A type of heat-insulating fireproof glass partition wall

By designing a rotatable spray pipe structure, the problem of fixed air outlet pipes in glass partitions limiting the effective area was solved, achieving a wider range of fireproof coverage.

CN122129100APending Publication Date: 2026-06-02NANTONG & HIGH OPTICAL TECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
NANTONG & HIGH OPTICAL TECHNOLOGY CO LTD
Filing Date
2026-03-18
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

The existing glass partition's vent pipes are fixed in the wall frame, which limits their effective area and affects fire prevention efficiency.

Method used

A heat-insulating fireproof glass partition wall was designed, which adopts a rotatable second feed pipe and injection pipe structure, combined with a temperature control valve and a coil spring mechanism to realize the expansion of the injection pipe and efficient injection.

Benefits of technology

The rotatable spray pipe structure significantly increases the spray area, improves fire protection efficiency, and achieves a wider range of fire protection coverage.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a heat-insulating fireproof glass partition wall, comprising a base frame, a material storage assembly, a spraying assembly, and a driving assembly. The base frame includes a glass mounting groove and an equipment cavity. The material storage assembly is located at the bottom of the equipment cavity, the driving assembly is located in the middle of the equipment cavity, and the spraying assembly is located at the top of the equipment cavity. The spraying assembly includes a second feed pipe and a second spraying pipe. The second feed pipe is rotatably disposed within the equipment cavity, and a coil spring mechanism that cooperates with the second feed pipe is disposed within the equipment cavity. The second spraying pipe is fixedly disposed at the top of the second feed pipe. A slider that can slide left and right is disposed within the equipment cavity via a slide rail, and a driving plug that inserts into the end port of the second spraying pipe is disposed at the left end of the slider. This invention's heat-insulating fireproof glass partition wall has a simple structure, practical function, and ingenious design, effectively solving the problem that the vent pipe of existing glass partition walls is fixed to the wall frame, limiting its effective area.
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Description

Technical Field

[0001] This invention relates to the field of glass partitions, and more particularly to a heat-insulating and fire-resistant glass partition. Background Technology

[0002] A glass partition wall is a floor-to-ceiling partition that can completely divide a space. Professional high partition walls not only achieve the traditional function of space division, but also significantly outperform traditional partition walls in terms of lighting, sound insulation, fire resistance, environmental friendliness, ease of installation, excellent partitioning, reusability, and mass production. The main function of a glass partition wall is to use glass as a partition to divide space according to needs, making more rational use of space and meeting various residential and commercial decoration purposes. Glass partition walls are usually made of tempered glass, which has advantages such as wind pressure resistance, temperature resistance, and impact resistance, making it safer, stronger, and more durable. Furthermore, the injury from broken glass is much less than that from ordinary glass. There are three types of materials: single-layer, double-layer, and artistic glass. Of course, everything is done according to the customer's needs. A high-quality partition project should have good lighting, excellent sound insulation and fire resistance, be environmentally friendly, easy to install, and have reusable glass.

[0003] Patent application number 202410580579.7 discloses a heat-insulating fireproof glass partition wall, including a wall frame and vertical beams. Heat-insulating glass is fixedly installed on the wall frame and vertical beams. Side fixing components are hidden in the wall frame, and a central fixing component is installed on the vertical beams. The cavity of the wall frame and the side and central fixing components are covered by a cover plate. A liquid material box and a solid material box are installed in the cavity at the bottom of the wall frame. A through pipe that automatically opens when heated is installed between the liquid and solid material boxes. The solid material box is connected to a transfer pipe in the vertical beam. A top pipe is installed at the top of the wall frame and connected to the transfer pipe. A movable sleeve is fitted on the top pipe, and a side pipe is installed on the side wall of the movable sleeve. A powder box with an air inlet pipe is installed in the wall frame. A movable base plate is installed in the powder box to support the fire extinguishing powder, and a spring rod is movably installed on the powder box. The purpose is to improve the passive and active heat insulation and fireproofing capabilities of the partition wall.

