Visual communication design information display management system
By designing a visual communication design information display management system, combining flat and three-dimensional display forms, and controlling the screen form through remote remote control universal wheels, the problem of single display form of existing system is solved, realizing the diversity of information display and the improvement of user interaction experience.
Patent Information
- Application Number
- CN202510324329.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-19
- Publication Date
- 2025-06-24
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing visual communication design information display system is relatively single in display form and is difficult to meet the needs of three-dimensional display, which leads to users not being intuitive enough when understanding product details.
A visual communication design information display management system is designed, including information collection, processing and display modules. Through invalid information removal, material distinction and classification storage, combining plane and three-dimensional display forms, and controlling the shape of the plane and flexible screen through remote remote control universal wheels, the display of information diversity is achieved.
The diversity of information is realized, and users can understand product characteristics more intuitively through plane and three-dimensional forms, improve user interaction experience, and protect the flexible screen through the pulling effect of the limit belt to prevent excessive bending and damage.
Smart Images

Figure CN120199162A_ABST
Abstract
Description
Technical Field
[0001] A visual communication design information display management system related to the present invention, in particular, a visual communication design information display management system applied to the field of visual communication. Background Art
[0002] Visual communication design is an active behavior for spreading specific things through visual forms. Most or part of it relies on vision and is expressed in two-dimensional images such as logos, typesetting, painting, graphic design, illustration, color, and electronic devices. Visual communication design is currently widely used in exhibition venues for promoting products, but the existing display systems still rely on LED screens and the display forms are relatively single.
[0003] To solve the problem of single display form, a certain information management system in the market adopts a projection design and has a certain market share.
[0004] The specification of Chinese Patent CN202110388311.X discloses a visual communication system for image design based on big data. This system can perform visual design and communication on images, can be used for on-site design and effect display, meets the daily design needs of designers and design teams, and also adopts a multiple security encryption mechanism for big data transmission. Manual configuration of file sharding can be carried out at the sending end. The server adopts an immediate forwarding strategy, that is, the server receives file sharding information without integration and directly pushes it to the receiving end. The server records file transmission, and file integration is carried out at the receiving end.
[0005] The specification of Chinese Patent CN201811326515.5 discloses an interactive visual communication projection device. This device drives the first rotating shaft to rotate through the first motor to roll up and unroll the curtain on the first rotating shaft. The second motor drives the second rotating shaft to rotate to roll up and spread the hoisting belt, which can assist in pulling the curtain, so as to realize the horizontal unfolding and retraction of the curtain, expand the display area of the projection, and enable effective display of rich multimedia information.
[0006] Most of the existing information display systems and devices are for planar display. However, with the development needs, the effect of some products displayed in three-dimensional is better, which can enable users to intuitively understand the details of the products. Obviously, the existing management systems cannot well take this aspect into account. Summary of the Invention
[0007] Aiming at the above-mentioned existing technologies, the technical problem to be solved by the present invention is how to better manage the display information and present it in various forms.
[0008] To solve the above problems, the present invention provides a visual communication design information display and management system, including a management system body. The management system body includes an information collection module, an information processing module, and an information display module. The information processing module includes an invalid information removal unit, a material classification unit, and a classification storage unit. The information display module includes a material retrieval unit, a planar display unit, a three-dimensional display unit, and a display form matching unit. The information display module also includes a self-changing display screen, and the self-changing display screen includes two symmetrically distributed movable bases. A plurality of remotely controlled universal wheels are installed at the bottoms of the two movable bases, and the display form matching unit is electrically connected to the plurality of remotely controlled universal wheels through a control processor. Fixedly connected to the upper side walls of the two movable bases are planar display boards, and a plurality of equally spaced anti-tilting brackets are fixedly connected between the planar display boards and the movable bases. A three-dimensional display board is fixedly connected between the two planar display boards, and electronic screens are installed on the side walls of the three-dimensional display board and the planar display boards simultaneously.
