Illumination structure of perforated aluminum plate
By introducing stainless steel mesh and tempered glass into the perforated aluminum plate lighting structure, combined with the fixing structure of the keel body, the problem of poor light transmission in the existing technology is solved, achieving a bright and soft lighting effect and a good sense of transparency.
Patent Information
- Application Number
- CN202520688131.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2035-04-14
AI Technical Summary
Existing perforated aluminum panel lighting structures suffer from poor light transmission and a lack of transparency due to the high reflectivity of the entire aluminum panel.
By combining stainless steel mesh with an aluminum plate body, the reflective and light-transmitting properties of the stainless steel mesh, combined with the fixed structure of tempered glass and keel body, form reflective areas and light-transmitting holes, achieving uniform light distribution and natural light transmission.
While ensuring the uniformity and sufficiency of the lighting effect, it enhances the building's sense of openness. Through the efficient reflection and light transmission of the stainless steel mesh, it balances the needs of lighting effect and natural light.
Smart Images

Figure CN223939289U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of lighting structure technology, and specifically relates to a lighting structure for a perforated aluminum plate. Background Technology
[0002] Perforated aluminum panel lighting structures are architectural or interior decoration elements that combine perforated aluminum panel materials with lighting design, and are widely used in modern architectural design. Currently, the most common perforated aluminum panel lighting structure involves placing an aluminum panel between the perforated panel decoration and glass on the building facade. Light fixtures are installed between the aluminum panel and the perforated panel to illuminate the panel. The high reflectivity of the aluminum panel reflects light into the perforations, creating a bright and uniform lighting effect. While this lighting structure provides bright and uniform illumination, its drawbacks are also obvious. Because a single piece of aluminum panel is used as the reflector, the panel lacks overall transparency, making it difficult for natural light to penetrate the perforated panel and enter the interior during the day, resulting in poor light transmission and a lack of openness. Therefore, a new structure is proposed to address these issues. Utility Model Content
[0003] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a lighting structure for a perforated aluminum plate to solve the problems mentioned in the background art.
[0004] This utility model is achieved through the following technical solution: a lighting structure for a perforated aluminum plate, comprising: a stainless steel mesh and an aluminum plate body, wherein the aluminum plate body is installed on the inner front side of the keel body, and a stainless steel mesh for reflecting and transmitting light is installed on the rear side of the aluminum plate body.
[0005] The main body of the keel includes a second fixing component for installing stainless steel mesh. The second fixing component has a baffle frame on its inner side, and a tensioning component for stretching the stainless steel mesh is installed inside the baffle frame. Hanging holes are opened on the left and right sides of the stainless steel mesh.
[0006] In a preferred embodiment, the front side of the second fixing member is provided with a first fixing member, and an aluminum plate body is installed on the inner side of the first fixing member. The front side of the aluminum plate body is provided with several sets of light-transmitting holes at equal intervals.
[0007] The second fixing member is provided with a third fixing member on its rear side. Tempered glass is installed on the inner side of the third fixing member. The first fixing member, the second fixing member, and the third fixing member have the same width and height.
[0008] As a preferred embodiment, the three fasteners are provided with four sets of guide posts at the four corners of the front side, and the front side of the guide posts is recessed to form a screw groove. The two fasteners are provided with four sets of guide sleeves at the four corners of the front side that match the specifications of the guide posts.
[0009] The first fixing component is connected to the inner side of the four guide sleeves by four sets of fixing bolts on the front. The first fixing component, the second fixing component, and the third fixing component together form the main body of the keel. The outer side of the main body of the keel is fixed to the reserved opening on the outer wall.
[0010] In a preferred embodiment, a reflective area is reserved between the aluminum plate body and the stainless steel mesh, and a lighting fixture is installed on the top left and right sides of the reflective area.
[0011] In a preferred embodiment, the top of the lighting fixture is fixed to the inner upper surface of the second fixing member, and the stainless steel mesh is installed on the front of the frame using self-tapping screws, which ensures the overall stability and flatness of the stainless steel mesh after installation, thereby ensuring the performance of the stainless steel mesh.
