An all-aluminum three-dimensional composite heat-insulating, decorative and integrated enclosure wallboard structure

CN122504292APending Publication Date: 2026-08-04CHINA MCC17 GRP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
CHINA MCC17 GRP CO LTD
Filing Date
2026-06-18
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

[0004]本发明的目的是为了解决现有技术中以下缺点,当其中一块墙板因外力冲击、老化、破损等原因需要更换时,由于上下墙板相互卡接、层层堆叠,损坏墙板的上方会被多块墙板依次卡压,无法直接对损坏的墙板进行单独拆卸,工作人员必须从墙体顶部开始,依次拆卸损坏墙板上方的所有墙板,才能取出损坏墙板进行更换,不仅拆卸工序繁琐、耗时费力,大幅增加了维护成本和工作量,还可能在拆卸过程中对周边完好的墙板造成二次损坏,影响墙体的整体结构完整性和装饰效果,而提出的一种全铝三维复合保温装饰一体化围护墙板结构

Benefits of technology

[0019] 1. The main body of the wall panel is connected to the hook of the keel frame through the rectangular groove on the vertical beam. The limiting plate forms a limiting block for the hook to ensure a firm installation. When a single wall panel is damaged and needs to be replaced, simply operate the unlocking component to move the positioning rod horizontally, so that the positioning rod exits from the positioning hole of the limiting plate, thereby releasing the locking of the limiting plate. The limiting plate can rotate freely around the fixed axis, and the restriction between the hook and the rectangular groove is released. There is no need to disassemble other wall panels stacked above, and the damaged wall panel can be directly removed, simplifying the maintenance process and reducing the disassembly workload and maintenance costs.

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Abstract

This invention relates to the field of wall panel technology, and more particularly to an all-aluminum three-dimensional composite thermal insulation and decorative integrated wall panel structure, comprising a wall panel body. An upper folded edge and a lower folded edge are fixedly installed at the upper and lower ends of the wall panel body, respectively. Vertical beams are vertically and symmetrically fixed between the upper and lower folded edges. Two rectangular slots are vertically formed on each of the two vertical beams. A limiting plate is rotatably installed at the upper end of each rectangular slot via a fixed shaft. A positioning hole is formed through the side of the limiting plate. Insertion holes communicating with the rectangular slots are formed on both sides of the vertical beams. Positioning rods are horizontally slidably installed in each of the insertion holes on both sides. The positioning rods are horizontally slidably installed on one side of the vertical beam via a support assembly. Unlocking components are provided on both sides of the vertical beams. This invention allows for the direct removal of damaged wall panels without disassembling other stacked wall panels, simplifying maintenance procedures and reducing disassembly workload and maintenance costs.
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Description

Technical Field

[0001] This invention relates to the field of wall panel technology, and in particular to an all-aluminum three-dimensional composite thermal insulation and decorative integrated wall panel structure. Background Technology

[0002] All-aluminum three-dimensional composite thermal insulation and decorative integrated wall cladding is a new type of green building cladding material. With its advantages of light weight, corrosion resistance, excellent thermal insulation performance, good decorative effect, and convenient construction, it is widely used in the cladding structures of various buildings, including industrial plants, civil buildings, and public facilities. It not only integrates thermal insulation and decorative functions of building exterior walls but also improves the building's energy efficiency, durability, and aesthetics. It is a preferred cladding material under the modern building energy conservation and green construction concepts. These wall panels typically adopt a modular design, facilitating rapid on-site installation and significantly improving construction efficiency. At the same time, the characteristics of the all-aluminum material give it excellent anti-aging and impact resistance properties, making it suitable for various complex building scenarios.

