AI rice paper bionic display screen convenient to install
The flipping and rotating mechanism enables efficient transfer and storage of the display screen without disassembly, solving the problems of low disassembly and installation efficiency and easy damage of equipment in the existing technology, and improving the efficiency and stability of equipment deployment.
Patent Information
- Application Number
- CN202510951923.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-10
- Publication Date
- 2025-09-23
AI Technical Summary
Existing display screens need to be disassembled and manually moved during installation, resulting in low equipment deployment efficiency, easy damage and high risk of failure.
Using components such as a base, fixed columns, screws, and drive mechanisms, the display can be efficiently transferred and stored without disassembly through a flip and rotation mechanism, and a limit mechanism is used to ensure stability.
It enables rapid storage and deployment of display screens, reduces labor costs and equipment damage risks, improves equipment deployment efficiency and stability, and adapts to installation requirements in different venues.
Smart Images

Figure CN120684625A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to an AI rice paper bionic display screen that is easy to install, and belongs to the technical field of display screens. Background Art
[0002] In modern commercial display, culture and art, education and other fields, display screens are used more and more widely as an important carrier of information display. With the development of AI rice paper bionic display screen technology, it has shown great application potential in cultural display, commercial promotion and other fields with its advantages such as rice paper-like visual effects and intelligent interaction. However, the display screens in existing technologies are Since the display screen is large after being installed on the bracket, in order to avoid scratches on the display screen and transportation obstructions caused by the large size, the display screen and its supporting bracket must be disassembled into smaller parts to be successfully loaded into the transport vehicle. During installation, manual transportation and fixed installation on the bracket are usually adopted. This not only requires a lot of manpower for transportation, bracket disassembly and installation, and line debugging, but a single transfer, disassembly and installation can take several hours or even longer, resulting in low equipment deployment efficiency. In addition, frequent manual operations can easily cause problems such as scratches on the display screen surface and loose line interfaces, increasing the risk of equipment failure. Summary of the Invention
[0003] In order to solve the above technical problems, the present invention provides an AI rice paper bionic display screen that is easy to install, which can achieve efficient transfer and safe storage without disassembling the display screen.
[0004] The technical solution adopted by the present invention to solve its technical problem is: An AI rice paper bionic display screen that is easy to install includes a base and a fixing column. Grooves are formed on both sides of the base, and a screw rod is disposed in the groove. Both ends of the screw rod are threadedly connected to a slide seat, and the slide seat is slidably connected to the inner wall of the groove. Mounting plates are mounted on both sides of the fixed column through bearings, and a display screen is fixed to the bottom of the mounting plate. Fixed plates are fixed at both ends of the fixed column, and the fixed plates are connected to the slide seat through support rods. A storage box is fixed on the top of the base. A driving mechanism is provided at the front end of the base, and the driving mechanism is used to drive the two sets of screw rods to rotate; The mounting plate is provided with a flip mechanism, and the flip mechanism is used to drive the mounting plate to rotate on the fixing column.
[0005] Preferably, casters are provided at the bottom of the base, and casters are provided in several groups.
[0006] Preferably, both ends of the support rod are rotatably connected to the slide seat and the fixed plate respectively through a rotating shaft.
[0007] Preferably, the driving mechanism includes a driving box, a driving rod is provided inside the driving box, and a motor 1 is fixed on the outside of the driving box, the output end of the motor 1 is connected to the driving rod, and bevel gear 1 is fixed at both ends of the driving rod, bevel gear 2 is provided at both ends of the driving box, and bevel gear 2 is connected to screw rod 1, and bevel gear 2 is meshed with bevel gear 1.
[0008] Preferably, the flipping mechanism includes a rotating rod, which is installed between two sets of mounting plates, and a driving wheel is fixed on the rotating rod, a second motor is fixed on the outer side of the mounting plate, and the output end of the second motor is connected to the rotating rod, and a fixed wheel is fixed on the fixed column, and the fixed wheel is engaged with the driving wheel.
[0009] Preferably, a limiting plate is further provided on the inner side of the mounting plate, and a limiting mechanism is further provided on the mounting plate, and the limiting mechanism is used to drive the limiting plate to move laterally.
[0010] Preferably, the limiting mechanism includes motor three, which is fixed to the outside of the mounting plate, and screw rod two and guide rod are respectively provided on the inside of the mounting plate, wherein screw rod two and guide rod respectively pass through the two ends of the limiting plate, and screw rod two is connected to the output end of motor three.