[0009] In the above visual communication design information display and management system, by classifying and organizing information materials and presenting them in planar and three-dimensional forms, the characteristics of the product can be better presented, and users can also obtain a better interaction experience.
[0010] As a further improvement of the present application, the electronic screen includes a planar screen installed on the planar display board and a flexible screen installed on the three-dimensional display board, and the flexible screen is connected to the two planar screens. The combination of the planar screen and the flexible screen can present information in planar and naked-eye 3D forms, effectively improving the diversity of information display. During the display process, the material classification unit first divides the collected information into planar and three-dimensional categories, and then the information display module retrieves information from the material retrieval unit. When planar materials are retrieved, the planar display unit controls the remotely controlled universal wheels through the display form matching unit to make the two planar display boards and the three-dimensional display board lie in the same plane. At this time, the flexible screen and the planar screen present the information in a planar form. When three-dimensional materials are retrieved, the three-dimensional display unit controls the remotely controlled universal wheels to move through the display form matching unit, making the two planar display boards move towards each other and perpendicular to each other, so that the information can be presented in a naked-eye 3D form.
[0011] As a further improvement of the present application, the three-dimensional display board includes self-shaping bending layers on the inner and outer sides, and the area between the two self-shaping bending layers is set as a redundant cavity. When the two planar display boards are perpendicular to each other, the inner and outer self-shaping bending layers follow the bending, so that the flexible screen forms a corner between the two planar screens. In this way, combined with three-dimensional materials, naked-eye 3D display of information can be realized, and the redundant cavity provides a redundant space for the deformation of the self-shaping bending layer.
[0012] As a further improvement of the present application, the self-shaping bending layer includes an inner and an outer elastic protective layer, and a freely bendable layer is fixedly embedded between the two elastic protective layers. The elastic protective layer serves to allow arbitrary bending and deformation, and is also used for installing the flexible screen, while the freely bendable layer serves to bend and shape, enabling the flat screen and the flexible screen to maintain their shapes during the naked-eye 3D display.
[0013] As another improvement of the present application, a pressure sensor is installed on the inner wall of the self-shaping bending layer located on the inner side, and a braking module is electrically connected to the pressure sensor. The braking module is electrically connected to the remotely controlled omnidirectional wheels through a control processor. A limiting belt is fixedly connected between the inner walls of the two flat display boards facing the redundant cavity. To prevent the flexible screen from being damaged due to excessive bending, and also to make the two flat screens perpendicular to obtain the best naked-eye 3D display effect, the limiting belt is used for restraint. When the remotely controlled omnidirectional wheels drive the two flat display boards to bend to a perpendicular state, the limiting belt just holds the two flat display boards, preventing the three-dimensional display board from continuing to bend and causing the flexible screen to be excessively bent. At this time, the limiting belt presses on the pressure sensor. After the pressure sensor monitors the pressure signal, it triggers the braking module, and the braking module then stops the remotely controlled omnidirectional wheels from operating, effectively preventing the flexible screen from being excessively bent.
[0014] As a supplement to another improvement of the present application, the length of the limiting belt is greater than the distance between the two flat display boards in the straight state, and the limiting belt just contacts the pressure sensor when the two flat display boards are in the vertical state. When the two flat display boards are perpendicular to each other, the limiting belt is just straightened, restraining the two flat display boards from continuing to bend. At the same time, the straightened limiting belt also triggers the pressure sensor to stop the remotely controlled omnidirectional wheels from operating, effectively protecting the flexible screen from being damaged.
[0015] As another improvement of the present application, the limiting belt includes an internal steel fiber layer, and a rubber protective layer is wrapped outside the steel fiber layer. The steel fiber layer has rigidity and flexibility and can well restrain the two flat display boards, while the rubber protective layer serves to wrap the steel fiber layer to prevent it from damaging the pressure sensor when pressing on it.