[0004] During use, it was found that although the device achieved active fire protection, its exhaust pipe was fixed to the wall frame, limiting its effective area. Therefore, developing a new type of heat-insulating fireproof glass partition has become an urgent problem for those skilled in the art. Summary of the Invention

[0005] The purpose of this invention is to provide a heat-insulating fireproof glass partition wall, which solves the problem that the vent pipe of the existing glass partition wall is fixed in the wall frame, thus limiting its effective area.

[0006] To solve the above-mentioned technical problems, the present invention adopts the following technical solution: This invention discloses a heat-insulating fireproof glass partition wall, comprising a base frame, a material storage assembly, a spraying assembly, and a driving assembly. The base frame includes a glass mounting groove and an equipment cavity. The material storage assembly is located at the bottom of the equipment cavity, the driving assembly is located in the middle part of the equipment cavity, and the spraying assembly is located at the top of the equipment cavity. The spraying assembly includes a second feed pipe and a second spraying pipe. The second feed pipe is rotatably disposed within the equipment cavity. A coil spring mechanism cooperating with the second feed pipe is disposed within the equipment cavity, and the second spraying pipe is fixedly disposed at the top of the second feed pipe. A slider capable of sliding left and right is disposed within the equipment cavity via a slide rail, and a driving plug that engages with the end port of the second spraying pipe is disposed at the left end of the slider.

[0007] Furthermore, the storage assembly includes a solid material box, a first liquid material box, and a second liquid material box. The first liquid material box is connected to the left end of the solid material box via a first temperature control valve, and the second liquid material box is connected to the right end of the solid material box via a second temperature control valve.

[0008] Furthermore, a second discharge pipe is provided at the top of the solid material box, and the top of the second discharge pipe is rotatably connected to the bottom of the second feed pipe.

[0009] Furthermore, a bearing seat is installed inside the bottom frame by bolts, and the bearing seat is rotatably connected to the second feed pipe.

[0010] Furthermore, a first feed pipe is rotatably provided inside the equipment cavity, and a first spray pipe is provided at the top end of the first feed pipe; the end of the first spray pipe is blocked by a second stop; the bottom end of the first feed pipe is rotatably connected to a first discharge pipe on the solid material box.

[0011] Furthermore, a first turntable is provided at the top end of the first feed pipe, and gear teeth are provided on the circumference of the first turntable; a second turntable is provided at the top end of the second feed pipe, and gear teeth are provided on the circumference of the second turntable; the gear teeth on the first turntable and the gear teeth on the second turntable mesh with each other.

[0012] Furthermore, a spring that engages with the bottom frame is provided at the right end of the slider.

[0013] Furthermore, a glass body is provided inside the glass mounting groove, and a pressure frame that cooperates with the glass body is provided at the front end of the glass mounting groove.

[0014] Furthermore, the bottom ends of the first and second injection pipes are each provided with several bottom openings, and the equipment cavity of the bottom frame is provided with a first stop block that cooperates with the bottom openings.

[0015] Furthermore, the front end of the first injection pipe is provided with a first movable plate that cooperates with the bottom frame via a snap-fit ​​component, and the front end of the second injection pipe is provided with a second movable plate that cooperates with the bottom frame via a snap-fit ​​component; a first fixed plate, a second fixed plate, a third fixed plate, a fourth fixed plate, and a fifth fixed plate that cooperate with the equipment cavity are snap-fitted into the bottom frame.

[0016] Compared with the prior art, the beneficial technical effects of the present invention are as follows: The second spray pipe of this invention's fire-resistant insulated glass partition is rotatably mounted within the bottom frame via a second feed pipe. Because the second feed pipe engages with a coil spring mechanism on the bottom frame, it can rotate outwards when freed from the constraint of the drive plug, significantly increasing the effective area of ​​the bottom opening and improving the fire resistance efficiency of the equipment. The first turntable on the first feed pipe of this invention meshes with the turntable on the second feed pipe, so that when the second spray pipe rotates outwards under the drive of the coil spring, it also drives the first spray pipe to rotate outwards, further increasing the spray area. The drive plug of this invention's fire-resistant insulated glass partition is fixed to a slider. When the liquid and solid material boxes are connected, the high-pressure gas generated inside can push the drive plug out of the second spray pipe, thereby unlocking the second spray pipe. In summary, this invention's fire-resistant insulated glass partition has a simple structure, practical function, and ingenious design, effectively solving the problem that the vent pipe of existing glass partitions is fixed to the wall frame, limiting its effective area. Attached Figure Description