[0003] The existing all-aluminum three-dimensional composite thermal insulation and decorative integrated wall panel has obvious defects in its installation structure design. The installation method often involves stacking and splicing upper and lower wall panels, which are then installed on hooks on a keel frame. The wall panel body is locked to the hooks on the keel frame to form an integral wall enclosure. While this hook-and-lock structure ensures the integrity and stability of the wall panel after installation, disassembly requires moving the entire wall panel upwards. When a wall panel needs to be replaced due to external impact, aging, or damage, the interlocking and stacked upper and lower wall panels cause multiple wall panels to press down on the damaged wall panel, making it impossible to disassemble the damaged panel directly. Workers must start from the top of the wall and disassemble all the wall panels above the damaged one in sequence before they can remove the damaged panel for replacement. This not only makes the disassembly process cumbersome, time-consuming, and labor-intensive, significantly increasing maintenance costs and workload, but it may also cause secondary damage to surrounding intact wall panels during disassembly, affecting the overall structural integrity and decorative effect of the wall. Summary of the Invention

[0004] The purpose of this invention is to address the following shortcomings in the existing technology: when a wall panel needs to be replaced due to external impact, aging, or damage, the upper and lower wall panels are interlocked and stacked, causing multiple wall panels to press down on the damaged wall panel, making it impossible to disassemble the damaged wall panel directly. Workers must start from the top of the wall and disassemble all the wall panels above the damaged wall panel in sequence before they can remove the damaged wall panel for replacement. This disassembly process is not only cumbersome and time-consuming, significantly increasing maintenance costs and workload, but may also cause secondary damage to the surrounding intact wall panels during the disassembly process, affecting the overall structural integrity and decorative effect of the wall. Therefore, this invention proposes an all-aluminum three-dimensional composite thermal insulation and decorative integrated enclosure wall panel structure.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] A three-dimensional composite thermal insulation and decorative integrated enclosure wall panel structure of all-aluminum includes a wall panel body, with an upper folded edge and a lower folded edge fixedly installed at the upper and lower ends of the wall panel body, and a thermal insulation component installed between the upper folded edge and the lower folded edge;

[0007] Vertical beams are symmetrically fixed between the upper and lower folded edges. Two rectangular slots are vertically opened on each of the two vertical beams. A limit plate is rotatably installed on the upper end of the rectangular slot through a fixed shaft. An L-shaped hanging slot is formed between the rectangular slot and the limit plate. A positioning hole is opened through the side of the limit plate. Insertion holes connected to the rectangular slots are opened on both sides of the vertical beam. The insertion holes are opposite to the positioning holes. A positioning rod is horizontally slidably installed in the insertion holes on both sides. One end of the positioning rod is inserted into the positioning hole.

[0008] The positioning rod is horizontally slidably mounted on one side of the vertical beam via a support assembly, and both sides of the vertical beam are provided with unlocking components for driving the positioning rod to move horizontally.

[0009] As a preferred embodiment, the support assembly includes an L-shaped bracket fixedly installed on the side of the vertical beam and a support sleeve fixedly installed on one end of the bracket. The positioning rod is horizontally slidably installed on the support sleeve, and a magnetic block is fixedly installed on one end of the positioning rod. The support sleeve is made of metal, and the magnetic block is magnetically connected to the support sleeve.

[0010] As a preferred embodiment, the bracket has a movable hole, and the unlocking component includes a transmission rod that is vertically slidably installed in the movable hole and a trapezoidal block that is fixedly installed on the transmission rod by a fixing block. The longitudinal section of the trapezoidal block is a right trapezoid. A transmission rectangular hole is opened through the side of the positioning rod, and one end of the trapezoidal block is vertically inserted into the transmission rectangular hole. A U-shaped connecting rod is fixedly installed on the upper end of the transmission rod on both sides of the vertical beam, and a transmission component for driving the connecting rod to move vertically upward is provided on the upper end of the wall panel body.

[0011] As a preferred embodiment, an upper baffle is fixedly installed on the upper folded edge, and a lower baffle is fixedly installed on the lower folded edge, with the upper baffle and the lower baffle being staggered.

[0012] As a preferred embodiment, the transmission assembly includes a U-shaped buckle fixedly mounted on the upper folded edge, a moving rod horizontally slidably mounted on the U-shaped buckle, a trapezoidal top block fixedly mounted on the moving rod, and a set screw mounted on the upper baffle. The trapezoidal top block has a right-angled trapezoidal longitudinal section, and the inclined surface of the trapezoidal top block slides in contact with the transverse end of the connecting rod. The upper baffle has symmetrically opened threaded holes on its side, and a set screw is threaded into each threaded hole. One end of the set screw is rotatably connected to one end of the moving rod.