[0011] Compared with the prior art, the present invention has the following beneficial effects: The flip mechanism drives the mounting plate and the display screen to flip 90 degrees, allowing the vertically positioned display screen to be adjusted to a horizontal downward position. The drive mechanism then drives the two sets of screws to rotate, causing the two sets of screws to respectively drive the two sets of slides away from each other. This allows the support rods to lower the height of the fixing plate, fixing column, and display screen, allowing the display screen to be lowered into the storage box for storage. Compared with traditional disassembly and installation, this solution adopts an integrated storage-transportation-installation structure. No disassembly is required during transfer, eliminating the tedious steps of repeatedly disassembling and installing brackets and debugging circuits. After the transfer, the display screen can be quickly deployed and installed, greatly improving the efficiency of equipment deployment. The flip mechanism can adjust the display angle of the display, making it highly adaptable and able to quickly adapt to the installation requirements of different indoor and outdoor venues. The flip mechanism can achieve multi-angle adjustment of the display and can quickly complete the installation angle adjustment according to the on-site space layout and display requirements to ensure the best visual display effect; Motor three drives screw two to rotate, and screw two drives the limit plate to move horizontally on the guide rod. When the display screen is stored or unfolded to the specified position, the limit plate can be locked into the fixed wheel to limit and fix the installation plate and the angle of the display screen, ensuring the stability of the display screen when stored or working, and preventing shaking. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying any creative work.
[0013] Figure 1 It is a front view structural schematic diagram of the present invention; Figure 2 This is a schematic diagram of the structure of the display screen of the present invention after rotation; Figure 3 This is a schematic diagram of a top-down cross-sectional structure of a base according to the present invention; Figure 4 This is a structural diagram of the fixing column and the mounting plate of the present invention; Figure 5 It is a side view schematic diagram of the present invention.
[0014] In the figure: 1. base, 2. caster, 3. groove, 4. screw rod 1, 5. slide, 6. fixed column, 7. mounting plate, 8. display screen, 9. fixed plate, 10. support rod, 11. storage box, 12. driving mechanism, 1201. driving box, 1202. driving rod, 1203. motor 1, 1204. bevel gear 1, 1205. bevel gear 2, 13. flipping mechanism, 1301. rotating rod, 1302. driving wheel, 1303. motor 2, 1304. fixed wheel, 14. limiting plate, 15. limiting mechanism, 1501. motor 3, 1502. screw rod 2, 1503. guide rod. DETAILED DESCRIPTION
[0015] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0016] See also Figure 1-5 , the present invention provides a technical solution: An AI rice paper bionic display screen that is easy to install includes: a base 1 and a fixing column 6. Grooves 3 are formed on both sides of the base 1, and a screw rod 4 is provided in the groove 3. Both ends of the screw rod 4 are threadedly connected to a slide 5, and the slide 5 is slidably connected to the inner wall of the groove 3. Mounting plates 7 are mounted on both sides of the fixed column 6 through bearings, and a display screen 8 is fixed to the bottom of the mounting plate 7. Fixed plates 9 are fixed to both ends of the fixed column 6, and the fixed plates 9 are connected to the slide 5 through support rods 10. A storage box 11 is fixed on the top of the base 1; The front end of the base 1 is provided with a driving mechanism 12, which is used to drive the two sets of screw rods 14 to rotate; The mounting plate 7 is provided with a flip mechanism 13 , which is used to drive the mounting plate 7 to rotate on the fixing column 6 .
[0017] Furthermore, the driving mechanism 12 drives the two sets of screw rods 4 to rotate. When the screw rods 4 rotate, the slides 5 at both ends move closer to each other along the screw rods 4 in the groove 3. When the two sets of slides 5 move closer to each other, the two ends of the support rod 10 rotate on the slide 5 and the fixed plate 9 respectively, and drive the fixed plate 9, the fixed column 6 and the display screen 8 to rise. Thereafter, the mounting plate 7 is driven to rotate on the fixed column 6 by the flipping mechanism 13, and the display screen 8 in the horizontal state can be adjusted to the vertical display state. Such a display screen 8 does not require traditional manual assembly of brackets, connection of lines and other time-consuming operations during the installation process. The entire process from the storage state to the expanded display can be completed within 10 minutes, shortening the installation time, reducing labor costs and avoiding safety risks caused by manual handling.
[0018] After the overall height is lowered, the display screen 8 can be completely stored in the storage box 11 on the top of the base 1. The storage box 11 can be provided with cushioning materials such as EVA foam, which can effectively resist collisions and vibrations during transportation and prevent the surface of the display screen 8 from being scratched or the wires from being loosened.
[0019] The two ends of the support rod 10 are connected to the slide 5 and the fixed plate 9 through a rotating shaft. When the slide 5 moves, the support rod 10, the base 1 and the fixed column 6 form a dynamic triangular structure. This structure can evenly distribute the weight of the display screen 8 to both sides of the base 1, avoiding tilting caused by single-point force, and ensuring that the display screen 8 always remains stable during the lifting process.
