Building aerogel thermal insulation wall structure

By combining side panels, front panels, isolation panels, and heating mesh, along with an aerogel layer and spring buffer mechanism, the problems of easy damage and complex installation of aerogel insulation walls are solved, thereby improving stability and durability and simplifying construction.

CN223510486UActive Publication Date: 2025-11-04JIAMUSI UNIVERSITY
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Patent Information

Application Number
CN202422725054.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-08
Publication Date
2025-11-04
Estimated Expiration
2034-11-08

AI Technical Summary

Technical Problem

Aerogel insulation wall structures are fragile and easily damaged in actual use, are complex to install, and lack a cushioning mechanism, resulting in insufficient stability and durability.

Method used

It adopts a combination structure of side plate, front plate, isolation plate and heating mesh, combined with aerogel layer and spring buffer mechanism, and improves stability by adjusting the threaded connection of screw and spring, and is equipped with protective mechanism to enhance support and protection.

Benefits of technology

It improves the stability and durability of aerogel insulation walls, enhances their ability to buffer against external impacts, simplifies the installation process, and maintains superior insulation performance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a building aerogel thermal insulation wall structure, and relates to the technical field of building equipment, the building aerogel thermal insulation wall structure comprises a wall body mechanism, the wall body mechanism comprises a side plate, the two sides of the side plate are provided with front plates, and one side of each front plate is provided with an isolation plate. The front plates at the two ends of the side plates are fixedly connected to the two sides of the side plates respectively, then the isolation plates are embedded between the side plates and the front plates, and the heating net is wrapped between the isolation plates and the aerogel layers, so that heat emitted by the heating net cannot directly act on the front plates and the central wall body to form a protection layer, and the heat dissipation efficiency is improved. A worker can fix an adjusting screw rod on the front plate in a threaded rotation mode after final installation is completed, and a first spring and a base plate are arranged on the outer surface of the adjusting screw rod, so that even if the front plate is subjected to impact force, the front plate can be buffered through an aerogel layer and the first spring; therefore, the stability of the device in the actual use process is improved.
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Description

Technical Field

[0001] This utility model relates to the field of building equipment technology, and in particular to a building aerogel insulation wall structure. Background Technology

[0002] In modern architecture, insulated wall structures are a crucial component for improving building energy efficiency and reducing energy consumption. Traditional insulation materials such as polystyrene foam and fiberglass, while providing insulation to some extent, have shortcomings in fire resistance, environmental friendliness, and longevity. Aerogel, as a novel ultra-lightweight insulation material, is gaining attention and application due to its superior insulation and fire resistance. However, aerogel materials are brittle, fragile, and easily damaged by external forces. Therefore, appropriate structural designs are needed in building applications to protect the aerogel layer and improve overall stability.

[0003] The existing patent application CN220486809U, titled "Building Eaves Insulation Wall," includes: a supporting structure and a roof slab with an insulation layer on the roof slab; a vertical insulation wall at the base of the eaves; the insulation wall is detachably fixed to the roof's supporting structure; the top of the insulation wall connects to the insulation layer of the roof slab; the bottom of the insulation wall connects to the top of the curtain wall; and the insulation wall is installed along the top of the curtain wall. The inner side of the insulation wall is the roof body requiring insulation, and the outer side is the eaves that do not require insulation. This technical solution directly eliminates the need for insulation measures on the eaves section, utilizing the insulation wall to connect the curtain wall and the roof's insulation structure. This significantly simplifies the insulation construction process, including the supporting structure and roof slab. The roof slab has an insulation layer, and a vertical insulation wall is installed at the base of the eaves. This insulation wall is detachably fixed to the roof's supporting structure. The top of the insulation wall connects to the roof slab's insulation layer, and the bottom of the insulation wall connects to the top of the curtain wall, which is installed along the top of the curtain wall. The inner side of the insulation wall is the roof structure requiring insulation, while the outer side is the eaves that do not require insulation. This technical solution eliminates the need for insulation on the eaves, utilizing the insulation wall to connect the curtain wall and roof insulation structure, thus greatly simplifying the insulation construction process.

