An intelligent VR device for vision improvement
By designing switching components and eye protection modules in the smart VR device, the problem of visual fatigue has been solved, achieving the effects of improved vision and comfortable wear, simplifying the module switching process, and eliminating fog interference.
Patent Information
- Application Number
- CN202310547881.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-16
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2043-05-16
AI Technical Summary
Existing smart VR devices are prone to causing visual fatigue during use, and prolonged wear cannot effectively improve eyesight. Furthermore, the existing structure can only delay discomfort, but cannot completely eliminate eye fatigue.
A smart VR device for vision enhancement has been designed, with a built-in switching component that allows users to freely switch between an eye protection module and a display module. The eye protection module relaxes and enhances vision, while the defogging component removes fog in a timely manner, optimizing the wearing experience.
It effectively reduces eye fatigue and improves vision after prolonged use, and the adjustment process is convenient, avoiding fogging that interferes with display quality, thus improving wearing comfort and visual effects.
Smart Images

Figure CN116540411B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of intelligent VR, in particular to an intelligent VR device for improving eyesight. BACKGROUND
[0002] The VR device is a virtual reality head-mounted display device, which uses the head-mounted display device to close the vision and hearing of a person to the outside world, and guides the user to have a feeling of being in a virtual environment. However, when the intelligent VR device is used by myopic people, the use experience is greatly reduced, and long-term wearing is more likely to cause visual fatigue and aggravate the influence on eyesight.
[0003] In the prior art, only the form of manually relaxing or looking far after long-term wearing of the intelligent VR device can be used for eyesight protection and improvement, and some built-in structures can only change the interpupillary distance or adjust the position of the concave lens to make the eyes achieve the best wearing feeling. However, this kind of scheme can only delay the discomfort caused by wearing, and still cannot eliminate eye fatigue as the use time increases, so the effect on eyesight improvement is limited. SUMMARY
[0004] In view of the deficiencies of the prior art, the application aims to provide an intelligent VR device for improving eyesight to solve the problems in the background art. The application provides an additional eyesight relaxing and improving structure, which can freely switch between virtual reality use and eyesight improvement modes, and is simple and convenient to operate.
[0005] In order to achieve the above-mentioned purpose, the application is implemented by the following technical scheme: an intelligent VR device for improving eyesight, comprising an intelligent VR device body, the intelligent VR device body comprising a shell, an eye protection module, a display module and a support assembly, a binding band is installed at the front end of the shell, a magic tape is installed in the middle of the binding band, a heat dissipation fan is installed at the top of the shell, water storage bins are installed on both sides of the shell, a water inlet is formed on the surface of the water storage bin, a guide groove is formed on the side edge of the shell, a switching assembly is installed in the guide groove, the eye protection module and the display module are arranged in the switching assembly, the eye protection module and the display module are embedded into the inner side of the support assembly at both ends, a concave lens is installed in the middle of the display module, a defogging assembly is installed on the side edge of the concave lens, a buffer layer is installed at the front end of the shell, and a blocking strip is installed on the inner side of the buffer layer.
[0006] Further, the switching assembly comprises a support assembly, an eye protection module and a display module, the support assembly is mainly composed of a support frame, and the inner side of the support frame is provided with a vertical sliding groove and a horizontal sliding groove.
[0007] Further, the vertical sliding groove and the horizontal sliding groove are communicated with each other, the support frame is aligned with the guide groove of the side of the shell, and the inner side of the support frame is chamfered.
[0008] Further, the display module comprises a first support plate and a concave lens, the top and bottom of the first support plate are provided with a sleeve ring, and the surface of the first support plate is embedded with the concave lens, and the defogging assembly is mounted on the surface of the first support plate at the side of the concave lens.
[0009] Further, the first support plate is moved to the front end or the top along the support frame, the inner side of the first support plate is provided with a hollow structure, and the concave lens is filled in the hollow structure.
