Then, in cooperation with the operation of the refrigeration sheet 21, the natural wind can be cooled. A second filter plate 25 is fixedly connected to the side of the cooling cavity 19 close to the center of the frame plate 16. A first heat conduction plate 26 is fixedly connected to the side of the cooling cavity 19 far from the sealing plug 15. A buckle groove 27 is opened at the front end of the cooling cavity 19.
[0025] It should be noted that the second filter plate 25 is in contact with the surface of the top of the refrigeration sheet 21, so that the second filter plate 25 can cool the heating end of the refrigeration sheet 21 through heat exchange. The setting of the first filter plate 22 can absorb the moisture of the natural wind blown by the moisture absorption plate 24, thereby preventing the moisture of the natural wind from affecting the equipment.
[0026] Refer to Figures 12 - 16, the air transmission component 5 includes an air transmission module 30. A first ventilation groove 31 is provided at the rear end of the side of the air transmission module 30 away from the center of the AR glasses 1. One side of the first ventilation groove 31 away from the center of the AR glasses 1 communicates with the air delivery cavity 17. The first ventilation groove 31 communicating with the air delivery cavity 17 enables the air transmission module 30 to receive the natural cold air blown by the second filter plate 25 and then transmit it to the second plate receiving groove 33, the second ventilation groove 35, the fourth plate receiving groove 37, and the third ventilation groove 39. A first plate receiving groove 32 is provided at the rear end of the first ventilation groove 31, and a second plate receiving groove 33 is provided at the front end of the first ventilation groove 31. A first limiting plate 34 is fixedly connected to the front wall of the second plate receiving groove 33. A second ventilation groove 35 is provided at the front end of the second plate receiving groove 33. A third plate receiving groove 36 is provided on one side of the second ventilation groove 35, and a fourth plate receiving groove 37 is provided on the other side of the second ventilation groove 35. A second limiting plate 38 is fixedly connected to the side wall of the fourth plate receiving groove 37. A third ventilation groove 39 is provided on the side of the fourth plate receiving groove 37 away from the third plate receiving groove 36. A second air duct 56 is fixedly connected to the top of the first ventilation groove 31. The top of the second air duct 56 penetrates through the air transmission module 30 and extends to the inside of the frame plate 16. A third air duct 57 is fixedly connected to the top of the second ventilation groove 35. The top of the third air duct 57 penetrates through the air transmission module 30 and extends to the inside of the AR glasses 1. An air passing groove 28 is provided inside the AR glasses 1. One side of the air passing groove 28 close to the center of the frame plate 16 communicates with the third ventilation groove 39. A first air duct 29 is fixedly connected to the top of the air passing groove 28. The outer diameter of the first air duct 29 is equal to the inner diameter of the buckle groove 27.
[0027] It should be noted that the cold air entering the first ventilation groove 31 will enter the inside of the frame plate 16 through the second air duct 56, and then the wearing position can be cooled by the cold air. The cold air entering the second ventilation groove 35 will enter the inside of the AR glasses 1 through the third air duct 57, and then the devices inside the AR glasses 1 can be cooled by the cold air. The cold air entering the third ventilation groove 39 will enter the first air duct 29 through the air passing groove 28, and then can enter the buckle groove 27, so as to cool the second filter plate 25.
