Aluminum plate curtain wall heat preservation structure

By introducing connecting devices such as sliding tracks and movable carriages into the aluminum panel curtain wall, combined with the design of rock wool insulation blocks, the problem of difficult replacement of the insulation layer of the aluminum panel curtain wall is solved, realizing convenient disassembly and stable installation, reducing labor and time costs, and improving the service life of the aluminum panel.

CN224200095UActive Publication Date: 2026-05-05SHENZHEN SCIENCE & TECHNOLOGY CONSTRUCTION CURTAIN WALL TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN SCIENCE & TECHNOLOGY CONSTRUCTION CURTAIN WALL TECHNOLOGY CO LTD
Filing Date
2025-04-27
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Replacing the insulation layer of existing aluminum panel curtain walls is difficult, and the traditional adhesive method results in a disassembly process that consumes a lot of manpower and time, and may damage the aluminum panel structure.

Method used

The system employs a connecting device, including components such as a slide, a movable carriage, inserts, and screws. Through sliding and positioning installation, it enables stable insertion and removal of the insulation unit. Combined with rock wool insulation blocks and reset supports, it ensures the stability of the insulation layer and facilitates easy replacement.

Benefits of technology

It enables convenient replacement of the insulation layer, reduces labor and time costs, lowers the risk of damage to the aluminum plate, and improves the practicality and stability of the installation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of aluminum plate curtain walls, in particular to an aluminum plate curtain wall heat preservation structure which comprises an aluminum plate body, a heat preservation part is arranged on the inner side of the aluminum plate body in an inserted mode, a connecting device is arranged on the surface of the aluminum plate body and comprises two sets of sliding grooves formed in the surface of the aluminum plate body, and the inner wall of each set of sliding groove is connected with a movable sliding frame in a sliding mode. The two movable sliding frames are located on the upper side and the lower side of the heat preservation part respectively, the surfaces of the movable sliding frames are fixedly connected with inserting blocks, and the upper surface and the lower surface of the heat preservation part are both provided with clamping parts allowing the inserting blocks to be inserted therein. And the inserting blocks are stably inserted into the clamping parts on the surface of the heat preservation part, so that the heat preservation part is mounted, follow-up dismounting is facilitated, labor-consuming dismounting in a traditional gluing mode is not needed, time and labor cost are greatly saved, damage to the aluminum plate structure is reduced, and the overall practicability is improved.
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Description

Technical Field

[0001] This utility model relates to the field of aluminum panel curtain wall technology, and in particular to an aluminum panel curtain wall insulation structure. Background Technology

[0002] Aluminum panel curtain walls are a modern building exterior wall decoration system. They use aluminum alloy panels as the main decorative material and are connected to the main building structure through various connectors. High-strength aluminum alloy panels are usually used, with common alloy states such as 3003 and 5052. They are lightweight, high-strength, and corrosion-resistant. Aluminum panels have various surface treatments, such as fluorocarbon spraying, powder coating, and anodizing. They can provide a wide range of colors and gloss levels according to design requirements to meet the aesthetic requirements of different building appearances.

[0003] In our daily work, we have found that in the installation and construction of aluminum panel curtain walls, in order to meet the building's energy-saving requirements, an insulation layer is usually added to the inside of the aluminum panel. Currently, the insulation layer is generally fixed to the aluminum panel by adhesive. As the service life increases, the insulation layer is prone to damage and aging due to interference. Because the adhesive will make the insulation layer stick tightly to the aluminum panel, once the damaged insulation layer needs to be replaced, the disassembly process is extremely difficult. This not only consumes a lot of manpower and time costs, but may also cause deformation and damage to the aluminum panel due to forced disassembly. Utility Model Content

[0004] The purpose of this utility model is to solve the problem of inconvenience in replacing the insulation part in the existing technology, and to propose an aluminum panel curtain wall insulation structure.

