Ventilation interlayer aluminum plate mounting structure for atrium decoration

By setting up ventilation cavities and vertical air inlets on the top surface of the atrium decorative aluminum panels, the problem of heat accumulation at the top of the atrium of large commercial buildings was solved, effective heat dissipation was achieved, and the comfort level of the top floor area was improved.

CN223360833UActive Publication Date: 2025-09-19GOLD MANTIS CONSTR DECORATION
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Patent Information

Application Number
CN202422857825.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-09-19
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

The greenhouse effect and chimney effect cause heat accumulation at the top of the atrium of modern large commercial buildings, affecting the thermal comfort of people in the top area.

Method used

A ventilated sandwich aluminum panel installation structure for atrium decoration is designed. A ventilation cavity and vertically arranged air inlets are set on the top surface of the aluminum panel. Hot air flows into the ventilation cavity through the air inlets and is discharged to the external environment, avoiding heat accumulation.

Benefits of technology

It effectively avoids heat accumulation at the top of the atrium, improves the physical comfort of the top area, and enhances heat dissipation efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a ventilation interlayer aluminum plate installation structure for atrium decoration, which comprises a ventilation plate and a framework assembly, the ventilation plate is installed on a wall body through the framework assembly, the top surface of the ventilation plate is provided with a ventilation cavity, and one surface of the ventilation plate back to the wall body is provided with an air inlet communicated with the ventilation cavity. According to the scheme, when heat is gathered to the top of the atrium, hot air flows into the ventilation cavity through the air inlet and further flows into the external environment from the top outlet of the ventilation cavity, and the situation that the top heat is gathered due to the greenhouse effect and the smoke window effect can be effectively avoided; therefore, the somatosensory comfort of people in the top area can be improved.
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Description

Technical Field

[0001] The utility model relates to the field of building decoration, in particular to a ventilation sandwich aluminum plate installation structure for atrium decoration. Background Art

[0002] Modern large-scale commercial buildings often feature large skylights at the top of their atria, introducing natural light and creating a spacious and bright visual experience for the mall. This direct sunlight radiation also provides direct sunlight. However, the greenhouse effect and chimney effect of atria are particularly pronounced in summer, leading to heat accumulation in the upper atria and, in turn, poor thermal comfort for those in the top floors.

[0003] Therefore, the technical problem that this application needs to solve is: how to avoid heat accumulation at the top of the atrium. Utility Model Content

[0004] In order to solve the above technical problems, the utility model proposes a ventilation sandwich aluminum plate installation structure for atrium decoration. In this solution, when heat gathers at the top of the atrium, the hot air will flow into the ventilation cavity through the air inlet, and further flow into the external environment from the top outlet of the ventilation cavity, which can effectively avoid the occurrence of top heat accumulation caused by greenhouse effect and smoke window effect, thereby improving the physical comfort of people in the top area.

[0005] Specifically, the utility model proposes a ventilation sandwich aluminum plate installation structure for atrium decoration, including a ventilation plate and a skeleton assembly. The ventilation plate is installed on the wall through the skeleton assembly. The top surface of the ventilation plate is provided with a ventilation cavity, and the side of the ventilation plate facing away from the wall is provided with an air inlet that passes through the ventilation cavity.

[0006] Preferably, the air inlet is a strip-shaped opening, and the air inlet is arranged in a vertical direction.

[0007] Preferably, there are multiple strip-shaped openings, and the multiple strip-shaped openings are evenly arranged on the ventilation plate.

[0008] Preferably, the ventilation plate includes a first side panel, a partition panel, a second side panel and a bottom panel, the first side panel and the second side panel are fixed by a partition panel, and the lower ends of the first side panel and the second side panel are fixed on the bottom panel, the first side panel is used to connect the skeleton assembly, and the second side panel is provided with the air inlet.

[0009] Preferably, a skylight is fixed on a side of the ventilation plate away from the wall.

[0010] Preferably, there are two ventilation panels, which are respectively located at both ends of the skylight.

[0011] Preferably, a shielding layer is installed between the skylight and the wall.

[0012] Preferably, a water baffle is provided above the ventilation plate, and the water baffle is located on both sides of the ventilation plate, one of the water baffles is fixed on the shielding layer, and the other water baffle is fixed on the frame of the skylight.

[0013] Preferably, a rainproof plate is provided above the water baffle, and the rainproof plate is used to prevent rainwater from falling into the ventilation cavity;

[0014] One end of the rainproof plate is mounted on the frame of the skylight through a fixing frame, and the other end of the rainproof plate is mounted on the shielding layer through a fixing frame.

[0015] Preferably, the shielding layer includes an upper decorative plate and a lower decorative plate, the upper decorative plate is located at the upper edge of the ventilation plate, and the lower decorative plate is located at the lower edge of the ventilation plate. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art.