[0028] The inside of the air transmission module 30 is provided with a first operation groove 40 and a second operation groove 41. Both the front end and the rear end of the first operation groove 40 are fixedly connected with a second spring 42. The second spring 42 is fixedly connected with a first moving plate 43 near the center of the first operation groove 40. The first moving plate 43 is fixedly connected with a first elastic bag 44 near the center of the first operation groove 40. The inside of the first elastic bag 44 is filled with a first filler 45. The inside of the first elastic bag 44 is fixedly connected with a second heat conducting plate 46. The top of the second heat conducting plate 46 penetrates through the air transmission module 30 and extends to the inside of the frame plate 16. The bottom of one first moving plate 43 is fixedly connected with a first air transmission plate 47. The first air transmission plate 47 is located inside the first plate receiving groove 32. The bottom of the other first moving plate 43 is fixedly connected with a second air transmission plate 48. The second air transmission plate 48 is located inside the second plate receiving groove 33. A first L-shaped groove is formed inside the second air transmission plate 48. The inner surface of the first L-shaped groove is adapted to the outer surface of the first limiting plate 34; Both sides of the second operation groove 41 are fixedly connected with a third spring 49. The third spring 49 is fixedly connected with a second moving plate 50 on the side close to the center of the second operation groove 41. The second moving plate 50 is fixedly connected with a second elastic bag 51 on the side close to the center of the second operation groove 41. The inside of the second elastic bag 51 is filled with a second filler 52. The inside of the second elastic bag 51 is fixedly connected with a third heat conducting plate 53. The top of the third heat conducting plate 53 penetrates through the air transmission module 30 and extends to the inside of the AR glasses 1. The bottom of one second moving plate 50 is fixedly connected with a third air transmission plate 54. The third air transmission plate 54 is located inside the third plate receiving groove 36. The bottom of the other second moving plate 50 is fixedly connected with a fourth air transmission plate 55. The fourth air transmission plate 55 is located inside the fourth plate receiving groove 37. A second L-shaped groove is formed inside the fourth air transmission plate 55. The inner surface of the second L-shaped groove is adapted to the outer surface of the second limiting plate 38.
[0029] It should be noted that both the first filler 45 and the second filler 52 are made of polystyrene foam, which makes the first filler 45 and the second filler 52 have a relatively high rate of thermal expansion and contraction reaction. When the second heat conducting plate 46 or the third heat conducting plate 53 transfers the heat at the wearing position or inside the AR glasses 1 to the first filler 45 and the second filler 52, the first filler 45 and the second filler 52 will perform the work of thermal expansion or cooling contraction.
[0030] It should be noted that when the first filler 45 thermally expands to a certain extent, the second spring 42 will deform, and then the first elastic bag 44 will drive the first moving plate 43 to move, and then the first air transfer plate 47 and the second air transfer plate 48 will completely move into the first receiving plate groove 32 and the second receiving plate groove 33. When the cold shrinkage force is large, the first air transfer plate 47 and the second air transfer plate 48 will enter the first air vent groove 31. When the second filler 52 thermally expands to a certain extent, the third spring 49 will deform, and then the third spring 49 will drive the second moving plate 50 to move, and then the third air transfer plate 54 and the fourth air transfer plate 55 will completely enter the third receiving plate groove 36 and the fourth receiving plate groove 37. When the shrinkage force is large, the third air transfer plate 54 and the fourth air transfer plate 55 will enter the second air vent groove 35 Refer to Figures 8 - 9 , air outlet grooves 6 are provided on both sides of the AR glasses 1, movable grooves 7 are provided at the front and rear ends of the air outlet grooves 6, a gas shielding component 8 is fixedly connected inside the movable grooves 7, the gas shielding component 8 includes a limiting rod 12 and a first spring 13, both sides of the limiting rod 12 are connected to the movable grooves 7, one side of the first spring 13 away from the center of the AR glasses 1 is connected to the movable grooves 7, one side of the first spring 13 close to the center of the AR glasses 1 is fixedly connected with a gas passing plate 14, a sealing plug !5 is fixedly connected to the side of the gas passing plate 14 away from the first spring 13, the sealing plug 15 penetrates through the AR glasses 1 and extends into its interior, the inner diameter of the slot openings on both sides of the gas passing plate 14 is equal to the outer diameter of the limiting rod 12, and the sealing plug 15 extending into the interior of the AR glasses 1 enables the sealing plug 15 to seal the AR glasses 1, and then prevents liquid or dust outside the air outlet grooves 6 from entering the interior of the AR glasses 1. Among them, the setting of the first spring 13 enables the first spring 13 to drive the gas passing plate 14 and the sealing plug 15 to move when the internal pressure value of the AR glasses 1 is greater than its deformation value, and then part of the gas inside the AR glasses 1 can be discharged. Because the density of hot air is lower than that of cold air, the gas discharged by this method is often the hotter gas inside the AR glasses 1.
