A VR accessory integrated bracket with a display and its usage method

By designing the integrated bracket of VR accessories and monitor, the automatic pick-up and placement of VR equipment and the tilt adjustment of the monitor are solved, and the problem of cumbersome wired connection operation and inconvenient adjustment of the display is improved, improving user experience and comfort.

CN119737529BActive Publication Date: 2025-07-29DONGGUAN GT ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202411940896.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-26
Publication Date
2025-07-29
Estimated Expiration
2044-12-26

AI Technical Summary

Technical Problem

The wired connection of existing VR equipment requires frequent plugging and discharging of electrical wires, which is cumbersome to operate, and the display screen is inconvenient to tilt adjustment when used standing, affecting the user experience.

Method used

A VR accessory integrated bracket with a display is designed, including a mounting base, a column, a sliding groove, a connecting column, a swing assembly and a driving device. Through the sliding and driving device, the automatic pick-up and placement of the VR equipment and the tilt adjustment of the display is achieved, simplifying the operation process and adapting to the user's line of sight.

Benefits of technology

It improves the convenience and user experience of VR equipment, reduces the cumbersome operation, enhances user interest, reduces neck fatigue, and improves comfort and work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an integrated bracket for a VR accessory and a display, which includes a mounting base, a mounting column and a mounting platform. A sliding groove is provided in the vertical direction of the mounting column. A connecting column is arranged on the mounting column. A box body one for placing a VR handle and a box body two for placing a VR headset are slidably connected to the mounting base. When the connecting column slides vertically downward, a swinging assembly is used to drive the box body one and the box body two to move away from each other. It also includes a linkage assembly one, a driving device one and a linkage assembly two. When the connecting column slides to the lowest end of the sliding groove, the driving device one drives the linkage assembly one to move. The linkage assembly one can drive the box body one and the box body two to move in the direction towards the user. The driving device one drives the linkage assembly two to move, so that the display screen tilts. When the user is working, the connecting column can be adjusted to make the display move in the vertical direction. When the user is tired after a long time of work, the user can start the driving device one to make the display tilt, so that the user using the VR device for entertainment can see the display well in the standing state. And the VR device can be automatically obtained through the swinging assembly, which enhances the user's interest in using the VR device and greatly improves the convenience of the user using the VR device.
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Description

Technical Field

[0001] The present invention belongs to the technical field of VR accessories and monitor brackets, and specifically relates to a VR accessory and monitor integrated bracket and its usage method. Background Technique

[0002] Virtual Reality (VR) technology is a technology that simulates a virtual environment through computer technology, enabling users to immerse themselves in it and interact with it. Users wear special head-mounted displays or glasses and control the perspective and operations in the virtual environment through head movements and other means to obtain an immersive experience.

[0003] The hardware components of virtual reality technology usually include head-mounted displays or glasses, handles for users to interact with the virtual environment, and computer systems for processing and rendering the virtual environment. For the convenience of users, modern VR devices can usually be directly connected to a home computer through HDMI, DisplayPort or USB interfaces to achieve a virtual reality experience. Considering that the VR device and the computer are connected by wire, it can provide more reliable data transmission and connection quality, avoid signal interference or delay, and contribute to a smoother virtual reality experience. Therefore, many users are used to connecting the VR device and the computer in a wired manner.

[0004] It should be noted that when users using a wired connection use the VR device, they first need to frequently pick up and place the VR device, and connect and disconnect the wire plug of the VR device to the computer host. After use, they also need to manually roll up the VR device and place it on a dedicated VR rack. The operation is very cumbersome. Especially for people who are tired after sitting for a long time, the cumbersome preparation process will greatly reduce the user's interest in using the VR device.

[0005] In addition, when users are using it, they are usually in a standing state. For users in a standing state, an inclined display screen can better meet the user's observation of the display screen. Therefore, it is very necessary to design a bracket that can simultaneously meet the automatic picking up and placing of VR accessories and the inclination of the screen. Summary of the Invention

[0006] The purpose of the present invention is to provide a VR accessory and monitor integrated bracket and its usage method to solve the problems raised in the above background technique.

[0007] To achieve the above purpose, the present invention provides the following technical solutions:

[0008] A VR accessory and monitor integrated bracket, comprising a mounting base, a mounting column and a mounting platform. The mounting column is installed on the mounting base. A sliding groove is provided in the vertical direction of the mounting column. A connecting column is provided on the mounting column, and an adjusting device is provided in the sliding groove. The adjusting device is used to adjust the sliding connection of the connecting column and the groove wall of the sliding groove along the vertical direction. The other end of the connecting column is connected to the mounting platform;

[0009] A swinging assembly is fixedly provided at the bottom of the connecting column. A box body one for placing a VR handle and a box body two for placing a VR helmet are slidably connected to the mounting base. When the connecting column slides vertically downward, the swinging assembly is used to drive the box body one and the box body two to move away from each other;

[0010] It further includes a linkage assembly one and a driving device one. The driving device one is connected to the linkage assembly one. When the connecting column slides to the lowest end of the sliding groove, the driving device one drives the linkage assembly one to move. The linkage assembly one can drive the box body one and the box body two to move in the direction towards the user;

[0011] The mounting platform includes a rotating plate one and a rotating plate two. One end of the rotating plate one and the rotating plate two is hinged. The rotating plate two can be used to mount a monitor. A linkage assembly two is provided on the rotating plate two. When the connecting column slides to the lowest end of the sliding groove, the driving device one can drive the rotating plate two to move away from the rotating plate one through the linkage assembly two;

[0012] The adjusting device slides the connecting column vertically downward to the lowest end of the sliding groove. When the connecting column slides to the lowest end of the sliding groove, the swinging assembly drives the box body one and the box body two to move away from each other to the maximum distance. The driving device one is started, and the linkage assembly one drives the box body one and the box body two to move in the direction towards the user. At the same time, the linkage assembly two drives the rotating plate two to move away from the rotating plate one.

[0013] In a further technical solution, the driving device one includes a double-shaft motor and a rotating shaft one. The double-shaft motor is installed on the mounting column. The double-shaft motor is rotationally connected to the rotating shaft one. The rotating shaft one is vertically arranged, and a bevel gear two is coaxially connected to the rotating shaft one;

[0014] The second linkage assembly includes a fixed block and a second lead screw pair. The fixed block is installed on the first rotating plate. A sliding cylinder is provided on the fixed block. The lead screw of the second lead screw pair passes through the through-axis hole of the fixed block and the first rotating plate. A slanting rod is fixedly connected to the nut seat of the second lead screw pair in the direction towards the second rotating plate. One end of the slanting rod towards the second rotating plate is an arc surface. The arc-surface end of the slanting rod is used to push the second rotating plate to rotate relative to the first rotating plate. The other end of the second lead screw pair is coaxially fixedly connected with a first bevel gear. When the connecting column slides to the lowest end of the sliding groove, the first bevel gear meshes with the second bevel gear;

[0015] The first linkage assembly includes a second rotating shaft, a first gear and a second gear. The bottom end of the first rotating shaft is coaxially connected with a third bevel gear. A first rotating groove is provided on the installation base along the horizontal direction. A second rotating shaft is arranged in the first rotating groove. The second rotating shaft is coaxially connected with a fourth bevel gear. The fourth bevel gear meshes with the third bevel gear. The two ends of the fourth rotating shaft are respectively coaxially connected with the first gear and the second gear;

[0016] Sliding grooves are respectively provided at both ends of the installation base. A first slider is slidably connected to the groove wall of the first sliding groove. A second slider is slidably connected to the groove wall of the second sliding groove. A first rack is arranged at one end of the first slider towards the connecting column. The first rack meshes with the first gear. The second rack meshes with the second gear;

[0017] When the connecting column slides to the lowest end of the sliding groove, start the double-shaft motor to drive the first rotating shaft to rotate

[0018] so that the second rotating plate rotates away from the first rotating plate. At the same time, the rotation of the first rotating shaft drives the rotation of the second rotating shaft, and the rotation of the second rotating shaft drives the first box body and the second box body to move towards the user.