[0013] As a preferred embodiment, multiple reinforcing ribs are vertically fixed between the upper and lower folded edges, and the upper folded edge, lower folded edge, wall panel body, and multiple reinforcing ribs are integrally formed.

[0014] As a preferred embodiment, the insulation component includes an insulation board installed between the upper and lower folded edges and multiple sets of fixing components for fixing the insulation board, the fixing components being installed on the reinforcing ribs.

[0015] As a preferred embodiment, the fixing component includes a limiting metal rod fixedly installed on the reinforcing rib. The insulation board has multiple limiting holes, one end of the limiting metal rod is inserted into the limiting hole, and one end of the limiting metal rod has a slot. The limiting metal rod consists of a connecting part and two limiting parts. Both limiting parts are fixedly installed at one end of the connecting part, and both limiting parts can be bent to one side to form a T-shaped structure with the connecting part.

[0016] As a preferred embodiment, there is a gap between the lower end baffle and the lower end fold on the upper wall panel body and the upper end baffle on the lower wall panel body. A T-shaped sealing strip is installed in the gap, and a drip line is installed on the side of the sealing strip.

[0017] As a preferred embodiment, an adhesive strip and a retaining strip are fixedly installed on the lower surface of the drip edge. The adhesive strip is attached to the side of the upper baffle, and a wedge groove is formed between the adhesive strip and the retaining strip. A light strip is embedded in the wedge groove.

[0018] Compared with the prior art, the beneficial effects of the present invention are:

[0019] 1. The main body of the wall panel is connected to the hook of the keel frame through the rectangular groove on the vertical beam. The limiting plate forms a limiting block for the hook to ensure a firm installation. When a single wall panel is damaged and needs to be replaced, simply operate the unlocking component to move the positioning rod horizontally, so that the positioning rod exits from the positioning hole of the limiting plate, thereby releasing the locking of the limiting plate. The limiting plate can rotate freely around the fixed axis, and the restriction between the hook and the rectangular groove is released. There is no need to disassemble other wall panels stacked above, and the damaged wall panel can be directly removed, simplifying the maintenance process and reducing the disassembly workload and maintenance costs.

[0020] 2. Under normal installation conditions, the positioning rod passes through the vertical beam insertion hole and is inserted into the positioning hole of the limiting plate, fixing the limiting plate in a vertical position. It cooperates with the rectangular groove to form a stable L-shaped hanging groove, which can prevent the hook from coming out of the rectangular groove, improve the firmness of the connection between the wall panel and the keel frame, and reduce the risk of the wall panel loosening or falling off.

[0021] 3. The main body of the wall panel, the upper folded edge, the lower folded edge, and multiple reinforcing ribs adopt an integrated molding structure, which can improve the overall rigidity and structural strength of the wall panel, enhance its impact resistance and deformation resistance, and extend the service life of the wall panel in the building envelope.

[0022] 4. The insulation board is positioned and installed by the limiting metal rod on the reinforcing rib. The end of the limiting metal rod can be bent to form a T-shaped structure, which stably clamps the insulation board inside the wall panel, reducing the phenomenon of insulation board displacement and falling off, and maintaining the long-term stable thermal insulation effect of the enclosure wall panel.

[0023] 5. The upper and lower wall panels are sealed together by a T-shaped sealing strip, which can reduce the infiltration of rainwater and cold air. Combined with the drip line to guide drainage, it reduces the risk of wall leakage. A light strip installation groove is set below the drip line, which can integrate decorative lighting functions and improve the aesthetics and functionality of the building's exterior wall.