[0031] Refer to Figure 4 , a battery slot plate 9 is fixedly connected to the top of the AR glasses 1. The setting of the battery slot plate 9 can store the battery for supplying power required by the AR glasses 1. The top of the battery slot plate 9 is hermetically connected with a cover plate 10, and both sides of the bottom of the cover plate 10 are fixedly connected with buckle plates 11. The cover plate 10 is snap-connected to the AR glasses 1 through the buckle plates 11.
[0032] The following makes a detailed explanation of the specific working principle and usage method of the present invention: During the installation of the device, only need to insert the cooling component 3 into the AR glasses 1 through the first air duct 29, and then cooperate with bolts by the air transfer component 5, then the AR glasses 1 and the cooling component 3 can be fixed.
[0033] Before using the device, the user needs to wear the device through the head support strap 2 first, so that the user's eyes are facing the AR glasses 1. Among them, the light-blocking and breathable ring 4 needs to be in contact with the user's face.
[0034] During the use of the device, the second filter plate 25 needs to be operated so that the second filter plate 25 can introduce the gas outside the device to the first ventilation groove 31. Among them, when the wearing position of the device is relatively hot, the second heat conducting plate 46 will transfer heat to the first filler 45, thereby causing the first filler 45 to expand. Then, the first filler 45 uses its expansion force to drive the first elastic bag 44 to deform, and then generates a thrust on the second spring 42 to make it contract. As a result, the first moving plate 43 moves the first gas transmission plate 47 and the second gas transmission plate 48 into the first receiving plate groove 32 and the second receiving plate groove 33. Because the rear end of the second gas transmission plate 48 is a plate body, the gas blown by the second filter plate 25 will only pass through the first ventilation groove 31 and then enter the second air duct 56 on the first ventilation groove 31, thereby enabling the gas to cool the wearing position. When the temperature of the wearing position drops to a certain value, the second heat conducting plate 46 will cool the first filler 45, causing the first filler 45 to contract. Subsequently, the force generated by the first elastic bag 44 on the second spring 42 will be reduced. Then, through the reaction force of the second spring 42, the first moving plate 43 is driven to reset the first gas transmission plate 47 and the second gas transmission plate 48. At this time, due to the opening of the first L-shaped groove, the gas transmitted by the second filter plate 25 to the first ventilation groove 31 will be led to the second receiving plate groove 33 and the second ventilation groove 35. When the inside of the AR glasses 1 is relatively hot, the third heat conducting plate 53 will transfer heat to the second filler 52, causing the second filler 52 to expand. Then, the second filler 52 uses its expansion force to drive the second elastic bag 51 to deform, and then generates a thrust on the third spring 49 to make it contract. As a result, the second moving plate 50 moves the third gas transmission plate 54 and the fourth gas transmission plate 55 into the third receiving plate groove 36 and the fourth receiving plate groove 37. Because the side of the fourth gas transmission plate 55 away from the gas passing groove 28 is a plate body, the gas blown by the second filter plate 25 will only pass through the first ventilation groove 31, the second receiving plate groove 33 and the second ventilation groove 35, and then enter the third air duct 57 on the second ventilation groove 35, thereby enabling the gas to cool the inside of the AR glasses 1. When the temperature inside the AR glasses 1 drops to a certain value, the third heat conducting plate 53 will cool the second filler 52, causing the second filler 52 to contract. Subsequently, the force generated by the second elastic bag 51 on the third spring 49 will be reduced. Then, through the reaction force of the third spring 49, the second moving plate 50 is driven to reset the third gas transmission plate 54 and the fourth gas transmission plate 55. At this time, due to the opening of the second L-shaped groove, the gas transmitted by the second filter plate 25 to the first ventilation groove 31, the second receiving plate groove 33 and the second ventilation groove 35 will be led to the fourth receiving plate groove 37, the third ventilation groove 39 and the gas passing groove 28, and then the gas is led to the cooling chamber 19 through the first air duct 29, thereby enabling the first heat conducting plate 26 to be cooled.
