Super high-rise curtain wall interlayer fireproof plugging system
By adopting a fireproof blocking system of ceramic fiberboard and galvanized steel plate, combined with monitoring and alarm devices, the problems of easy damage and complex construction of fireproof blocking materials between curtain wall layers of super high-rise buildings have been solved, stable fireproof insulation and real-time monitoring have been achieved, and fire safety has been improved.
Patent Information
- Application Number
- CN202511073145.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-01
- Publication Date
- 2025-10-10
AI Technical Summary
The materials used in the existing fire-proof sealing systems between curtain wall layers of super-high-rise buildings are prone to powdering, mildew, and collapse. The construction is complex and difficult to monitor in real time, resulting in poor fire prevention effects and fire safety hazards.
The fireproof sealing board is made of ceramic fiberboard as the base material, integrating galvanized steel plate and fireproof sealing strip, combined with monitoring and alarm devices to achieve real-time monitoring and alarm, factory processing and prefabricated construction.
It improves the stability and fireproof insulation performance of the fire blocking system, reduces the construction difficulty, realizes real-time monitoring and timely warning, and improves fire safety.
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Figure CN120759353A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of fire protection between layers of curtain walls of super high-rise buildings, and in particular relates to a fire protection and blocking system between layers of curtain walls of super high-rise buildings. Background Art
[0002] Fire protection technology between curtain wall floors in super-high-rise buildings refers to a series of fire prevention measures and technical means used in super-high-rise buildings to prevent fire from spreading between floors through the curtain wall system on the building's exterior. This technology is crucial for ensuring the safety of building occupants, limiting the spread of fire, and buying time for firefighters and rescuers. Although curtain wall interlayer fire blocking systems are widely used in buildings, they also have significant shortcomings.
[0003] Problems with existing technologies: 1. At present, in terms of materials for fireproof sealing systems, some commonly used materials, such as fireproof rock wool, are easily pulverized after being exposed to fire, thereby reducing the effectiveness and integrity of fireproof sealing. At the same time, in the complex environment of super-high-rise curtain walls, facing problems such as rainwater leakage, the fireproof sealing panels are prone to mold, collapse and deformation, and cannot maintain long-term and stable fireproof and heat-insulating properties.
[0004] 2. At present, during the installation of fireproof sealing systems, workers are prone to non-standard operations due to the complex construction process. For example, the galvanized steel plates are not firmly fixed and the sealant is not evenly applied, which will cause the gaps to be loosely sealed, creating conditions for smoke and fire to flow in during a fire. In addition, the thermal expansion and contraction of the building and the structural settlement will cause the sealing materials to crack and fall off, making subsequent maintenance and inspection inconvenient.
[0005] 3. At present, most of the existing fire blocking systems are passive fire protection, which is difficult to monitor and alarm in real time, making it difficult to detect and repair problems in time, posing a serious threat to building fire safety. Summary of the Invention
[0006] The purpose of the present invention is to provide a super high-rise curtain wall interlayer fire blocking system, which can solve the problem that the fire blocking materials between super high-rise curtain walls are highly harmful and cannot maintain long-term and stable fireproof and heat insulation performance. At the same time, it also solves the problem that the fire blocking construction between super high-rise curtain walls is difficult and the fire prevention effect of the fire blocking between super high-rise curtain walls is poor.
[0007] The technical solutions adopted by the present invention are as follows: A super high-rise curtain wall interlayer fireproof blocking system includes a building body and a grooved toothed embedded part embedded in the building body, wherein an aluminum alloy hanger for positioning a steel keel is fixedly installed at the bottom of the grooved toothed embedded part; It also includes an aluminum alloy unit crossbeam provided on one side of the curtain wall body and fixedly installed with the curtain wall body, and a thermal insulation rock wool board is fixedly installed on the top of the aluminum alloy unit crossbeam; A first blocking mechanism is fixedly installed on one side of the steel keel, and a second blocking mechanism is provided at the end of the steel keel. The first blocking mechanism and the second blocking mechanism are used to block the distance between curtain wall layers. The first sealing mechanism includes a galvanized steel plate, and a positioning pile is fixedly installed inside the galvanized steel plate. The positioning pile passes through the positioning hole to position the fireproof sealing plate so that the fireproof sealing plate is fixedly installed with the galvanized steel plate. A fireproof sealing strip is provided on one side of the fireproof sealing plate.