[0024] 6. By rotating the set screw, the trapezoidal top block, connecting rod, transmission rod and trapezoidal block can be driven to work together to complete the unlocking action of the positioning rod. The operation is simple and quick, and it is easy for on-site construction and later maintenance personnel to get started quickly. Attached Figure Description

[0025] Figure 1 This is a frontal three-dimensional structural diagram of an all-aluminum three-dimensional composite thermal insulation and decorative integrated enclosure wall panel structure proposed in this invention;

[0026] Figure 2 This is a rear-view three-dimensional structural diagram of an all-aluminum three-dimensional composite thermal insulation and decorative integrated enclosure wall panel structure proposed in this invention;

[0027] Figure 3 for Figure 2 Enlarged structural diagram at point A in the middle;

[0028] Figure 4 A three-dimensional structural diagram of the wall panel body, insulation components, and vertical beams;

[0029] Figure 5 A schematic diagram of a three-dimensional partial cross-sectional structure of the wall panel body and insulation components;

[0030] Figure 6 A three-dimensional structural diagram of the limiting metal rod;

[0031] Figure 7This is a schematic diagram of a three-dimensional partial cross-sectional structure of the vertical beam, rectangular groove, limiting plate, positioning rod, and unlocking assembly;

[0032] Figure 8 for Figure 7 Enlarged structural diagram at point B;

[0033] Figure 9 This is a sectional view of the keel frame, hooks, vertical beams, and limiting plates;

[0034] Figure 10 This is a partial three-dimensional structural diagram of the transmission component.

[0035] In the diagram: 1. Main wall panel, 2. Upper folded edge, 3. Lower folded edge, 4. Vertical beam, 5. Rectangular groove, 6. Fixed shaft, 7. Limiting plate, 8. Positioning hole, 9. Positioning rod, 10. Bracket, 11. Support sleeve, 12. Transmission rod, 13. Trapezoidal block, 14. Connecting rod, 15. Upper baffle, 16. Lower baffle, 17. U-shaped buckle, 18. Moving rod, 19. Trapezoidal top block, 20. Top screw, 21. Reinforcing rib, 22. Insulation board, 23. Limiting metal rod, 2301. Connecting part, 2302. Limiting part, 24. Groove, 25. Sealing strip, 26. Drip line, 27. Adhesive strip, 28. Clip strip, 29. Light strip, 30. Fixing block, 31. Magnetic block. Detailed Implementation

[0036] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.

[0037] Reference Figures 1-10 A three-dimensional composite thermal insulation and decorative integrated enclosure wall panel structure of all-aluminum includes a wall panel body 1. The upper end of the wall panel body 1 is fixedly installed with an upper edge 2 and a lower edge 3 respectively. A thermal insulation component is installed between the upper edge 2 and the lower edge 3. Vertical beams 4 are vertically and symmetrically fixedly installed between the upper edge 2 and the lower edge 3. Two rectangular grooves 5 are vertically opened on each of the two vertical beams 4. A limiting plate 7 is rotatably installed on the upper end of the rectangular groove 5 through a fixed shaft 6. An L-shaped hanging groove is formed between the rectangular groove 5 and the limiting plate 7. A positioning hole 8 is opened through the side of the limiting plate 7. Insertion holes communicating with the rectangular grooves 5 are opened on both sides of the vertical beam 4. The insertion holes are opposite to the positioning holes 8. A positioning rod 9 is horizontally slidably installed in the insertion holes on both sides. One end of the positioning rod 9 is inserted into the positioning hole 8. The positioning rod 9 is horizontally slidably installed on one side of the vertical beam 4 through a support component. Unlocking components for driving the positioning rod 9 to move horizontally are provided on both sides of the vertical beam 4.

[0038] The wall panel body 1 provides the basic load-bearing and decorative surface for the exterior wall enclosure. The upper folded edge 2 and the lower folded edge 3 form closed edges at the top and bottom, which facilitates splicing and sealing. The vertical beam 4 improves the vertical rigidity of the wall panel and provides a hanging installation position. The rectangular groove 5 is used to cooperate with the hooks on the building keel frame for hanging. The limiting plate 7 can be rotated and opened. Under normal conditions, the hanging groove is closed to prevent the hook from falling out. When unlocked, it is rotated open to achieve individual disassembly. The positioning rod 9 is inserted into the positioning hole 8 of the limiting plate 7 to achieve the fixed locking of the limiting plate 7. The support component provides sliding guidance and support for the positioning rod 9. The unlocking component is used to drive the positioning rod 9 to move and release the locking of the limiting plate 7.