[0004] However, existing aerogel insulation wall structures have certain shortcomings in practical use. First, aerogel materials are relatively fragile and easily damaged by external impacts, affecting their insulation performance and service life. Second, aerogel materials are difficult to bond tightly with other components during installation, leading to a complex installation process and insufficient stability. Furthermore, traditional insulation wall structures lack effective buffering mechanisms to cope with temperature changes and external impacts, easily causing deformation and damage to the entire wall structure. Therefore, we propose an aerogel insulation wall structure to address these issues, improve its stability and durability in practical use, while maintaining superior insulation performance. Utility Model Content

[0005] The purpose of this invention is to overcome the shortcomings of existing technologies and provide a building aerogel insulation wall structure.

[0006] To achieve the above objectives, the present invention adopts the following technical solution: an aerogel thermal insulation wall structure, comprising: a wall mechanism, the wall mechanism including side plates, a front plate provided on both sides of the side plates, an isolation plate provided on one side of the front plate, a heating mesh provided on the side of the isolation plate away from the front plate, an aerogel layer provided on the side of the heating mesh away from the isolation plate, a central wall provided on the side of the aerogel layer away from the heating mesh, an adjusting sleeve penetrating through the central wall, an adjusting screw provided in the adjusting sleeve, a pad provided on the outer surface of the adjusting screw, and a first spring provided on one side of the pad.

[0007] In a preferred embodiment, protective mechanisms are provided at both ends of the central wall. Each protective mechanism includes a gasket, a telescopic rod is provided between the two gaskets, a second spring is provided on the outer surface of the telescopic rod, a contact plate is provided at the end of the gasket away from the side plate, and a sealing plate is provided on the side of the contact plate near the side plate at both ends.

[0008] In a preferred embodiment, both ends of the telescopic rod are fixedly connected to the gaskets, both ends of the second spring are fixedly connected to the two gaskets, the two sides of the contact plate are fixedly connected between the central wall and the gaskets, and the sealing plate seals between the contact plate and the side plate.

[0009] In a preferred embodiment, both ends of the positive plate are fixedly connected to the side plate, the outer surface of the isolation plate is nested between the side plate and the positive plate, and the outer surface of the heating mesh is wrapped between the isolation plate and the aerogel layer.

[0010] In a preferred embodiment, the side of the aerogel layer away from the heating grid is fixedly connected to the central wall, the outer surface of the adjusting sleeve is fixedly connected to the central wall, and the adjusting screw is limited within the adjusting sleeve for adjustment.

[0011] In a preferred embodiment, the outer surface of one end of the adjusting screw is fixed to the positive plate by a threaded rotation, one side of the pad is in contact with the central wall, and the two ends of the first spring are in contact with the pad and the isolation plate, respectively.

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

[0013] This invention fixes the front plates at both ends of the side plate to the two sides of the side plate, and then embeds an isolation plate between the side plate and the front plate. A heating mesh is wrapped between the isolation plate and the aerogel layer. In this way, the heat emitted by the heating mesh will not directly act on the front plate and the central wall, but will form a protective layer. After the final installation is completed, the worker can fix the adjusting screw to the front plate by rotating the screw thread. A first spring and a washer are set on the outer surface of the adjusting screw. In this way, even if the front plate is subjected to impact, it will be buffered by the aerogel layer and the first spring, thereby improving its stability in actual use. Attached Figure Description

[0014] Figure 1 This is a structural schematic diagram of an aerogel insulation wall structure for buildings provided by this utility model.

[0015] Figure 2 This utility model provides a schematic diagram of the wall structure of an aerogel insulation wall.

[0016] Figure 3 This is an exploded structural diagram of the wall structure of an aerogel insulation wall structure provided by this utility model.

[0017] Figure 4 A schematic diagram of the protective mechanism of an aerogel insulation wall structure for use in this utility model.