[0017] The present invention will be further described below with reference to the accompanying drawings: Figure 1 This is an axonometric view of the heat-insulating fireproof glass partition wall of the present invention; Figure 2 This is a front view of the heat-insulating fireproof glass partition wall of the present invention; Figure 3 This is a diagram of the internal structure of the heat-insulating fireproof glass partition wall of the present invention; Figure 4 for Figure 3 Enlarged view of the central coil spring; Figure 5 for Figure 3 Enlarged view of the drive piston; Figure 6 A schematic diagram of the material storage assembly, injection assembly, and drive assembly; Figure 7 This is a top view of the spray assembly; Figure 8 for Figure 7 Enlarged view of the first and second turntables.

[0018] Explanation of reference numerals in the attached drawings: 1. Base frame; 101. Glass mounting groove; 102. Equipment cavity; 103. Pressure frame; 104. First fixing plate; 105. Second fixing plate; 106. Third fixing plate; 107. Fourth fixing plate; 108. First movable plate; 109. Second movable plate; 110. Snap-fit ​​component; 111. Fifth fixing plate; 2. Glass body; 3. Material storage assembly; 301. Solid material box; 302. First liquid material box; 303. Second liquid material box; 304. First discharge pipe; 305. Second... 306. Discharge pipe; 307. First temperature control valve; 308. Second temperature control valve; 4. Spray assembly; 401. First feed pipe; 402. First spray pipe; 403. Bottom port; 404. End port; 405. First stop block; 406. Second stop block; 407. Second feed pipe; 408. Second spray pipe; 5. Drive assembly; 501. Bearing seat; 502. Spring coiling mechanism; 503. First turntable; 504. Second turntable; 505. Drive plug; 506. Slider; 507. Spring; 508. Slide rail. Detailed Implementation

[0019] like Figures 1 to 8 As shown, a heat-insulating fireproof glass partition wall includes a base frame 1, a material storage assembly 3, a spraying assembly 4, and a drive assembly 5.

[0020] The base frame 1 includes a glass mounting groove 101 and an equipment cavity 102. A glass body 2 is disposed within the glass mounting groove 101, and a pressure frame 103 that mates with the glass body 2 is disposed at the front end of the glass mounting groove 101. The pressure frame 103 and the glass mounting groove 101 are used to fix the glass body 2.

[0021] The bottom of the equipment cavity 102 is provided with the material storage component 3, the middle part of the equipment cavity 102 is provided with the drive component 5, and the top of the equipment cavity 102 is provided with the spray component 4.

[0022] Specifically, the storage assembly 3 includes a solid material box 301, a first liquid material box 302, and a second liquid material box 303. The first liquid material box 302 is connected to the left end of the solid material box 301 via a first temperature control valve 306, and the second liquid material box 303 is connected to the right end of the solid material box 301 via a second temperature control valve 307. The first liquid material box 302 and the second liquid material box 303 contain acetic acid, and the solid material box 301 contains sodium bicarbonate. The first temperature control valve 306 and the second temperature control valve 307 are shape memory alloy (SMA) temperature control valves, requiring no external power supply. They integrate sensing and actuation, have no additional sensors, and restore a preset shape at high temperatures to open the valve core; they reset and close at low temperatures, exhibiting a fast response speed.

[0023] The top of the solid material box 301 is provided with a second discharge pipe 305, and the top of the second discharge pipe 305 is rotatably connected to the bottom of the second feed pipe 407.