[0039] The support assembly includes an L-shaped bracket 10 fixedly installed on the side of the vertical beam 4 and a support sleeve 11 fixedly installed on one end of the bracket 10. The positioning rod 9 is horizontally slidably installed on the support sleeve 11. A magnetic block 31 is fixedly installed on one end of the positioning rod 9. The support sleeve 11 is made of metal. The magnetic block 31 is magnetically connected to the support sleeve 11. The L-shaped bracket 10 provides a stable installation position for the support sleeve 11. The support sleeve 11 radially constrains the positioning rod 9, so that the positioning rod 9 can only slide linearly in the horizontal direction, thereby improving the motion accuracy and stability. When one end of the positioning rod 9 is inserted into the positioning hole 8, the magnetic block 31 is magnetically connected to the support sleeve 11, so that the positioning rod 9 is stably inserted into the positioning hole 8.

[0040] The bracket 10 has a movable hole. The unlocking component includes a transmission rod 12 that is vertically slidably installed in the movable hole and a trapezoidal block 13 that is fixedly installed on the transmission rod 12 by a fixing block 30. The longitudinal section of the trapezoidal block 13 is a right trapezoid. A transmission rectangular hole is opened through the side of the positioning rod 9. One end of the trapezoidal block 13 is vertically inserted into the transmission rectangular hole. A U-shaped connecting rod 14 is fixedly installed on the upper end of the transmission rod 12 on both sides of the vertical beam 4. The upper end of the wall panel body 1 is provided with a transmission component for driving the connecting rod 14 to move vertically upward. The transmission rod 12 can slide up and down along the movable hole, driving the trapezoidal block 13 to move synchronously. The inclined surface of the trapezoidal block 13 cooperates with the transmission rectangular hole to convert the vertical upward movement into the horizontal outward movement of the positioning rod 9, thereby realizing the unlocking action. The connecting rod 14 connects the two transmission rods 12 into one, realizing synchronous lifting and lowering. The transmission component provides an upward driving force for the connecting rod 14 to complete the unlocking trigger.

[0041] An upper baffle 15 is fixedly installed on the upper edge 2, and a lower baffle 16 is fixedly installed on the lower edge 3. The upper baffle 15 and the lower baffle 16 are staggered and form an interlocking structure, which improves the sealing and wind and rain resistance of the wall panel splice, while keeping the decorative surface flat and beautiful.

[0042] The transmission assembly includes a U-shaped buckle 17 fixedly mounted on the upper flange 2, a moving rod 18 horizontally slidably mounted on the U-shaped buckle 17, a trapezoidal top block 19 fixedly mounted on the moving rod 18, and a set screw 20 mounted on the upper baffle 15. The trapezoidal top block 19 has a right-angled trapezoidal longitudinal section. The inclined surface of the trapezoidal top block 19 slides in contact with the transverse end of the connecting rod 14. The upper baffle 15 has symmetrically opened threaded holes on its side. The set screw 20 is threadedly connected in the threaded holes. One end of the set screw 20 is rotatably connected to one end of the moving rod 18. The U-shaped buckle 17 provides a horizontal sliding guide for the moving rod 18. Rotating the set screw 20 can push the moving rod 18 and the trapezoidal top block 19 to move horizontally. The inclined surface of the trapezoidal top block 19 pushes the connecting rod 14 to move vertically upward, thereby driving the unlocking assembly to operate and realize remote unlocking operation without entering the inside of the wall panel.

[0043] Multiple reinforcing ribs 21 are vertically fixed between the upper fold 2 and the lower fold 3. The upper fold 2, the lower fold 3, the wall panel body 1 and the multiple reinforcing ribs 21 are set as an integral molding structure. The reinforcing ribs 21 improve the overall bending, torsion and impact resistance of the wall panel, reduce stress deformation, and the integral molding structure enhances the overall structure, reduces the risk of connection failure and extends the service life.