[0010] Further, the eye protection module comprises a second support plate and a breathable film, the breathable film is attached to the bottom of the second support plate, the top of the second support plate is attached with a sponge layer, the surface of the sponge layer is provided with an electric heating plate, and the inside of the electric heating plate is inserted with a water supply pipeline.
[0011] Further, the other end of the water supply pipeline is connected to the inside of the water storage bin, and the opposite ends of the first support plate and the second support plate are sleeved on the end sliding rod and the middle sliding rod through the sleeve ring.
[0012] Further, the end of the end sliding rod and the middle sliding rod is provided with a limiting stop ring, and the two ends of the end sliding rod and the middle sliding rod are embedded in the inside of the support frame and outwardly penetrated from the inside of the guide groove.
[0013] Further, the defogging assembly comprises a convex ring and a heat dissipation channel, the convex ring is fixedly mounted on the surface of the first support plate, and a plurality of air inlets are formed in the inner side of the convex ring.
[0014] Further, the inner side of each air inlet is communicated with an independent heat dissipation channel part, the heat dissipation fan blows from the outside to the inside of the shell, and when the first support plate moves to the top of the inside of the shell, the concave lens is aligned with the heat dissipation fan.
[0015] The application has the advantages that the intelligent VR device for improving vision comprises an intelligent VR device body, which comprises a shell, a buffer layer, a binding belt, a magic tape, a water storage bin, a water inlet, a blocking strip, a switching assembly, a guide groove, a heat dissipation fan, a support assembly, a display module, an eye protection module, a support frame, a vertical sliding groove, a horizontal sliding groove, an end sliding rod, a limiting stop ring, a sleeve ring, a first support plate, a concave lens, a defogging assembly, a middle sliding rod, a second support plate, a sponge layer, an electric heating plate, a breathable film, a water supply pipeline, a convex ring, an air inlet, and a heat dissipation channel.
[0016] 1. The vision-improving intelligent VR device is internally provided with a switching assembly, which can freely switch the internal eye protection module and display module by controlling the switching assembly, thereby relaxing and improving the vision after long-term use by the eye protection module, optimizing the wearing experience, reducing eye fatigue in time, and achieving the effect of improving vision.
[0017] 2. In the adjusting process of the vision-improving intelligent VR device, the slide rod structure is directly pulled from the outside, which can simultaneously control the movement of the eye protection module and the display module. The adjusting process is labor-saving and convenient, and the two modules can be moved and limited by the supporting assembly on the outside, which is more accurate and easy to use.
[0018] 3. After using the eye protection module to relax and improve the vision, the display module is at the top of the inside of the shell, and the defogging assembly on the surface of the display module can remove the fog generated during the vision improvement process from the surface of the concave lens in time. When switching to the display module for viewing and use again, the fog generated during the vision improvement process can be avoided to interfere with the display quality. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a structure diagram of the appearance of the vision-improving intelligent VR device of the application;
[0020] Figure 2 It is a structure diagram of the switching assembly part of the vision-improving intelligent VR device of the application;
[0021] Figure 3 It is a structure diagram of the display module part of the vision-improving intelligent VR device of the application;
[0022] Figure 4 It is a structure diagram of the eye protection module part of the vision-improving intelligent VR device of the application;
[0023] Figure 5 It is a side sectional view of the defogging assembly part of the vision-improving intelligent VR device of the application;
[0024] In the figure: 1, the shell; 2, the buffer layer; 3, the bandage; 4, the magic tape; 5, the water storage warehouse; 6, the water inlet; 7, the blocking bar; 8, the switching assembly; 9, the guide groove; 10, the cooling fan; 11, the support assembly; 12, the display module; 13, the eye protection module; 14, the support frame; 15, the vertical sliding slot; 16, the horizontal sliding slot; 17, the end sliding rod; 18, the limiting stop ring; 19, the sleeve ring; 20, the first support plate; 21, the concave lens; 22, the defogging assembly; 23, the middle sliding rod; 24, the second support plate; 25, the sponge layer; 26, the electric heating plate; 27, the breathable film; 28, the water delivery pipeline; 29, the convex ring; 30, the air inlet; 31, the heat dissipation channel. DETAILED DESCRIPTION
[0025] In order to make the technical means, creative features, purposes and effects realized by the present application easy to understand, the present application will be further described below in conjunction with specific embodiments.