[0020] In this embodiment: casters 2 are provided at the bottom of the base 1, and casters 2 are provided in several groups.
[0021] Furthermore, a plurality of sets of casters 2 are provided at the bottom of the base 1, so that the entire device can be easily moved by the casters in the storage state, which is convenient for transfer and transportation.
[0022] In this embodiment, both ends of the support rod 10 are rotatably connected to the slide 5 and the fixed plate 9 respectively through a rotating shaft.
[0023] Furthermore, the groove 3 serves to guide the slide 5 .
[0024] In this embodiment: the driving mechanism 12 includes a driving box 1201, a driving rod 1202 is provided inside the driving box 1201, and a motor 1203 is fixed to the outside of the driving box 1201, the output end of the motor 1203 is connected to the driving rod 1202, and bevel gear 1 1204 is fixed at both ends of the driving rod 1202, and bevel gear 2 1205 is provided at both ends of the driving box 1201, and bevel gear 2 1205 is connected to the screw rod 1 4, and bevel gear 2 1205 is engaged with bevel gear 1 1204.
[0025] Furthermore, the motor 1203 drives the driving rod 1202 to rotate, and the bevel gear 1 1204 at both ends of the driving rod 1202 engages with the bevel gear 2 1205, thereby driving the bevel gear 2 1205 and the screw rod 1 4 to rotate.
[0026] In this embodiment: the flipping mechanism 13 includes a rotating rod 1301, the rotating rod 1301 is installed between two sets of mounting plates 7, and a driving wheel 1302 is fixed on the rotating rod 1301, a second motor 1303 is fixed on the outside of the mounting plate 7, and the output end of the second motor 1303 is connected to the rotating rod 1301, a fixed wheel 1304 is fixed on the fixed column 6, and the fixed wheel 1304 is engaged with the driving wheel 1302.
[0027] Furthermore, the motor 2 1303 drives the rotating rod 1301 to rotate, and the driving wheel 1302 on the rotating rod 1301 engages with the fixed wheel 1304 on the fixed column 6. When the driving wheel 1302 rotates, it will also roll on the fixed wheel 1304, thereby driving the mounting plate 7 to rotate on the fixed column 6, thereby driving the display screen 8 to flip 90°, so that the display screen 8 changes from a vertical state to a horizontal downward state.
[0028] In this embodiment, a limiting piece 14 is further provided on the inner side of the mounting plate 7 , and a limiting mechanism 15 is further provided on the mounting plate 7 . The limiting mechanism 15 is used to drive the limiting piece 14 to move laterally.
[0029] Furthermore, after the mounting plate 7 and the display screen 8 rotate, the limiting mechanism 15 can drive the two sets of limiting plates 14 to approach each other, so that the two sets of limiting plates 14 are clamped in the fixing wheel 1304 to limit and fix the angles of the mounting plate 7 and the display screen 8, thereby ensuring the stability of the display screen 8 in the storage or working state.
[0030] In this embodiment: the limiting mechanism 15 includes a motor three 1501, the motor three 1501 is fixed to the outside of the mounting plate 7, and the inside of the mounting plate 7 is respectively provided with a screw rod 2 1502 and a guide rod 1503, the screw rod 2 1502 and the guide rod 1503 respectively pass through the two ends of the limiting plate 14, and the screw rod 2 1502 is connected to the output end of the motor three 1501.
[0031] Furthermore, the motor 3 1501 drives the screw rod 2 1502 to rotate, and the screw rod 2 drives the two sets of limit plates 14 to approach each other laterally on the guide rod 1503, so that the limit plates 14 are inserted into the tooth grooves of the fixed wheel 1304 to limit the angles of the mounting plate 7 and the display screen 8.