[0012] In a preferred embodiment, the stainless steel mesh is made of 304 stainless steel. The stainless steel mesh has semi-encased layers on both sides, and the hanging holes are opened on the front of the semi-encased layers. The stainless steel mesh is made of 304 stainless steel, which has a reflectivity of 60% to 95%, which can efficiently reflect light and ensure the uniformity and sufficiency of lighting brightness. At the same time, the light transmittance of the stainless steel mesh is about 40% to 60%, which balances the lighting effect and the needs of natural light while ensuring the reflection effect.
[0013] In a preferred embodiment, the tensioning assembly includes a hook for pulling the stainless steel mesh. The tensioning assembly is installed inside a movable cavity opened inside the baffle frame, and a movable groove is horizontally opened on the front of the movable cavity.
[0014] In a preferred embodiment, a movable block is provided inside the movable cavity, and a spring is fixed inside the movable cavity on the side away from the stainless steel mesh. The side of the spring opposite to the movable block is fixed, and the rear side of the hook passes through the movable groove and is fixed to the front side of the movable block.
[0015] In a preferred embodiment, each set of the retaining frame has two sets of tensioning components vertically arranged on its front side, and the two sets of hooks in the two sets of tensioning components are respectively aligned with a pair of hanging holes vertically opened on the front side of the semi-cladding layer.
[0016] After adopting the above technical solution, the beneficial effects of this utility model are as follows: 1. By setting an aluminum plate body and a stainless steel mesh, the aluminum plate body is installed inside the fixing part one on the front side of the keel body, and the stainless steel mesh is installed inside the fixing part two on the rear side of the fixing part one. Tempered glass is installed inside the fixing part three on the rear side of the fixing part two. A reflective area is provided between the aluminum plate body and the stainless steel mesh. In actual use, when the two sets of lighting fixtures above the reflective area are turned on, the light is reflected by the stainless steel mesh and evenly distributed into the holes of the perforated aluminum plate, forming a bright and soft lighting effect. The stainless steel mesh is made of 304 stainless steel, which ensures the reflective effect while taking into account the light transmittance, balancing the lighting effect and the needs of natural light, so as to ensure the sense of transparency of the room during the day.
[0017] 2. By setting up the keel body and tensioning components, the keel body includes fixing component one, fixing component two, and fixing component three. Fixing component one, fixing component two, and fixing component three are connected by the cooperation between guide post and guide sleeve, and then connected to the inner thread of the guide post by fixing bolt, thereby strengthening the entire keel body. This greatly improves the installation flexibility of the keel body. Secondly, the tensioning components include hooks and springs. A pair of tensioning components are provided on the left and right sides of the frame. The four sets of tensioning components pass through the hanging holes opened on the left and right edges of the stainless steel mesh, and then the elasticity of the spring drives the hooks to pull the stainless steel mesh. Therefore, the stainless steel mesh can be tightened during installation, preventing the stainless steel mesh from becoming loose during installation and resulting in poor reflective effect after installation. Attached Figure Description
[0018] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0019] Figure 1 This is a schematic diagram of a lighting structure for a perforated aluminum plate according to the present invention.
[0020] Figure 2 This is a schematic diagram of the main keel structure in the lighting structure of a perforated aluminum plate according to this utility model.
[0021] Figure 3 This utility model Figure 2 A schematic diagram of the structure at point A in the middle.
[0022] Figure 4 This is a schematic diagram of the aluminum plate body and stainless steel mesh in the lighting structure of a perforated aluminum plate according to this utility model.
[0023] Figure 5 This is a schematic diagram showing the location of the hanging holes in the lighting structure of a perforated aluminum plate according to this utility model.
[0024] Figure 6 This is a schematic diagram of the tensioning component in the lighting structure of a perforated aluminum plate according to this utility model.
