Pattern continuous punching aluminum veneer
By setting reinforcing ribs and positioning devices on the back of the aluminum panel, combined with the design of buckles, protrusions and grooves, the problems of difficult installation and poor fire resistance of aluminum panels are solved, achieving rapid installation and improved fire resistance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 美伦建材(韶关)有限公司
- Filing Date
- 2025-05-08
- Publication Date
- 2026-05-12
AI Technical Summary
Existing aluminum single-panel panels have problems such as high installation difficulty and poor fire resistance.
The aluminum panel features a continuous perforated pattern design. It is equipped with reinforcing ribs and positioning devices on the back of the main body of the aluminum panel. The fastening, protrusions and grooves work together to achieve quick installation. A fire-retardant coating is applied to the surface of the main body of the aluminum panel to improve its fire resistance.
It enables rapid and stable installation of aluminum panels, improves decorative aesthetics and fire safety, reduces installation steps, and prevents panels from loosening or falling off under fire conditions.
Smart Images

Figure CN224228152U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a patterned continuously perforated aluminum panel, belonging to the field of architectural decoration technology. Background Technology
[0002] With the increasing demands for aesthetics and personalization in modern architectural design, aluminum panels are widely used in the field of architectural decoration due to their advantages such as lightweight, weather resistance, and ease of processing. In order to achieve personalized designs for building facades or interior decorations, more and more projects are beginning to use aluminum panels with continuous perforated patterns. By forming continuous and uniform patterns on the panels, not only can the aesthetics of the building's appearance be enhanced, but the overall design harmony can also be strengthened.
[0003] Currently, aluminum panels are assembled by welding or bolting. However, due to the dense perforation patterns and small spacing of the aluminum panels, bolting and welding are often difficult to fix them, which can easily lead to misalignment during installation. This requires repeated adjustments and confirmations of the fit between various components during the installation process, increasing the difficulty and time required for construction.
[0004] Currently, fire safety design is not a primary focus for aluminum composite panels. Assembled aluminum composite panels often lack adequate fire resistance, and in the event of a fire, their surfaces are prone to expansion or partial detachment, compromising their overall fire resistance. Therefore, a patterned, continuously perforated aluminum composite panel is needed to reduce installation difficulty and enhance fire resistance. Utility Model Content
[0005] The technical problem to be solved by this utility model is to provide a patterned continuous perforated aluminum panel, which solves the problems of inconvenient installation and poor fire resistance of aluminum panels.
[0006] The technical problem to be solved by this utility model is achieved by the following technical solution: a patterned continuously perforated aluminum single panel, comprising...
[0007] Aluminum single-panel body, reinforcing ribs, positioning device,
[0008] The reinforcing ribs are provided on the back of the aluminum panel body, and the aluminum panel body is fixed to the surface of the reinforcing ribs by the positioning device.
[0009] The surface of the aluminum panel body is provided with continuous perforations, and the area between the perforations is provided with a fixing groove that cooperates with the positioning device.
[0010] The reinforcing rib is a hollow square steel, and a slot is provided on the side near the main body of the aluminum panel. The slot can fix the positioning device.
[0011] The positioning device includes a positioning device with a buckle at one end and a protrusion at the other end; the positioning device can be fixed to the surface of the reinforcing rib by the cooperation between the buckle and the slot; the positioning device can be connected to the aluminum panel body by the cooperation between the protrusion and the fixing groove.
[0012] The surface of the aluminum panel body is provided with a fireproof coating.
[0013] Preferably, the fire-retardant coating is made of epoxy resin.
[0014] Preferably, the area of the perforation accounts for 10%-60% of the surface area of the aluminum panel body.
[0015] Preferably, the back of the aluminum panel body is provided with at least two reinforcing ribs.
[0016] Preferably, the reinforcing rib is provided with at least two slots.
[0017] Preferably, the fixing groove is disposed in the gap between the punched holes on the aluminum single panel body, and the number of fixing grooves is equal to the number of positioning devices.