[0032] The working process of this embodiment is as follows: when it is necessary to store or adjust the angle of the display screen 8, the motor 2 1303 is started, and its output end drives the rotating rod 1301 to rotate, and the driving wheel 1302 on the rotating rod 1301 engages with the fixed wheel 1304 on the fixed column 6 for transmission. Since the fixed wheel 1304 is fixed to the fixed column 6, the rotation of the driving wheel 1302 drives the mounting plate 7 to rotate around the bearing of the fixed column 6, thereby flipping the display screen 8 at the bottom of the mounting plate 7, and the display screen 8 can be flipped 90° from the vertical display state to the horizontal downward state for subsequent storage in the storage box 11. Then the motor 1 1203 is started to drive the driving rod 1 202 rotates, and the bevel gear 1204 at both ends of the driving rod 1202 meshes with the bevel gear 2 1205, driving the screw rod 14 to rotate in the groove 3. Since the thread directions at both ends of the screw rod 14 are opposite, when the screw rod 14 rotates, the slides 5 at both ends will move away from each other along the inner wall of the groove 3. When the slides 5 move away from each other, the rotating shafts at both ends of the support rod 10 tilt downward due to the movement of the slides 5, driving the fixing plate 9 and the fixing column 6 to descend, and the display screen 8 is then lowered into the storage box 11 on the top of the base. At the same time, the overall height is reduced, which is convenient for transportation and transfer. When installing after the transfer, first turn on the motor 1203 to drive the driving rod 1202 to rotate, and drive The bevel gear 1 1204 at both ends of the movable rod 1202 meshes with the bevel gear 2 1205, driving the screw rod 1 4 to rotate in the groove 3. As the screw rod 1 4 drives the two sets of slides 5 to approach each other, when the slides 5 approach each other, the support rod 10 is lifted upward, pushing the fixed column 6 and the display screen 8 to rise. Then the motor 2 1303 is started to drive the rotating rod 1301 to rotate, and the driving wheel 1302 on the rotating rod 1301 is meshed with the fixed wheel 1304 on the fixed column 6 for transmission. Since the fixed wheel 1304 is fixed to the fixed column 6, the rotation of the driving wheel 1302 will drive the mounting plate 7 to rotate around the bearing of the fixed column 6, thereby making the bottom of the mounting plate 7 The display screen 8 can be flipped, and the display screen 8 in the horizontal downward state can be flipped 90° to a vertical display to complete the installation. After the display screen 8 is installed, turn on the motor three 1501 to drive the screw rod two 1502 to rotate, and the screw rod two 1502 drives the two sets of limit plates 14 to approach each other along the guide rod 1503. The limit plates can be stuck in the tooth grooves of the fixed wheel 1304 to limit the angles of the mounting plate 7 and the display screen 8. This solution solves the pain points of insufficient equipment protection and low transition efficiency in the traditional method, and also expands the application flexibility of the display screen 8 in commercial performances, cultural exhibitions and other scenarios through space optimization and safety improvement.
[0033] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. An AI rice paper bionic display screen that is easy to install, characterized by: include: A base and a fixed column, wherein grooves are provided on both sides of the base, and a screw rod 1 is provided in the groove, and both ends of the screw rod 1 are threadedly connected to a sliding seat, and the sliding seat is slidably connected to the inner wall of the groove; Mounting plates are mounted on both sides of the fixed column through bearings, and a display screen is fixed to the bottom of the mounting plate. Fixed plates are fixed at both ends of the fixed column, and the fixed plates are connected to the slide seat through support rods. A storage box is fixed on the top of the base. A driving mechanism is provided at the front end of the base, and the driving mechanism is used to drive the two sets of screw rods to rotate; The mounting plate is provided with a flip mechanism, and the flip mechanism is used to drive the mounting plate to rotate on the fixing column.
2. The AI rice paper bionic display screen that is easy to install according to claim 1 is characterized in that: The bottom of the base is provided with casters, and casters are provided in several groups.
3. The easy-to-install AI rice paper bionic display screen according to claim 1, characterized in that: The two ends of the support rod are rotatably connected to the slide seat and the fixed plate respectively through a rotating shaft.
4. The easy-to-install AI rice paper bionic display screen according to claim 1, characterized in that: The driving mechanism includes a driving box, a driving rod is provided inside the driving box, and a motor 1 is fixed on the outside of the driving box, the output end of the motor 1 is connected to the driving rod, and bevel gear 1 is fixed at both ends of the driving rod. Bevel gear 2 is provided at both ends of the driving box, and bevel gear 2 is connected to screw rod 1, and bevel gear 2 is meshed with bevel gear 1.
5. The easy-to-install AI rice paper bionic display screen according to claim 1, characterized in that: The flipping mechanism includes a rotating rod, which is installed between two sets of mounting plates and a driving wheel is fixed on the rotating rod. Motor 2 is fixed on the outside of the mounting plate, and the output end of motor 2 is connected to the rotating rod. A fixed wheel is fixed on the fixed column, and the fixed wheel is engaged with the driving wheel.
6. The easy-to-install AI rice paper bionic display screen according to claim 1, characterized in that: A limiting piece is further provided on the inner side of the mounting plate, and a limiting mechanism is further provided on the mounting plate, and the limiting mechanism is used to drive the limiting piece to move laterally.
7. The easy-to-install AI rice paper bionic display screen according to claim 1, characterized in that: The limiting mechanism includes motor three, which is fixed to the outside of the mounting plate, and screw rod two and guide rod are respectively provided on the inside of the mounting plate, the screw rod two and guide rod respectively pass through the two ends of the limiting plate, and screw rod two is connected to the output end of motor three.