[0019] A further technical solution is that the swinging assembly includes a sliding rod. The sliding rod is arranged vertically. The downward movement of the connecting column drives the sliding rod and the installation column to slide. The sliding rod is rotatably connected with a first connecting rod and a second connecting rod. The first connecting rod and the second connecting rod are arranged oppositely. When the connecting column slides to the lowest end of the sliding groove, the maximum distance is reached between the ends of the first connecting rod and the second connecting rod that are away from the sliding rod;

[0020] One end of the first connecting rod away from the sliding rod is rotatably connected to the first box body. One end of the second connecting rod away from the sliding rod is rotatably connected to the second box body. When the connecting column slides in the direction towards the vertical downward direction, the first connecting rod and the second connecting rod respectively drive the first box body and the second box body to move away from each other. When the connecting column slides to the lowest end of the sliding groove, the distance between the first box body and the second box body reaches the maximum;

[0021] The first box body is provided with a first wire passing hole, and the second box body is provided with a second wire passing hole. The wire passes through the first wire passing hole or the second wire passing hole, winds around the first rotating shaft, and then is connected to the computer host.

[0022] In a further technical solution, the first box body is provided with a first rod receiving groove. A separation hole is provided in the groove wall of the first rod receiving groove. A hinge shaft is provided on the groove wall of the first rod receiving groove. One end of the hinge shaft is rotatably connected to the groove wall of the first rod receiving groove, and the other end of the hinge shaft is flush with the hole wall of the separation hole.

[0023] When the connection point between the first connecting rod and the sliding rod moves to the lowest point, the first box body moves in the direction facing the user, and the first connecting rod can be disconnected from the first box body through the separation hole; a supporting member for supporting the first connecting rod is provided on the mounting column.

[0024] In a further technical solution, the supporting member includes a supporting seat. A space for placing the VR speaker is provided in the supporting seat. A supporting clamping groove is provided on the supporting seat. A control button is provided at the bottom of the supporting clamping groove. When the connecting column slides to the lowest point, the first connecting rod is clamped in the supporting clamping groove, and the first connecting rod touches the control button, and the VR speaker is turned on to the working state.

[0025] In a further technical solution, a rotating component and a cooling component are provided on the second rotating plate. The cooling component is installed on the mounting base and is used for cooling the display. The rotating component is installed on the second rotating plate and is used for installing the display.

[0026] In a further technical solution, the rotating component includes a rotating part and a supporting part. The supporting part includes four supporting rods. The supporting rods are installed on the second rotating plate. One end of the supporting rod facing the second rotating plate is rotatably connected to the second rotating plate. A clamping part is provided on the side of the supporting rod away from the second rotating plate. The four clamping parts are used for clamping the display; the rotating part is used for rotating the supporting rod.

[0027] For a further technical solution, assume that among the four support rods, the upwardly inclined ones are support rod one and support rod two. One ends of the support rod one and the support rod two facing the rotating plate two respectively include a cylindrical part one and a cylindrical part two; the rotating part includes a rotating shaft three and a rotating shaft four. The rotating shaft three and the rotating shaft four are vertically arranged. Both the rotating shaft three and the rotating shaft four pass through the inside of the rotating plate two. A through groove one and a through groove two are formed on the rotating plate two. The cylindrical part one is located in the through groove one. The rotating shaft three passes through the through groove one, and the cylindrical part one is sleeved on the rotating shaft three. The cylindrical part two is located in the through groove two. The rotating shaft four passes through the through groove two, and the cylindrical part two is sleeved on the rotating shaft four; a driving device two is arranged on the rotating plate two, and the driving device two is used to drive the rotating shaft three and the rotating shaft four to rotate.

[0028] For a further technical solution, the rotating part further includes a rotating shaft five. A rotating groove two is horizontally formed in the rotating plate two. The rotating groove two is communicated with the through groove one and the through groove two. The rotating shaft five is rotatably connected with the rotating groove two. The rotating shaft three is coaxially connected with a bevel gear five. Two ends of the rotating shaft five are respectively rotatably connected with a bevel gear six and a bevel gear seven. The bevel gear five meshes with the gear six. The rotating shaft four is coaxially connected with a bevel gear eight. The bevel gear seven meshes with the bevel gear eight; the driving device two includes a rotating motor, and the rotating motor is coaxially and fixedly connected with the rotating shaft three.

[0029] For a further technical solution, the cooling assembly includes a cooling hose and a pump - less cooler. The pump - less cooler is installed behind the installation column. The pump - less cooler includes an upper box body, a lower box body and a plurality of connecting pipes. The upper box body, the lower box body and the plurality of connecting pipes are fixedly connected to each other and are in circular communication. An air outlet is communicated and arranged on the upper box body. A liquid inlet is communicated and arranged on the lower box body. A refrigerant is filled in the upper box body, the lower box body, the plurality of connecting pipes and the cooling hose;

[0030] A plurality of cooling structures are arranged on the support rod one and the support rod two. The cooling hose is installed on the cooling structures. The cooling hose is in a bent shape. One end of the cooling hose is communicated with the air outlet of the pump - less cooler, and the other end of the cooling hose is communicated with the liquid inlet of the pump - less cooler.

[0031] A using method of a VR accessory and a display integrated bracket includes:

[0032] S1, adjust the positions of the support rod one and the support rod two through the rotating assembly so that the four support rods support the display, and place the display on the supporting part of the support rods;

[0033] S2, Place the VR handle and the VR helmet on the first box and the second box respectively. The wire is wound around the first rotating shaft, and the other end of the wire is plugged into the host computer of the computer.

[0034] S3, When the user is working, the height of the display can be adjusted by sliding the connecting column on the sliding groove. When the user uses the VR device, the connecting column slides vertically downward through the adjusting device. When the connecting column slides downward, the first connecting rod and the second connecting rod respectively push the first box and the second box away from each other.

[0035] S4, When the connecting column slides downward to the lowest point, the first box is located on the first slider, and the second box is located on the second slider.

[0036] S5, When the connecting column slides to the lowest point, start the double-shaft motor. The double-shaft motor rotates, and the second rotating plate moves away from the first rotating plate, and the display tilts.

[0037] S6, The first rotating shaft rotates, causing the second rotating shaft to rotate, the first gear and the second gear to rotate, the first slider and the second slider move towards the user, the first connecting rod separates from the first box through the separation hole, and the rotation of the first rotating shaft causes the wire to fall off.

[0038] S7, The user takes the VR handle from the first box and takes the VR helmet from the second box.

[0039] The beneficial effects of the present invention:

[0040] In the present invention, when the user is working, the connecting column can be adjusted to slide on the groove wall of the sliding groove through the adjusting device. The movement of the connecting column drives the movement of the installation platform, and then the display moves vertically. The user can better adapt to their line of sight height, avoid neck fatigue and discomfort caused by lowering or raising the head, and maintaining the correct line of sight height helps to reduce the pressure on the neck and shoulders, improving comfort and work efficiency; it can better facilitate the user to use.

[0041] In addition, when the user is tired after a long time of work and uses the VR device with a home computer, when the user switches from working to using the VR device for entertainment with this bracket, the user can control the vertical downward sliding of the connecting column through the adjusting device. When the connecting column slides vertically downward, the swinging assembly is used to drive the first box body and the second box body to move away from each other. When the connecting column slides vertically downward to the lowest point, first, the first box body and the second box body slide to the farthest distance from each other. At this time, the user can start the first driving device, and further push the second rotating plate to move in a direction away from the first rotating plate through the second linkage device, so that the display tilts, enabling the user using the VR device for entertainment to see the display well in a standing state; it can be more convenient and bring a better user experience.

[0042] In addition, when the user controls the connecting column to slide vertically downward to the lowest point through the adjusting device, the swinging assembly drives the first box body to move onto the first slider and drives the second box body to move onto the second slider. At this time, the first driving device can make the first box body and the second box body move in the direction towards the user through the rotation of the first linkage assembly, enabling the user to obtain the VR devices in the first box body and the second box body more conveniently, enhancing the user's interest in using the VR device, and greatly improving the convenience of the user using the VR device.

[0043] Other features and advantages of the present invention will be described in detail in the subsequent specific implementation part. BRIEF DESCRIPTION OF THE DRAWINGS

[0044] Figure 1 : The three-dimensional structure of the present invention Figure 1 .

[0045] Figure 2 : Schematic diagram of the present invention in the working state.

[0046] Figure 3 : The Figure 1 enlarged view of part A of the present invention.

[0047] Figure 4 : Schematic diagram of the second linkage assembly and the installation platform of the present invention.

[0048] Figure 5 : The Figure 4 partial sectional view of the present invention.

[0049] Figure 6 : The three-dimensional structure Figure 2 of the present invention and the enlarged view of the first gear and the first rack.