[0018] The beneficial effects of this utility model are:
[0019] (1) With this utility model, a fixing groove is provided on the back of the aluminum single panel body and a slot is provided on one side of the reinforcing rib. The protrusion and buckle on the positioning device can be connected to the fixing groove and the slot respectively. It can be connected without additional fasteners or welding, and can be installed quickly to ensure the stability of the connection.
[0020] (2) With this invention, both the positioning device and the reinforcing rib are located on the back of the aluminum panel body, with only a continuous perforated pattern on the front, and no excess screws or rivets exposed. This ensures the decorative and aesthetic appeal of the aluminum panel body. The reinforcing rib is made of hollow square steel, which can effectively support large-area aluminum panels and prevent them from bending or warping under external force or thermal expansion and contraction. The tight combination of the positioning device and the reinforcing rib can evenly distribute stress, further enhancing the deformation resistance of the aluminum panel.
[0021] (3) Through this utility model, the on-site installation steps are greatly reduced by the matching method of the buckle, protrusion and corresponding groove, saving time and effort. When the aluminum panel body is worn and needs to be replaced or repaired, the positioning device can be quickly disassembled without damaging the panel or the reinforcing rib structure. The surface of the aluminum panel body is provided with a fireproof coating, which can play a role in flame retardancy and delaying the spread of fire in a fire environment; the stable connection with the positioning device and the reinforcing rib prevents the panel from loosening or falling off under high temperature conditions, thus improving the overall safety. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the structure of this utility model.
[0023] Figure 2 This is a schematic diagram of the positioning device of this utility model.
[0024] Figure 3 This is a schematic diagram showing the connection between the aluminum panel body and the positioning device of this utility model.
[0025] Figure 4 This is a schematic diagram showing the connection between the reinforcing rib and the positioning device of this utility model.
[0026] In the diagram: 1-Aluminum single panel body, 11-Fixing groove, 2-Reinforcing rib, 21-Card slot, 3-Positioning device, 31-Snap, 32-Protrusion. Detailed Implementation
[0027] In order to make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0028] Example 1
[0029] like Figures 1-4 As shown, a patterned continuous perforated aluminum panel includes an aluminum panel body 1, a reinforcing rib 2, and a positioning device 3. The reinforcing rib 2 is provided at the rear of the aluminum panel body 1, and the aluminum panel body 1 is fixed to the surface of the reinforcing rib 2 by the positioning device 3.
[0030] Reference Figure 1 The aluminum panel body 1 is a flat, rectangular structure made of aluminum alloy. Continuous perforations are evenly distributed on the surface of the aluminum panel body 1. These perforations form an overall decorative pattern, and fixing grooves 11 are provided in the gaps between the perforations. In this embodiment, the area of the perforations accounts for 10%-60% of the surface area of the aluminum panel body. This ensures that the aluminum panel body 1 can function as an isolation barrier in a fire environment.
[0031] The aluminum panel body 1 serves an architectural decorative function; the continuous perforated pattern enhances its aesthetic appeal and also provides ventilation, light transmission, and weight reduction. Reinforcing ribs are connected and fixed to the back of the aluminum panel body 1, ensuring the overall structural stability and preventing deformation during use.
[0032] The surface of the aluminum panel body 1 is coated with a fire-retardant coating. This coating can mitigate the damage of fire to the substrate in a fire environment, improving the overall fire resistance. In this embodiment, the fire-retardant coating uses epoxy resin, ensuring the overall structural fire safety of the aluminum panel body 1.
[0033] A fixing groove 11 is provided on one side of the aluminum panel body 1. The fixing groove is located at the gap between the punching holes of the aluminum panel body 1, and the number of fixing grooves 11 corresponds to the number of positioning devices 3.