[0008] The top of the steel keel is fixed with a mounting seat by nailing. The nail passes through the mounting seat and is threadedly installed with the second blocking mechanism, so that the second blocking mechanism is fixed to the steel keel. The other end of the second blocking mechanism is fixedly installed on the top of the crossbeam in the aluminum alloy unit.
[0009] The nails pass through the first blocking mechanism and are fixed to the steel keel. Two first blocking mechanisms and two second blocking mechanisms are respectively provided, and the two first blocking mechanisms and the two second blocking mechanisms respectively form two L-shapes.
[0010] The steel keel is L-shaped and is a steel square tube, the surface of which is sprayed with an intumescent fire retardant coating.
[0011] The positioning pile is fixedly installed with the galvanized steel plate. A threaded hole is provided inside the positioning pile. The positioning hole passes through the fireproof sealing plate. The fireproof sealing plate is made of ceramic fiberboard as a base material and is coated with a layer of water repellent on the surface.
[0012] The fireproof sealing strip comprises a metal shell, wherein a plurality of supporting piles are evenly distributed inside the metal shell, and the supporting piles pass through the expansion cotton strip so that the expansion cotton strip is fixedly mounted to the metal shell.
[0013] The metal shell and the expansion strip are an integrated structure, and the metal shell is clamped with the fireproof sealing plate through the expansion strip.
[0014] A monitoring and alarm device is provided on one side of the galvanized steel plate, a mounting plate is fixedly installed on the bottom of the monitoring and alarm device, and a monitoring probe is fixedly installed on the top of the monitoring and alarm device.
[0015] Stainless steel self-tapping screws are inserted into the interior of the mounting plate, and the stainless steel self-tapping screws pass through the galvanized steel plate and are threadedly installed with the fireproof blocking plate, so that the monitoring and alarm device is fixedly installed with the first blocking mechanism.
[0016] The monitoring and alarm device is composed of a monitoring device, a central processing unit and an alarm device; The monitoring device is used to monitor the temperature data, smoke data and gas composition data between the layers of the super high-rise curtain wall in real time, and has the function of data transmission; The central processing unit is used to receive data transmitted by the monitoring device, analyze and grade the data, and then send it to the alarm device; The alarm device is used to receive data analyzed and graded by the central processing unit, and trigger alarms and early warnings according to the level of the data and the corresponding set thresholds.
[0017] The technical effects achieved by the present invention are: The present invention uses a fireproof sealing board made of ceramic fiberboard as the base material to replace the existing commonly used fireproof rock wool. At the same time, since the surface of the fireproof sealing board is coated with a layer of hydrophobic agent made of fluorocarbon compounds, it can form a protective film on the surface of the fireproof sealing board to effectively prevent moisture penetration. This method is not only simple and easy, but also does not significantly affect other properties of the material. Therefore, the present invention uses a fireproof sealing board with hydrophobic function to effectively avoid mold, collapse and deformation in the complex environment of super-high-rise curtain walls when facing problems such as rainwater leakage, ensuring long-term and stable fireproof and heat-insulating properties. At the same time, compared with fireproof rock wool, it can also avoid powdering caused by fire that affects the effect and integrity of fireproof sealing.
[0018] The present invention adopts galvanized steel plates, fireproof sealing plates and fireproof sealing strips to form an integrated fireproof sealing system, and integrates support, fireproof insulation and sealing functions into one. At the same time, it can realize factory processing and prefabricated construction. Compared with traditional installation processes, it greatly saves costs and improves installation efficiency, adapts to the needs of super-high-rise construction, and at the same time optimizes the improvement of the structure of the fireproof sealing strips to make the structural strength of the fireproof sealing strips better, further improves the strength of the fireproof sealing system, and also avoids the problem of cracking and falling off of the sealing material due to thermal expansion and contraction and structural settlement of the building, which causes inconvenience in maintenance and inspection.
[0019] The present invention has a mounting plate installed on the side of the first blocking mechanism, and a monitoring and early warning device is installed on one side of the mounting plate. Through the monitoring device, central processing unit and alarm device possessed by the monitoring and early warning device itself, real-time monitoring of the interlayers of the super-high-rise curtain wall can be carried out, so that when problems occur, they can be discovered and repaired in time, thereby effectively improving the fire safety of the building. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a node diagram of the inter-layer fire blocking system of the present invention; Figure 2 This invention Figure 1 A magnified schematic diagram of the structure at point B in the middle; Figure 3 This is a schematic structural diagram of the first fireproof blocking mechanism in the present invention; Figure 4 This is a schematic diagram of the positioning pile installation structure of the present invention; Figure 5 This is a schematic diagram of the installation structure of the fireproof sealing strip in the present invention; Figure 6 This is a schematic diagram of the internal structure of the metal shell in the present invention; Figure 7 This invention Figure 1 A schematic diagram of the structure at center A; Figure 8 It is a schematic diagram of the structure of the monitoring and alarm device in the present invention; Figure 9 It is a system block diagram of the monitoring and alarm device in the present invention.