[0024] The spraying assembly 4 includes a second feed pipe 407 and a second spray pipe 408. The second feed pipe 407 is rotatably disposed within the equipment cavity 102. A bearing seat 501 is bolted into the bottom frame 1, and the bearing seat 501 is rotatably connected to the second feed pipe 407. A coiling spring mechanism 502, which cooperates with the second feed pipe 407, is disposed within the equipment cavity 102. The second spray pipe 408 is fixedly disposed at the top end of the second feed pipe 407. When the second spray pipe 408 is concealed within the bottom frame 1, the coiling spring mechanism 502 is in a compressed state, so that when the second spray pipe 408 is unlocked, the coiling spring mechanism 502 can push the second feed pipe 407 and the second spray pipe 408 to rotate outward.

[0025] A first feed pipe 401 is rotatably disposed inside the equipment cavity 102. A first spray pipe 402 is disposed at the top end of the first feed pipe 401. The end port 404 of the first spray pipe 402 is blocked by a second stop block 406. The bottom end of the first feed pipe 401 is rotatably connected to the first discharge pipe 304 on the solid material box 301.

[0026] The top end of the first feed pipe 401 is provided with a first turntable 503, and the circumferential surface of the first turntable 503 is provided with gear teeth. The top end of the second feed pipe 407 is provided with a second turntable 504, and the circumferential surface of the second turntable 504 is provided with gear teeth. The gear teeth on the first turntable 503 and the gear teeth on the second turntable 504 mesh with each other.

[0027] The device cavity 102 is equipped with a slider 506 that can slide left and right via a slide rail 508. The left end of the slider 506 has a drive plug 505 that engages with the end port 404 of the second injection pipe 408. The right end of the slider 506 has a spring 507 that engages with the base frame 1. The spring 507 is made of shape memory alloy. When the spring 507 is at room temperature, it can press against the slider 506 to prevent the second injection pipe 408 from accidentally unlocking. When the spring 507 is at a high temperature, it can pull the slider 506 to the right, assisting in unlocking the second injection pipe 408.

[0028] The bottom ends of the first injection pipe 402 and the second injection pipe 408 are each provided with several bottom openings 403. The equipment cavity 102 of the bottom frame 1 is provided with a first stop 405 that cooperates with the bottom openings 403. The first stop 405 and the second stop 406 can prevent the second injection pipe 408 from leaking high-pressure gas when it is not unlocked, thereby facilitating the ejection of the drive plug 505.

[0029] The front end of the first spray pipe 402 is provided with a first movable plate 108 that cooperates with the bottom frame 1 via a snap-fit ​​member 110, and the front end of the second spray pipe 408 is provided with a second movable plate 109 that cooperates with the bottom frame 1 via a snap-fit ​​member 110. When the first spray pipe 402 and the second spray pipe 408 are deployed, they can drive the first movable plate 108 and the second movable plate 109 to deploy together.

[0030] The bottom frame 1 is fitted with a first fixing plate 104, a second fixing plate 105, a third fixing plate 106, a fourth fixing plate 107 and a fifth fixing plate 111, which cooperate with the equipment cavity 102, for the equipment cavity 102 of the bottom frame 1.

[0031] The working process of this invention is as follows: First, under high-temperature conditions of a fire, the first temperature control valve 306 connects the first liquid container 302 and the solid container 301, and the second temperature control valve 307 connects the second liquid container 303 and the solid container 301. Second, a large amount of high-pressure gas is generated in the solid container 301. The gas reaches the second injection pipe 408 through the second discharge pipe 305 and the second inlet pipe 407, and pushes out the drive plug 505 in the end port 404 of the second injection pipe 408, thereby unlocking the second injection pipe 408. Third, under the action of the spring mechanism 502, the second inlet pipe 407 drives the second injection pipe 408 to rotate outward, and drives the first injection pipe 402 to rotate outward through the second turntable 504, the first turntable 503 and the first inlet pipe 401. Fourth, the first injection pipe 402 and the second injection pipe 408 swing repeatedly under the action of the spring mechanism 502 and inertia, and spray gas through the bottom port 403.

[0032] The embodiments described above are merely preferred embodiments of the present invention and are not intended to limit the scope of the present invention. Various modifications and improvements made by those skilled in the art to the technical solutions of the present invention without departing from the spirit of the present invention should fall within the protection scope defined by the claims of the present invention.