[0016] In summary, by dividing the information materials to be displayed to distinguish flat materials and three-dimensional materials, and by controlling the forms of the flat screen and the flexible screen to display the distinguished materials, the best display effect can be obtained. This can not only effectively reflect the advantages of the product, but also effectively improve the user's interaction experience. In addition, the restraint function of the limiting belt is used to protect the flexible screen, effectively preventing the flexible screen from being damaged due to excessive bending during the naked-eye 3D display. At the same time, the limiting belt can automatically stop the continuous bending of the flat display board after the flexible screen is bent in place, thus playing a protective role. Brief Description of the Drawings
[0017] Figure 1 It is the module schematic diagram of the first implementation manner of this application; Figure 2 It is the three-dimensional view when displaying planar information in the first implementation manner of this application; Figure 3 It is the rear three-dimensional view when displaying planar information in the first implementation manner of this application; Figure 4 It is the three-dimensional view when displaying three-dimensional information in the first implementation manner of this application; Figure 5 It is the rear three-dimensional view when displaying three-dimensional information in the first implementation manner of this application; Figure 6 It is the top-down sectional view of the three-dimensional display board before bending in the second implementation manner of this application; Figure 7 It is the top-down sectional view of the three-dimensional display board after bending in the second implementation manner of this application; Figure 8 It is the partial sectional view of the self-shaping bending layer in the second implementation manner of this application; Figure 9 It is the partial sectional view of the limiting band in the second implementation manner of this application.
[0018] Description of the reference numerals in the figure: 1 Mobile base, 2 Remotely controlled universal wheels, 3 Planar display board, 4 Anti-tilting bracket, 5 Three-dimensional display board, 501 Self-shaping bending layer, 5011 Elastic protective layer, 5012 Arbitrary bending layer, 502 Redundant cavity, 503 Pressure sensor, 504 Limiting band, 5041 Steel fiber layer, 5042 Rubber protective layer, 6 Planar screen, 7 Flexible screen. Specific implementation manners
[0019] The following will describe the two implementation manners of this application in detail with reference to the accompanying drawings.
[0020] The first implementation manner: Figure 1Shown, including a management system body, the management system body includes an information collection module, an information processing module, and an information display module. The information processing module includes an invalid information removal unit, a material differentiation unit, and a classification storage unit. The information display module includes a material retrieval unit, a planar display unit, a three-dimensional display unit, and a display form matching unit. The information display module also includes a self-changing form display screen, and the self-changing form display screen includes two symmetrically distributed mobile bases 1. A plurality of remotely controlled universal wheels 2 are installed at the bottoms of the two mobile bases 1. The display form matching unit is electrically connected to the plurality of remotely controlled universal wheels 2 through a control processor. Fixedly connected to the upper side walls of the two mobile bases 1 are planar display boards 3, and a plurality of anti-tilting brackets 4 are fixedly connected between the planar display boards 3 and the mobile bases 1 at equal intervals. A three-dimensional display board 5 is fixedly connected between the two planar display boards 3, and electronic screens are installed on the side walls of the three-dimensional display board 5 and the planar display boards 3 at the same time; Figure 2 、 3 、4 and Figure 5 Shown, the electronic screen includes a planar screen 6 installed on the planar display board 3 and a flexible screen 7 installed on the three-dimensional display board 5, and the flexible screen 7 is connected to the two planar screens 6. The combination of the planar screen 6 and the flexible screen 7 as the display form can make the information presented in both planar and naked-eye 3D forms, effectively improving the diversity of information display. During the display process, the material differentiation unit first divides the collected information into planar and three-dimensional parts. Then the information display module retrieves information from the material retrieval unit. When planar materials are retrieved, the planar display unit controls the remotely controlled universal wheels 2 through the display form matching unit to make the two planar display boards 3 and the three-dimensional display board 5 lie in the same plane. At this time, the flexible screen 7 and the planar screen 6 present the information in a planar form. When three-dimensional materials are retrieved, the three-dimensional display unit controls the remotely controlled universal wheels 2 to move through the display form matching unit, making the two planar display boards 3 move towards each other so that the two planar display boards 3 are perpendicular to each other, thus enabling the information to be presented in a naked-eye 3D form.