[0017] Figure 1 This is a schematic diagram of the three-dimensional structure of the ventilated interlayer aluminum panel installation structure for atrium decoration proposed in this embodiment;

[0018] Figure 2 is a schematic diagram of the three-dimensional structure of the ventilation plate in this embodiment;

[0019] Figure 3 is a schematic diagram of the three-dimensional structure of the skylight in this embodiment;

[0020] Figure 4 Schematic diagram of the positional relationship between the atrium decoration ventilation sandwich aluminum plate installation structure and the skylight in this embodiment;

[0021] Figure 5 yes Figure 4 Schematic diagram of the structure from the top view.

[0022] The reference numerals in the accompanying drawings are as follows:

[0023] 11-ventilation panel; 12-skeleton assembly; 13-wall; 14-ventilation cavity; 15-air inlet; 16-first side panel; 17-partition; 18-second side panel; 19-bottom plate; 20-skylight; 21-water retaining plate; 22-frame; 23-shielding layer; 24-rainproof plate; 25-upper decorative panel; 26-lower decorative panel; 27-fixing frame; 28-aluminum square tube. DETAILED DESCRIPTION

[0024] The technical solution of the present application is further described below in conjunction with specific embodiments, but the present application is not limited to these embodiments.

[0025] like Figures 1 to 5 As shown, this embodiment proposes a ventilation sandwich aluminum plate installation structure for atrium decoration, including a ventilation plate 11 and a skeleton assembly 12. The ventilation plate 11 is installed on the wall 13 through the skeleton assembly 12. The top surface of the ventilation plate 11 is provided with a ventilation cavity 14, and the side of the ventilation plate 11 facing away from the wall 13 is provided with an air inlet 15 that passes through the ventilation cavity 14.

[0026] The technical effect of this solution is that when heat gathers at the top of the atrium, the hot air will flow into the ventilation cavity 14 through the air inlet 15, and further flow into the external environment from the top outlet of the ventilation cavity 14, which can effectively avoid the occurrence of top heat accumulation caused by the greenhouse effect and the smoke window effect, thereby improving the physical comfort of people in the top area.

[0027] As an implementation of this embodiment, the air inlet 15 is a strip-shaped opening, and the air inlet 15 is arranged in a vertical direction. There are multiple strip-shaped openings, and the multiple strip-shaped openings are evenly arranged on the ventilation plate 11.

[0028] This solution can improve the heat dissipation efficiency of the atrium top.

[0029] As an implementation mode of this embodiment, the ventilation plate 11 includes a first side panel 16, a partition panel 17, a second side panel 18 and a bottom panel 19. The first side panel 16 and the second side panel 18 are fixed by the partition panel 17, and the lower ends of the first side panel 16 and the second side panel 18 are fixed on the bottom panel 19. The first side panel 16 is used to connect the skeleton assembly 12, and the second side panel 18 is provided with an air inlet 15.

[0030] Furthermore, the surface of the ventilation plate 11 is coated with paint to make the surface gloss of the ventilation plate 11 consistent and to cover the gaps.

[0031] Furthermore, the ventilation plate 11 is made of aluminum, which has the advantage of being less prone to rust.

[0032] This solution proposes a specific structure of a ventilation plate 11, wherein the first side plate 16, the partition plate 17, the second side plate 18 and the bottom plate 19 are respectively made of aluminum or stainless steel, and the first side plate 16, the partition plate 17, the second side plate 18 and the bottom plate 19 are fixed by welding.

[0033] As an implementation of this embodiment, a skylight 20 is fixed to a side of the ventilation plate 11 away from the wall 13 .

[0034] The skylight 20 has a frame 22 and a glass layer, with the frame 22 fixed around the glass layer. An aluminum square tube 28 is welded between the frame 22 and the second side panel 18. One of the two adjacent surfaces of the aluminum square tube 28 is welded to the frame 22 of the skylight 20, and the other of the two adjacent surfaces is welded to the second side panel 18.

[0035] As an implementation of this embodiment, there are two ventilation panels 11, which are respectively located at both ends of the skylight 20. Each ventilation panel 11 is mounted on the wall 13 via a frame assembly 12.

[0036] The skeleton assembly 12 includes a plurality of connecting parts, adjacent connecting parts are fixed by welding, and one end of the skeleton assembly 12 is installed on the wall 13 by an expansion bolt, and the other end of the skeleton assembly 12 is installed on the first side plate 16 by bolts or welding.

[0037] Among them, such as Figure 4 As shown, the hot air accumulated below the skylight 20 is discharged through the ventilation plate 11 .

[0038] As an implementation of this embodiment, a shielding layer 23 is installed between the skylight 20 and the wall 13 .

[0039] Furthermore, the shielding layer 23 includes an upper decorative panel 25 and a lower decorative panel 26 . The upper decorative panel 25 is located at the upper edge of the ventilation panel 11 , and the lower decorative panel 26 is located at the lower edge of the ventilation panel 11 .