[0026] Please refer to Figures 1 to 5 The present application provides a technical scheme: an intelligent VR device for improving eyesight, comprising an intelligent VR device body, the intelligent VR device body comprising a shell 1, an eye protection module 13, a display module 12 and a support assembly 11, the front end of the shell 1 is provided with a bandage 3, the middle of the bandage 3 is provided with a magic tape 4, the top of the shell 1 is provided with a cooling fan 10, both sides of the shell 1 are provided with a water storage warehouse 5, the surface of the water storage warehouse 5 is provided with a water inlet 6, the side edge of the shell 1 is provided with a guide groove 9, the inside of the guide groove 9 is provided with a switching assembly 8, the switching assembly 8 is provided with the eye protection module 13 and the display module 12, both ends of the eye protection module 13 and the display module 12 are embedded into the inside of the support assembly 11, the middle of the display module 12 is provided with a concave lens 21, the side edge of the concave lens 21 is provided with a defogging assembly 22, the front end of the shell 1 is provided with a buffer layer 2, the inside of the buffer layer 2 is provided with a blocking bar 7, when the intelligent VR device for improving eyesight is worn, the shell 1 is placed in front of the user's eyes, the rear buffer layer 2 is aligned with the eye socket, then the bandage 3 is sleeved on the head, the rear magic tape 4 is used to fix the bandage 3, the whole shell 1 is sleeved on the head for use, the eye protection module 13 and the display module 12 are installed on the inside of the shell 1, when the virtual reality observation is normally performed, the display module 12 is directly adjusted to the middle position for display, when the eyes are tired, the switching assembly 8 is installed on the side edge of the shell 1, the eye protection module 13 and the display module 12 can be switched by manually pulling the switching assembly 8, the eye protection module 13 is used to relax and improve the eyesight, and the display module 12 is used again through the switching assembly 8 after the eyesight is improved.
[0027] The switching assembly 8 comprises a supporting assembly 11, an eye protection module 13 and a display module 12. The supporting assembly 11 mainly comprises a supporting frame 14. The inner side of the supporting frame 14 is provided with a vertical sliding groove 15 and a horizontal sliding groove 16. The vertical sliding groove 15 and the horizontal sliding groove 16 are in communication with each other. The supporting frame 14 is aligned with the guide groove 9 of the side of the shell 1. The inner side of the supporting frame 14 is rounded at the bending position. During the adjustment process, the sliding rod structure is directly pulled from the outside, so as to control and move the eye protection module 13 and the display module 12. The adjustment process is labor-saving and convenient. The two modules can be moved and limited by the supporting assembly 11 on the outside. The adjustment accuracy is higher. It is simple and easy to use. Specifically, when the eye protection module 13 and the display module 12 are switched, the two ends of one of the end sliding rods 17 are directly pulled. The end sliding rod 17 is pulled from the outside of the shell 1. The end sliding rod 17 is moved along the supporting frame 14. Since the eye protection module 13 and the display module 12 are sleeved on the two sliding rods through the sleeve ring 19, after the end sliding rod 17 is moved, the eye protection module 13 and the display module 12 can be moved along the supporting frame 14 at the same time. One of the modules is selected to move to the range covered by the vertical sliding groove 15, so as to align the module with the eyes for use.