Claims

1. A heat-insulating fireproof glass partition wall, characterized in that: The device includes a base frame (1), a storage assembly (3), a spraying assembly (4), and a drive assembly (5). The base frame (1) includes a glass mounting groove (101) and a device cavity (102). The storage assembly (3) is located at the bottom of the device cavity (102), the drive assembly (5) is located in the middle part of the device cavity (102), and the spraying assembly (4) is located at the top of the device cavity (102). The spraying assembly (4) includes a second feed pipe (407) and a second spraying pipe (408). 07) Rotatably disposed in the device cavity (102), the device cavity (102) is provided with a coil spring mechanism (502) that cooperates with the second feed pipe (407), and the top end of the second feed pipe (407) is fixedly provided with the second spray pipe (408); the device cavity (102) is provided with a slider (506) that can slide left and right through the slide rail (508), and the left end of the slider (506) is provided with a drive plug (505) that is inserted and cooperates with the end port (404) of the second spray pipe (408).

2. The heat-insulating fireproof glass partition wall according to claim 1, characterized in that: The storage assembly (3) includes a solid material box (301), a first liquid material box (302), and a second liquid material box (303). The first liquid material box (302) is connected to the left end of the solid material box (301) through a first temperature control valve (306), and the second liquid material box (303) is connected to the right end of the solid material box (301) through a second temperature control valve (307).

3. The heat-insulating fireproof glass partition wall according to claim 2, characterized in that: The top of the solid material box (301) is provided with a second discharge pipe (305), and the top of the second discharge pipe (305) is rotatably connected to the bottom of the second feed pipe (407).

4. The heat-insulating fireproof glass partition wall according to claim 1, characterized in that: The bottom frame (1) is provided with a bearing seat (501) by bolts, and the bearing seat (501) is rotatably connected to the second feed pipe (407).

5. The heat-insulating fireproof glass partition wall according to claim 2, characterized in that: The equipment cavity (102) is rotatably provided with a first feed pipe (401), and a first spray pipe (402) is provided at the top end of the first feed pipe (401); the end port (404) of the first spray pipe (402) is blocked by a second stop (406); the bottom end of the first feed pipe (401) is rotatably connected to the first discharge pipe (304) on the solid material box (301).

6. The heat-insulating fireproof glass partition wall according to claim 5, characterized in that: The top end of the first feed pipe (401) is provided with a first turntable (503), and the circumferential surface of the first turntable (503) is provided with gear teeth. The top end of the second feed pipe (407) is provided with a second turntable (504), and the circumferential surface of the second turntable (504) is provided with gear teeth. The gear teeth on the first turntable (503) and the gear teeth on the second turntable (504) mesh with each other.

7. The heat-insulating fireproof glass partition wall according to claim 1, characterized in that: The right end of the slider (506) is provided with a spring (507) that cooperates with the bottom frame (1).

8. The heat-insulating fireproof glass partition wall according to claim 1, characterized in that: A glass body (2) is provided inside the glass mounting groove (101), and a pressure frame (103) that cooperates with the glass body (2) is provided at the front end of the glass mounting groove (101).

9. The heat-insulating fireproof glass partition wall according to claim 6, characterized in that: The bottom ends of the first injection pipe (402) and the second injection pipe (408) are provided with several bottom openings (403), and the equipment cavity (102) of the bottom frame (1) is provided with a first stop (405) that cooperates with the bottom openings (403).

10. The heat-insulating fireproof glass partition wall according to claim 6, characterized in that: The front end of the first injection pipe (402) is provided with a first movable plate (108) that cooperates with the bottom frame (1) via a snap-fit ​​(110), and the front end of the second injection pipe (408) is provided with a second movable plate (109) that cooperates with the bottom frame (1) via a snap-fit ​​(110); the bottom frame (1) is snap-fitted with a first fixed plate (104), a second fixed plate (105), a third fixed plate (106), a fourth fixed plate (107), and a fifth fixed plate (111) that cooperate with the equipment cavity (102).