Double-layer glass fireproof partition device

By introducing positioning and protection components into the double-glazed fireproof partition device, combined with installation and fixing components, the problem of inconvenient installation of existing devices is solved, enabling rapid installation and stable use, and extending the device's lifespan.

CN224148945UActive Publication Date: 2026-04-21CHANGZHOU XUZHI ENERGY SAVING TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHANGZHOU XUZHI ENERGY SAVING TECH CO LTD
Filing Date
2025-05-22
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing double-glazed fireproof partitions are difficult to position quickly during installation, are time-consuming and labor-intensive, and are prone to leaving gaps, increasing the risk of failure.

Method used

The design incorporates positioning and protection components, and through the cooperation of installation components, limiting components, connecting components, and fixing components, it enables the rapid installation and stable fixation of fireproof glass, preventing the formation of gaps.

Benefits of technology

It enables rapid and convenient installation of fireproof glass, ensuring the stability and service life of the device, avoiding installation gaps and damage to parts, and extending the service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a double-layer glass fireproof partition device, and relates to the technical field of partition devices. The protective wall comprises a wall body and further comprises a supporting part which is installed on the wall body and used for connecting a positioning part and a protective part. The number of the positioning parts is multiple, and the multiple positioning parts are all installed on the supporting part; the supporting part is arranged on the base, the protective parts are arranged on the supporting part, and the protective parts are arranged on the supporting part. Wherein the plurality of positioning parts are circumferentially arranged, the number of the front sides is the same as that of the rear sides, and the plurality of protection parts are also circumferentially arranged, and the number of the front sides is the same as that of the rear sides. According to the double-layer glass fireproof partition device, the positioning part is arranged, so that the problems that in the using process of an existing double-layer glass fireproof partition device, fireproof glass cannot be conveniently and rapidly positioned and installed, workers need to spend a large amount of time to position and install the fireproof glass, time and labor are wasted, gaps are easily reserved, and risks are added to follow-up use are solved.
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Description

Technical Field

[0001] This utility model belongs to the technical field of partition devices, and in particular relates to a double-glazed fireproof partition device. Background Technology

[0002] With the improvement of building safety standards, fire-resistant partitions are becoming increasingly important. Traditional fire-resistant partitions are mostly single-layer structures with limited fire resistance and heat insulation effects. Double-glazed fire-resistant partitions have emerged to address this need. They combine the transparency and fire resistance of glass, effectively preventing the spread of fire and reducing heat transfer in the face of frequent fires, thus buying precious time for evacuation and fire rescue. They also have good sound insulation properties, and their demand is growing in commercial, public and residential buildings.

[0003] However, existing double-glazed fireproof partition devices are not convenient for quick positioning and installation of fireproof glass during use. It requires workers to spend a lot of time on positioning and installation, which is time-consuming and laborious, and is also prone to leaving gaps, adding risks to subsequent use. Utility Model Content

[0004] The purpose of this utility model is to provide a double-glazed fireproof partition device. By setting a positioning part, it solves the problem that existing double-glazed fireproof partition devices are not convenient for quick positioning and installation of fireproof glass during use. They require workers to spend a lot of time on positioning and installation, which is time-consuming and laborious, and is also prone to leaving gaps, adding risks to subsequent use.

[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:

[0006] This utility model is a double-glazed fireproof partition device, including a wall and also including:

[0007] A support portion, which is mounted on the wall, is used to connect the positioning portion and the protective portion;

[0008] Positioning parts, wherein a plurality of positioning parts are provided, and all of the plurality of positioning parts are mounted on the support part; and

[0009] A protective part, wherein a plurality of protective parts are provided, and all of the plurality of protective parts are provided on the support part;

[0010] Among them, several positioning parts are arranged in a circle with the same number on the front and rear sides, and several protective parts are also arranged in a circle with the same number on the front and rear sides. At the same time, several positioning parts correspond to several protective parts respectively.

[0011] Furthermore, the support includes a heat insulation layer fixedly connected to the inner wall of the wall, and two connecting blocks are provided inside the heat insulation layer. Fireproof glass is fixedly connected to the inner walls of the two connecting blocks.

[0012] The heat insulation layer is used to connect several positioning parts and several protective parts. Its shape is a square ring with several grooves. The connecting block is made of fire-resistant rubber, and the fireproof glass is made of high-temperature resistant glass.

[0013] Furthermore, the positioning part includes a mounting assembly mounted on the heat insulation layer; and

[0014] A limiting component, wherein two limiting components are provided, and both limiting components are mounted on the mounting component;

[0015] The installation component allows for the rapid installation of fire-resistant glass and connecting blocks, while the limiting component assists in the installation of connecting blocks and fire-resistant glass.