[0044] The insulation component includes an insulation board 22 installed between the upper fold 2 and the lower fold 3, and multiple sets of fixing components for fixing the insulation board 22. The fixing components are installed on the reinforcing ribs 21. The insulation board 22 provides insulation, heat insulation and energy-saving functions for the wall panel. The fixing components stably fix the insulation board 22 inside the wall panel to reduce displacement and falling off.

[0045] The fixing component includes a limiting metal rod 23 fixedly installed on the reinforcing rib 21. The insulation board 22 has multiple limiting holes. One end of the limiting metal rod 23 is inserted into the limiting hole. One end of the limiting metal rod 23 has a slot 24. The limiting metal rod 23 consists of a connecting part 2301 and two limiting parts 2302. Both limiting parts 2302 are fixedly installed at one end of the connecting part 2301. Both limiting parts 2302 can be bent to one side to form a T-shaped structure with the connecting part 2301. The limiting metal rod 23 passes through the insulation board 22 to achieve positioning. After the limiting part 2302 is bent, it forms a T-shaped end, which can clamp and fix the insulation board 22 to prevent loosening. The slot 24 facilitates the bending of the limiting part 2302 under force, making installation convenient.

[0046] There is a gap between the lower end baffle 16 and the lower end folded edge 3 on the upper wall panel body 1 and the upper end baffle 15 on the lower wall panel body 1. A T-shaped sealing strip 25 is installed in the gap. A drip line 26 is installed on the side of the sealing strip 25. The sealing strip 25 fills the splicing gap, improves waterproof, windproof and sealing performance, and the drip line 26 guides rainwater to drain outward and reduces rainwater seepage into the interior of the wall.

[0047] A bonding strip 27 and a retaining strip 28 are fixedly installed on the lower surface of the drip line 26. The bonding strip 27 is attached to the side of the upper baffle 15. A wedge groove is formed between the bonding strip 27 and the retaining strip 28. A light strip 29 is embedded in the wedge groove. The bonding strip 27 and the retaining strip 28 improve the installation stability of the drip line 26. The wedge groove is used to install the light strip 29, realizing the integration of decorative lighting and enhancing the aesthetics and functionality of the building facade.

[0048] In this invention, during installation, the insulation board 22 is first aligned with the limiting metal rod 23 on the reinforcing rib 21, so that the limiting metal rod 23 is inserted into the limiting hole of the insulation board 22. The insulation board 22 is then pressed firmly until it adheres to the wall panel body 1. Then, the two limiting parts 2302 at the ends of the limiting metal rod 23 are bent to both sides, so that the limiting parts 2302 and the connecting parts 2301 form a T-shaped structure, thus completing the fixing of the insulation board 22.

[0049] Before installing the wall panel body 1, push the limiting plate 7 to rotate around the fixed shaft 6 to a vertical position, so that one end of the positioning rod 9 is inserted into the positioning hole 8 to lock the limiting plate 7, so that the limiting plate 7 and the rectangular groove 5 form an L-shaped hanging groove. Then, move the wall panel body 1 to the corresponding installation position of the building keel frame, align the hook on the keel frame with the rectangular groove 5 on the vertical beam 4 and push it in to restrict the hook inside the hanging groove. Then, overlap the lower edge 3 and lower baffle 16 of the upper wall panel body 1 with the upper edge 2 and upper baffle 15 of the lower wall panel body 1. Embed the T-shaped sealing strip 25 in the splicing gap between the upper and lower wall panels, install the drip line 26 on the side of the sealing strip 25, and make the adhesive strip 27 fit the upper baffle 15. Finally, embed the light strip 29 into the wedge groove of the drip line 26 to complete the sealing, drainage and lighting decoration installation.

[0050] After installation, the wall panel body 1, upper folded edge 2, lower folded edge 3, and reinforcing rib 21 are integrally formed. Combined with the vertical beam 4, it can significantly improve the overall structural strength, with strong impact resistance and deformation resistance. The insulation board 22 is stably fixed inside the wall panel, which can continuously play a role in heat insulation and reduce building energy consumption. The upper baffle 15 and lower baffle 16 are staggered and overlapped. Combined with the sealing strip 25, it can effectively block rainwater and cold air from seeping in. The drip line 26 guides rainwater to drain quickly and avoids wall leakage. The light strip 29 can realize nighttime lighting and exterior facade decoration effect. The limiting plate 7 and positioning rod 9 work together to lock, so that the hook cannot be dislodged from the hanging groove. The wall panel is firmly installed and there is no risk of loosening or falling off.

