Coated image wall board
The wrap-around design and the setting of light guide columns solve the problem of loose fixation of image wall panels, achieve a more stable, beautiful and efficient light display effect, extend the service life and reduce the difficulty of maintenance.
Patent Information
- Application Number
- CN202422207978.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-10
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-09-10
AI Technical Summary
The fixing method of the existing image wall panel between the light grid plate and the back shell is not strong enough, which can easily lead to loosening or displacement, affecting the aesthetics and service life.
An encapsulated design is adopted, with the lamp grid panel set inside the metal back shell, and concrete is poured into the gap between the lamp grid panel and the metal back shell through the casting port. After cooling, a casting layer is formed, so that the lamp grid panel and the metal back shell form a whole and are tightly combined. At the same time, a light guide column is set around the LED lamp flush with the casting layer. The light guide column guides the light to be evenly distributed, and positioning ribs and positioning blocks are set on the metal back shell to reduce the gap.
It improves the overall stability of the wall panels and the uniformity of light distribution, protects the light guides and electronic components, extends their service life and reduces maintenance costs.
Smart Images

Figure CN223330137U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of building wall panels, in particular to a wrapped image wall panel. Background Art
[0002] With the acceleration of urbanization, the exterior design of buildings is receiving increasing attention, especially in commercial buildings and public facilities, where the aesthetics and functionality of facades have become important considerations in architectural design. Traditional building exterior decorative materials, such as glass curtain walls, metal sheets, and coatings, while able to meet basic aesthetic requirements, are relatively simple in function and difficult to achieve diverse display effects. Large-screen decorations integrated with LED display technology, while offering greater flexibility and expressiveness, can change display content in real time as needed, giving buildings a dynamic visual effect. However, these can affect the overall appearance of the building facade. Furthermore, as pendants on the building surface, they are easily affected by the environment and climate, resulting in a short service life, high construction costs, and high maintenance costs.
[0003] Therefore, as a new decorative material, image wall panels are gradually gaining market attention and application. Image wall panels not only achieve excellent decorative effects, but also, through embedded lighting systems, can display a variety of dynamic or static image effects, increasing the visual impact of building facades. Existing image wall panels have certain structural limitations, primarily due to the inadequate fixing method between the light grid and the back shell, which can easily lead to loosening or displacement during use, affecting the overall aesthetics and service life. Utility Model Content
[0004] The purpose of the utility model is to provide a wrapped image wall panel to solve the above-mentioned technical problems.
[0005] Technical solution: A wrapped image wall panel, comprising a metal back shell and a lamp grille, wherein the lamp grille is disposed within the metal back shell. A casting port is provided on the metal back shell, through which concrete enters the gap between the lamp grille and the metal back shell, and forms a casting layer after cooling, thereby integrating the lamp grille and the metal back shell.
[0006] The outer surface of the casting layer is formed on the same side as the light-emitting surface of the lamp grid plate and does not block light.
[0007] In a further embodiment, the outer surface of the casting layer is polished to improve the flatness of the wall panel, while ensuring that the light emitted by the light grid panel is uniform, thereby improving the display effect of the image.
[0008] In a further embodiment, the lamp grid is provided with a plurality of LED lamps and a plurality of light guide poles, the light guide poles correspond to the LED lamps one-to-one and are arranged at the periphery of the LED lamps; the end of the light guide pole away from the lamp grid is located on the same horizontal line as the outer surface of the casting layer, and the light guide pole guides the light to make the light evenly distributed, thereby improving the display effect of the image wall panel. At the same time, the light guide pole is flush with the outer surface of the casting layer to prevent the light guide pole from being exposed, thereby preventing the light guide pole from being damaged or displaced due to external factors.
[0009] In a further embodiment, the lamp grid panel is also provided with a plurality of control wires connected to the LED lights, and the control wires extend to the outside of the lamp grid panel; the side of the metal back shell is provided with a plurality of wire threading holes adapted to the control wires, so as to facilitate wiring by the staff, connect the LED lights to the external control system, and ensure the normal operation of the image wall panel.