[0018] Legend:

[0019] 1. Wall structure; 11. Side plate; 12. Front plate; 13. Isolation plate; 14. Heating grid; 15. Aerogel layer; 16. Central wall; 17. Adjusting screw; 18. First spring; 19. Pad; 110. Adjusting sleeve;

[0020] 2. Protective mechanism; 21. Sealing plate; 22. Contact plate; 23. Gasket; 24. Telescopic rod; 25. Second spring. Detailed Implementation

[0021] To more clearly illustrate the overall concept of this utility model, a detailed description will be provided below with reference to the accompanying drawings and examples.

[0022] Example 1

[0023] like Figure 1-3As shown, this utility model provides a technical solution: an aerogel thermal insulation wall structure, comprising: a wall mechanism 1, the wall mechanism 1 including side plates 11, a front plate 12 provided on both sides of the side plates 11, an isolation plate 13 provided on one side of the front plate 12, a heating mesh 14 provided on the side of the isolation plate 13 away from the front plate 12, an aerogel layer 15 provided on the side of the heating mesh 14 away from the isolation plate 13, a central wall 16 provided on the side of the aerogel layer 15 away from the heating mesh 14, an adjusting sleeve 110 penetrating through the central wall 16, an adjusting screw 17 provided in the adjusting sleeve 110, a pad 19 provided on the outer surface of the adjusting screw 17, and a first... A spring 18 is fixedly connected to both ends of a main plate 12 on a side plate 11. The outer surface of an isolation plate 13 is nested between the side plate 11 and the main plate 12. The outer surface of a heating mesh 14 is wrapped between the isolation plate 13 and the aerogel layer 15. The side of the aerogel layer 15 away from the heating mesh 14 is fixedly connected to the central wall 16. The outer surface of an adjusting sleeve 110 is fixedly connected to the central wall 16. An adjusting screw 17 is limited in the adjusting sleeve 110 for adjustment. The outer surface of one end of the adjusting screw 17 is fixed to the main plate 12 by a threaded rotation. One side of a pad 19 contacts the central wall 16. The two ends of the first spring 18 contact the pad 19 and the isolation plate 13, respectively.

[0024] In this embodiment, when the staff installs and uses this insulation wall, they can fix the front plates 12 at both ends of the side plate 11 to the two sides of the side plate 11 respectively, and then embed the isolation plate 13 between the side plate 11 and the front plate 12. The heating mesh 14 is wrapped between the isolation plate 13 and the aerogel layer 15. In this way, the heat emitted by the heating mesh 14 will not directly act on the front plate 12 and the central wall 16, forming a protective layer. After the final installation is completed, the staff can fix the adjusting screw 17 to the front plate 12 by rotating the screw. The outer surface of the adjusting screw 17 is provided with a first spring 18 and a pad 19. In this way, even if the front plate 12 is subjected to impact force, it will be buffered by the aerogel layer 15 and the first spring 18, thereby improving its stability in actual use.

[0025] Example 2

[0026] like Figure 1-4As shown, protective mechanisms 2 are provided at both ends of the central wall 16. The protective mechanism 2 includes a gasket 23, a telescopic rod 24 is provided between the two gaskets 23, a second spring 25 is provided on the outer surface of the telescopic rod 24, a contact plate 22 is provided at the end of the gasket 23 away from the side plate 11, and a sealing plate 21 is provided on the side of the contact plate 22 adjacent to the side plate 11. Both ends of the telescopic rod 24 are fixedly connected to the gasket 23, and both ends of the second spring 25 are fixedly connected to the two gaskets 23. The two sides of the contact plate 22 are fixedly connected between the central wall 16 and the gasket 23, respectively. The sealing plate 21 seals between the contact plate 22 and the side plate 11.

[0027] In this embodiment, in order to further improve its practicality in actual use, protective mechanisms 2 are provided at both ends of the central wall 16. Workers can connect the telescopic rod 24 between the gaskets 23 and the second spring 25 between the contact plate 22 and the side plate 11 to provide support and protection between the central wall 16 and the side plate 11, thereby further improving its stability in actual use.

