Zero-carbon building sound insulation fireproof wall body

By installing sprinkler pipes between photovoltaic glass panels and connecting them to a water source, water can be sprayed for cooling and fire suppression, solving the problem of easily damaged photovoltaic glass exterior walls and improving the fire resistance and service life of zero-carbon buildings.

CN223593659UActive Publication Date: 2025-11-25XINJIANG HUACHEN LVJIAN ASSEMBLY ENG CO LTD
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Patent Information

Application Number
CN202422976840.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-03
Publication Date
2025-11-25
Estimated Expiration
2034-12-03

AI Technical Summary

Technical Problem

Photovoltaic glass exterior walls are prone to deformation or cracking at high temperatures and have poor fire resistance, affecting the safety and lifespan of zero-carbon buildings.

Method used

Sprinkler pipes are installed between photovoltaic glass panels and connected to a water source. Water is sprayed to cool and extinguish fires, thus protecting the photovoltaic glass panels and extending their service life.

Benefits of technology

It effectively protects photovoltaic glass panels from flame damage, extends their service life, improves fire resistance, and enhances building safety.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223593659U_ABST
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Abstract

The utility model relates to the technical field of buildings, in particular to a zero-carbon building sound insulation firewall body which comprises a plurality of cross beams and a plurality of photovoltaic glass plates, the cross beams are transversely fixed to the outer wall face of a building, the cross beams are arranged at intervals in the longitudinal direction, a row of photovoltaic glass plates are transversely installed between every two adjacent cross beams, and the photovoltaic glass plates are fixed to the outer wall face of the building. The photovoltaic glass plates are obliquely arranged inwards along the bottom edges of the photovoltaic glass plates, a spraying pipe is connected to the position, between the upper row of photovoltaic glass plates and the lower row of photovoltaic glass plates, of the surface of the cross beam, the spraying pipe is parallel to the cross beam, one axial end of the spraying pipe is closed, and the other axial end of the spraying pipe is connected with a water pipe connector. The water pipe connector is connected with a water supply source through a water pipe, a plurality of water outlets are formed in the bottom of the spraying pipe at intervals in the length direction of the spraying pipe, and the wall conforms to the concept of zero-carbon buildings and has good fireproof performance.
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Description

TECHNICAL FIELD

[0001] The utility model relates to building technology field especially relates to a zero carbon building sound insulation fireproof wall body. BACKGROUND

[0002] Zero carbon building can generate electricity by solar energy, realize self-sufficiency, thereby reducing carbon emissions. The outer wall of the building generally directly uses photovoltaic glass, or covers photovoltaic glass on the outer wall of the traditional cement building. Photovoltaic glass has the advantages of sound insulation, weather resistance, high strength, but the fireproof performance is poor, and deformation or rupture easily occurs under high temperature, it is necessary to solve the problem of fire resistance of photovoltaic glass outer wall. SUMMARY

[0003] In order to solve the problems mentioned in the background art, the purpose of the utility model is to provide a zero carbon building sound insulation fireproof wall body.

[0004] In order to achieve the above object, the technical scheme of the utility model is as follows:

[0005] A zero carbon building sound insulation fireproof wall body, comprising a plurality of beams and a plurality of photovoltaic glass plates, the beams are fixed horizontally on the outer wall of the building, a plurality of the beams are arranged along the longitudinal direction, a row of photovoltaic glass plates is installed along the horizontal direction between two adjacent beams, the photovoltaic glass plates are arranged inwardly inclined along the bottom edge of the photovoltaic glass plates, the surface of the beam is connected with a spray pipe at the position between the upper and lower rows of photovoltaic glass plates, the spray pipe is parallel to the beam, one end of the spray pipe is closed, the other end of the spray pipe is connected with a water pipe joint, the water pipe joint is connected with a water supply through a water pipe, and a plurality of water outlets are arranged at the bottom of the spray pipe along the length direction of the spray pipe.

[0006] Further, the upper and lower sides of the surface of the beam away from the wall of the building are respectively provided with a first mounting surface and a second mounting surface, the first mounting surface and the second mounting surface are both inclined, the distance between the first mounting surface and the wall of the building is greater than that between the second mounting surface and the wall of the building, the second mounting surface and the first mounting surface arranged oppositely are located in the same plane, and the photovoltaic glass plates are attached to the second mounting surface and the first mounting surface arranged oppositely.

