Embedded luminous wall board

Through the design of embedded luminescent wall panels, the problems of insufficient lighting uniformity and serious light pollution in traditional buildings are solved, and the effect of beautiful, uniform lighting and extended service life is achieved.

CN223048346UActive Publication Date: 2025-07-01NANJING XIUZHONG CONSTRUCTION LABOR SERVICE CO LTD
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Patent Information

Application Number
CN202422214703.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-10
Publication Date
2025-07-01
Estimated Expiration
2034-09-10

AI Technical Summary

Technical Problem

Traditional architectural lighting has problems such as insufficient lighting uniformity, serious light pollution, ugly shape of external light sources and space occupied.

Method used

A recessed luminescent wall panel is designed, including panels, lamp gratings and packaging shells, and uniform lighting and beautiful appearance are achieved through the design of embedded structures and light guide columns.

Benefits of technology

Achieve uniform and soft lighting effects, reduce light pollution, and is beautiful in design, does not occupy additional space and extends service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an embedded luminous wall board, and belongs to the technical field of building wall boards. The LED lamp comprises a panel, a lamp grating and a packaging housing, the lamp grating and the panel are sequentially embedded into the packaging housing and are fixed through screws, a plurality of LED lamps are arranged on the lamp grating, and light holes matched with the LED lamps are formed in the panel. According to the utility model, the lamp grating plate and the panel are sequentially embedded into the packaging housing and are packaged into a whole through the screws, so that the wall body plate can be conveniently mounted on the surface of a building, the space is not occupied, and the appearance is attractive; meanwhile, the packaging structure is detachable, internal devices are convenient to replace, the influence of the outside on the devices in the wall body plate can be effectively reduced by packaging into a whole, and the service life of the wall body plate is prolonged; in addition, light guide columns are arranged on the peripheries of the LED lamps, and light holes matched with the light guide columns are formed in the panel, so that the wall body plate achieves the lighting effect, lighting is even, and light pollution is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of building wall panels, in particular to an embedded light-emitting wall panel. Background Art

[0002] With the development of urbanization and the rise of the night economy, the night lighting design of buildings has gradually become a part of the urban landscape. The lighting of the outer surface of buildings at night can not only enhance the beauty of the buildings, but also strengthen the overall image and attraction of the city, creating a unique night atmosphere. Traditional building lighting usually relies on externally installed lamps, such as floodlights, LED light strips, etc., to achieve the lighting effect by directly irradiating the building surface. However, this method has problems such as insufficient lighting uniformity and serious light pollution. In addition, due to the existing building lighting configurations all using external light sources, they are ugly in shape and occupy space. Summary of the Utility Model

[0003] The purpose of the utility model is to provide an embedded light-emitting wall panel to solve the above-mentioned existing technical problems.

[0004] Technical Solution: The embedded light-emitting wall panel includes a panel, a lamp grid board and a packaging cover. The lamp grid board and the panel are sequentially embedded in the packaging cover and fixed by screws. A number of LED lamps are provided on the lamp grid board, and light-transmitting holes matching the LED lamps are opened on the panel.

[0005] In a further embodiment, a light guide column is provided on the outer periphery of the LED. One end of the light guide column is connected to the lamp grid board, and the other end is inserted into the light-transmitting hole, so that the light of the LED diffuses along the light guide column, ensuring uniform lighting and at the same time playing a role in sun protection and dust prevention.

[0006] In a further embodiment, a number of control lines connected to the LED lamps are also provided on the lamp grid board. The control lines extend to the outside of the lamp grid board, facilitating the staff to externally connect a power supply and a control system to transmit power and signals to the lamp grid board.

[0007] In a further embodiment, wire passing holes adapted to the control lines are opened on the packaging cover, facilitating the wiring and connection of the control lines.

[0008] In a further embodiment, mounting holes and fixing holes are provided at the four corners of the packaging cover. Corresponding fixing holes are also opened at the four corners of the lamp grid board and the panel at the corresponding positions of the packaging cover, ensuring that the panel, the lamp grid board and the packaging cover are installed together and become an integral whole. At the same time, screws can be installed in the mounting holes to fix the wall panel on the outer surface of the building.