[0050] Figure 7 : The three-dimensional structure Figure 3 of the present invention and the enlarged view of the third bevel gear and the fourth bevel gear.

[0051] Figure 8: Of the present invention Figure 7 Enlarged view of part B.

[0052] Figure 9 : Schematic diagram of Embodiment 2 of the present invention.

[0053] Figure 10 : Schematic diagram of the support rod and the rotating assembly of the present invention.

[0054] Figure 11 : Schematic diagram of the partial support rod and the rotating assembly of the present invention.

[0055] Figure 12 : Three-dimensional structure of the present invention Figure 4 .

[0056] Figure 13 : Schematic diagram of Embodiment 3 of the present invention.

[0057] Figure 14 : Partial schematic diagram of Embodiment 3 of the present invention.

[0058] Figure 15 : Of the present invention Figure 14 Enlarged view of part C.

[0059] Figure 16 : Partial sectional view of Embodiment 3 of the present invention.

[0060] Figure 17 : Of the present invention Figure 16 Enlarged view of part D.

[0061] Figure 18 : Three-dimensional sectional view of the present invention.

[0062] Figure 19 : Of the present invention Figure 18 Partial enlarged view and enlarged view of the "L"-shaped pipe.

[0063] Reference numerals:

[0064] 1, mounting base; 2, mounting column; 3, mounting platform; 31, first rotating plate; 32, second rotating plate; 4, sliding groove; 5, connecting column; 6, adjusting device; 7, swinging assembly; 71, sliding rod; 72, first connecting rod; 73, second connecting rod; 8, first box body; 9, second box body;

[0065] 10, first linkage assembly;

[0066] 101, second rotating shaft; 102, first gear; 103, second gear; 104, third bevel gear; 105, fourth bevel gear; 106, first rack; 107, second rack;

[0067] 11, first driving device;

[0068] 111. Biaxial motor; 112. Rotating shaft one; 113. Bevel gear two;

[0069] 12. Linkage component two;

[0070] 121. Fixed block; 122. Lead screw pair two; 123. Sliding cylinder; 124. Through shaft hole; 125. Inclined rod; 126. Bevel gear one;

[0071] 13. Rotating groove one; 14. Sliding groove one; 15. Sliding groove two; 16. Slide block one; 17. Slide block two; 18. Limiting component; 20. Rod receiving groove one; 21. Separation hole; 22. Hinge shaft; 23. Support seat one; 24. Support card slot one; 25. Rod receiving groove two; 26. Support seat two; 27. Support card slot two;

[0072] 28. Cooling component;

[0073] 281. Cooling pipe; 282. Pump - less cooler; 2821. Upper box body; 2822. Lower box body; 2823. Connecting pipe;

[0074] 29. Rotating component;

[0075] 291. Rotating part; 2911. Rotating shaft three; 2912. Rotating shaft four; 2913. Rotating shaft five; 2914. Bevel gear five; 2915. Bevel gear six; 2916. Bevel gear seven; 2917. Bevel gear eight; 2918. Rotating motor;

[0076] 292. Support part; 2921. Support rod one; 2922. Support rod two; 2923. Support rod three; 2924. Support rod four; 2925. Clamping part;

[0077] 30. Lifting component;

[0078] 301. Threaded column; 302. Threaded head; 303. Adjusting pin one; 304. Threaded cylinder; 305. Protruding block one; 306. Adjusting hole one;

[0079] 33. Support block; 34. Inserting pin; 35. Support cylinder; 36. "C" - shaped ring groove; 37. Ring block; 38. "L" - shaped pipe; 381. Inner pipe; 382. Outer pipe; 39. Reversing gear one; 40. Reversing gear two; 41. Rotating shaft Detailed implementation mode

[0080] 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.

[0081] Please refer to Figure 1-17 ;

[0082] Example 1:

[0083] The present invention aims to enable the user: First, when the user uses a computer for office work, the user can adjust the position of the display in the vertical direction according to his own habits, making it more convenient for the user to use; Second, when the user is tired after long-term office work, it is more convenient for the user to use the VR device with the home computer, and a better user experience is brought, enabling the user to switch more conveniently between office work and using the VR device for entertainment;

[0084] Reference Figure 1 With Figure 2 Regarding the specific structure of the first use state, a VR accessory and display integrated bracket includes a mounting base 1, a mounting column 2 and a mounting platform 3. The mounting column 2 is installed in the middle position of the mounting base 1. A sliding groove 4 is provided in the vertical direction of the mounting column 2. A connecting column 5 is provided on the mounting column 2, and an adjusting device 6 is provided in the sliding groove 4. The adjusting device 6 can be used to adjust the connecting column 5 so that the connecting column 5 is slidably connected to the groove wall of the sliding groove 4 in the vertical direction. The other end of the connecting column 5 is connected to the mounting platform 3. It should be noted that regarding the specific structure of the adjusting device 6, reference can be made to the "a lifting and wire-winding device" in the patent document "CN213900408U, a lifting and wire-winding device and a bracket using the device"; In addition, there is a second reference structure for the specific structure of the adjusting device 6 in the present invention, which may include an adjusting motor (not shown in the figure), a first lead screw pair (not shown in the figure), and a first guide rail (not shown in the figure). The first lead screw pair is arranged in the vertical direction, and both ends of the first lead screw pair are rotatably connected to the groove walls of the sliding groove 4 through bearings. The nut seat of the first lead screw pair is fixedly connected to the connecting column 5. The adjusting motor is located in the sliding groove 4. The adjusting motor cooperates with the first lead screw pair to make the nut seat of the first lead screw pair move up and down in the vertical direction. Further, the nut seat of the first lead screw pair can drive the connecting column 5 to move up and down. Further, in order to better limit the sliding direction of the nut seat of the first lead screw pair, in this embodiment, the nut seat of the first lead screw pair is slidably connected to the first guide rail; Specifically, when the user uses this bracket in the office state, the user can start the adjusting motor to drive the sliding of the first lead screw pair, and then make the connecting column 5 slide on the groove wall of the sliding groove 4; The movement of the connecting column 5 drives the movement of the mounting platform 3, and then makes the display move in the vertical direction. The user can better adapt to his own line-of-sight height, avoid neck fatigue and discomfort caused by lowering or raising the head, and maintaining the correct line-of-sight height helps to reduce the pressure on the neck and shoulders and improve comfort and work efficiency;

[0085] Regarding the specific structure of the second usage state, that is, the specific structure in the entertainment state, to facilitate the user to switch from the first office state to the entertainment state using the VR device: It should be noted in advance that in this embodiment, the adjusting device 6 is preferably the above-mentioned second reference structure, that is, the electric structure. In this embodiment, a swinging component 7 is fixedly arranged at the bottom of the connecting column 5. A box body one 8 for placing the VR handle and a box body two 9 for placing the VR helmet are slidably connected to the mounting base 1. When the connecting column 5 slides vertically downward, the swinging component 7 is used to drive the box body one 8 and the box body two 9 to move away from each other. When the connecting column 5 slides to the lowest end of the sliding groove 4, the box body one 8 and the box body two 9 can move towards the user's direction; It is worth noting that a wire passing hole one is opened on the box body one 8 in this embodiment, and the wire of the VR handle is connected to the host computer of the computer. A wire passing hole two is opened on the box body two 9, and the wire of the VR helmet is connected to the host computer of the computer;

[0086] It further includes a linkage component one 10 and a driving device one 11. The driving device one 11 is connected to the linkage component one 10. When the connecting column 5 slides to the lowest end of the sliding groove 4, the driving device one 11 drives the linkage component one 10 to move, and the linkage component one 10 can drive the box body one 8 and the box body two 9 to move towards the user's direction;

[0087] The installation platform 3 includes a rotating plate one 31 and a rotating plate two 32. One end of the rotating plate one 31 and the rotating plate two 32 is hinged through a hinge. The rotating plate one 31 is provided with an installation groove for accommodating the hinge, and the hinge is located in the installation groove. One end of the rotating plate one 31 and the rotating plate two 32 is hinged. The rotating plate two 32 can be used to install a display. A linkage component two 12 is arranged on the rotating plate two 32. When the connecting column 5 slides to the lowest end of the sliding groove 4, the driving device one 11 can drive the rotating plate two 32 to move away from the rotating plate one 31 through the linkage component two 12;

[0088] To sum up, more specifically:

[0089] In the initial state, that is, when the user is in the office state, there are three situations for the position of the connecting column 5 at this time:

[0090] The first case is that the connecting column 5 is at the highest position of the sliding groove 4. At this time, if the user wants to switch to using VR devices for entertainment, first, the user can vertically slide the connecting column 5 downward to the lowest end of the sliding groove 4 through the adjusting device 6. During the sliding process, the connecting column 5 slides downward, and the swinging assembly 7 drives the first box body 8 and the second box body 9 to move away from each other. When the connecting column 5 slides to the lowest end of the sliding groove 4, the maximum distance is reached between the first box body 8 and the second box body 9. At this time, the first box body 8 and the second box body 9 can move towards the user. It should be noted that at this time, the connecting platform also slides to the lowest point; second, the user starts the first driving device 11, and the first driving device 11 drives the first linkage assembly 10 to move. The first linkage assembly 10 can drive the first box body 8 and the second box body 9 to move towards the user, enabling the user to easily obtain the VR handle and the VR helmet. At the same time, the first driving device 11 can drive the second rotating plate 32 to move away from the first rotating plate 31 through the second linkage assembly 12, tilting the display screen, making it more convenient for the user in a standing state to observe the display screen;

[0091] The second case is that the connecting column 5 is at the middle position of the sliding groove 4. At this time, repeat the operation process of the first case above;

[0092] The third case is that the connecting column 5 is at the lowest point of the sliding groove 4. At this time, there is no need for the first step of the first case above, and directly perform the second step of the first case above.

[0093] In some embodiments, the first driving device 11 includes a dual-axis motor 111 and a first rotating shaft 112. The dual-axis motor 111 is installed on the installation column 2, and the dual-axis motor 111 is rotationally connected to the first rotating shaft 112. The first rotating shaft 112 is vertically arranged, and a second bevel gear 113 is coaxially connected to the first rotating shaft 112;

[0094] The second linkage assembly 12 includes a fixed block 121 and a second lead screw pair 122. The fixed block 121 is installed on the first rotating plate 31. A sliding cylinder 123 is opened on the fixed block 121. The lead screw of the second lead screw pair 122 passes through the through-axis hole 124 of the fixed block 121 and the first rotating plate 31. A slanting rod 125 is fixedly connected to the nut seat of the second lead screw pair 122 in the direction towards the second rotating plate 32. One end of the slanting rod 125 towards the second rotating plate 32 is an arc surface, and the arc surface end of the slanting rod 125 is used to push the second rotating plate 32 to rotate relative to the first rotating plate 31. The other end of the second lead screw pair 122 is coaxially fixedly connected with a first bevel gear 126. When the connecting column 5 slides to the lowest end of the sliding groove 4, the first bevel gear 126 meshes with the second bevel gear 113;

[0095] The first linkage component 10 includes a second rotating shaft 101, a first gear 102 and a second gear 103. A third bevel gear 104 is coaxially connected to the bottom end of the first rotating shaft 112. A first rotating groove 13 is formed in the mounting base 1 along the horizontal direction. The second rotating shaft 101 is arranged in the first rotating groove 13. The second rotating shaft 101 is coaxially connected with a fourth bevel gear 105. The fourth bevel gear 105 meshes with the third bevel gear 104. The two ends of the second rotating shaft 101 are respectively coaxially connected with the first gear 102 and the second gear 103;

[0096] A first sliding groove 14 and a second sliding groove 15 are respectively formed at the two ends of the mounting base 1. A first slider 16 is slidably connected to the groove wall of the first sliding groove 14. A second slider 17 is slidably connected to the groove wall of the second sliding groove 15. A first rack 106 is arranged at one end of the first slider 16 facing the connecting column 5. The first rack 106 meshes with the first gear 102. A second rack 107 meshes with the second gear 103;

[0097] When the connecting column 5 slides to the lowest end of the sliding groove 4, the dual-axis motor 111 is started to drive the first rotating shaft 112 to rotate, so that the second rotating plate 32 rotates in a direction away from the first rotating plate 31. At the same time, the rotation of the first rotating shaft 112 drives the second rotating shaft 101 to rotate, and the rotation of the second rotating shaft 101 drives the first box body 8 and the second box body 9 to move towards the user.

[0098] Specifically, when the user switches from using this bracket for office work to using VR equipment for entertainment, the user can control the connecting column 5 to slide vertically downward through the adjusting device 6. When the connecting column 5 slides vertically downward, the swinging component 7 is used to drive the first box body 8 and the second box body 9 to move away from each other. When the connecting column 5 slides vertically downward to the lowest point, first, the first box body 8 and the second box body 9 slide to the farthest distance from each other. At this time, the user can start the dual-axis motor 111. After the dual-axis motor 111 is started, the dual-axis motor 111 drives the first rotating shaft 112 to rotate. Since the first bevel gear 126 meshes with the second bevel gear 113 at this time, the rotation of the first rotating shaft 112 can drive the first bevel gear 126 to rotate. The rotation of the first bevel gear 126 can drive the screw rod of the second screw pair 122 to rotate, and then drive the nut of the second screw pair 122 to slide in the sliding cylinder 123, and further make the inclined rod 125 move upward in the direction towards the second rotating plate 32, so as to further push the second rotating plate 32 to move in a direction away from the first rotating plate 31, making the display inclined. So that the user using VR equipment for entertainment can see the display well in a standing state;

[0099] In addition, when the user controls the connecting column 5 to slide vertically downward to the lowest point through the adjusting device 6, the swinging assembly 7 drives the first box body 8 to move onto the first slider 16 and drives the second box body 9 to move onto the second slider 17. At this time, the first rotating shaft 112 rotates, driving the third bevel gear 104 to rotate, and further driving the fourth bevel gear 105 to rotate, and further driving the second rotating shaft 101 to rotate. The rotation of the second rotating shaft 101 can drive the first gear 102 and the second gear 103 to rotate. Since the first gear 102 meshes with the first rack 106, the rotation of the first gear 102 can drive the first rack 106 to rotate, thereby causing the first slider 16 to move, and the first box body 8 on the first slider 16 to move accordingly. It should be noted that a limiting assembly 18 is also provided on the first slider 16. The limiting assembly 18 can be used to limit the position of the first box body 8. The limiting assembly 18 includes a space surrounded by a first limiting block, a second limiting block, and a third limiting block. The rotation of the first rotating shaft 112 causes the first box body 8 and the second box body 9 to move in the direction towards the user, making it more convenient for the user to obtain the VR devices in the first box body 8 and the second box body 9, enhancing the user's interest in using the VR devices and greatly improving the convenience of the user using the VR devices.

[0100] It should be noted that since the first bevel gear 126 and the second bevel gear 113 need to mesh in this embodiment, the rotational position of the first rotating shaft 112 during rotation needs to be strictly set in this embodiment to ensure that when the connecting column 5 moves to the lowest point, the first bevel gear 126 also moves to the lowest point, and the first bevel gear 126 and the second bevel gear 113 are in a meshing state. In addition, a support shaft frame is provided on the mounting column 2 in this embodiment. One end of the support shaft frame is fixedly connected to the mounting column 2, and the other end of the support shaft frame is rotatably connected to the first rotating shaft 112. Specifically, the first rotating shaft 112 passes through the support shaft hole of the support shaft frame, and the first rotating shaft 112 and the hole wall of the support shaft hole are rotatably connected through a bearing, enabling the support shaft frame to play a role in supporting the rotation of the first rotating shaft 112;

[0101] It should be noted that a first wire passing hole (not shown in the figure) is provided on the first box body 8 in this embodiment. The wire of the VR handle is wound around the first rotating shaft 112 and then connected to the host computer. A second wire passing hole (not shown in the figure) is provided on the second box body 9. The wire of the VR helmet is wound around the first rotating shaft 112 and then connected to the host computer. When the first rotating shaft 112 rotates, the wire can be detached. At the same time, when the first rotating shaft 112 rotates in the reverse direction, the wire can be wound around the first rotating shaft 112, so that the user does not need to manually wind the wire after using the VR device. The rotation of the first rotating shaft 112 can release the wire to facilitate the movement of the first box body 8 and the second box body 9 in the direction towards the user when the first rotating shaft 112 rotates, enabling the user to easily obtain the VR device. Thus, it meets the needs of users using a wired connection to easily obtain the VR device when using the VR device, and does not require manual wire collection after using the VR device, improving the convenience of the user using the VR device and the user's interest in using the VR device;

[0102] In addition, it is worth noting that considering that the number of rotations of the first rotating shaft 112 is a fixed number of rotations and the length of the wire is relatively long, in some embodiments, a wire winding cylinder (not shown in the figure) may be provided on the first rotating shaft 112. The wire winding cylinder is sleeved on the first rotating shaft 112, and the radius of the wire winding cylinder may be adapted to the length of the wire.