[0021] In the accompanying drawings, the components represented by the reference numerals are as follows: 1. Building body; 2. Curtain wall body; 3. Grooved toothed embedded parts; 4. Aluminum alloy bracket; 5. Steel keel; 6. First blocking mechanism; 61. Galvanized steel plate; 62. Fireproof blocking plate; 63. Fireproof blocking strip; 631. Expansion cotton strip; 632. Metal shell; 633. Expansion strip; 634. Support pile; 64. Positioning hole; 65. Positioning pile; 7. Second blocking mechanism; 8. Aluminum alloy unit middle beam; 9. Insulation rock wool board; 10. Mounting seat; 11. Nail; 12. Monitoring and alarm device; 13. Mounting plate; 14. Monitoring probe. DETAILED DESCRIPTION
[0022] In order to make the purpose and advantages of the present invention more clearly understood, the present invention is described in detail below with reference to the following examples. It should be understood that the following text is only used to describe one or more specific embodiments of the present invention and does not strictly limit the scope of protection of the present invention.
[0023] like Figure 1-9 As shown, a super high-rise curtain wall interlayer fire blocking system includes a building body 1 and a groove-type toothed embedded part 3 embedded inside the building body 1, and an aluminum alloy hanger 4 for positioning the steel keel 5 is fixedly installed at the bottom of the groove-type toothed embedded part 3.
[0024] Specifically, the aluminum alloy hanger 4 and the grooved toothed embedded part 3 are simultaneously embedded in the interior of the building body 1, wherein the basic shape of the grooved toothed embedded part 3 is a groove, which can be U-shaped, C-shaped or other forms. In this embodiment, the grooved toothed embedded part 3 is preferably U-shaped, so that the aluminum alloy hanger 4 with good corrosion resistance after anodizing treatment can be fixedly installed with the grooved toothed embedded part 3.
[0025] More specifically, the aluminum alloy hanging seat 4 is used for the installation and fixation of the steel keel 5, and the top of the groove type toothed embedded part 3 can be fixed and installed with the aluminum alloy hanging seat 4 by using a T-shaped bolt group, wherein the aluminum alloy hanging seat 4 has good corrosion resistance after anodic oxidation treatment.
[0026] Referring to the drawings Figure 1 Further comprising an aluminum alloy unit middle beam 8 arranged on one side of the curtain wall body 2 and fixedly installed with the curtain wall body 2, and the top of the aluminum alloy unit middle beam 8 is fixedly installed with a thermal insulation rock wool board 9, wherein the top of the aluminum alloy unit middle beam 8 is arranged with an aluminum alloy unit stand on one side of the thermal insulation rock wool board 9, and the thermal insulation rock wool board 9 is fixedly installed through the aluminum alloy unit stand.
[0027] Further, the surfaces of the aluminum alloy unit stand and the aluminum alloy unit middle beam 8 are treated by metal powder spraying, so that they can effectively improve corrosion resistance, increase wear resistance, improve appearance decoration effect, and enhance physical properties.
[0028] Further, the thickness of the thermal insulation rock wool board 9 is preferably 100 mm, and the thermal insulation rock wool board 9 is installed in the inside of the steel plate in interference fit, and the steel plate used for the thermal insulation rock wool board 9 is treated by galvanizing, so that it has good corrosion resistance, and the other side of the thermal insulation rock wool board 9 is arranged with a 4 mm thick fluorocarbon pre-roller coated aluminum cone core board, so that the thermal insulation rock wool board 9 is fixedly installed with the aluminum alloy unit stand.
[0029] It is to be further explained that the steel keel 5 is L-shaped, and the steel keel can be a 50*50*3 mm steel square pipe, and the surface is coated with intumescent fireproof paint, in addition, the top of the first sealing mechanism 6 and the steel keel 5 are both filled with fireproof sealant between the aluminum alloy hanging seat 4, further avoiding the escape of smoke.