[0051] When a single wall panel needs to be disassembled and replaced, use a tool to rotate the top screw 20 at the upper end of the wall panel body 1. The top screw 20 pushes the moving rod 18 and the trapezoidal top block 19 to move horizontally along the U-shaped buckle 17. The inclined surface of the trapezoidal top block 19 presses against the connecting rod 14, causing the connecting rod 14 and the two side transmission rods 12 to slide vertically upward. The transmission rod 12 moves upward, causing the trapezoidal block 13 to rise synchronously. The inclined surface of the trapezoidal block 13 presses against the transmission rectangular hole of the positioning rod 9, pushing the positioning rod 9 to slide horizontally outward along the support sleeve 11, so that the positioning rod 9 completely exits from the positioning hole 8 of the limiting plate 7, releasing the lock on the limiting plate 7. Then, directly pull the wall panel body 1 outward, and then move its upper end outward and its lower end inward, rotating it around the center, so that the keel frame hook disengages from the rectangular groove 5. This system allows for the individual removal of single wall panels without the need to disassemble other wall panels stacked above. After the new wall panel is installed according to the installation steps, the top screw 20 is rotated in the opposite direction to reset the trapezoidal top block 19. The positioning rod 9 is then reinserted into the positioning hole 8 of the limiting plate 7 to lock the panel, thus completing the replacement operation. This process enables the independent removal and replacement of single wall panels without having to disassemble them sequentially from the top of the wall, greatly simplifying the maintenance process, reducing workload and maintenance costs, and avoiding secondary damage to surrounding intact wall panels during disassembly. This ensures the integrity of the overall wall structure and the decorative effect. The unlocking operation can be completed simply by rotating the top screw 20, which is simple, quick, and convenient for on-site construction and maintenance personnel. After replacement, the wall panel can be quickly reset and locked, restoring the original installation strength, thermal insulation performance, and sealing effect.

[0052] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. A three-dimensional composite thermal insulation and decorative integrated enclosure wall panel structure, comprising a wall panel body (1), characterized in that, The upper edge (2) and lower edge (3) are fixedly installed at the upper and lower ends of the wall panel body (1), respectively, and a heat insulation component is installed between the upper edge (2) and lower edge (3); Vertical beams (4) are vertically and symmetrically fixed between the upper end fold (2) and the lower end fold (3). Two rectangular slots (5) are vertically opened on both vertical beams (4). A limiting plate (7) is rotatably installed on the upper end of the rectangular slots (5) through a fixed shaft (6). An L-shaped hanging groove is formed between the rectangular slots (5) and the limiting plate (7). A positioning hole (8) is opened through the side of the limiting plate (7). Insertion holes connected to the rectangular slots (5) are opened on both sides of the vertical beams (4). The insertion holes are opposite to the positioning holes (8). A positioning rod (9) is horizontally slidably installed in the insertion holes on both sides. One end of the positioning rod (9) is inserted into the positioning hole (8). The positioning rod (9) is horizontally slidably mounted on one side of the vertical beam (4) via a support assembly. Both sides of the vertical beam (4) are provided with unlocking assemblies for driving the positioning rod (9) to move horizontally.

2. The all-aluminum three-dimensional composite thermal insulation and decorative integrated enclosure wall panel structure according to claim 1, characterized in that, The support assembly includes an L-shaped bracket (10) fixedly installed on the side of the vertical beam (4) and a support sleeve (11) fixedly installed on one end of the bracket (10). The positioning rod (9) is horizontally slidably installed on the support sleeve (11). A magnetic block (31) is fixedly installed on one end of the positioning rod (9). The support sleeve (11) is made of metal. The magnetic block (31) is magnetically connected to the support sleeve (11).