[0021] The second implementation method: Figure 6 、 8It is shown that the three-dimensional display board 5 includes self-shaping bending layers 501 on both the inner and outer sides, and the area between the two self-shaping bending layers 501 is set as a redundant cavity 502. When the two planar display boards 3 are perpendicular to each other, the self-shaping bending layers 501 on both the inner and outer sides follow the bending, so that the flexible screen 7 has a corner between the two planar screens 6. In this way, combined with three-dimensional materials, the naked-eye 3D display of information can be realized. The redundant cavity 502 provides redundancy for the deformation of the self-shaping bending layer 501. The self-shaping bending layer 501 includes two inner and outer elastic protection layers 5011, and an arbitrarily bendable layer 5012 is fixedly embedded between the two elastic protection layers 5011. The elastic protection layer 5011 plays the role of arbitrary bending deformation and is also used to install the flexible screen 7, while the arbitrarily bendable layer 5012 plays the role of bending and shaping, so that the planar screen 6 and the flexible screen 7 can maintain their shapes during the naked-eye 3D display; Figure 6 , 7 It is shown that a pressure sensor 503 is installed on the inner wall of the self-shaping bending layer 501 located on the inner side, and the pressure sensor 503 is electrically connected to a braking module. The braking module is electrically connected to the remotely controlled omnidirectional wheels 2 through a control processor. A limiting belt 504 is fixedly connected between the inner walls of the two planar display boards 3 facing the redundant cavity 502. In order to prevent the flexible screen 7 from being damaged due to excessive bending, and at the same time to make the two planar screens 6 perpendicular to obtain the best naked-eye 3D display effect, the limiting belt 504 is used for restraint. When the remotely controlled omnidirectional wheels 2 drive the two planar display boards 3 to bend to a perpendicular state, the limiting belt 504 just pulls the two planar display boards 3 to prevent the three-dimensional display board 5 from continuing to bend and causing the flexible screen 7 to be excessively bent. At this time, the limiting belt 504 presses on the pressure sensor 503. After the pressure sensor 503 detects the pressure signal, it triggers the braking module, and the braking module then stops the remotely controlled omnidirectional wheels 2 from running, thus effectively preventing the flexible screen 7 from being excessively bent; Figure 8 , 9 It is shown that the length of the limiting belt 504 is greater than the distance between the two planar display boards 3 in the straight state, and the limiting belt 504 just contacts the pressure sensor 503 when the two planar display boards 3 are in the perpendicular state. When the two planar display boards 3 are perpendicular to each other, the limiting belt 504 just becomes taut, so as to restrain the two planar display boards 3 from continuing to bend. At the same time, the taut limiting belt 504 also triggers the pressure sensor 503 to stop the remotely controlled omnidirectional wheels 2 from running, thus effectively protecting the flexible screen 7 from being damaged. The limiting belt 504 includes an internal steel fiber layer 5041, and a rubber protection layer 5042 is wrapped outside the steel fiber layer 5041. The steel fiber layer 5041 has rigidity and flexibility and can well restrain the two planar display boards 3, while the rubber protection layer 5042 plays the role of wrapping the steel fiber layer 5041 to prevent the steel fiber layer 5041 from damaging the pressure sensor 503 when it presses on the pressure sensor 503.