[0025] In the diagram, 100-keel body, 110-fixture one, 111-aluminum plate body, 120-fixture two, 121-moving groove, 130-fixture three, 131-tempered glass;
[0026] 200 - Stainless steel mesh, 210 - Hanging holes;
[0027] 300-Tensioning assembly, 310-Hook, 320-Moving block, 330-Spring. Detailed Implementation
[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only one aspect of the present utility model, and not all aspects. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present utility model.
[0029] Please see Figures 1 to 6 A lighting structure for a perforated aluminum plate includes: a stainless steel mesh 200 and an aluminum plate body 111. The aluminum plate body 111 is installed on the inner front side of the keel body 100, and a stainless steel mesh 200 for reflecting and transmitting light is installed on the rear side of the aluminum plate body 111.
[0030] The main body 100 of the keel includes a second fastener 120 for installing stainless steel mesh 200. The second fastener 120 has a baffle frame inside, and a tensioning component 300 for stretching stainless steel mesh 200 is installed inside the baffle frame. Hanging holes 210 are opened on the left and right sides of the stainless steel mesh 200 respectively.
[0031] The front side of the second fixing component 120 is provided with the first fixing component 110, and the inner side of the first fixing component 110 is equipped with an aluminum plate body 111. The front side of the aluminum plate body 111 has several sets of light-transmitting holes at equal intervals.
[0032] A third fastener 130 is provided on the rear side of the second fastener 120. A tempered glass 131 is installed inside the third fastener 130. The width and height of the first fastener 110, the second fastener 120 and the third fastener 130 are the same.
[0033] The three fasteners 130 have four sets of guide posts at the four corners of the front. The front of the guide posts is recessed to form a screw groove. The two fasteners 120 have four sets of guide sleeves at the four corners of the front that match the specifications of the guide posts.
[0034] The front of the fastener 110 is connected to the inner side of the four guide sleeves by four sets of fixing bolts. The fastener 110, the fastener 2 120 and the fastener 3 130 together form the keel body 100. The outer side of the keel body 100 is fixed to the reserved opening on the outer wall.
[0035] A reflective area is reserved between the aluminum plate body 111 and the stainless steel mesh 200, and a lighting fixture is installed on the top left and right sides of the reflective area.
[0036] The top of the lighting fixture is installed and fixed to the inner upper surface of the fixing part 2120. The stainless steel mesh 200 is installed on the front of the frame with self-tapping screws, which ensures the overall stability and flatness of the stainless steel mesh 200 after installation, thereby ensuring the performance of the stainless steel mesh 200.
[0037] The stainless steel mesh 200 is made of 304 stainless steel. It has semi-encased layers on both sides, with hanging holes 210 on the front of these semi-encased layers. Made of 304 stainless steel, the mesh has a reflectivity of 60% to 95%, effectively reflecting light and ensuring uniform and sufficient illumination. Simultaneously, its light transmittance is approximately 40% to 60%, balancing reflectivity with light transmission to meet the needs of both lighting effects and natural light.
[0038] The tensioning assembly 300 includes a hook 310 for pulling the stainless steel mesh 200. The tensioning assembly 300 is installed inside a movable cavity opened inside the baffle frame. A movable groove 121 is horizontally opened on the front of the movable cavity.
[0039] The movable cavity is equipped with a movable block 320. A spring 330 is fixed on the side of the movable cavity away from the stainless steel mesh 200. The side of the spring 330 opposite to the movable block 320 is fixed. The hook 310 passes through the movable groove 121 and is fixed to the front of the movable block 320.
[0040] Each set of retaining frames has two sets of tensioning components 300 vertically installed on the front, and the two sets of hooks 310 in the two sets of tensioning components 300 are respectively aligned with a pair of hanging holes 210 vertically opened on the front of the semi-cladding layer.