[0005] To achieve the above objectives, this utility model adopts the following technical solution: an aluminum panel curtain wall insulation structure, comprising an aluminum panel body, an insulation part inserted into the inner side of the aluminum panel body, and a connecting device provided on the surface of the aluminum panel body. The connecting device includes two sets of sliding grooves formed on the surface of the aluminum panel body, with a movable carriage slidably connected to the inner wall of each set of sliding grooves. The two movable carriages are respectively located on the upper and lower sides of the insulation part. An insert block is fixedly connected to the surface of the movable carriage. Both the upper and lower surfaces of the insulation part are provided with snap-fit ​​parts for inserting the insert block. The surface of the movable carriage is provided with an installation part for self-positioning. The surface of the movable carriage is provided with two connecting parts for installing connectors. Through the above components, the insulation part can be inserted into the aluminum panel body, and then the two movable carriages slide in the sliding grooves. The movable carriages can drive the insert block to be inserted into the snap-fit ​​part. The movable carriages are then positioned by the installation parts, thus realizing the positioning and installation of the insulation part, which is convenient for subsequent replacement.

[0006] Preferably, the mounting part includes two extension plates fixed to the surface of the movable carriage. The inner wall of the extension plate is threaded with a screw, and one end of the screw is fixedly connected with a convex ring. The surface of the aluminum plate body is provided with a socket for inserting the convex ring. Through the above components, when the movable carriage drives the insert block to be inserted into the locking part, the screw can be rotated, and the screw can drive the convex ring to be inserted into the socket, thereby realizing the positioning operation.

[0007] Preferably, the diameter of the convex ring is larger than the diameter of the screw. By using the above-mentioned components, the diameter of the convex ring is larger than the diameter of the screw, which can reduce the risk of the screw coming off.

[0008] Preferably, the snap-fit ​​part includes grooves formed on the upper and lower sides of the insulation part, and a concave seat is fixedly connected to the inner wall of the groove. The insert block is inserted into the inner wall of the concave seat. Through the above components, the concave seat in the groove can support the groove, and the insert block inserted into the concave seat can perform a positioning operation on the insulation part.

[0009] Preferably, the connecting part includes a connecting plate fixed to the surface of the movable carriage. The surface of the connecting plate has two mounting holes. The connecting part can be installed on the connecting plate through the mounting holes.

[0010] Preferably, the insulation part includes a rock wool insulation block and multiple reset support parts. The multiple support parts are evenly fixed on the surface of the rock wool insulation block. Through the above components, the rock wool insulation block can play a role in heat preservation, and the multiple reset support parts can support the rock wool insulation block, so as to effectively reset when it is squeezed.

[0011] Preferably, the reset support includes a guide rod fixed in the inner wall of the rock wool insulation block. Both ends of the guide rod are slidably connected to a top rod. One end of the top rod is in contact with the inner wall of the rock wool insulation block. A reset spring is fixedly connected to the side of the top rod corresponding to the inner wall of the guide rod. Through the above components, when the rock wool insulation block is squeezed, the reset spring and the top rod can drive the rock wool insulation block to reset.

[0012] Compared with the prior art, the advantages and positive effects of this utility model are as follows:

[0013] 1. In this utility model, by setting a connecting device, the movable slide and the insert are positioned by the mounting part, so that the insert is stably inserted into the snap-fit ​​part on the surface of the insulation part, thereby realizing the installation of the insulation part and facilitating subsequent disassembly. Unlike the traditional adhesive method, it does not require laborious disassembly, which greatly saves time and labor costs, reduces damage to the aluminum plate structure, and improves the overall practicality.

[0014] 2. In this utility model, the insulation part adopts rock wool insulation block and is provided with multiple reset support parts, which can enable the rock wool insulation block to reset after being squeezed. This not only provides good support for the rock wool insulation block, but also effectively buffers the impact force of the outside on the insulation layer.

[0015] 3. In this utility model, the design of the connecting part facilitates connection with other structures, and the mounting holes on the connecting plate can be used to install connectors, making it easy to install the aluminum panel curtain wall onto the main building structure. Attached Figure Description

[0016] Figure 1 This utility model provides a three-dimensional structural diagram of an aluminum panel curtain wall insulation structure;

[0017] Figure 2 This utility model presents an exploded structural diagram of an aluminum panel curtain wall insulation structure from an alternative perspective.