3. The all-aluminum three-dimensional composite thermal insulation and decorative integrated enclosure wall panel structure according to claim 2, characterized in that, The bracket (10) has a movable hole. The unlocking component includes a transmission rod (12) that is vertically slidably installed in the movable hole and a trapezoidal block (13) that is fixedly installed on the transmission rod (12) by a fixing block (30). The longitudinal section of the trapezoidal block (13) is a right trapezoid. The side of the positioning rod (9) has a transmission rectangular hole. One end of the trapezoidal block (13) is vertically inserted into the transmission rectangular hole. The upper ends of the transmission rods (12) on both sides of the vertical beam (4) are fixedly installed with U-shaped connecting rods (14). The upper end of the wall panel body (1) is provided with a transmission component for driving the connecting rods (14) to move vertically upward.

4. The all-aluminum three-dimensional composite thermal insulation and decorative integrated enclosure wall panel structure according to claim 3, characterized in that, An upper baffle (15) is fixedly installed on the upper edge (2), and a lower baffle (16) is fixedly installed on the lower edge (3). The upper baffle (15) and the lower baffle (16) are staggered.

5. The all-aluminum three-dimensional composite thermal insulation and decorative integrated enclosure wall panel structure according to claim 4, characterized in that, The transmission assembly includes a U-shaped buckle (17) fixedly mounted on the upper flange (2), a moving rod (18) horizontally slidably mounted on the U-shaped buckle (17), a trapezoidal top block (19) fixedly mounted on the moving rod (18), and a set screw (20) mounted on the upper baffle (15). The trapezoidal top block (19) has a right-angled trapezoidal longitudinal section. The inclined surface of the trapezoidal top block (19) slides in contact with the transverse end of the connecting rod (14). The upper baffle (15) has symmetrically opened threaded holes on its side. The set screw (20) is threadedly connected in the threaded holes. One end of the set screw (20) is rotatably connected to one end of the moving rod (18).

6. The all-aluminum three-dimensional composite thermal insulation and decorative integrated enclosure wall panel structure according to claim 1, characterized in that, Multiple reinforcing ribs (21) are vertically fixed between the upper fold (2) and the lower fold (3). The upper fold (2), the lower fold (3), the wall panel body (1) and the multiple reinforcing ribs (21) are integrally formed.

7. The all-aluminum three-dimensional composite thermal insulation and decorative integrated enclosure wall panel structure according to claim 6, characterized in that, The insulation component includes an insulation board (22) installed between the upper fold (2) and the lower fold (3) and multiple sets of fixing components for fixing the insulation board (22), the fixing components being installed on the reinforcing rib (21).

8. The all-aluminum three-dimensional composite thermal insulation and decorative integrated enclosure wall panel structure according to claim 7, characterized in that, The fixing component includes a limiting metal rod (23) fixedly installed on the reinforcing rib (21). The insulation board (22) has multiple limiting holes. One end of the limiting metal rod (23) is inserted into the limiting hole. One end of the limiting metal rod (23) has a slot (24). The limiting metal rod (23) is composed of a connecting part (2301) and two limiting parts (2302). Both limiting parts (2302) are fixedly installed at one end of the connecting part (2301). Both limiting parts (2302) can be bent to one side to form a T-shaped structure with the connecting part (2301).

9. The all-aluminum three-dimensional composite thermal insulation and decorative integrated enclosure wall panel structure according to claim 4, characterized in that, There is a gap between the lower end baffle (16) and the lower end fold (3) on the upper wall panel body (1) and the upper end baffle (15) on the lower wall panel body (1). A T-shaped sealing strip (25) is installed in the gap, and a drip line (26) is installed on the side of the sealing strip (25).

10. The all-aluminum three-dimensional composite thermal insulation and decorative integrated enclosure wall panel structure according to claim 9, characterized in that, The drip line (26) is fixedly installed with an adhesive strip (27) and a retaining strip (28) on its lower surface. The adhesive strip (27) is attached to the side of the upper baffle (15). A wedge groove is formed between the adhesive strip (27) and the retaining strip (28). A light strip (29) is embedded in the wedge groove.