[0103] In addition, referring to Figure 1 、 Figure 18 and Figure 19 , regarding the structure of the second linkage component 12, in some other embodiments, it further includes an inverted "L"-shaped pipe 38, a first reversing gear 39, a second reversing gear 40, and a rotating shaft 41. One end of the "L"-shaped pipe 38 is fixedly connected to the fixed block 121, and the other end of the "L"-shaped pipe 38 is collinear with the center line of the first rotating shaft 112 in the vertical direction. The first reversing gear 39, the second reversing gear 40, and the rotating shaft 41 are located inside the "L"-shaped pipe 38. The first reversing gear 39 meshes with the first bevel gear 126. The first reversing gear 39 and the second reversing gear 40 are respectively located at both ends of the rotating shaft 41 and are coaxially connected to the rotating shaft 41. When the connecting column 5 moves downward under the action of the adjusting device 6, the first reversing gear 39, the second reversing gear 40, and the rotating shaft 41 move downward simultaneously. When the connecting column 5 moves to the lowest point, the second bevel gear 113 meshes with the first reversing gear 39; it should be noted that, further, regarding the structure of the second linkage component 12, in some other embodiments, the "L"-shaped pipe 38 is rotatably connected to the first rotating shaft 112 through a ball bearing. The vertical part of the "L"-shaped pipe 38 includes an inner pipe 381 and an outer pipe 382. The outer pipe 382 is sleeved on the outer surface of the inner pipe 381. Specifically, the inner pipe 381 is integrally connected to the horizontal part of the "L"-shaped pipe 38. The bottom end of the outer pipe 382 is rotatably connected to the first rotating shaft 112, and the outer surface of the inner pipe 381 is slidably connected to the inner surface of the outer pipe 382;

[0104] The movement principle is that when the connecting column 5 moves downward, the connecting column 5 drives the inner pipe 381 of the "L"-shaped pipe 38 to slide vertically inside the outer pipe 382, so that the second reversing gear 40 moves in the direction of the second bevel gear 113. When the connecting column 5 reaches the lowest point, the inner pipe 381 slides to the lowest point of the outer pipe 382. At this time, exactly the second reversing gear 40 meshes with the second bevel gear 113. At this time, the dual-axis motor 111 is started, so that the first rotating shaft 112 rotates, and then drives the second reversing gear 40 to rotate, and then the rotating shaft 41 rotates, and then the first reversing gear 39 rotates, and then the first bevel gear 126 rotates, and finally the second rotating plate 32 moves, so that the display tilts. It should be noted that a positioning component is provided inside the outer pipe 382, and this positioning component is used to make the inner pipe 381 slide to the lowest point of the outer pipe 382 when the connecting column 5 slides to the lowest point.

[0105] In some embodiments, the swing assembly 7 includes a sliding rod 71 which is vertically arranged. The downward movement of the connecting column 5 drives the sliding rod 71 to slide relative to the mounting column 2. The sliding connection relationship between the sliding rod 71 and the mounting column 2 is not limited. The sliding rod 71 is rotatably connected with a first connecting rod 72 and a second connecting rod 73. The first connecting rod 72 and the second connecting rod 73 are arranged oppositely. When the connecting column 5 slides to the lowest end of the sliding groove 4, the maximum distance is reached between the ends of the first connecting rod 72 and the second connecting rod 73 that are far away from the sliding rod 71. One end of the first connecting rod 72 that is far away from the sliding rod 71 is rotatably connected with a first box body 8, and one end of the second connecting rod 73 that is far away from the sliding rod 71 is rotatably connected with a second box body 9. When the connecting column 5 slides in the direction of vertically downward, the first connecting rod 72 and the second connecting rod 73 respectively drive the first box body 8 and the second box body 9 to move away from each other. When the connecting column 5 slides to the lowest end of the sliding groove 4, the distance between the first box body 8 and the second box body 9 reaches the maximum.

[0106] The first box body 8 is provided with a first rod receiving groove 20. A separation hole 21 is formed in the groove wall of the first rod receiving groove 20. An articulated shaft 22 is arranged on the groove wall of the first rod receiving groove 20. One end of the articulated shaft 22 is rotatably connected with the groove wall of the rod receiving groove, and the other end of the articulated shaft 22 is flush with the hole wall of the separation hole 21. When the connection point between the first connecting rod 72 and the sliding rod 71 moves to the lowest point, the first box body 8 moves towards the user, and the first connecting rod 72 can be disconnected from the first box body 8 through the separation hole 21. A first supporting member for supporting the first connecting rod 72 is arranged on the mounting column 2. Further, the first supporting member includes a first supporting seat 23. A space for placing a VR speaker is formed in the first supporting seat 23. A first supporting card slot 24 is arranged on the first supporting seat 23. A control button is arranged at the bottom of the first supporting card slot 24. When the connecting column 5 slides to the lowest point, the first connecting rod 72 is clamped with the first supporting card slot 24, and the first connecting rod 72 touches the control button, and the VR speaker is turned on to work. Correspondingly, the second box body 9 is provided with a second rod receiving groove 25. A separation hole 21 is also formed in the groove wall of the second rod receiving groove 25. An articulated shaft 22 is also arranged on the groove wall of the second rod receiving groove 25. One end of the articulated shaft 22 is rotatably connected with the groove wall of the second rod receiving groove 25, and the other end of the articulated shaft 22 is flush with the hole wall of the separation hole 21. When the connection point between the second connecting rod 73 and the sliding rod 71 moves to the lowest point, the second box body 9 moves towards the user, and the second connecting rod 73 can be disconnected from the second box body 9 through the separation hole 21. A second supporting member for supporting the second connecting rod 73 is arranged on the mounting column 2. Further, the second supporting member includes a second supporting seat 26. A space for placing perfume is formed in the second supporting seat 26. A second supporting card slot 27 is arranged on the second supporting seat 26.

[0107] Specifically, when the connecting column 5 moves downward, it drives the sliding rod 71 to move downward, causing the first connecting rod 72 and the second connecting rod 73 to move away from the end of the connecting column 5. At the same time, the first box body 8 and the second box body 9 move away from the end of the connecting column 5. When the connecting column 5 slides to the lowest end of the sliding groove 4, the distance between the ends of the first connecting rod 72 and the second connecting rod 73 that are away from the sliding rod 71 reaches the maximum, and the distance between the first box body 8 and the second box body 9 reaches the maximum. At this time, first, the first connecting rod 72 is engaged with the supporting card slot, and the first connecting rod 72 touches the control button, and the VR speaker is turned on to work. Second, the first box body 8 moves in the direction of the user, and the first connecting rod 72 can be disconnected from the first box body 8 through the separation hole 21. Third, at this time, the first box body 8 moves onto the first slider 16, and the side surfaces of the first box body 8 are in contact with the first limiting block, the second limiting block, and the third limiting block, so that the position of the first box body 8 is limited on the first slider 16.

[0108] Embodiment 2:

[0109] The difference in the structure between this embodiment and Embodiment 1 is:

[0110] In this embodiment, considering that using a VR device requires a computer with high-strength performance and will increase the temperature of the display, this bracket is also provided with a cooling component 28. The cooling component 28 is installed on the installation base 1, and the cooling component 28 is used to cool the display. In addition, in order to accommodate more shapes of displays, this bracket also includes a rotating component 29. The rotating component 29 is installed on the second rotating plate 32, and the rotating component 29 is used to support displays of various sizes, such as flat-panel displays and curved-panel displays.

[0111] In this embodiment, the cooling component 28 is installed on the installation base 1, and the cooling component 28 is used to cool the display. The rotating component 29 is installed on the second rotating plate 32, and the rotating component 29 is used to install the display.