[0016] Furthermore, the protective portion includes a connecting assembly mounted on the heat insulation layer; and

[0017] The fixing components are provided in two forms, both of which are disposed between the heat insulation layer and the connecting component;

[0018] The connecting component can be used to protect the positioning part, while the fixing component can fix the protective part to the heat insulation layer.

[0019] Furthermore, the installation assembly includes a groove 1 formed in the heat insulation layer, a slider 1 slidably connected to the inner wall of the groove 1, a plurality of spring telescopic rods 1 fixedly connected to the slider 1, the side of the plurality of spring telescopic rods 1 away from the slider 1 being fixedly connected to the groove 1, and a plurality of positioning elements provided on the slider 1.

[0020] Among them, slider one is a slider with a handle that protrudes, and spring telescopic rod one will retract as slider one slides.

[0021] Furthermore, the limiting component includes a groove three formed on the heat insulation layer, and a slider two is slidably connected to the slider one, the slider two being adapted to the groove three;

[0022] Slider 2 is located on the handle of slider 1, and slider 2 is a block whose shape matches that of slot 3.

[0023] Furthermore, the connecting component includes a groove four formed on the heat insulation layer, a protective block one is provided outside the heat insulation layer, a protective block two is hinged on the protective block one, and two elastic elements one are provided on the protective block one;

[0024] Among them, protective block one and protective block two can be folded. During installation, they can be folded to expose the internal structure, and after installation, they can be straightened for protection.

[0025] Furthermore, the fixing component includes a groove five formed on the heat insulation layer, a groove six formed on the inner wall of the groove five, an elastic element two provided on the inner wall of the groove six, and a locking block fixedly connected to the side of the protective block one near the heat insulation layer, the locking block being adapted to the groove five;

[0026] The locking block can slide into slot five, while the elastic element two can restrain the locking block.

[0027] Furthermore, the positioning element includes a second groove formed on the connecting block, a positioning bolt is fixedly connected to the first slider, the positioning bolt extends to the connecting block, the outer wall of the positioning bolt is slidably connected to the heat insulation layer, and the positioning bolt is adapted to the second groove;

[0028] Among them, the positioning bolt is a bolt that is adapted to the shape of slot two.

[0029] Furthermore, the elastic element one includes two hinge blocks disposed on the groove four. The hinge block located outside the groove four is hinged to the protective block one, and the hinge block located inside the groove four is hinged to the groove four. A spring telescopic rod two is fixedly connected between the two hinge blocks.

[0030] The second elastic element includes a slider three that is slidably connected to the inner wall of the groove six. A spring is fixedly connected to the slider three, and the side of the spring away from the slider three is fixedly connected to the groove six.

[0031] During installation, pulling the first protective block will extend the second spring telescopic rod, and the third slider is a block that matches the shape of the locking block, which can lock the locking block in place.

[0032] This utility model has the following beneficial effects:

[0033] 1. By setting a positioning part, slider one can be pressed towards the side away from the connecting block, so that it applies pressure to spring telescopic rod one and generates elastic force. At this time, the side of the positioning bolt away from slider one will be flush with the inner wall of the heat insulation layer. At this time, slider two on slider one will move to the position flush with groove three. Then slider two can be slid into groove three, thereby completing the limitation of slider one. At this time, the fireproof glass can be placed on the inner wall of the heat insulation layer through the connecting block. Then slider two can be slid out of groove three, so that slider one loses its limitation. At this time, under the action of the elastic force of spring telescopic rod one, the positioning bolt will slide into the corresponding groove two, thereby limiting the connecting block. It can quickly position and install the fireproof glass onto the device. Its operation is simple and convenient, without the need for staff to spend a lot of time on its installation. At the same time, it can also avoid gaps between the installed fireproof glass and the main body of the device, thereby ensuring the stability of the device in subsequent use.

[0034] 2. By setting up a protective part, protective block one can be pulled, causing it to stretch and generate elastic force through the hinge block to extend the spring telescopic rod two. Then, protective block two can be bent so that it is perpendicular to protective block one. At this time, protective block two can be pressed against the heat insulation layer. Then, the fireproof glass can be installed through the positioning part. After installation, protective block two can be flattened, and then protective block one can be released and pressed to make it fit with the heat insulation layer. During this process, the locking block will slide into groove five, and slider three will slide into groove six. At this time, the spring will be under pressure and generate elastic force. When the locking block is completely slid into groove five, under the action of the spring elastic force, the locking block will be locked by slider three, which can protect the positioning part and prevent the fireproof glass from loosening and falling off during subsequent use, thereby extending the service life of the device.