[0034] In this embodiment, the fixing groove 11 is an elongated groove, which is formed on the side of the aluminum panel body 1 and extends upward from the top of the inner side of the groove, matching the structure of the positioning device 3. This ensures precise engagement during installation. The fixing groove 11 cooperates with the positioning device 3 to ensure a firm connection between the positioning device 3 and the aluminum panel body 1.
[0035] Reference Figure 1-4 The reinforcing rib 2 is a hollow square steel. In this embodiment, the reinforcing rib 2 has a rectangular structure with a rectangular cross-section. The length of the reinforcing rib 2 is customized according to the length of the aluminum panel body 1, and the length of the reinforcing rib 2 is determined according to actual needs. In this embodiment, the width of the reinforcing rib 2 is smaller than the width of the punching gap of the aluminum panel body 1, which ensures that the reinforcing rib 2 cannot be observed in the visual effect after the aluminum panel body 1 is assembled.
[0036] A slot 21 is provided on the side of the reinforcing rib 2 closest to the aluminum panel body 1, and the slot 21 can cooperate with the positioning device 3. In scenarios where the aluminum panel body 1 is used in a large area, the reinforcing rib 2 can effectively improve the overall rigidity and deformation resistance of the aluminum panel body 1, and prevent the panel from warping or bulging. Through the cooperation of the slot 21 and the buckle 31 of the positioning device 3, the aluminum panel body 1 can be stably fixed on the reinforcing rib 2.
[0037] The slots 21 are arranged along the length of the reinforcing rib 2 and are only formed on the surface facing the aluminum panel body 1. At least two slots 21 are provided on the surface of the reinforcing rib 2. In this embodiment, two slots 21 are provided on the surface of the reinforcing rib 2.
[0038] The cross-section of the slot 21 is a T-shaped groove, and its specific dimensions are adapted to the buckle 31 of the positioning device 3. After the slot 21 is connected to the buckle 31 of the positioning device 3, it can ensure that a firm mechanical fit is formed between the positioning device 3 and the reinforcing rib 2, preventing loosening due to vibration or external force.
[0039] Reference Figure 2 The positioning device 3 is a block structure designed according to the cross-sectional shape of the slot 21 and the fixing slot 11. At both ends of the positioning device 3, there are buckles 31 and protrusions 32, which are used to cooperate with the reinforcing rib 2 and the aluminum single panel body 1, respectively.
[0040] The buckle 31 is located at one end of the positioning device 3 and is a protruding structure. Its outer dimensions are consistent with the groove shape of the slot 21, and it can connect and cooperate with the slot 21 to achieve self-locking. Through the engagement of the buckle 31 and the slot 21, the positioning device 3 can be stably fixed on the reinforcing rib 2 and will not loosen due to vibration of the plate or thermal expansion and contraction.
[0041] The protrusion 32 is located at the other end of the positioning device 3, opposite to the buckle 31. It is a columnar protrusion with dimensions matching the cross-section of the fixing groove 11. Through the cooperation between the protrusion 32 and the fixing groove 11, the positioning device 3 can be firmly connected to the aluminum panel body 1, thereby combining the aluminum panel body 1 with the reinforcing rib 2.
[0042] Reference Figure 4 The positioning device 3 is connected to the reinforcing rib 2 by aligning the positioning device 31 with the slot 21 on the reinforcing rib 2, and then applying a certain pushing force to allow the buckle 31 to be inserted into the slot 21. The shape of the slot 21 matches the buckle 31, and a reliable mechanical connection is formed after engagement. The buckle 31 has a certain degree of elasticity and a beveled design, which allows it to be smoothly inserted into the slot 21 and engaged during installation. This connection method can quickly and stably fix the positioning device 3 to the reinforcing rib 2 without the use of additional fasteners.
[0043] Reference Figure 3 The positioning device 3 is connected to the aluminum panel body 1, and a fixing groove 11 is pre-reserved in the punching gap on the back of the aluminum panel body 1. During installation, the protrusion 32 of the positioning device 3 is aligned with the fixing groove 11, and then the protrusion 32 is connected to the fixing groove 11. The fixing groove 11 and the protrusion 32 cooperate with each other. A stable fitting relationship can be formed in both the panel direction and the vertical direction, preventing the positioning device 3 from detaching from the aluminum panel body 1.