[0028] Working principle:

[0029] like Figure 1-4 As shown, during the installation and use of this insulation wall, the workers can fix the two ends of the side panel 11 to the main panel 12 respectively, and then embed the isolation plate 13 between the side panel 11 and the main panel 12. A heating mesh 14 is wrapped between the isolation plate 13 and the aerogel layer 15, so that the heat emitted by the heating mesh 14 will not be directly conducted to the main panel 12 and the central wall 16, thus forming a protective layer. After installation, the workers can fix the adjusting screw 17 to the main panel 12 by rotating it with a thread. The outer surface of the adjusting screw 17 is equipped with a first spring 18 and a pad 19, so that even if the main panel 12 is subjected to impact, it can be cushioned by the aerogel layer 15 and the first spring 18.

[0030] To further enhance the practicality of the insulation wall in actual use, protective mechanisms 2 are provided at both ends of the central wall 16. Workers can connect the telescopic rod 24 between the gaskets 23 and the second spring 25 between the contact plate 22 and the side plate 11, thereby providing support and protection between the central wall 16 and the side plate 11. This design not only improves the stability of the insulation wall but also enhances its durability and safety in actual use.

[0031] Those skilled in the art should understand that the discussion of any of the above embodiments is merely exemplary and is not intended to imply that the scope of the present invention (including the claims) is limited to these examples; within the framework of the present invention, the technical features of the above embodiments or different embodiments can also be combined, the steps can be implemented in any order, and there are many other variations of different aspects of the present invention as described above, which are not provided in the details for the sake of brevity.

[0032] This utility model is intended to cover all such substitutions, modifications, and variations that fall within the broad scope of the appended claims. Therefore, any omissions, modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A building aerogel insulation wall structure, characterized in that, The system includes: a wall structure (1), which includes a side plate (11), a front plate (12) on both sides of the side plate (11), an isolation plate (13) on one side of the front plate (12), a heating mesh (14) on the side of the isolation plate (13) away from the front plate (12), an aerogel layer (15) on the side of the heating mesh (14) away from the isolation plate (13), a central wall (16) on the side of the aerogel layer (15) away from the heating mesh (14), an adjusting sleeve (110) penetrating through the central wall (16), an adjusting screw (17) in the adjusting sleeve (110), a pad (19) on the outer surface of the adjusting screw (17), and a first spring (18) on one side of the pad (19).

2. The building aerogel insulation wall structure according to claim 1, characterized in that: The central wall (16) is provided with protective mechanisms (2) at both ends. The protective mechanism (2) includes a gasket (23). A telescopic rod (24) is provided between the two gaskets (23). A second spring (25) is provided on the outer surface of the telescopic rod (24). A contact plate (22) is provided at the end of the gasket (23) away from the side plate (11). A sealing plate (21) is provided on both ends of the contact plate (22) near the side plate (11).

3. The building aerogel insulation wall structure according to claim 2, characterized in that: Both ends of the telescopic rod (24) are fixedly connected to the gasket (23), both ends of the second spring (25) are fixedly connected to the two gaskets (23), both sides of the contact plate (22) are fixedly connected between the central wall (16) and the gasket (23), and the sealing plate (21) seals between the contact plate (22) and the side plate (11).

4. The aerogel thermal insulation wall structure according to claim 1, characterized in that: Both ends of the main plate (12) are fixedly connected to the side plate (11), the outer surface of the isolation plate (13) is nested between the side plate (11) and the main plate (12), and the outer surface of the heating mesh (14) is wrapped between the isolation plate (13) and the aerogel layer (15).

5. The aerogel thermal insulation wall structure according to claim 1, characterized in that: The aerogel layer (15) is fixedly connected to the central wall (16) on the side away from the heating grid (14), the outer surface of the adjusting sleeve (110) is fixedly connected to the central wall (16), and the adjusting screw (17) is limited in the adjusting sleeve (110) for adjustment.

6. The aerogel insulation wall structure according to claim 1, characterized in that: The outer surface of one end of the adjusting screw (17) is fixed to the positive plate (12) by the screw rotation method. One side of the pad (19) is in contact with the central wall (16). The two ends of the first spring (18) are in contact with the pad (19) and the isolation plate (13) respectively.

Citation Information

Patent Citations

  • Building cornice thermal insulation wall

    CN220486809U