[0040] As an implementation method of this embodiment, a water retaining plate 21 is provided above the ventilation plate 11. The water retaining plates 21 are located on both sides of the ventilation plate 11. One water retaining plate 21 is fixed to the shielding layer 23, specifically, the surface of the upper decorative plate 25. The other water retaining plate 21 is fixed to the frame 22 of the skylight 20.

[0041] The water retaining plate 21 is a vertical plate extending in the vertical direction, which facilitates the discharge of hot air in the ventilation cavity 14 and prevents rain from flowing horizontally into the ventilation cavity 14 on rainy days.

[0042] As an implementation of this embodiment, a rainproof plate 24 is provided above the water retaining plate 21, and the rainproof plate 24 is used to prevent rainwater from falling into the ventilation cavity 14;

[0043] One end of the flashing plate 24 is mounted on the frame 22 of the skylight 20 via a fixing bracket 27. The fixing bracket 27 and the frame 22 are welded together. The other end of the flashing plate 24 is mounted on the shielding layer 23 via a fixing bracket 27. The bottom of the fixing bracket 27 can be inserted into a blind hole in the upper decorative panel 25 and secured with construction adhesive. Furthermore, the fixing bracket 27 can be a plate-shaped member or a rod-shaped member.

[0044] The flashing plate 24 is an inverted V-shaped structure, and the flashing plate 24 can be made of an aluminum plate or an organic glass plate.

[0045] The skylight 20 has ventilation panels 11 on both sides of the length direction. The skylight 20 can be directly mounted on the wall 13 on both sides of the width direction, or mounted on the wall 13 on both sides of the width direction through closing panels.

[0046] For those skilled in the art, several modifications and improvements can be made without departing from the inventive concept of the present invention, and these modifications and improvements all fall within the scope of protection of the present invention.

Claims

1. A ventilation sandwich aluminum plate installation structure for atrium decoration, characterized in that: The invention comprises a ventilation plate (11) and a frame assembly (12), wherein the ventilation plate (11) is mounted on a wall (13) via the frame assembly (12), a ventilation cavity (14) is provided on the top surface of the ventilation plate (11), and an air inlet (15) communicating with the ventilation cavity (14) is provided on a side of the ventilation plate (11) facing away from the wall (13).

2. The ventilated interlayer aluminum plate installation structure for atrium decoration according to claim 1 is characterized in that: The air inlet (15) is a strip-shaped opening, and the air inlet (15) is arranged in a vertical direction.

3. The ventilated interlayer aluminum plate installation structure for atrium decoration according to claim 2 is characterized in that: There are multiple strip-shaped openings, and the multiple strip-shaped openings are evenly arranged on the ventilation plate (11).

4. The ventilated interlayer aluminum plate installation structure for atrium decoration according to claim 3 is characterized in that: The ventilation plate (11) includes a first side plate (16), a partition plate (17), a second side plate (18) and a bottom plate (19); the first side plate (16) and the second side plate (18) are fixed via the partition plate (17); the lower ends of the first side plate (16) and the second side plate (18) are fixed on the bottom plate (19); the first side plate (16) is used to connect the skeleton assembly (12); and the second side plate (18) is provided with the air inlet (15).

5. The ventilated interlayer aluminum plate installation structure for atrium decoration according to claim 1 is characterized in that: A skylight (20) is fixed on the side of the ventilation plate (11) away from the wall (13).

6. The ventilated interlayer aluminum plate installation structure for atrium decoration according to claim 5, characterized in that: There are two ventilation plates (11), and the two ventilation plates (11) are respectively located at two ends of the skylight (20).

7. The ventilated sandwich aluminum plate installation structure for atrium decoration according to claim 6, characterized in that: A shielding layer (23) is installed between the skylight (20) and the wall (13).

8. The ventilated interlayer aluminum plate installation structure for atrium decoration according to claim 7, characterized in that: A water baffle (21) is provided above the ventilation plate (11), and the water baffle (21) is located on both sides of the ventilation plate (11). One of the water baffles (21) is fixed on the shielding layer (23), and the other water baffle (21) is fixed on the frame (22) of the skylight (20).

9. The ventilated sandwich aluminum plate installation structure for atrium decoration according to claim 8, characterized in that: A rainproof plate (24) is provided above the water retaining plate (21), and the rainproof plate (24) is used to prevent rainwater from falling into the ventilation cavity (14); One end of the rainproof plate (24) is mounted on the frame (22) of the skylight (20) via a fixing frame, and the other end of the rainproof plate (24) is mounted on the shielding layer (23) via a fixing frame.

10. The ventilated sandwich aluminum plate installation structure for atrium decoration according to claim 7, characterized in that: The shielding layer (23) comprises an upper decorative plate (25) and a lower decorative plate (26), wherein the upper decorative plate (25) is located at the upper edge of the ventilation plate (11), and the lower decorative plate (26) is located at the lower edge of the ventilation plate (11).