[0009] In a further embodiment, several lamp grid clamping slots are provided on the surface of the encapsulation housing that contacts the lamp grid plate for quick positioning to ensure that the lamp grid plate is stably installed in the encapsulation housing.

[0010] In a further embodiment, the control line is connected to an external controller to provide power and dynamic lighting information for the LED lamps on the lamp grid plate.

[0011] Beneficial effects: In the present utility model, the lamp grid plate and the panel are sequentially embedded in the encapsulation housing and encapsulated into one body by screws, which facilitates the installation of the wall panel on the surface of a building, occupies no space and is aesthetically pleasing; at the same time, the encapsulation structure is detachable, facilitating the replacement of internal components, and being encapsulated into one body can effectively reduce the influence of the outside world on the components inside the wall panel and extend its service life; in addition, a light guide column is provided on the outer periphery of the LED lamp, and a light-transmitting hole adapted to the light guide column is provided on the panel, enabling the wall panel to achieve a lighting effect with uniform illumination and reducing light pollution. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 is a schematic structural diagram of the present utility model.

[0013] Figure 2 is a side sectional view of the present utility model.

[0014] Figure 3 is Figure 2 an enlarged view of part A.

[0015] Figure 4 is a schematic structural diagram of the lamp grid plate in the present utility model.

[0016] Figure 5 is a schematic structural diagram of the encapsulation housing in the present utility model.

[0017] Reference numerals: 1, panel; 101, light-transmitting hole; 2, lamp grid plate; 201, LED lamp; 202, control line; 203, light guide column; 3, encapsulation housing; 301, wire passing hole; 302, mounting hole; 303, fixing hole; 304, lamp grid clamping slot; 4, screw. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0018] In the following description, numerous specific details are set forth in order to provide a more thorough understanding of the present utility model. However, it will be apparent to one of ordinary skill in the art that the present utility model may be practiced without one or more of these details. In other instances, well-known features have not been described in order to avoid obscuring the present utility model.

[0019] Such as Figures 1 to 5As shown in the figure, the present application discloses an embedded light-emitting wall panel, hereinafter referred to as "this wall panel". This wall panel includes a panel 1, a lamp grid panel 2, and a packaging housing 3. The lamp grid panel 2 and the panel 1 are sequentially embedded in the packaging housing 3 and fixed into a whole by screws 4. A number of LED lights 201 and a number of light guide columns 203 are provided on the lamp grid panel 2. The light guide columns 203 correspond to the LED lights 201 one by one and are arranged on the outer periphery of the LED lights. Light-transmitting holes 101 matching the LED lights 201 are opened on the panel 1. One end of the light guide column 203 far from the lamp grid panel 2 is inserted into the light-transmitting hole 101.

[0020] In the above solution, through the design of sequentially embedding the panel 1, the lamp grid panel 2, and the packaging housing 3, the structural stability and integrity of the entire embedded light-emitting wall panel can be effectively ensured. At the same time, this structure is easy to disassemble, and different materials of the panel 1 and internal components can be replaced at any time. It has a wide range of applications, and this packaging structure can reduce the influence of the outside world on the internal components and extend the service life of this wall panel. The LED lights 201 are fixed at a predetermined position through the lamp grid panel 2, and light guide columns 203 are installed on the outer periphery. The design of the light guide columns 203 can better guide the light emitted by the LED lights 201, expand the irradiation range, improve the lighting effect, reduce the loss of light at the same time, make the light more concentrated, reduce glare at the same time, and improve the overall lighting quality. It is suitable for scenarios with large-range lighting requirements and soft light requirements. The light guide columns 203 are inserted into the light-transmitting holes 101, which can ensure the effective transmission of light and keep the surface of the wall panel clean and beautiful. This design enables the embedded light-emitting wall panel to not only play a decorative role but also provide a uniform and soft lighting effect.

[0021] Furthermore, a number of control lines 202 connected to the LED lights 201 are also provided on the lamp grid panel 2, and the control lines 202 extend to the outside of the lamp grid panel 2.

[0022] In the above solution, by providing the control lines 202 on the lamp grid panel 2 and extending them to the outside, remote control of the LED lights 201 can be achieved. This design not only enhances the intelligent function of the embedded light-emitting wall panel but also provides users with flexible control methods. The control lines 202 can be connected to external power supplies, switches, or intelligent control systems to achieve various lighting effects, such as brightness adjustment, color change, etc.