[0010] In a further embodiment, the outer surface of the metal back shell is provided with a plurality of punched positioning ribs and a plurality of stamped positioning blocks to reduce the gap between the lamp grid plate and the metal back shell, thereby reducing the possibility of displacement of the lamp grid plate in the metal back shell and increasing the stability inside the wall panel.
[0011] In a further embodiment, mounting holes are provided at the four corners of the metal back shell to facilitate mounting the wall panel on a wall or other supporting structure.
[0012] In a further embodiment, the lamp grid plate is provided with a plurality of through holes, so that concrete can pass through the through holes to fill the gap between two adjacent light guide columns, and the concrete forms a casting surface at the light-emitting surface of the lamp grid plate to provide protection for the light guide columns.
[0013] Beneficial effects: The utility model places the lamp grating plate in the metal back shell and opens a casting port on the metal back shell. Concrete enters the gap between the lamp grating plate and the metal back shell through the casting port, and forms a casting layer after cooling, so that the lamp grating plate and the metal back shell form a whole, making the combination between the lamp grating plate and the metal back shell tighter, effectively avoiding the lamp grating plate from falling off or loosening, improving the overall stability of the wall panel, and protecting the electronic devices in the wall panel from the influence of the atmosphere and ultraviolet rays, thereby increasing the service life; by arranging a light guide column on the periphery of the LED, the light is evenly distributed, the display effect is improved, and the end of the light guide column away from the lamp grating plate is on the same horizontal line as the outer surface of the casting layer, which increases the aesthetics of the wall panel, and the casting layer provides protection for the light guide column to avoid damage or displacement of the guide column due to external factors. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a structural diagram of the present utility model.
[0015] Figure 2It is a rear view of the present invention.
[0016] Figure 3 for Figure 1 Side view of .
[0017] Figure 4 for Figure 3 Enlarged view of point A in the middle.
[0018] Figure 5 This is a structural diagram of the light grille in the utility model.
[0019] Figure numerals: 1. Metal back shell; 101. Punched positioning rib; 102. Casting port; 103. Stamped positioning block; 104. Mounting hole; 2. Lamp grid; 201. Light guide column; 202. LED lamp; 203. Through hole; 204. Control line; 3. Casting layer. DETAILED DESCRIPTION
[0020] In the following description, numerous specific details are provided to provide a more thorough understanding of the present invention. However, it will be apparent to those skilled in the art that the present invention can be practiced without one or more of these details. In other instances, certain technical features known in the art are not described to avoid confusion with the present invention.
[0021] like Figures 1 to 5 As shown, the present application discloses a wrapped image wall panel, hereinafter referred to as "the wall panel". The wall panel includes a metal back shell 1 and a lamp grating panel 2. The lamp grating panel 2 is arranged in the metal back shell 1, and a casting port 102 is provided on the metal back shell 1. Concrete enters the gap between the lamp grating panel 2 and the metal back shell 1 through the casting port 102, and forms a casting layer 3 after cooling, so that the lamp grating panel 2 and the metal back shell 1 form a whole. In this embodiment, the outer surface of the casting layer 3 is formed on the same side as the light-emitting surface of the lamp grating panel 2 and does not block the light, thereby ensuring that the lamp grating panel 2 emits light normally and does not affect the display effect of the image wall panel. Through this structural design, the structural strength of the wall panel can be greatly improved, and the combination between the lamp grating panel 2 and the metal back shell 1 can be made tighter, effectively avoiding the situation where the lamp grating panel 2 falls off or loosens, and improving the overall stability of the wall panel.
[0022] Furthermore, the lamp grid panel 2 is provided with a plurality of LED lamps 202 and a plurality of light guide columns 201. The light guide columns 201 correspond to the LED lamps 202 one by one and are arranged on the periphery of the LED lamps 202. The end of the light guide column 201 away from the lamp grid panel 2 is located on the same horizontal line as the outer surface of the casting layer 3. The close-fitting design of the light guide column 201 and the LED lamp 202 can effectively guide the light, make the light distribution more uniform, and improve the display effect of the image wall panel. At the same time, the design height of the light guide column 201 is flush with the outer surface of the casting layer 3, which increases the beauty and prevents the risk of damage caused by the exposure of the light column. In addition, this design enables the casting layer 3 to provide protection for the light guide column 201 and the devices in the wall panel, avoiding damage or displacement of the light guide column 201 due to external factors, damage to the devices, and improving the service life of the wall panel.