[0035] Of course, any product implementing this utility model does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description

[0036] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0037] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0038] Figure 2 This is a schematic diagram of the overall structure of the heat insulation layer of this utility model;

[0039] Figure 3 This utility model Figure 2 A magnified structural diagram of A in the middle;

[0040] Figure 4 This is a partial cross-sectional view of the mounting assembly of this utility model;

[0041] Figure 5 This is a partial cross-sectional view of the connecting component of this utility model;

[0042] Figure 6 This is a partial cross-sectional view of the fixing component of this utility model.

[0043] The attached diagram lists the components represented by each number as follows:

[0044] 1. Support unit; 101. Wall; 102. Insulation layer; 103. Connecting block; 104. Fireproof glass; 2. Positioning unit; 21. Mounting assembly; 211. Groove 1; 212. Slider 1; 213. Spring telescopic rod 1; 214. Groove 2; 215. Positioning bolt; 22. Limiting assembly; 221. Groove 3; 222. Slider 2; 3. Protection unit; 31. Connecting assembly; 311. Groove 4; 312. Protective block 1; 313. Protective block 2; 314. Hinge block; 315. Spring telescopic rod 2; 32. Fixing assembly; 321. Groove 5; 322. Groove 6; 323. Slider 3; 324. Spring; 325. Locking block. Detailed Implementation

[0045] 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. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0046] Please see Figure 1-6As shown, this utility model is a double-glazed fireproof partition device, including a wall 101, and further including: a support part 1, which is installed on the wall 101 and is used to connect positioning parts 2 and protective parts 3; positioning parts 2, of which a plurality of positioning parts 2 are provided, and all of the plurality of positioning parts 2 are installed on the support part 1; and protective parts 3, of which a plurality of protective parts 3 are provided, and all of the plurality of protective parts 3 are provided on the support part 1; wherein, the plurality of positioning parts 2 are arranged in a circle with the same number on the front and rear sides, and the plurality of protective parts 3 are also arranged in a circle with the same number on the front and rear sides, and the plurality of positioning parts 2 are respectively connected to a plurality of protective parts 3. Corresponding to each protective part 3, the support part 1 includes a heat insulation layer 102 fixedly connected to the inner wall of the wall 101. Two connecting blocks 103 are provided in the heat insulation layer 102, and fireproof glass 104 is fixedly connected to the inner wall of each of the two connecting blocks 103. The heat insulation layer 102 is used to connect several positioning parts 2 and several protective parts 3. Its shape is a square ring with several grooves. The connecting blocks 103 are made of fire-resistant rubber, and the fireproof glass 104 is made of high-temperature resistant glass. By setting the support part 1, the entire device can be supported and the positioning parts 2 and protective parts 3 can be connected, so that the device can operate stably.

[0047] The positioning part 2 includes an installation assembly 21, which is installed on the heat insulation layer 102; and a limiting assembly 22, of which two limiting assemblies 22 are provided, both of which are installed on the installation assembly 21. The installation assembly 21 allows for quick installation of the fireproof glass 104 and the connecting block 103, while the limiting assembly 22 assists in the installation of the connecting block 103 and the fireproof glass 104. The installation assembly 21 includes a groove 211 formed in the heat insulation layer 102, with a slider 212 slidably connected to the inner wall of the groove 211. Several spring telescopic rods 213 are fixedly connected to the slider 212, with the side of each spring telescopic rod 213 away from the slider 212 fixedly connected to the groove 211. Several positioning elements are provided on the slider 212. The slider 212 is a slider with a handle that protrudes, and the spring telescopic rods 213 retract as the slider 212 slides. The limiting assembly 22 includes... On the insulation layer 102, a third groove 221 is provided, and a second slider 222 is slidably connected to a first slider 212. The second slider 222 is adapted to the third groove 221. The second slider 222 is located on the handle of the first slider 212 and is a block that matches the shape of the third groove 221. The positioning component includes a second groove 214 opened on the connecting block 103. A positioning bolt 215 is fixedly connected to the first slider 212 and extends to the connecting block 103. The outer wall of the positioning bolt 215 is slidably connected to the insulation layer 102 and is adapted to the second groove 214. The positioning bolt 215 is a bolt that matches the shape of the second groove 214. By setting the positioning part 2, the fireproof glass 104 can be quickly positioned and installed on the device. The operation is simple and convenient, and it does not require the staff to spend a lot of time on its installation. At the same time, it can also avoid gaps between the installed fireproof glass 104 and the main body of the device, thereby ensuring the stability of the device in subsequent use.