[0044] This connection method ensures that there are no bolts or rivets on the front of the aluminum panel body 1, thus guaranteeing the integrity of the perforated pattern and the decorative effect.
[0045] Overall, after the positioning device 3 is connected to the reinforcing rib 2 and the aluminum panel body 1 respectively, the aluminum panel body 1 is stably fixed to the reinforcing rib 2. Multiple positioning devices 3 are distributed along the length of the reinforcing rib 2, which can accurately measure the area size and stress distribution of the aluminum panel body 1, ensuring uniform stress distribution and enhanced rigidity of the entire panel.
[0046] The surface of the aluminum panel body 1 is coated with a fire-retardant coating, which can effectively isolate the flame from direct damage to the substrate in the event of a fire, thus improving fire resistance. The reinforcing rib 2 is a hollow square steel structure, which has sufficient strength, reduces the overall weight, and leaves some space on the back of the panel to facilitate the installation of wiring or lighting equipment.
[0047] Through the cooperation of the buckle 31 and the slot 21, and the protrusion 32 and the fixing slot 11, the positioning device 3 can quickly complete the connection between the aluminum panel body 1 and the reinforcing rib 2, reducing the cumbersome process of traditional screwing or welding. The buckle 31 and the protrusion 32 of the positioning device 3 are tightly engaged with the reinforcing rib 2 and the aluminum panel body 1, forming a firm mechanical fit that can remain stable under long-term use and external impact, preventing loosening or falling off. The perforated pattern of the aluminum panel body 1 is continuously distributed on the panel surface and will not be damaged by exposed fasteners; at the same time, the positioning device 3 and the reinforcing rib 2 are located on the back of the panel, which does not affect the appearance of the front. The fireproof coating on the surface of the aluminum panel body 1 can effectively retard flames or delay the spread of fire in a fire, enhancing overall safety.
[0048] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments, and various changes and modifications can be made without departing from the spirit and scope of this utility model. All such changes and modifications fall within the scope of protection claimed by this utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A patterned continuously perforated aluminum panel, comprising: Aluminum single-panel body, reinforcing ribs, positioning device, The reinforcing ribs are provided on the back of the aluminum panel body, and the aluminum panel body is fixed to the surface of the reinforcing ribs by the positioning device. Its features are: The surface of the aluminum panel body is provided with continuous perforations, and the area between the perforations is provided with a fixing groove that cooperates with the positioning device. The reinforcing rib is a hollow square steel, and a slot is provided on the side near the main body of the aluminum panel. The slot can fix the positioning device. The positioning device has a buckle at one end and a protrusion at the other end; the positioning device can be fixed to the surface of the reinforcing rib by the cooperation between the buckle and the slot; the positioning device can be connected to the aluminum panel body by the cooperation between the protrusion and the fixing groove. The surface of the aluminum panel body is provided with a fireproof coating.
2. The patterned continuous perforated aluminum panel according to claim 1, characterized in that: The fire-retardant coating is made of epoxy resin.
3. The patterned continuous perforated aluminum panel according to claim 1, characterized in that: The area of the perforated holes accounts for 10%-60% of the surface area of the main body of the aluminum panel.
4. The patterned continuous perforated aluminum veneer according to claim 1, characterized in that: The back of the aluminum panel body is provided with at least two reinforcing ribs.
5. A patterned continuous perforated aluminum panel according to claim 1, characterized in that: The reinforcing rib has at least two slots.
6. A patterned continuous perforated aluminum veneer according to any one of claims 4-5, characterized in that: The fixing groove is disposed in the gap between the punches on the aluminum single panel body, and the number of fixing grooves is equal to the number of positioning devices.