[0041] Example 1: Please refer to Figures 1 to 5In actual use, the main body 100 of the keel is divided into three fasteners: fastener one 110, fastener two 120, and fastener three 130. Fastener one 110 is located in front of fastener two 120. An aluminum plate body 111 is installed inside fastener one 110. Several sets of light-transmitting holes for light transmission are opened on the surface of the aluminum plate body 111. A baffle frame is provided inside fastener two 120, and a stainless steel mesh 200 is provided in front of the baffle frame. The stainless steel mesh 200 is made of 304 stainless steel and has a reflectivity of 60% to 95%, which can efficiently reflect light and ensure the uniformity and sufficiency of lighting brightness. At the same time, the light transmittance of the stainless steel mesh 200 is about 40% to 60%, which ensures both reflection effect and light transmission. The mesh 200 is installed on the front of the frame using self-tapping screws, thus ensuring the stability and flatness of its structure. It is important to note that when installing the stainless steel mesh 200, the principle of center first, then sides, and top first, then bottom should be followed. That is, first fix the top center of the stainless steel mesh 200, then fix it to the left and right sides in sequence, then fix the bottom center of the stainless steel mesh 200, then fix it to the left and right sides in sequence, and finally fix the left and right edges of the stainless steel mesh 200. The advantage of this installation method is that it can ensure that the stainless steel mesh 200 remains flat after installation. The rear side of the fixing part 2 120 is provided with fixing part 3 130, and tempered glass 131 is installed inside the fixing part 3 130.
[0042] After the main keel 100 is assembled, a reflective area is naturally formed between the main aluminum plate 111 and the stainless steel mesh 200. A pair of lighting fixtures are installed above the reflective area from left to right. The lighting fixtures can be turned on and off via a remote control. In actual use, the two sets of lighting fixtures are turned on via the remote control. The lighting fixtures emit light into the reflective area. The light is reflected by the surface of the stainless steel mesh 200 and evenly distributed inside the several sets of light-transmitting holes opened on the surface of the main aluminum plate 111. Therefore, the light can be shone to the outside of the exterior wall through the several sets of light-transmitting holes opened on the surface of the main aluminum plate 111, forming a bright and soft lighting effect. During the day, the several sets of light-transmitting holes opened on the surface of the main aluminum plate 111 allow natural light to pass through, and the stainless steel mesh 200 has good light transmittance, so natural light can be allowed to enter the room, ensuring the sense of transparency in the room.
[0043] Example 2: Please refer to Figure 1 , Figure 2 , Figure 3 and Figure 6When installing the main body 100 of the keel, a guide post is provided at each of the four corners of the front of the fixing component 130. The front of the guide post is recessed to form a screw groove that matches the specification of the fixing bolt. A guide sleeve is provided at each of the four corners of the front of the fixing component 120. The rear side of the guide sleeve is connected to the back of the fixing component 120, and the specification of the guide sleeve matches the specification of the guide post. The positions of the four sets of guide sleeves are one-to-one with the positions of the four sets of guide posts. Through holes are opened at the four corners of the front of the fixing component 110. A fixing bolt is provided inside each through hole. The radius of the bolt matches the radius of the inner side of the guide sleeve. During installation, the fixing bolt passes through the guide sleeve and is threaded into the inner side of the swivel groove on the front of the guide post. Thus, the fixing parts 110, 120 and 130 are installed and fixed by four sets of fixing bolts, which greatly improves the ease of installation and flexibility of use of the keel body 100. After the keel body 100 is installed, the keel body 100 is lifted up as a whole and placed at the reserved opening on the exterior wall. Then it is fixed to the exterior wall with bolts and nuts.
[0044] When installing the stainless steel mesh 200, first connect the hanging holes 210 on the left and right sides of the semi-cladding layer of the stainless steel mesh 200 to the hooks 310 in the four sets of tensioning components 300 set on the left and right sides of the baffle frame. There are four sets of tensioning components 300, and the four sets of tensioning components 300 are evenly arranged inside the moving cavities opened inside the left and right sides of the baffle frame. The moving cavity has a horizontal moving groove 121 on the front. Inside the moving cavity, on the side away from the stainless steel mesh 200, there is a spring 330 for pulling the moving block 320. The hook 310 is located outside the moving groove 121, and the rear side of the hook 310 passes through the moving groove 121 and connects with the moving block 320. Since the front of block 320 is fixed, under the elastic force of spring 330, the moving block 320 always has a pulling force opposite to that of stainless steel mesh 200. After the four sets of hooks 310 are respectively connected to the four sets of hanging holes 210, the stainless steel mesh 200 is taut on the front side of the baffle frame. Then, the stainless steel mesh 200 can be fixed according to the steps in Embodiment 1. Therefore, the final effect is that the stainless steel mesh 200 can be pulled by the four sets of tensioning components 300 to make its surface taut, thereby preventing the stainless steel mesh 200 from being loose during the installation process, which would result in poor reflectivity after installation and affect its normal use effect.