[0030] Referring to the drawings Figures 1-4 The side of the steel keel 5 is fixedly installed with the first sealing mechanism 6, wherein the end of the steel keel 5 is provided with the second sealing mechanism 7, and the first sealing mechanism 6 and the second sealing mechanism 7 can be connected into a whole through the steel keel 5, so as to seal the curtain wall layer spacing and achieve the effect of fireproof sealing.
[0031] It is to be further explained that the shot pins 11 are arranged in multiple, and part of the shot pins 11 can pass through the first sealing mechanism 6 and the steel keel 5 to be fixedly installed, so that the first sealing mechanism 6 and the steel keel 5 are fixedly installed, the first sealing mechanism 6 and the second sealing mechanism 7 are respectively arranged in two, and the two first sealing mechanisms 6 and the two second sealing mechanisms 7 can form two independent L-shaped sealing structures, and the two L-shaped sealing structures are fixedly installed together through the mounting seat 10 and the shot pin 11, wherein one end of the L-shaped sealing structure formed by the second sealing mechanism 7 is fixedly installed on the top of the aluminum alloy unit middle beam 8 through the shot pin 11.
[0032] It is worth noting that the first sealing mechanism 6 includes a galvanized steel plate 61, wherein a plurality of positioning piles 65 are fixedly installed inside the galvanized steel plate 61, and the positioning piles 65 pass through the positioning holes 64 for positioning the fireproof sealing plate 62, and the fireproof sealing plate 62 is designed as three independent plate-like structures and is assembled inside the galvanized steel plate 61 through the positioning piles 65 and the positioning holes 64.
[0033] According to the above structure, the positioning pile 65 is fixedly installed on the galvanized steel plate 61, and a threaded hole is provided inside the positioning pile 65. Since the positioning hole 64 passes through the fireproof sealing plate 62, a fixing screw is used to pass through the positioning hole 64 and the threaded hole of the positioning pile 65 for threaded installation, so that the fireproof sealing plate 62 is fixedly installed on the galvanized steel plate 61, and a fireproof sealing strip 63 is provided on one side of the fireproof sealing plate 62.
[0034] Preferably, the fireproof sealing plate 62 is made of ceramic fiberboard as the base material, which is less harmful than the existing commonly used fireproof rock wool. At the same time, since the surface of the fireproof sealing plate 62 is coated with a layer of hydrophobic agent, the fireproof sealing plate has a hydrophobic effect, which can effectively prevent mold, collapse and deformation, and ensure long-term and stable fireproof and heat-insulating performance.
[0035] In some other embodiments, the hydrophobic property of the fireproof sealing plate 62 may also be achieved in other ways, such as production processing or composite design processing.
[0036] Among them, production and processing: hydrophobic additives are added to the raw materials during the production process. These additives can be closely combined with the basic materials to give them hydrophobic properties without changing the original material structure, and the raw materials are preferably ceramic fibers.
[0037] Secondly, the fireproof sealing plate 62 can also adopt a composite structure design, by sandwiching a layer of high-efficiency waterproof membrane or an intermediate layer treated with a waterproof coating between two layers of ceramic fiber boards, which can not only ensure the fireproof effect but also enhance the waterproof performance.
[0038] In summary, the present invention can adopt any of the above-mentioned embodiments to make the fireproof sealing plate 62 have hydrophobic properties, so that the fireproof sealing plate 62 can resist rainwater leakage in the complex environment of super-high-rise curtain walls, thereby avoiding mold, collapse and deformation, and ensuring long-term and stable fireproof and heat-insulating performance.
[0039] Refer to the attached Figure 3-Figure 5 Fireproof sealing strips 63 are arranged on both sides of the fireproof sealing plate 62, wherein the fireproof sealing strips 63 include a metal shell 632, and a plurality of support piles 634 are evenly distributed inside the metal shell 632, and the support piles 634 and the metal shell 632 are an integrated structure, wherein the gap between the support piles 634 and the metal shell 632 is filled with expanded cotton strips 631.
[0040] Specifically, expansion strips 633 are integrally provided on both sides of the top and bottom of the metal shell 632, and the metal shell 632 can be connected to the fireproof sealing plate 62 through the expansion strips 633. The fireproof sealing strips 63 can seal the gap between the fireproof sealing system and the building and curtain wall, blocking smoke and flames, and comprehensively improving the fireproof sealing performance.
[0041] More specifically, the expandable cotton strip 631 can be made of mineral wool as a base material and a compound of an acid source, a carbon source and a foaming agent, so that the expandable cotton strip can fill the gaps and holes between the fireproof sealing plate and the building structure in the event of a fire, thereby preventing the spread of flames, smoke and toxic gases in the event of a fire.