[0018] Figure 3 This utility model proposes an aluminum panel curtain wall thermal insulation structure. Figure 2 Schematic diagram of the structure at point A in the middle;

[0019] Figure 4 This utility model provides a cross-sectional structural diagram of the insulation part of an aluminum panel curtain wall insulation structure.

[0020] Figure 5 This utility model proposes an aluminum panel curtain wall thermal insulation structure. Figure 4 Schematic diagram of the structure at point B.

[0021] Legend:

[0022] 1. Aluminum plate body; 2. Insulation part; 21. Rock wool insulation block; 22. Reset support part; 221. Guide rod; 222. Top rod; 223. Reset spring; 3. Connecting device; 31. Slide groove; 32. Moving slide; 33. Connecting part; 331. Connecting plate; 332. Mounting hole; 34. Snap-fit ​​part; 341. Groove; 342. Concave seat; 35. Insert block; 36. Mounting part; 361. Screw; 362. Raised ring; 363. Extension plate; 364. Insertion hole. Detailed Implementation

[0023] Please see Figures 1-5 This utility model provides a technical solution: an aluminum panel curtain wall insulation structure, including an aluminum panel body 1, an insulation part 2 inserted into the inner side of the aluminum panel body 1, and a connecting device 3 provided on the surface of the aluminum panel body 1.

[0024] Specifically, the connecting device 3 includes two sets of sliding grooves 31 formed on the surface of the aluminum plate body 1. Each set of sliding grooves 31 has a movable slide 32 slidably connected to its inner wall. The two movable slides 32 are located on the upper and lower sides of the insulation part 2, respectively. The surface of the movable slide 32 is fixedly connected to a plug 35. The upper and lower surfaces of the insulation part 2 are provided with snap-fit ​​parts 34 for the plug 35 to be inserted. The surface of the movable slide 32 is provided with a mounting part 36 for positioning itself. The surface of the movable slide 32 is provided with two connecting parts 33 for mounting connectors. The connecting part 33 includes a connecting plate 331 fixed to the surface of the movable slide 32. The surface of the connecting plate 331 has two mounting holes 332.

[0025] In this embodiment: the insulation part 2 can be inserted into the aluminum plate body 1, and then two movable slides 32 can slide in the slide groove 31. The movable slides 32 can drive the insert block 35 to be inserted into the snap-fit ​​part 34. The movable slides 32 can be positioned by the mounting part 36, so that the insulation part 2 can be positioned and installed, which is convenient for subsequent replacement. The connector can be installed on the connecting plate 331 through the mounting hole 332 on the connecting plate 331 to realize the installation of the aluminum plate body 1.

[0026] Specifically, the mounting part 36 includes two extension plates 363 fixed on the surface of the movable carriage 32. The inner wall of the extension plate 363 is threaded with a screw 361. One end of the screw 361 is fixedly connected with a protruding ring 362. The surface of the aluminum plate body 1 is provided with an insertion hole 364 for the protruding ring 362 to be inserted. The diameter of the protruding ring 362 is larger than the diameter of the screw 361.

[0027] In this embodiment: after the movable slide 32 drives the insert block 35 to be inserted into the locking part 34, the screw 361 can be rotated. The screw 361 can drive the convex ring 362 to be inserted into the insertion hole 364 to achieve the positioning operation. The diameter of the convex ring 362 is larger than the diameter of the screw 361, which can reduce the screw 361 from coming off.

[0028] Specifically, the snap-fit ​​part 34 includes grooves 341 formed on the upper and lower sides of the heat insulation part 2. A concave seat 342 is fixedly connected to the inner wall of the groove 341, and the insert block 35 is inserted into the inner wall of the concave seat 342.

[0029] In this embodiment: the concave seat 342 in the groove 341 can support the groove 341, and the insert block 35 inserted into the concave seat 342 can be used to position the heat insulation part 2.

[0030] Specifically, the insulation part 2 includes a rock wool insulation block 21 and multiple reset support parts 22. The multiple support parts are evenly fixed on the surface of the rock wool insulation block 21. The reset support part 22 includes a guide rod 221 fixed in the inner wall of the rock wool insulation block 21. The inner walls of both ends of the guide rod 221 are slidably connected to a top rod 222. One end of the top rod 222 is in contact with the inner wall of the rock wool insulation block 21. A reset spring 223 is fixedly connected to the side of the top rod 222 corresponding to the inner wall of the guide rod 221.