[0112] In this embodiment, the rotating assembly 29 includes a rotating part 291 and a supporting part 292. The supporting part 292 includes four support rods. The support rods are installed on the second rotating plate 32. One end of the support rod facing the second rotating plate 32 is rotatably connected to the rotating plate. A clamping part 2925 is provided on the side of the support rod away from the second rotating plate 32. The four clamping parts 2925 are used to clamp the display. The rotating part 291 is used to rotate the support rods. Further, among the four support rods, the support rod one 2921 and the support rod two 2922 that are inclined upward respectively include a first cylindrical part and a second cylindrical part at one end facing the second rotating plate 32. The rotating part 291 includes a third rotating shaft 2911 and a fourth rotating shaft 2912. The third rotating shaft 2911 and the fourth rotating shaft 2912 are arranged vertically. Both the third rotating shaft 2911 and the fourth rotating shaft 2912 pass through the inside of the second rotating plate 32. A first through groove and a second through groove are formed on the second rotating plate 32. The first cylindrical part is located in the first through groove. The third rotating shaft 2911 passes through the first through groove. The first cylindrical part is sleeved on the third rotating shaft 2911. The second cylindrical part is located in the second through groove. The fourth rotating shaft 2912 passes through the second through groove. The second cylindrical part is sleeved on the fourth rotating shaft 2912. A second driving device is provided on the second rotating plate 32. The second driving device is used to drive the third rotating shaft 2911 and the fourth rotating shaft 2912 to rotate.

[0113] Specifically, when the user uses the rotating assembly 29 to support a flat screen display, the flat screen display can be directly placed on the supporting part 292, and the flat screen display is supported by the four supporting parts 292. The cooling assembly 28 is used to cool the display. When the user uses the rotating assembly 29 to support a curved screen display, in the first step, the user can drive the third rotating shaft 2911 to rotate through the second driving device. The rotation of the third rotating shaft 2911 drives the support rod one 2921 to rotate. The rotation of the support rod one 2921 can drive the clamping part 2925 to rotate, and an angle less than 180° can be formed between the support rod one 2921 and the support rod two 2922. In the second step, the user can measure the radian of the curved screen display to ensure that the curved screen display can be installed on the rotating assembly 29, and the curved screen display can be clamped on the four clamping parts 2925. In the third step, after the user finishes using it, the curved screen can be removed, and the support rod one 2921 and the support rod two 2922 can be rotated reversely, so that this bracket can support both the curved screen display and the flat screen display.

[0114] In some embodiments, the rotating part 291 further includes a fifth rotating shaft 2913. A second rotating groove is horizontally formed in the second rotating plate 32. The second rotating groove communicates with the first through groove and the second through groove. The fifth rotating shaft 2913 is rotatably connected to the second rotating groove. A fifth bevel gear 2914 is coaxially connected to the third rotating shaft 2911. Two ends of the fifth rotating shaft 2913 are respectively rotatably connected with a sixth bevel gear 2915 and a seventh bevel gear 2916. The fifth bevel gear 2914 meshes with the sixth gear. An eighth bevel gear 2917 is coaxially connected to the fourth rotating shaft 2912. The seventh bevel gear 2916 meshes with the eighth bevel gear 2917. The second driving device includes a rotating motor 2918. The rotating motor 2918 is coaxially and fixedly connected to the third rotating shaft 2911. An avoidance groove is formed in the first rotating plate 31 to prevent the rotating motor 2918 from interfering with the first rotating plate 31 when the second rotating plate 32 rotates.

[0115] In addition, assume that among the four support rods, the upwardly inclined ones are the third support rod 2923 and the fourth support rod 2924. Correspondingly, one ends of the third support rod 2923 and the fourth support rod 2924 facing the second rotating plate 32 respectively include a third cylindrical part and a fourth cylindrical part. A third through groove and a fourth through groove are formed in the second rotating plate 32. The third cylindrical part is located in the third through groove. The third rotating shaft 2911 passes through the third through groove. The third cylindrical part is sleeved on the third rotating shaft 2911. The fourth cylindrical part is located in the fourth through groove. The fourth rotating shaft 2912 passes through the second through groove. The second cylindrical part is sleeved on the fourth rotating shaft 2912.

[0116] Specifically, assume that in the initial state, the included angle between the first support rod 2921 and the second support rod 2922 is 180°. When the user needs to rotate the first support rod 2921 and the second support rod 2922 to adapt to the curved screen display, the user can drive the third rotating shaft 2911 to rotate through the output of the rotating motor 2918. When the third rotating shaft 2911 rotates: First, it drives the first cylindrical part to rotate, and then drives the first support rod 2921 to rotate. Second, the rotation of the third rotating shaft 2911 drives the fifth bevel gear 2914 to rotate. Since the fifth bevel gear 2914 meshes with the sixth bevel gear 2915, the rotation of the third rotating shaft 2911 drives the fifth bevel gear 2914 to rotate, and then drives the fifth rotating shaft 2913 to rotate. The rotation of the fifth rotating shaft 2913 drives the seventh bevel gear 2916 to rotate. Since the seventh bevel gear 2916 meshes with the eighth bevel gear 2917, the rotation of the seventh bevel gear 2916 can drive the eighth bevel gear 2917 to rotate. Since the eighth bevel gear 2917 rotates with the fourth rotating shaft 2912, the rotation of the fourth rotating shaft 2912 drives the second cylindrical part to rotate, and then drives the second support rod 2922 to rotate. It should be noted that considering the weights of the third rotating shaft 2911, the fourth rotating shaft 2912, the fifth rotating shaft 2913 and the four support rods, as well as the cost of the motor, the model of the rotating motor 2918 is preferably a high-torque micro motor, and can be selected as an AC-DC dual-purpose motor of the 86ST125H-3508A model. Of course, this embodiment does not limit this, and is for reference only.

[0117] In some embodiments, the cooling assembly 28 includes a cooling hose and a pump - less cooler 282. After the pump - less cooler 282 is installed on the mounting column 2, the pump - less cooler 282 includes an upper box body 2821, a lower box body 2822 and a plurality of connecting pipes 2823. The upper box body 2821, the lower box body 2822 and the plurality of connecting pipes 2823 are fixed to each other and communicate in a cycle. An air outlet is communicated and arranged on the upper box body 2821, and a liquid inlet is communicated and arranged on the lower box body 2822. The upper box body 2821, the lower box body 2822, the plurality of connecting pipes 2823 and the cooling hose are all filled with refrigerant. A plurality of cooling structures are arranged on the first support rod 2921 and the second support rod 2922. The cooling hose is installed on the cooling structures. The cooling hose is bent. One end of the cooling hose is communicated with the air outlet of the pump - less cooler 282, and the other end of the cooling hose is communicated with the liquid inlet of the pump - less cooler 282.

[0118] Embodiment 3:

[0119] Most of the structures of this embodiment are the same as those of Embodiment 2.

[0120] The difference between this embodiment and Embodiment 2 is:

[0121] In order to improve the convenience for users to install and replace the display screen, a lifting assembly 30 is arranged at one end of the rotating shaft four 2912 located in the through - slot four. The lifting assembly 30 can be used for the lifting movement of the third support rod 2923 and the fourth support rod 2924 in the vertical direction. The lifting assembly 30 includes a threaded column 301, a threaded head 302 and an adjusting pin 303. One end of the threaded column 301 is fixedly connected to the threaded head 302. A threaded cylinder 304 is opened at one end of the rotating shaft four 2912 located in the through - slot four. The threaded column 301 is threadedly connected to the threaded cylinder 304. The cylindrical part four is sleeved on the threaded column 301. It should be noted that at this time, the cylindrical part four and the threaded column 301 are movably connected, and the top end of the cylindrical part four abuts against the bottom end of the rotating shaft four 2912, and the bottom end of the cylindrical four abuts against the threaded head 302. The rotating shaft four 2912 abuts against the cylindrical four through the threaded head 302. A first conical hole is opened on the rotating shaft four 2912, and a second conical hole is opened on the threaded column 301. The first conical hole and the second conical hole are communicated. A convex block one 305 is arranged on the groove wall of the through - slot four. An adjusting hole one 306 is opened on the convex block one 305. The adjusting pin 303 can be inserted into the second conical hole and the first conical hole through the hole wall of the adjusting hole one 306, and the adjusting pin 303 is slidably connected to the hole wall of the adjusting hole one 306. It should be noted that the hole wall of the adjusting hole one 306 is elliptical in the horizontal direction to allow the adjusting pin 303 to rotate on the hole wall of the adjusting hole one 306;

[0122] Correspondingly, at one end of the through groove three where the support rod three 2923 is located, a guide cylinder is provided. A guide post is arranged inside the guide cylinder. The guide post is provided with a guide head. The guide post is inserted into the guide cylinder, and the cylindrical part three is sleeved inside the guide post. A conical hole three is formed on the rotating shaft three 2911, and a conical hole four is formed on the guide post. The conical hole three communicates with the conical hole four. The groove wall of the through groove three is provided with a convex block two, and an adjustment hole two is formed on the convex block two. The adjustment pin two can be inserted into the conical hole two and the conical hole one through the hole wall of the adjustment hole two, and the adjustment pin two is slidably connected with the hole wall of the adjustment hole two. The hole wall of the adjustment hole two is an ellipse in the horizontal direction for the adjustment pin two to rotate on the hole wall of the adjustment hole two.