[0028] In the embodiment, the display module 12 comprises a first supporting plate 20 and a concave lens 21. The top and bottom of the first supporting plate 20 are provided with sleeve rings 19. The surface of the first supporting plate 20 is embedded with the concave lens 21. The defogging assembly 22 is installed on the surface of the first supporting plate 20 on the side of the concave lens 21. The first supporting plate 20 is moved to the front end or the top along the supporting frame 14. The inner side of the first supporting plate 20 is provided with a hollow structure. The concave lens 21 is filled in the hollow structure. Specifically, the end sliding rod 17 at the top of the first supporting plate 20 is pulled to move to the top of the vertical sliding groove 15. At this time, the eye protection module 13 is automatically positioned at the bottom of the supporting frame 14, as shown in FIG. 6. In this state, the concave lens 21 can be aligned with the eyes. The rear end imaging can be directly observed through the concave lens 21. Figure 2
[0029] The eye protection module 13 includes a second support plate 24 and a breathable film 27, the breathable film 27 is attached to the bottom of the second support plate 24, the top of the second support plate 24 is attached with a sponge layer 25, the surface of the sponge layer 25 is mounted with an electric heating plate 26, the inside of the electric heating plate 26 is inserted with a water delivery pipeline 28, the other end of the water delivery pipeline 28 is connected to the inside of the water storage compartment 5, the opposite ends of the first support plate 20 and the second support plate 24 are sleeved on the end slide rod 17 through the sleeve ring 19, the contacting ends of the first support plate 20 and the second support plate 24 are sleeved on the middle slide rod 23 through the sleeve ring 19, the ends of the end slide rod 17 and the middle slide rod 23 are mounted with the limiting ring 18, and the two ends of the end slide rod 17 and the middle slide rod 23 are embedded into the inside of the support frame 14 and out of the inside of the guide groove 9, the inside is mounted with the switching assembly 8, the inside eye protection module 13 and the display module 12 can be freely switched by controlling the switching assembly 8, and then the vision is relaxed and improved by using the eye protection module 13 after a long time of use, the wearing experience is optimized, the eye fatigue can be relieved in time, the vision improving effect is achieved, specifically, when the vision is improved, the end slide rod 17 at the top of the display module 12 is directly pulled upwards until the second support plate 24 is moved to the position where the vertical sliding groove 15 is located, then it can be used, during the eye protection process, the water in the sponge layer 25 is quickly evaporated after being heated by the external water storage compartment 5 cooperating with the internal micro water pump, and the steam is contacted with the eyes through the breathable film 27 at the bottom, the eyes are relaxed by using the appropriate temperature and humidity, and the vision improving effect is achieved.
[0030] In this embodiment, the defogging assembly 22 includes a convex ring 29 and a heat dissipation channel 31, the convex ring 29 is fixedly installed on the surface of the first support plate 20, a plurality of air inlets 30 are formed in the inside of the convex ring 29, the inside of each air inlet 30 is in communication with a separate heat dissipation channel 31, the heat dissipation fan 10 blows from the outside to the inside of the shell 1, after the first support plate 20 is moved to the top of the inside of the shell 1, the concave lens 21 is aligned with the heat dissipation fan 10 at this time, after the vision is relaxed and improved by using the eye protection module 13, the display module 12 is at the top of the inside of the shell 1 at this time, cooperating with the defogging assembly 22 on the surface of the display module 12, the fog generated during the vision improving process can be removed from the surface of the concave lens 21 in time, when the display module 12 is used for viewing again after being switched, the fog generated during the vision improving process can avoid interfering with the display quality, when the eye protection module 13 is used for vision improvement, a large amount of fog will be generated, the fog adheres to the concave lens 21, under the action of the heat dissipation fan 10, the airflow can be directly blown to the surface of the concave lens 21 at a close distance, so that the fog on the concave lens 21 is quickly discharged from the air inlet 30 at the side.
[0031] The foregoing merely illustrates the principles of the application and application of its leading features. This application is not limited to the illustrative embodiments described but is capable of being practiced with modification within the spirit and scope of the application in the appended claims, therefore, specific embodiments described herein are not intended to be limiting, but rather, are presented as being exemplary in nature. It is intended to cover any and all variations that are within the scope of the appended claims along with the scope of the claims. It is intended that each element recited in any claim is defined as specifically as possible so as to recite only those elements necessary for a complete understanding of the application. It is intended that the claims be construed to include alternative embodiments to the extent permitted by the prior art.