[0042] It should be noted that the expansion strip 631 may also be composed of mineral wool, an expander and an adhesive, wherein the expander may be melamine or urea, which decomposes at high temperature to release non-flammable gases (such as carbon dioxide, ammonia, etc.), which may cause the material to expand to achieve a sealing effect. In addition, the surface of the expandable strip 631 may be covered with a waterproof film, wherein the waterproof film may be made of high-density polyethylene, so that the expandable strip 631 has a hydrophobic effect, thereby preventing the humid environment from damaging the expandable strip 631 and affecting the use effect of the expandable strip 631.
[0043] Refer to the attached Figure 1 and Figure 7-Figure 9 A monitoring and alarm device 12 is provided on one side of the galvanized steel plate 61, and a mounting plate 13 is fixedly installed on the bottom of the monitoring and alarm device 12, and stainless steel self-tapping screws are inserted into the interior of the mounting plate 13, and the stainless steel self-tapping screws can be threaded through the galvanized steel plate 61 and the fireproof blocking plate 62, so that the monitoring and alarm device 12 is fixedly installed with the first blocking mechanism 6. At the same time, a monitoring probe 14 is fixedly installed on the top of the monitoring and alarm device 12. An integrated sensor group can be formed by multiple monitoring probes, and the curtain wall layers can be monitored in real time through the integrated sensor.
[0044] According to the above structure, the monitoring and alarm device 12 is mainly composed of a monitoring device, a central processing unit and an alarm device as a whole.
[0045] First, the monitoring device includes an integrated sensor group, a data acquisition module, and a data transmission module. Through the linkage of the three, it can be used to monitor the temperature data, smoke data, and gas composition data between super-high-rise curtain wall layers in real time, and transmit the monitoring data to the central processing unit.
[0046] Among them, the data transmission module is mainly responsible for sending the data collected by the acquisition module, and the data transmission module supports Zigbee, LoRaWAN or Wi-Fi protocols to realize wireless and efficient data transmission. It also has a wired connection port, and wireless transmission is preferred in this embodiment.
[0047] It should be noted that the integrated sensor group includes a temperature sensor module, a smoke detector module and a gas sensor module. In addition, a humidity sensor module can also be installed. The humidity sensor module can be used to assist in verifying whether the above temperature, smoke and gas modules have false alarm problems.
[0048] Secondly, the central processing unit has a user interface layer with a visual control interface, and the central processing unit has a built-in database, which is divided into multiple independent areas, among which the real-time data analysis module can analyze the monitoring data.
[0049] It is worth noting that the database also has a data storage module and a historical data analysis module, which can store the collected and analyzed data, and analyze it through the database's own data comparison and analysis module, thereby avoiding the risk of false alarms. At the same time, by establishing a technical data learning module, it can learn from the comparison data, thereby reducing the probability of false alarms.
[0050] It should be noted that the central processing unit also includes a data classification module, which can classify the analyzed data into levels. In this embodiment, the preferred classification levels are 0-5, and the classified signals are sent to the alarm device.
[0051] Finally, the alarm device includes an alarm module and an early warning module. The alarm module receives a numerical signal greater than level 3 and issues an alarm. At the same time, the alarm information is transmitted to the user's mobile terminal through the pan-tilt system of the alarm module. The alarm method can be an audible and visual alarm, a flashing light, or an alarm to the fire department. In addition, when the early warning module receives a numerical signal less than or equal to level 3, it can send an early warning notification to the user's mobile terminal through the pan-tilt system of the early warning module to prevent the occurrence of fire.
[0052] In addition, the interface layer of the central processing unit can synchronize data with the APP on the user's mobile terminal in real time, so that users can view the status of the interlayers of the super-high-rise curtain wall in real time, and also facilitate users to receive early warning and alarm information. In addition, the central processing unit can be set in the computer room and be fixed.
[0053] The above merely describes the preferred embodiments of the present application, and it should be pointed out that those skilled in the art can make several improvements and refinements without departing from the principles of the present application, and these improvements and refinements should also be considered as the protection scope of the present application. The structures, devices and operation methods not specifically described and explained in the present application are implemented according to the conventional means in the art, unless specifically described and limited.