[0123] Specifically, when the operator rotates the rotating shaft three 2911 and the rotating shaft four 2912, the adjustment pin one 303 is inserted into the conical hole two and the conical hole one through the hole wall of the adjustment hole one 306. This makes the threaded column 301 rotate as the rotating shaft four 2912 rotates, and then can drive the cylindrical part four to rotate, and further drive the support rod four 2924 to rotate; assume that in the initial state, the monitor is installed on the four support parts 292. At this time, if the operator needs to replace or remove the monitor, in the first step, the operator pulls out the adjustment pin two from the conical hole three and the conical hole four. At this time, the operator can remove the guide post from the rotating shaft three 2911, and then remove the support rod three 2923 from the barrel groove three. It should be noted that at this time, the monitor will not fall under the installation of the three clamping parts 2925, and the user can also hold the monitor with one hand when using it; in the second step, the operator holds the monitor with one hand and pulls out the adjustment pin two from the conical hole three and the conical hole four with the other hand, and then loosens the threaded column 301. The threaded column 301 slowly rotates and makes the threaded column slowly descend, and then makes the monitor slowly move downward to the installation base 1. After that, the operator can take out the monitor for replacement.

[0124] Furthermore, a support block 33 is arranged on the groove wall of the through groove four. An insertion pin 34 is arranged inside the support block 33. The threaded head 302 is rotatably connected with a support cylinder 35. The insertion pin 34 can be inserted into the support cylinder 35. The establishment of this support cylinder 35 can support the threaded column 301. It should be noted that a "C" - shaped ring groove 36 is arranged on the support cylinder 35. Correspondingly, a ring block 37 is arranged on the threaded column 301. The ring block 37 is located in the "C" - shaped ring groove 36, and the ring block 37 can be rotatably connected with the "C" - shaped ring groove 36;

[0125] A using method of a VR accessory and a display integrated bracket, including the above - mentioned VR accessory and display integrated bracket:

[0126] S1, adjust the positions of the support rod one 2921 and the support rod two 2922 through the rotating assembly 29 so that the four support rods support the monitor, and place the monitor on the support part 292 of the support rod;

[0127] S2, Place the VR handle and the VR helmet on the first box 8 and the second box 9 respectively, wind the wire around the first rotating shaft 112, and insert the other end of the wire into the host computer.

[0128] S3, When the user is working, the height of the display can be adjusted by sliding the connecting column 5 on the sliding groove 4; when the user uses the VR device, the connecting column 5 slides vertically downward through the adjusting device 6. When the connecting column 5 slides downward, the first connecting rod 72 and the second connecting rod 73 respectively push the first box 8 and the second box 9 away from each other.

[0129] S4, When the connecting column 5 slides downward to the lowest point, the first box 8 is located on the first slider 16, and the second box 9 is located on the second slider 17.

[0130] S5, When the connecting column 5 slides to the lowest point, start the double-shaft motor 111. The double-shaft motor 111 rotates, and the second rotating plate 32 moves away from the first rotating plate 31, and the display tilts.

[0131] S6, The first rotating shaft 112 rotates, causing the second rotating shaft 101 to rotate, the first gear 102 and the second gear 103 to rotate, the first slider 16 and the second slider 17 move towards the user, and the first connecting rod 72 separates from the first box 8 through the separation hole 21. The rotation of the first rotating shaft 112 causes the wire to fall off.

[0132] S7, The user takes the VR handle from the first box 8 and takes the VR helmet from the second box 9.

[0133] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and without departing from the spirit or basic characteristics of the present invention, the present invention can be implemented in other specific forms. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claimed rights.

[0134] In addition, it should be understood that although this specification is described according to the embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A VR accessory integrated bracket with a display, characterized in that It includes an installation base (1), an installation column (2) and an installation platform (3). The installation column (2) is installed on the installation base (1). A sliding groove (4) is provided in the vertical direction of the installation column (2). A connecting column (5) is provided on the installation column (2), and an adjusting device (6) is provided in the sliding groove (4). The adjusting device (6) is used to adjust the sliding connection between the connecting column (5) and the groove wall of the sliding groove (4) in the vertical direction. The other end of the connecting column (5) is connected to the installation platform (3). A swinging assembly (7) is fixedly provided at the bottom of the connecting column (5). A box body one (8) for placing a VR handle and a box body two (9) for placing a VR helmet are slidably connected on the installation base (1). When the connecting column (5) slides vertically downward, the swinging assembly (7) is used to drive the box body one (8) and the box body two (9) to move away from each other. It further includes a linkage assembly one (10) and a driving device one (11). The driving device one (11) is connected to the linkage assembly one (10). When the connecting column (5) slides to the lowest end of the sliding groove (4), the driving device one (11) drives the linkage assembly one (10) to move, and the linkage assembly one (10) can drive the box body one (8) and the box body two (9) to move in the direction towards the user. The installation platform (3) includes a rotating plate one (31) and a rotating plate two (32). One end of the rotating plate one (31) and the rotating plate two (32) is hinged. The rotating plate two (32) can be used to install a display. A linkage assembly two (12) is provided on the rotating plate two (32). When the connecting column (5) slides to the lowest end of the sliding groove (4), the driving device one (11) can drive the rotating plate two (32) to move away from the rotating plate one (31) through the linkage assembly two (12). The adjusting device (6) slides the connecting column (5) vertically downward to the lowest end of the sliding groove (4). When the connecting column (5) slides to the lowest end of the sliding groove (4), the swinging assembly (7) drives the box body one (8) and the box body two (9) to move away from each other to the maximum distance. Start the driving device one (11), and the linkage assembly one (10) drives the box body one (8) and the box body two (9) to move in the direction towards the user. At the same time, the linkage assembly two (12) drives the rotating plate two (32) to move away from the rotating plate one (31). The driving device one (11) includes a double-shaft motor (111) and a rotating shaft one (112). The double-shaft motor (111) is installed on the installation column (2). The double-shaft motor (111) is rotationally connected to the rotating shaft one (112). The rotating shaft one (112) is vertically arranged, and a bevel gear two (113) is coaxially connected to the rotating shaft one (112). The linkage component two (12) includes a fixed block (121) and a lead screw pair two (122). The fixed block (121) is installed on the first rotating plate (31). A sliding cylinder (123) is formed on the fixed block (121). The lead screw of the lead screw pair two (122) passes through the fixed block (121) and the through-axis hole (124) of the first rotating plate (31). A slanting rod (125) is fixedly connected to the nut seat of the lead screw pair two (122) in the direction towards the second rotating plate (32). One end of the slanting rod (125) towards the second rotating plate (32) is an arc surface. The arc-surface end of the slanting rod (125) is used to push the second rotating plate (32) to rotate relative to the first rotating plate (31). The other end of the lead screw pair two (122) is coaxially fixedly connected with a bevel gear one (126). When the connecting column (5) slides to the lowest end of the sliding groove (4), the bevel gear one (126) meshes with the bevel gear two (113). The linkage component one (10) includes a second rotating shaft (101), a first gear (102) and a second gear (103). The bottom end of the first rotating shaft (112) is coaxially connected with a bevel gear three (104). A first rotating groove (13) is formed in the installation base (1) in the horizontal direction. The second rotating shaft (101) is arranged in the first rotating groove (13). The second rotating shaft (101) is coaxially connected with a bevel gear four (105). The bevel gear four (105) meshes with the bevel gear three (104). The two ends of the second rotating shaft (101) are respectively coaxially connected with the first gear (102) and the second gear (103). The two ends of the installation base (1) are respectively provided with a first sliding groove (14) and a second sliding groove (15). A first slider (16) is slidably connected to the groove wall of the first sliding groove (14). A second slider (17) is slidably connected to the groove wall of the second sliding groove (15). A first rack (106) is arranged at one end of the first slider (16) towards the connecting column (5). The first rack (106) meshes with the first gear (102). A second rack (107) meshes with the second gear (103). When the connecting column (5) slides to the lowest end of the sliding groove (4), the double-shaft motor (111) is started to drive the first rotating shaft (112) to rotate, so that the second rotating plate (32) rotates in the direction away from the first rotating plate (31). At the same time, the rotation of the first rotating shaft (112) drives the second rotating shaft (101) to rotate, and the rotation of the second rotating shaft (101) drives the first box body (8) and the second box body (9) to move towards the user. The swing assembly (7) includes a slide bar (71) which is vertically arranged. When the connecting column (5) moves downward, it drives the slide bar (71) to slide relative to the mounting column (2). The slide bar (71) is rotatably connected to a first connecting rod (72) and a second connecting rod (73). The first connecting rod (72) and the second connecting rod (73) are arranged oppositely. When the connecting column (5) slides to the lowest end of the sliding groove (4), the maximum distance is reached between the ends of the first connecting rod (72) and the second connecting rod (73) that are away from the slide bar (71). One end of the first connecting rod (72) that is away from the slide bar (71) is rotatably connected to the first box body (8), and one end of the second connecting rod (73) that is away from the slide bar (71) is rotatably connected to the second box body (9). When the connecting column (5) slides in the vertically downward direction, the first connecting rod (72) and the second connecting rod (73) respectively drive the first box body (8) and the second box body (9) to move away from each other. When the connecting column (5) slides to the lowest end of the sliding groove (4), the distance between the first box body (8) and the second box body (9) reaches the maximum. The first box body (8) is provided with a first wire passing hole, and the second box body (9) is provided with a second wire passing hole. The wire passes through the first wire passing hole or the second wire passing hole, winds around the first rotating shaft (112), and then is connected to the computer host.