[0035] It should be noted that during the operation of the second filter plate 25, the thermoelectric cooler 21 needs to be operated so that the cooling end of the thermoelectric cooler 21 can cool the gas transmitted by the second filter plate 25. Then, the dehumidification work can be carried out on the cooled gas through the first filter plate 22. Thus, while ensuring the cooling efficiency, the influence of moisture on the equipment can be prevented. Among them, the heating end during the operation of the thermoelectric cooler 21 will be thermally conducted by the first heat conducting plate 26.
[0036] It should be noted that during the process of blowing gas into the AR glasses 1, when too much gas is blown into the AR glasses 1, the pressure inside the AR glasses 1 will increase. Subsequently, the gas inside the AR glasses 1 will generate a thrust on the sealing plug 15. When the thrust is greater than the deformation value of the first spring 13, the gas passing plate 14 will drive the sealing plug 15 to move, so that the hot air at the top of the inner cavity of the AR glasses 1 can be discharged, thereby ensuring that the gas entering the AR glasses 1 can quickly cool the internal structure of the AR glasses 1.
[0037] It should be noted that when the user needs to replace the battery, only an outward pulling force needs to be applied to the cover plate 10 to separate the cover plate 10 from the battery slot plate 9, so that the user can replace the battery at the battery slot plate 9.
[0038] Further explanation, the above fixed connection, unless otherwise clearly specified and limited, should be understood in a broad sense. For example, it can be welding, gluing, or integrally formed setting, etc., which are common means well-known to those skilled in the art.
[0039] As described above, only the preferred specific embodiments of the present invention are shown, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, making equivalent substitutions or changes, should be covered within the protection scope of the present invention.
Claims
1. An AR smart glasses facilitating battery replacement, comprising AR glasses and two gas transmission components, characterized in that: The two sides and the top of the AR glasses are fixedly connected with a head support strap, the rear end of the AR glasses is fixedly connected with a cooling component, the rear end of the cooling component is fixedly connected with a light-blocking and breathable ring, and the top of the air transmission component is fixedly connected with the AR glasses and the cooling component by screws; The cooling component includes a frame plate. An air transmission cavity, a device cavity and a cooling cavity are opened inside the frame plate. A storage battery is fixedly connected to the bottom of the device cavity. A refrigerating sheet is fixedly connected to the center of the bottom of the air transmission cavity. A first filter plate is slidably clamped on one side of the air transmission cavity close to the center of the frame plate. A fan is fixedly connected to the side of the air transmission cavity far from the center of the frame plate. A moisture absorption plate is fixedly connected to the side of the fan close to the center of the frame plate. A second filter plate is fixedly connected to the side of the cooling cavity close to the center of the frame plate. A first heat conducting plate is fixedly connected to the side of the cooling cavity far from the sealing plug. A buckle groove is opened at the front end of the cooling cavity.
2. The AR smart glasses facilitating battery replacement according to claim 1, wherein: The air transmission component includes an air transmission module. A first ventilation groove is opened at the rear end of the side of the air transmission module far from the center of the AR glasses. The side of the first ventilation groove far from the center of the AR glasses is communicated with the air transmission cavity. A first receiving plate groove is opened at the rear end of the first ventilation groove. A second receiving plate groove is opened at the front end of the first ventilation groove. A first limiting plate is fixedly connected to the front wall of the second receiving plate groove. A second ventilation groove is opened at the front end of the second receiving plate groove. A third receiving plate groove is opened on one side of the second ventilation groove. A fourth receiving plate groove is opened on the other side of the second ventilation groove. A second limiting plate is fixedly connected to the side wall of the fourth receiving plate groove. A third ventilation groove is opened on the side of the fourth receiving plate groove far from the third receiving plate groove.