Claims
1. A super high-rise curtain wall interlayer fire blocking system, characterized in that: include: A building body (1) and a grooved toothed embedded part (3) embedded in the building body (1), wherein an aluminum alloy hanger (4) for positioning a steel keel (5) is fixedly mounted on the bottom of the grooved toothed embedded part (3); It also includes an aluminum alloy unit middle beam (8) arranged on one side of the curtain wall body (2) and fixedly mounted to the curtain wall body (2), and a thermal insulation rock wool board (9) is fixedly mounted on the top of the aluminum alloy unit middle beam (8); Wherein, a first blocking mechanism (6) is fixedly installed on one side of the steel keel (5), and a second blocking mechanism (7) is provided at the end of the steel keel (5), and the first blocking mechanism (6) and the second blocking mechanism (7) are used to block the distance between curtain wall layers; The first blocking mechanism (6) comprises a galvanized steel plate (61), a positioning pile (65) is fixedly installed inside the galvanized steel plate (61), and the positioning pile (65) passes through the positioning hole (64) and is used to position the fireproof blocking plate (62), so that the fireproof blocking plate (62) is fixedly installed with the galvanized steel plate (61), and a fireproof blocking strip (63) is provided on one side of the fireproof blocking plate (62).
2. The super high-rise curtain wall interlayer fire blocking system according to claim 1 is characterized by: The top of the steel keel (5) is fixedly mounted with a mounting seat (10) by means of a nail (11), and the nail (11) passes through the mounting seat (10) and is threadedly mounted with the second blocking mechanism (7), so that the second blocking mechanism (7) is fixedly mounted with the steel keel (5), and the other end of the second blocking mechanism (7) is fixedly mounted on the top of the crossbeam (8) in the aluminum alloy unit.
3. The super high-rise curtain wall interlayer fire blocking system according to claim 2 is characterized by: The nail (11) passes through the first blocking mechanism (6) and is fixedly installed on the steel keel (5). Two of the first blocking mechanism (6) and the second blocking mechanism (7) are respectively provided, and the two first blocking mechanisms (6) and the two second blocking mechanisms (7) respectively form two L-shapes.
4. The super high-rise curtain wall interlayer fire blocking system according to claim 3 is characterized by: The steel keel (5) is L-shaped, and the steel keel (5) is a steel square tube, and its surface is sprayed with an intumescent fire retardant coating.
5. The super high-rise curtain wall interlayer fire blocking system according to claim 1 is characterized by: The positioning pile (65) is fixedly installed with the galvanized steel plate (61), and a threaded hole is provided inside the positioning pile (65). The positioning hole (64) passes through the fireproof sealing plate (62). The fireproof sealing plate (62) is made of a ceramic fiberboard as a base material and is coated with a layer of water repellent on the surface.
6. The super high-rise curtain wall interlayer fire blocking system according to claim 1 is characterized by: The fireproof sealing strip (63) comprises a metal shell (632), wherein a plurality of support piles (634) are evenly distributed inside the metal shell (632), and the support piles (634) pass through the expansion cotton strip (631), so that the expansion cotton strip (631) is fixedly mounted to the metal shell (632).
7. The super high-rise curtain wall interlayer fire blocking system according to claim 6, characterized in that: The metal shell (632) and the expansion strip (633) are an integrated structure, and the metal shell (632) is clamped to the fireproof sealing plate (62) via the expansion strip (633).
8. The super high-rise curtain wall interlayer fire blocking system according to claim 1 is characterized by: A monitoring and alarm device (12) is provided on one side of the galvanized steel plate (61), a mounting plate (13) is fixedly mounted on the bottom of the monitoring and alarm device (12), and a monitoring probe (14) is fixedly mounted on the top of the monitoring and alarm device (12).
9. The super high-rise curtain wall interlayer fire blocking system according to claim 8, characterized in that: Stainless steel self-tapping screws are inserted into the interior of the mounting plate (13), and the stainless steel self-tapping screws pass through the galvanized steel plate (61) and are threadedly mounted on the fireproof blocking plate (62), so that the monitoring and alarm device (12) and the first blocking mechanism (6) are fixedly mounted.
10. A super high-rise curtain wall interlayer fire blocking system according to any one of claims 1 to 9, characterized in that: The monitoring and alarm device (12) is composed of a monitoring device, a central processing unit and an alarm device; The monitoring device is used to monitor the temperature data, smoke data and gas composition data between the layers of the super high-rise curtain wall in real time, and has the function of data transmission; The central processing unit is used to receive data transmitted by the monitoring device, analyze and grade the data, and then send it to the alarm device; The alarm device is used to receive data analyzed and graded by the central processing unit, and trigger alarms and early warnings according to the level of the data and the corresponding set thresholds.