[0031] In this implementation scheme: the rock wool insulation block 21 can play a role in heat preservation, and multiple reset support parts 22 can support the rock wool insulation block 21. When the rock wool insulation block 21 is compressed, the reset spring 223 and the top rod 222 can drive the rock wool insulation block 21 to reset.

[0032] Working principle: In use, the insulation part 2 can be placed in the aluminum plate body 1, and then two movable slides 32 can slide in the slide groove 31. The movable slides 32 can drive the insert block 35 to be inserted into the concave seat 342 in the snap-fit ​​part 34. Then, the screw 361 can be rotated, and the screw 361 can drive the convex ring 362 to be inserted into the insertion hole 364, thereby positioning the movable slides 32 and thus positioning and installing the insulation part 2. When replacing the insulation part 2, simply rotate the screw 361 to move the convex ring 362 out of the insertion hole 364, and then push the movable slides 32 to move the insert block 35 out of the concave seat 342, so that the insulation part 2 can be removed. The insulation part 2 is a rock wool insulation block 21. When the rock wool insulation block 21 is squeezed, the top rod 222 can move in the guide rod 221. The return spring 223, together with the top rod 222, can drive the rock wool insulation block 21 to return to its original position.

Claims

1. An aluminum panel curtain wall insulation structure, comprising an aluminum panel body (1), characterized in that: The aluminum plate body (1) has an insulation part (2) inserted inside. The aluminum plate body (1) has a connecting device (3) on its surface. The connecting device (3) includes two sets of sliding grooves (31) on the surface of the aluminum plate body (1). Each set of sliding grooves (31) has a movable slide (32) slidably connected to its inner wall. The two movable slides (32) are located on the upper and lower sides of the insulation part (2). The movable slide (32) has a fixed plug (35) on its surface. The upper and lower surfaces of the insulation part (2) are provided with snap-fit ​​parts (34) for the plug (35) to be inserted. The movable slide (32) has a mounting part (36) for positioning itself on its surface. The movable slide (32) has two connecting parts (33) for mounting connectors on its surface.

2. The aluminum panel curtain wall insulation structure according to claim 1, characterized in that: The mounting part (36) includes two extension plates (363) fixed on the surface of the movable carriage (32). The inner wall of the extension plate (363) is threaded with a screw (361). One end of the screw (361) is fixedly connected with a protruding ring (362). The surface of the aluminum plate body (1) is provided with a socket (364) for inserting the protruding ring (362).

3. The aluminum panel curtain wall insulation structure according to claim 2, characterized in that: The diameter of the convex ring (362) is larger than the diameter of the screw (361).

4. The aluminum panel curtain wall insulation structure according to claim 1, characterized in that: The snap-fit ​​part (34) includes grooves (341) formed on the upper and lower sides of the heat insulation part (2). A concave seat (342) is fixedly connected to the inner wall of the groove (341), and the insert (35) is inserted into the inner wall of the concave seat (342).

5. The aluminum panel curtain wall insulation structure according to claim 1, characterized in that: The connecting part (33) includes a connecting plate (331) fixed on the surface of the movable carriage (32), and the surface of the connecting plate (331) has two mounting holes (332).

6. The aluminum panel curtain wall insulation structure according to claim 5, characterized in that: The insulation part (2) includes a rock wool insulation block (21) and a plurality of reset support parts (22), and the plurality of support parts are evenly fixed on the surface of the rock wool insulation block (21).

7. The aluminum panel curtain wall insulation structure according to claim 6, characterized in that: The reset support (22) includes a guide rod (221) fixed in the inner wall of the rock wool insulation block (21). Both ends of the guide rod (221) are slidably connected to a top rod (222). One end of the top rod (222) is in contact with the inner wall of the rock wool insulation block (21). A reset spring (223) is fixedly connected to the side of the top rod (222) corresponding to the inner wall of the guide rod (221).