[0048] The protective part 3 includes a connecting component 31, which is mounted on the heat insulation layer 102; and a fixing component 32, of which two fixing components 32 are provided, both of which are disposed between the heat insulation layer 102 and the connecting component 31. The connecting component 31 can be used to protect the positioning part 2, while the fixing component 32 can fix the protective part 3 to the heat insulation layer 102. The connecting component 31 includes a groove 311 formed in the heat insulation layer 102, and a protective block 312 is provided outside the heat insulation layer 102. The hinged structure includes a second protective block 313, and the first protective block 312 has two elastic elements. Both the first and second protective blocks 312 are foldable; during installation, they can be folded to expose the internal structure, and after installation, they can be straightened for protection. The fixing assembly 32 includes a fifth groove 321 formed in the insulation layer 102, and a sixth groove 322 formed on the inner wall of the fifth groove 321. The inner wall of the sixth groove 322 is provided with elastic elements. A locking block 325 is fixedly connected to the side of the first protective block 312 closest to the insulation layer 102. 325 is adapted to slot 5 321; wherein, the locking block 325 can slide into slot 5 321, and the elastic element 2 can restrict the locking block 325. The elastic element 1 includes two hinge blocks 314 disposed on slot 4 311. The hinge block 314 located outside slot 4 311 is hinged to the protective block 1 312, and the hinge block 314 located inside slot 4 311 is hinged to slot 4 311. A spring telescopic rod 2 315 is fixedly connected between the two hinge blocks 314. The elastic element 2 includes a slider 323 slidably connected to the inner wall of slot 6 322. A spring 324 is fixedly connected to block 323. The side of spring 324 away from slider 323 is fixedly connected to slot 6 322. During installation, pulling protective block 1 312 can extend spring telescopic rod 2 315. Slider 323 is a block that matches the shape of locking block 325 and can lock the locking block 325. By setting the protective part 3, the positioning part 2 can be protected to prevent damage to its parts during subsequent use, which could cause the fireproof glass 104 to loosen and fall off, thereby extending the service life of the device.

[0049] A specific application of this embodiment is as follows: During use, the protective block 312 can be pulled, causing the spring telescopic rod 315 to stretch and generate elastic force through the hinge block 314. Then, the protective block 313 can be bent so that it is perpendicular to the protective block 312. At this time, the protective block 313 can be pressed against the heat insulation layer 102. Then, the slider 212 can be pressed towards the side away from the connecting block 103, applying pressure to the spring telescopic rod 213 and generating elastic force. At this time, the side of the positioning bolt 215 away from the slider 212 will be flush with the inner wall of the heat insulation layer 102. At this time, the slider 222 on the slider 212 moves to a position flush with the groove 221. Then, the slider 222 can be slid into the groove 221, thereby completing the limiting of the slider 212. At this point, it is possible to... Fireproof glass 104 is placed on the inner wall of heat insulation layer 102 via connecting block 103. Then, slider 222 can be slid out of groove 321, thereby removing slider 1212 from its limit. At this time, under the action of spring telescopic rod 1213, positioning bolt 215 will slide into the corresponding groove 214, thereby restricting connecting block 103. After installation, protective block 2313 can be flattened, and then protective block 1312 can be loosened and pressed to fit against heat insulation layer 102. During this process, locking block 325 will slide into groove 5321, and slider 323 will slide into groove 6322. At this time, spring 324 will be under pressure and generate elastic force. When locking block 325 is completely slid into groove 5321, under the action of spring 324, locking block 325 will be locked by slider 323.

[0050] In the description of this specification, references to terms such as "an embodiment," "example," "specific example," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0051] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.

Claims

1. A double glazing fire rated partition comprising a wall (101), characterised in that, Also includes: Support (1), which is mounted on the wall (101) and is used to connect the positioning part (2) and the protective part (3); Positioning part (2), wherein a plurality of positioning parts (2) are provided, and all of the plurality of positioning parts (2) are mounted on the support part (1); and A protective part (3) is provided in a plurality of such protective parts (3), and all such protective parts (3) are provided on the support part (1); Among them, several positioning parts (2) are arranged in a circle and the number on the front and rear sides is the same, and several protective parts (3) are also arranged in a circle and the number on the front and rear sides is the same. At the same time, several positioning parts (2) correspond to several protective parts (3).