[0023] Furthermore, threading holes 301 adapted to the control lines 202 are opened on the packaging housing 3.

[0024] In the above solution, the design of the wire passing hole 301 on the encapsulation housing 3 can effectively organize and manage the routing of the control wire 202, making it more regular. The setting of the wire passing hole 301 ensures that the control wire 202 is smoothly led out from inside the lamp grid board 2 and reduces the situation where the control wire 202 is exposed outside, further improving the safety and aesthetics of the embedded light-emitting wall panel. This structural design makes the installation and maintenance of the entire light-emitting wall panel more convenient and reliable.

[0025] Furthermore, mounting holes 302 and fixing holes 303 are provided at the four corners of the encapsulation housing 3, and corresponding fixing holes 303 are also provided at the corresponding positions of the four corners of the lamp grid board 2 and the panel 1.

[0026] In the above solution, by setting the fixing holes 303 at the four corners of the encapsulation housing 3, the lamp grid board 2, and the panel 1, the precise alignment and firm connection of the three can be ensured. The design of the fixing holes 303 improves the overall stability of the embedded light-emitting wall panel, prevents displacement or loosening between components, and thus ensures the structural integrity of the light-emitting wall panel during long-term use. This design simplifies the installation process and enhances the durability and reliability of the product.

[0027] Furthermore, a number of lamp grid clamping grooves 304 are provided on the surface of the encapsulation housing 3 that contacts the lamp grid board 2.

[0028] In the above solution, the lamp grid clamping grooves 304 on the encapsulation housing 3 are designed to fix the lamp grid board 2 so that it can be firmly embedded in the specified position during installation. This kind of clamping groove not only improves the installation accuracy of the components but also prevents the lamp grid board 2 from shifting due to external force or vibration, thus maintaining the fixation of the LED lamp 201 and the consistency of light output. The design of the lamp grid clamping grooves 304 enables the light-emitting wall panel to maintain good functionality and stability in a harsh environment.

[0029] Furthermore, the control wire 202 is connected to an external controller.

[0030] In the above solution, the connection between the control wire 202 and the external controller enables users to remotely or automatically control the LED lamp 201 of the embedded light-emitting wall panel through the controller. This design not only improves the user experience but also enables diverse lighting scenarios, such as timed switching of lights and scene mode switching. The external controller can be integrated with the smart home system, further enhancing the application scope and intelligence level of the embedded light-emitting wall panel.

[0031] In this application, seamless splicing is formed between the wall panels.

[0032] As described above, although the present utility model has been shown and described with reference to specific preferred embodiments, it should not be construed as a limitation on the present utility model itself. Various changes may be made in its form and details without departing from the spirit and scope of the present utility model as defined by the appended claims.

Claims

1. An embedded luminous wall panel, which is characterized by comprising a panel, a lamp grid and a packaging cover, wherein the lamp grid and the panel are sequentially embedded in the packaging cover and fixed by screws, a plurality of LED lamps are arranged on the lamp grid, and a light-transmitting hole matching the LED lamps is opened on the panel.

2. The embedded luminous wall panel according to claim 1, characterized in that: A light guide column is arranged on the periphery of the LED, one end of the light guide column is connected to the lamp grid plate, and the other end is inserted into the light transmission hole.

3. The embedded luminous wall panel according to claim 1, characterized in that: The lamp grid plate is also provided with a plurality of control wires connected with the LED lamps, and the control wires extend to the outside of the lamp grid plate.

4. The embedded luminous wall panel according to claim 3, characterized in that: The packaging cover is provided with a threading hole adapted to the control line.

5. The embedded luminous wall panel according to claim 1, characterized in that: The four corners of the packaging shell are provided with mounting holes and fixing holes, and the four corners of the lamp grid plate and the panel are also provided with corresponding fixing holes at positions corresponding to the packaging shell.

6. The embedded light-emitting wall panel according to claim 1, characterized in that: A plurality of lamp grid clamping grooves are arranged on a side of the packaging cover shell that contacts the lamp grid plate.

7. The embedded light-emitting wall panel according to claim 3, characterized in that: The control line is connected to an external controller.