[0023] Furthermore, the light grid panel 2 is provided with a plurality of control wires 204 connected to the LED lights 202, and the control wires 204 extend to the outside of the light grid panel 2. To facilitate wiring, a plurality of threading holes adapted to the control wires 204 are opened on the side of the metal back shell 1, so that the cables can be arranged in an orderly manner and smoothly pass through the metal back shell 1, which not only improves the integration of the system but also reduces the difficulty of installation and maintenance. In addition, the provision of the threading holes can effectively protect the control wires 204, preventing circuit damage due to wear or accidental pulling, thereby increasing the service life of the image wall panel.
[0024] Furthermore, the outer surface of the metal back shell 1 is provided with a number of punched positioning ribs 101 and stamped positioning blocks 103. Through this design, the gap between the metal back shell 1 and the lamp grille 2 can be reduced, making the internal structure compact, while reducing the amount of concrete casting and reducing costs; at the same time, the design of the positioning ribs and positioning blocks can effectively improve the structural strength of the metal back shell 1, enhance the deformation resistance of the wall panel, thereby extending its service life; in addition, it ensures that the wall panel will not shift or loosen when fixed to the wall or other supporting structure.
[0025] Furthermore, mounting holes 104 are provided at each of the four corners of the metal back shell 1. The provision of mounting holes 104 allows the wall panel to be conveniently secured to a wall or other supporting structure, providing multiple mounting points to ensure its robustness and stability. Furthermore, the rational distribution of mounting holes 104 ensures that the wall panel is evenly stressed after installation, reducing localized stress concentration and thus preventing deformation or damage to the panel due to excessive stress.
[0026] Furthermore, a number of through holes 203 are provided on the lamp grid plate 2, so that concrete can fill the gap between two adjacent light guide columns 201 through the through holes 203, so that the concrete forms a casting surface at the light-emitting surface of the lamp grid plate 2, providing protection for the light guide columns 201. At the same time, during the casting process, excess gas or concrete can overflow to prevent bubbles or unevenness during the casting process, thereby improving the quality of the casting layer 3 and the reliability of the structure.
[0027] As a preferred solution, the outer surface of the casting layer 3 is decorated to further improve the aesthetics of the wall panel, while also helping to reduce dust adhesion, making the wall panel easier to maintain and clean during use.
[0028] As described above, although the present invention has been shown and described with reference to specific preferred embodiments, it should not be interpreted as limiting the present invention itself. Various changes may be made to it in form and detail without departing from the spirit and scope of the present invention as defined in the appended claims.
Claims
1. A wrapped image wall panel, comprising a metal back shell and a light grid panel, characterized in that: The lamp grid is arranged in the metal back shell. A casting port is provided on the metal back shell. Concrete enters the gap between the lamp grid and the metal back shell through the casting port and forms a casting layer after cooling, so that the lamp grid and the metal back shell are integrated. The outer surface of the casting layer is formed on the same side as the light-emitting surface of the lamp grid plate and does not block light.
2. The wrapped image wall panel according to claim 1, characterized in that The lamp grid is provided with a plurality of LED lamps and a plurality of light guide columns, the light guide columns correspond to the LED lamps one by one and are arranged around the LED lamps; One end of the light guide column away from the lamp grid plate is located on the same horizontal line as the outer surface of the casting layer.
3. The wrapped image wall panel according to claim 2, characterized in that: The lamp grid is also provided with a plurality of control lines connected to the LED lights, and the control lines extend to the outside of the lamp grid; The side surface of the metal back shell is provided with a plurality of threading holes adapted to the control wires.
4. The wrapped image wall panel according to claim 1, characterized in that: The outer surface of the metal back shell is provided with a plurality of punching positioning ribs and a plurality of punching positioning blocks.
5. The wrapped image wall panel according to claim 1, characterized in that: The four corners of the metal back shell are all provided with mounting holes.
6. The wrapped image wall panel according to claim 1, characterized in that: A plurality of through holes are formed on the lamp grid plate.