[0045] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A lighting structure for a perforated aluminum plate, comprising: The stainless steel mesh (200) and the aluminum plate body (111) are characterized in that: the aluminum plate body (111) is installed on the inner front of the keel body (100), and the stainless steel mesh (200) for reflecting and transmitting light is installed on the rear side of the aluminum plate body (111). The main body of the keel (100) includes a second fixing member (120) for installing a stainless steel mesh (200). The second fixing member (120) has a baffle frame on its inner side. A tensioning component (300) for stretching the stainless steel mesh (200) is installed inside the baffle frame. Hanging holes (210) are opened on the left and right sides of the stainless steel mesh (200). The front side of the second fixing member (120) is provided with a first fixing member (110), and an aluminum plate body (111) is installed on the inner side of the first fixing member (110). The front side of the aluminum plate body (111) is provided with several sets of light-transmitting holes at equal intervals. The second fixing member (120) is provided with a third fixing member (130) on the rear side. Tempered glass (131) is installed on the inner side of the third fixing member (130). The width and height of the first fixing member (110), the second fixing member (120) and the third fixing member (130) are the same. The fixing component three (130) has four sets of guide posts at the four corners of its front side. The front side of the guide post is recessed to form a screw groove. The fixing component two (120) has four sets of guide sleeves at the four corners of its front side that match the specifications of the guide posts. The first fixing component (110) is connected to the inner side of the four guide sleeves by four sets of fixing bolts. The first fixing component (110), the second fixing component (120), and the third fixing component (130) together form the keel body (100). The outer side of the keel body (100) is fixed to the reserved opening on the outer wall.
2. The lighting structure of a perforated aluminum plate as described in claim 1, characterized in that: A reflective area is reserved between the aluminum plate body (111) and the stainless steel mesh (200), and a lighting fixture is installed on the top left and right sides of the reflective area.
3. The lighting structure of a perforated aluminum plate as described in claim 2, characterized in that: The top of the lighting fixture is installed and fixed to the inner upper surface of the fixing part two (120), and the stainless steel mesh (200) is installed on the front of the frame as a whole using self-tapping screws.
4. The lighting structure of a perforated aluminum plate as described in claim 3, characterized in that: The stainless steel mesh (200) is made of 304 stainless steel. The stainless steel mesh (200) has a semi-encased layer on the left and right sides, and the hanging hole (210) is opened on the front of the semi-encased layer.
5. The lighting structure of a perforated aluminum plate as described in claim 1, characterized in that: The tensioning assembly (300) includes a hook (310) for pulling the stainless steel mesh (200). The tensioning assembly (300) is installed inside a movable cavity opened inside the baffle frame. A movable groove (121) is horizontally opened on the front of the movable cavity.
6. The lighting structure of a perforated aluminum plate as described in claim 5, characterized in that: The movable cavity is provided with a movable block (320). A spring (330) is fixed on the side of the movable cavity away from the stainless steel mesh (200). The spring (330) is fixed on the side opposite to the movable block (320). The hook (310) passes through the movable groove (121) and is fixed to the front of the movable block (320).
7. The lighting structure of a perforated aluminum plate as described in claim 6, characterized in that: Each set of the retaining frame has two sets of tensioning components (300) vertically arranged on the front side, and the two sets of hooks (310) in the two sets of tensioning components (300) are respectively opposite to a pair of hanging holes (210) vertically opened on the front side of the semi-cladding layer.