2. The integrated bracket for VR accessories and a display according to claim 1, wherein, The first box body (8) is provided with a first rod receiving groove (20). A separation hole (21) is formed in the groove wall of the first rod receiving groove (20). A hinge shaft (22) is arranged on the groove wall of the first rod receiving groove (20). One end of the hinge shaft (22) is rotatably connected to the groove wall of the first rod receiving groove, and the other end of the hinge shaft (22) is flush with the hole wall of the separation hole (21). When the connection point between the first connecting rod (72) and the slide bar (71) moves to the lowest point, the first box body (8) moves towards the user, and the first connecting rod (72) can be disconnected from the first box body (8) through the separation hole (21). A supporting member for supporting the first connecting rod (72) is arranged on the mounting column (2). The supporting member includes a supporting seat. A space for placing a VR speaker is formed in the supporting seat. A supporting card slot is arranged on the supporting seat. A control button is arranged at the bottom of the supporting card slot. When the connecting column (5) slides to the lowest point, the first connecting rod (72) is clamped in the supporting card slot, the first connecting rod (72) touches the control button, and the VR speaker is turned on to work.

3. The integrated bracket for VR accessories and a display according to claim 2, characterized in that, A rotating assembly (29) and a cooling assembly (28) are arranged on the second rotating plate (32). The cooling assembly (28) is installed on the mounting base (1) and is used for cooling the display. The rotating assembly (29) is installed on the second rotating plate (32) and is used for installing the display.

4. The integrated bracket for a VR accessory and a display according to claim 3, wherein, The rotating assembly (29) includes a rotating part (291) and a supporting part (292). The supporting part (292) includes four support rods. The support rods are installed on the second rotating plate (32). One end of the support rod facing the second rotating plate (32) is rotatably connected to the rotating plate. A clamping part (2925) is provided on the side of the support rod away from the second rotating plate (32). The four clamping parts (2925) are used to clamp the display; the rotating part (291) is used to rotate the support rod.

5. The integrated bracket for a VR accessory and a display according to claim 4, wherein Let the upwardly inclined support rods among the four support rods be the first support rod (2921) and the second support rod (2922). One end of the first support rod (2921) and the second support rod (2922) facing the second rotating plate (32) respectively includes a first cylindrical part and a second cylindrical part; the rotating part (291) includes a third rotating shaft (2911) and a fourth rotating shaft (2912). The third rotating shaft (2911) and the fourth rotating shaft (2912) are vertically arranged. Both the third rotating shaft (2911) and the fourth rotating shaft (2912) pass through the inside of the second rotating plate (32). A first through groove and a second through groove are formed on the second rotating plate (32). The first cylindrical part is located in the first through groove. The third rotating shaft (2911) passes through the first through groove. The first cylindrical part is sleeved on the third rotating shaft (2911). The second cylindrical part is located in the second through groove. The fourth rotating shaft (2912) passes through the second through groove. The second cylindrical part is sleeved on the fourth rotating shaft (2912); a second driving device is provided on the second rotating plate (32). The second driving device is used to drive the third rotating shaft (2911) and the fourth rotating shaft (2912) to rotate.

6. The integrated bracket for VR accessories and a display according to claim 5, wherein, The rotating part (291) further includes a fifth rotating shaft (2913). A second rotating groove is formed in the second rotating plate (32) in the horizontal direction. The second rotating groove is communicated with the first through groove and the second through groove. The fifth rotating shaft (2913) is rotatably connected to the second rotating groove. A fifth bevel gear (2914) is coaxially connected to the third rotating shaft (2911). A sixth bevel gear (2915) and a seventh bevel gear (2916) are respectively rotatably connected to both ends of the fifth rotating shaft (2913). The fifth bevel gear (2914) meshes with the sixth gear. An eighth bevel gear (2917) is coaxially connected to the fourth rotating shaft (2912). The seventh bevel gear (2916) meshes with the eighth bevel gear (2917); the second driving device includes a rotating motor (2918). The rotating motor (2918) is coaxially and fixedly connected to the third rotating shaft (2911).

7. The integrated bracket for a VR accessory and a display according to claim 5, wherein, The cooling component (28) includes a cooling hose and a pump-free cooler (282). After the pump-free cooler (282) is installed on the installation column (2), the pump-free cooler (282) includes an upper box body (2821), a lower box body (2822) and a plurality of connecting pipes (2823). The upper box body (2821), the lower box body (2822) and the plurality of connecting pipes (2823) are fixed to each other and communicate in a cycle. An air outlet is communicated and arranged on the upper box body (2821), and a liquid inlet is communicated and arranged on the lower box body (2822). The upper box body (2821), the lower box body (2822), the plurality of connecting pipes (2823) and the cooling hose are all filled with refrigerant; A plurality of cooling structures are arranged on the first support rod (2921) and the second support rod (2922). The cooling hose is installed on the cooling structures. The cooling hose is bent. One end of the cooling hose is communicated with the air outlet of the pump-free cooler (282), and the other end of the cooling hose is communicated with the liquid inlet of the pump-free cooler (282).

8. A method for using an integrated bracket for a VR accessory and a display, characterized in that, Including a VR accessory and a display integrated bracket according to claim 7: S1. Adjust the positions of the first support rod (2921) and the second support rod (2922) through the rotating assembly (29) so that the four support rods support the display, and place the display on the support part (292) of the support rod; S2. Place the VR handle and the VR helmet on the first box body (8) and the second box body (9) respectively. The wire is wound around the first rotating shaft (112), and the other end of the wire is inserted into the host computer of the computer; S3. When the user is working, the height of the display can be adjusted by sliding the connecting column (5) on the sliding groove (4). When the user uses the VR device, the connecting column (5) is vertically downwardly slid by the adjusting device (6). When the connecting column (5) slides downwardly, the first connecting rod (7). 2) and the second connecting rod (73) respectively push the first box body (8) and the second box body (9) to move away from each other; S4. When the connecting column (5) slides downwardly to the lowest point, the first box body (8) is located on the first slider (16), and the second box body (9) is located on the second slider (17); S5. When the connecting column (5) slides to the lowest point, start the double-shaft motor (111). The double-shaft motor (111) rotates, and the second rotating plate (32) moves in a direction away from the first rotating plate (31), and the display tilts; S6. The first rotating shaft (112) rotates, so that the second rotating shaft (101) rotates, the first gear (102) and the second gear (103) rotate, the first slider (16) and the second slider (17) move in the direction towards the user, and the first connecting rod (72) separates from the first box body (8) through the separation hole (21), and the first rotating shaft (112) rotates to make the wire fall off; S7. The user takes the VR handle from the first box body (8) and takes the VR helmet from the second box body (9).

Citation Information

Patent Citations

  • Lifting take-up device and support applying same

    CN213900408U

  • Computer display device capable of being adjusted in multiple directions

    CN113739024A

  • Dual-purpose bracket for curved screen and straight screen and display

    CN118793896A