2. A double glazing fire rated partition device according to claim 1, wherein, The support (1) includes a heat insulation layer (102) fixedly connected to the inner wall of the wall (101), and two connecting blocks (103) are provided in the heat insulation layer (102), and fireproof glass (104) is fixedly connected to the inner wall of the two connecting blocks (103). The heat insulation layer (102) is used to connect several positioning parts (2) and several protective parts (3). Its shape is a square ring with several grooves. The connecting block (103) is fire-resistant rubber and the fireproof glass (104) is high-temperature resistant glass.

3. A double glazing fire rated partition device according to claim 2, wherein, The positioning part (2) includes a mounting assembly (21) which is mounted on the heat insulation layer (102); and Limiting components (22), two of which are provided, and both limiting components (22) are mounted on the mounting component (21); The installation component (21) can quickly install the fireproof glass (104) and the connecting block (103), while the limiting component (22) can assist in the installation of the connecting block (103) and the fireproof glass (104).

4. A double glazing fire separation device according to claim 3, wherein, The protective part (3) includes a connecting assembly (31) mounted on the heat insulation layer (102); and Two fixing components (32) are provided, and both fixing components (32) are disposed between the heat insulation layer (102) and the connecting component (31); The connecting component (31) can be used to protect the positioning part (2), while the fixing component (32) can fix the protective part (3) to the heat insulation layer (102).

5. A double glazing fire rated partition device according to claim 4, wherein, The mounting assembly (21) includes a groove (211) formed in the heat insulation layer (102), a slider (212) is slidably connected to the inner wall of the groove (211), a plurality of spring telescopic rods (213) are fixedly connected to the slider (212), and the side of the plurality of spring telescopic rods (213) away from the slider (212) is fixedly connected to the groove (211), and a plurality of positioning elements are provided on the slider (212); Among them, slider one (212) is a slider with a handle protruding, and spring telescopic rod one (213) will retract as slider one (212) slides.

6. A double glazing fire barrier device according to claim 5, wherein, The limiting component (22) includes a three-slot (221) formed on the heat insulation layer (102), and a two-slot (222) is slidably connected to the first slider (212), the second slider (222) being adapted to the three-slot (221); Among them, slider two (222) is located on the handle of slider one (212), and slider two (222) is a block that matches the shape of groove three (221).

7. A double glazing fire rated partition device according to claim 6, wherein, The connecting component (31) includes a slot four (311) formed on the heat insulation layer (102), a protective block one (312) is provided outside the heat insulation layer (102), a protective block two (313) is hinged on the protective block one (312), and two elastic elements one are provided on the protective block one (312). Among them, protective block one (312) and protective block two (313) can be folded. They can be folded to expose the internal structure during installation and straightened after installation for protection.

8. A double-glazed fireproof partition device according to claim 7, characterized in that, The fixing component (32) includes a five-slot (321) formed on the heat insulation layer (102), a six-slot (322) formed on the inner wall of the five-slot (321), an elastic element two provided on the inner wall of the six-slot (322), and a locking block (325) fixedly connected to the side of the protective block (312) near the heat insulation layer (102), the locking block (325) being adapted to the five-slot (321); Among them, the locking block (325) can slide into the slot five (321), while the elastic element two can restrict the locking block (325).

9. A double glazing fire barrier device according to claim 8, wherein, The positioning element includes a second groove (214) formed on the connecting block (103), a positioning bolt (215) is fixedly connected to the first slider (212), the positioning bolt (215) extends to the connecting block (103), the outer wall of the positioning bolt (215) is slidably connected to the heat insulation layer (102), and the positioning bolt (215) is adapted to the second groove (214); Among them, the positioning bolt (215) is a bolt that is adapted to the shape of the groove (214).

10. A double glazing fire barrier device according to claim 9, wherein, The elastic element includes two hinge blocks (314) disposed on the slot four (311). The hinge block (314) located outside the slot four (311) is hinged to the protective block one (312), and the hinge block (314) located inside the slot four (311) is hinged to the slot four (311). A spring telescopic rod two (315) is fixedly connected between the two hinge blocks (314). The second elastic element includes a third slider (323) that is slidably connected to the inner wall of the sixth groove (322). A spring (324) is fixedly connected to the third slider (323). The side of the spring (324) away from the third slider (323) is fixedly connected to the sixth groove (322). During installation, pulling the first protective block (312) can stretch the second spring telescopic rod (315), and the third slider (323) is a block that matches the shape of the locking block (325) and can lock the locking block (325).