[0007] The utility model has the advantages that when open fire may damage the photovoltaic glass plates, water can be sprayed to the surface of the photovoltaic glass plates through the spray pipe to slow down the damage of the flame to the photovoltaic glass plates, and water can also be sprayed to the photovoltaic glass plates to cool down under high temperature, thereby prolonging the service life of the wall. BRIEF DESCRIPTION OF DRAWINGS

[0008] Fig. 1 It is a perspective view of the first orientation of the utility model embodiment;

[0009] Fig. 2 This is a perspective view of a second orientation of an embodiment of the present invention;

[0010] Fig. 3 This is a cross-sectional view of an embodiment of the present utility model.

[0011] Explanation of the attached drawing numbers: 1. Crossbeam, 11. First mounting surface, 12. Second mounting surface, 13. Spray pipe, 14. Water pipe connector, 15. Water outlet, 2. Photovoltaic glass panel. Detailed Implementation

[0012] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model are within the protection scope of the present utility model.

[0013] like Figs. 1-3 As shown, a zero-carbon building soundproof firewall includes several horizontal beams 1 and several photovoltaic glass panels 2. The horizontal beams 1 are horizontally fixed to the exterior wall of the building (not shown in the figure). The horizontal beams 1 are arranged longitudinally at intervals. A row of photovoltaic glass panels 2 is installed horizontally between two adjacent horizontal beams 1. The photovoltaic glass panels 2 are inclined inward at an angle of 3° along their bottom edge. Specifically, the upper and lower sides of the side of the horizontal beam 1 facing away from the building wall are respectively provided with a first mounting surface 11 and a second mounting surface 12. Both the first mounting surface 11 and the second mounting surface 12 are inclined at an angle of 3°. The distance between the first mounting surface 11 and the building wall is greater than that of the second mounting surface 12. The second mounting surface 12, which is arranged vertically opposite to the first mounting surface 11, is located in the same plane. The photovoltaic glass panel 2 is attached to the second mounting surface 12 and the first mounting surface 11, which are arranged vertically opposite to each other. A spray pipe 13 is connected to the surface of the crossbeam 1 at the position between the first mounting surface 11 and the second mounting surface 12. The spray pipe 13 is parallel to the crossbeam 1. One end of the spray pipe 13 is closed in the axial direction. The other end of the spray pipe 13 is connected to a water pipe connector 14. The water pipe connector 14 is connected to a water supply source (not shown in the figure) through a water pipe. Several water outlets 15 are arranged at intervals along the length of the spray pipe 13.

[0014] When an open flame may damage the photovoltaic glass panel 2, water can be sprayed onto the surface of the photovoltaic glass panel 2 through the spray pipe 13 to slow down the damage to the photovoltaic glass panel 2 caused by the flame. Water can also be sprayed onto the photovoltaic glass panel 2 at high temperatures to cool it down and extend the life of the wall.

[0015] The above merely describes preferred embodiments of the present application and is not intended to limit the present application, and any modification, equivalent replacement, improvement, etc. within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A zero-carbon building soundproof fire wall body, characterized by, The application relates to a photovoltaic glass panel structure, which comprises a plurality of beams (1) and a plurality of photovoltaic glass panels (2), the beams (1) are fixed on the outer wall of a building in a transverse direction, a plurality of the beams (1) are arranged in a longitudinal direction, a row of photovoltaic glass panels (2) is arranged between two adjacent beams (1) in a transverse direction, the photovoltaic glass panels (2) are arranged in a slope manner along the bottom edges of the photovoltaic glass panels (2), the surface of the beam (1) is connected with a spray pipe (13) at the position between the upper and lower rows of photovoltaic glass panels (2), the spray pipe (13) is parallel to the beam (1), one end of the spray pipe (13) is closed, the other end of the spray pipe (13) is connected with a water pipe joint (14), the water pipe joint (14) is connected with a water supply source through a water pipe, and a plurality of water outlets (15) are arranged on the bottom of the spray pipe (13) in a length direction of the spray pipe (13).

2. A zero-carbon building soundproof fireproof wall body according to claim 1, characterized in that, The upper and lower sides of the surface of the beam (1) away from the wall of the building are respectively provided with a first mounting surface (11) and a second mounting surface (12), the first mounting surface (11) and the second mounting surface (12) are arranged in a slope manner, the distance between the first mounting surface (11) and the wall of the building is greater than that between the second mounting surface (12) and the wall of the building, the second mounting surface (12) and the first mounting surface (11) arranged in a vertical manner are located in the same plane, and the photovoltaic glass panels (2) are attached to the second mounting surface (12) and the first mounting surface (11).