[0022] The working principle of this system is as follows: This system is applied to product exhibition and publicity. First, the information collection module collects the material information for product display and publicity. Then, the invalid information removal unit automatically deletes the useless materials. The material classification unit automatically classifies the materials into planar materials and three-dimensional materials according to their attributes. Next, the material retrieval unit retrieves the classified material information. When planar materials are retrieved, the planar display unit controls the remotely controlled universal wheels 2 through the display form matching unit to make the two planar display boards 3 and the three-dimensional display board 5 lie in the same plane. At this time, the flexible screen 7 and the planar screen 6 display the information in a planar form. When three-dimensional materials are retrieved, the three-dimensional display unit controls the remotely controlled universal wheels 2 to move through the display form matching unit, making the two planar display boards 3 move towards each other and perpendicular to each other, so that the information can be displayed in a naked-eye 3D form; While the two planar display boards 3 are bending, the self-shaping bending layers 501 on the inner and outer sides follow the bending, so that the flexible screen 7 appears at the corner between the two planar screens 6. In this way, combined with the three-dimensional materials, the naked-eye 3D display of the information can be realized. When the two planar display boards 3 are bent to a perpendicular state, the limiting belt 504 just holds the two planar display boards 3 to prevent the three-dimensional display board 5 from continuing to bend and causing the flexible screen 7 to be over-bent. At this time, the limiting belt 504 presses on the pressure sensor 503. After the pressure sensor 503 detects the pressure signal, it triggers the braking module, and the braking module then stops the remotely controlled universal wheels 2 from running, thus effectively preventing the flexible screen 7 from being over-bent.
[0023] Combined with the current actual requirements, the above implementation method adopted in this application, the protection scope is not limited to this. Within the knowledge scope of those skilled in the art, various changes made without departing from the concept of this application still fall within the protection scope of the present invention.
Claims
1. A visual communication design information display management system, characterized by: The invention comprises a management system body, wherein the management system body comprises an information collection module, an information processing module and an information display module, wherein the information processing module comprises an invalid information removal unit, a material distinguishing unit and a classification storage unit, wherein the information display module comprises a material retrieval unit, a plane display unit, a stereoscopic display unit and a display form matching unit, wherein the information display module also comprises a self-changing display screen, and the self-changing display screen comprises two symmetrically distributed mobile bases (1), wherein the bottoms of the two mobile bases (1) are both provided with a plurality of remote-controlled universal wheels (2), and the display form matching unit is electrically connected to the plurality of remote-controlled universal wheels (2) via a control processor, wherein the upper side walls of the two mobile bases (1) are both fixedly connected with a plane display board (3), and a plurality of anti-tilt brackets (4) distributed at equal intervals are fixedly connected between the plane display board (3) and the mobile base (1), and a stereoscopic display board (5) is fixedly connected between the two plane display boards (3), and electronic screens are simultaneously installed on the side walls of the stereoscopic display board (5) and the plane display board (3).
2. A visual communication design information display management system according to claim 1, characterized in that: The electronic screen comprises a flat screen (6) mounted on a flat display board (3) and a flexible screen (7) mounted on a three-dimensional display board (5), and the flexible screen (7) is connected to the two flat screens (6).
3. A visual communication design information display management system according to claim 1, characterized in that: The three-dimensional display board (5) comprises self-shaped curved layers (501) on both inner and outer sides, and the area between the self-shaped curved layers (501) on both sides is set as a redundant cavity (502).
4. A visual communication design information display management system according to claim 3, characterized in that: The self-shaped bending layer (501) comprises two inner and outer elastic protective layers (5011), and a random bending layer (5012) is fixedly embedded between the two elastic protective layers (5011).
5. The visual communication design information display management system according to claim 3, characterized in that: A pressure sensor (503) is installed on the inner wall of the self-shaped bending layer (501) located on the inner side, and a brake module is electrically connected to the pressure sensor (503). The brake module is electrically connected to the remote-controlled universal wheel (2) via a control processor. A limiting belt (504) is fixedly connected between the inner walls of the two flat display panels (3) facing the redundant cavity (502).
6. A visual communication design information display management system according to claim 5, characterized in that: The length of the limiting belt (504) is greater than the distance between the two flat display panels (3) when they are in a straight state, and the limiting belt (504) just contacts the pressure sensor (503) when the two flat display panels (3) are in a vertical state.
7. The visual communication design information display management system according to claim 5, characterized in that: The limiting belt (504) comprises an internal steel fiber layer (5041), and the outside of the steel fiber layer (5041) is wrapped with a rubber protective layer (5042).
Citation Information
Patent Citations
An interactive visual communication projection device
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