3. The AR smart glasses facilitating battery replacement according to claim 2, wherein: A first operation groove and a second operation groove are opened inside the air transmission module. Second springs are fixedly connected to the front end and the rear end of the first operation groove. A first moving plate is fixedly connected to the side of the second spring close to the center of the first operation groove. A first elastic bag is fixedly connected to the side of the first moving plate close to the center of the first operation groove. A first filler is filled inside the first elastic bag. A second heat conducting plate is fixedly connected to the inside of the first elastic bag. The top of the second heat conducting plate penetrates through the air transmission module and extends to the inner side of the frame plate. A first air transmission plate is fixedly connected to the bottom of one first moving plate. A second air transmission plate is fixedly connected to the bottom of the other first moving plate; Third springs are fixedly connected to both sides of the second operation groove. A second moving plate is fixedly connected to the side of the third spring close to the center of the second operation groove. A second elastic bag is fixedly connected to the side of the second moving plate close to the center of the second operation groove. A second filler is filled inside the second elastic bag. A third heat conducting plate is fixedly connected to the inside of the second elastic bag. The top of the third heat conducting plate penetrates through the air transmission module and extends to the inside of the AR glasses. A third air transmission plate is fixedly connected to the bottom of one second moving plate. A fourth air transmission plate is fixedly connected to the bottom of the other second moving plate.
4. The AR smart glasses for facilitating battery replacement according to claim 3, characterized in that: An air passing groove is opened inside the AR glasses. The side of the air passing groove close to the center of the frame plate is communicated with the third ventilation groove. A first air guide pipe is fixedly connected to the top of the air passing groove. The outer diameter of the first air guide pipe is equal to the inner diameter of the buckle groove.
5. The AR smart glasses facilitating battery replacement according to claim 4, characterized in that: The top of the first ventilation groove is fixedly connected to a second air duct, the top of the second air duct penetrates through the air transmission module and extends to the inner side of the frame plate, the top of the second ventilation groove is fixedly connected to a third air duct, and the top of the third air duct penetrates through the air transmission module and extends to the inside of the AR glasses.
6. The AR smart glasses facilitating battery replacement according to claim 5, characterized in that: The first air transmission plate is located inside the first plate receiving groove, the second air transmission plate is located inside the second plate receiving groove, a first L-shaped groove is formed inside the second air transmission plate, and the inner surface of the first L-shaped groove is adapted to the outer surface of the first limiting plate. The third air transmission plate is located inside the third plate receiving groove, the fourth air transmission plate is located inside the fourth plate receiving groove, a second L-shaped groove is formed inside the fourth air transmission plate, and the inner surface of the second L-shaped groove is adapted to the outer surface of the second limiting plate.
7. The AR smart glasses for facilitating battery replacement according to claim 6, wherein: The top of the AR glasses is fixedly connected to a battery slot plate, the top of the battery slot plate is hermetically connected to a cover plate, and both sides of the bottom of the cover plate are fixedly connected to buckle plates, and the cover plate is snap-connected to the AR glasses through the buckle plates.
8. The AR smart glasses facilitating battery replacement according to claim 7, characterized in that: Air outlet grooves are formed on both sides of the AR glasses, movable grooves are formed at the front and rear ends of the air outlet grooves, and a gas shielding component is fixedly connected inside the movable grooves.
9. The AR smart glasses for facilitating battery replacement according to claim 8, wherein: The gas shielding component includes a limiting rod and a first spring. Both sides of the limiting rod are connected to the movable groove, one side of the first spring away from the center of the AR glasses is connected to the movable groove, one side of the first spring close to the center of the AR glasses is fixedly connected to a gas passing plate, and one side of the gas passing plate away from the first spring is fixedly connected to a sealing plug. The sealing plug penetrates through the AR glasses and extends to the inside thereof. The inner diameter of the groove openings on both sides of the gas passing plate is equal to the outer diameter of the limiting rod.
Citation Information
Patent Citations
AR intelligent glasses convenient for battery replacement
CN119758598A