[0032] Furthermore, it should be understood that although the description above relates to embodiments, not every embodiment according to the description contains all features and embodiments can also depend, not only on the possibility of combining features between different embodiments, but also on the possibility that one single patent document can contain several dependent claims, in which the same techniques can have been used or further developed depending on the specific needs or requirements of the technical solution to be implemented.
Claims
1. A smart VR device for vision improvement, comprising a smart VR device body, characterized in that: The intelligent VR device body includes a shell, an eye protection module (13), a display module (12) and a support assembly (11), the front end of the shell is provided with a binding band, the middle of the binding band is provided with a magic tape, the top of the shell is provided with a cooling fan, both sides of the shell are provided with a water storage bin (5), the surface of the water storage bin (5) is provided with a water inlet (6), the side of the shell is provided with a guide groove (9), the inside of the guide groove (9) is provided with a switching assembly (8), the eye protection module and the display module are arranged in the switching assembly (8), the both ends of the eye protection module and the display module are embedded into the inside of the support assembly (11), the middle of the display module is provided with a concave lens, the side of the concave lens is provided with a defogging assembly (22), the front end of the shell is provided with a buffer layer (2), the inside of the buffer layer (2) is provided with a blocking strip (7), the switching assembly (8) includes a support assembly, an eye protection module and a display module, the support assembly (11) is mainly composed of a support frame (14), the inside of the support frame (14) is provided with a vertical sliding groove (15) and a horizontal sliding groove (16), the vertical sliding groove and the horizontal sliding groove are communicated with each other, the support frame (14) is aligned with the guide groove (9) of the shell side, the inside of the support frame (14) is rounded at the bending part, the display module includes a first support plate (20) and a concave lens, the top and the bottom of the first support plate (20) are provided with a sleeve ring (19), and the surface of the first support plate (20) is embedded with a concave lens, the defogging assembly (22) is arranged on the surface of the first support plate (20) at the side of the concave lens, the eye protection module (13) includes a second support plate (24) and a breathable film (27), the breathable film (27) is attached to the bottom of the second support plate (24), the top of the second support plate (24) is attached with a sponge layer (25), the surface of the sponge layer is provided with an electric heating plate (26), the inside of the electric heating plate (26) is provided with a water supply pipeline (28), the other end of the water supply pipeline (28) is connected to the inside of the water storage bin (5), the opposite ends of the first support plate (20) and the second support plate (24) are sleeved on the end sliding rod (17) through the sleeve ring (19), the ends of the first support plate (20) and the second support plate (24) are sleeved on the middle sliding rod (23) through the sleeve ring (19), the defogging assembly (22) includes a convex ring (29) and a heat dissipation channel (31), the convex ring (29) is fixedly installed on the surface of the first support plate (20), the inside of the convex ring (29) is provided with a plurality of air inlets (30), the inside of each air inlet (30) is connected with an independent heat dissipation channel (31) in communication, the cooling fan blows from the outside to the inside of the shell, when the first support plate (20) moves to the top of the inside of the shell, the concave lens is aligned with the cooling fan.
2. The smart VR device for vision improvement of claim 1, wherein: The first support plate (20) is moved to the front end or top along the support frame (14), the inner side of the first support plate (20) is provided as a hollow structure, and the concave lens (21) is filled in the inside of the hollow structure.
3. The smart VR device for vision improvement of claim 1, wherein: The end sliding rod (17) and the middle sliding rod (23) are both provided with a limiting ring (18) at the end, and the two ends of the end sliding rod (17) and the middle sliding rod (23) are embedded into the inner side of the support frame (14) and pass out from the inside of the guide groove (9).
Citation Information
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