Heat insulation type fireproof and smoke-proof valve with high circulation efficiency

By dividing the blades of the fire and smoke damper into a blade frame and a blade fan, and using calcium silicate insulation and fireproof boards, the problems of deformation and complex assembly of the fire and smoke damper in high temperature environments are solved, and the effects of high ventilation efficiency and simplified maintenance are achieved.

CN223306379UActive Publication Date: 2025-09-05JIANGSU APOLLO AIR CONDITIONER PURIFICATION EQUIP MFG
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Patent Information

Application Number
CN202422677292.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-04
Publication Date
2025-09-05
Estimated Expiration
2034-11-04

AI Technical Summary

Technical Problem

Existing fire and smoke dampers are easily deformed in high temperature environments, resulting in a reduction in effective ventilation area, complex structure, low assembly efficiency, and difficult maintenance.

Method used

The blades are fixed with an outer frame and locking components. The blades are divided into a blade frame and a blade fan. The main transmission shaft and the auxiliary shaft are separated. The frame and blade insulation and fireproof panels made of calcium silicate are used to increase the heat deformation resistance and maintain the sealing effect.

Benefits of technology

It increases the effective ventilation area when the blades are fully open, simplifies the assembly process, reduces maintenance requirements, and ensures the sealing performance of the valve in high temperature environments.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223306379U_ABST
Patent Text Reader

Abstract

The utility model discloses a high circulation efficiency heat insulation type fire and smoke prevention valve which comprises an outer frame and a locking assembly, a signal box is fixed on the outer frame through the locking assembly, a blade is fixed in the outer frame through a fastener, and the blade comprises a blade frame, a blade fan, a transmission main shaft and an auxiliary shaft. The transmission main shaft and the auxiliary shaft are arranged on the two sides of the outer frame, the transmission main shaft is locked and fixed through a locking half-moon plate matched with a screw, the transmission main shaft penetrates through the action executing mechanism, and the action executing mechanism is arranged on the outer frame. The valve has the beneficial effects that the effective ventilation area is obviously increased when the blades are in a full-open state, the heat deformation resistance is improved, and the sealing effect of the valve cannot be influenced in a high-temperature environment; the assembly requirement is low, debugging is easy, after the connector is connected with the outer frame, later disassembly and error correction are not affected, disassembly and assembly are fast and convenient, the outer frame independently bears the interface installation function, and installation is fast.
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Description

Technical Field

[0001] The utility model relates to a fire and smoke damper, in particular to a high-flow efficiency heat-insulating fire and smoke damper. Background Art

[0002] Fire and smoke dampers are key valves for fire and smoke isolation control in nuclear islands. In order to prevent the spread of fire and toxic high-temperature smoke through ventilation ducts, fire and smoke dampers can help exhaust smoke and isolate the room where the fire occurs from the surrounding rooms.

[0003] When a fire occurs, the fire and smoke dampers close, blocking the spread of fire and toxic high-temperature smoke through the ventilation ducts. Affected by factors such as thermal radiation, negative pressure will form in the ducts on both sides of the fire, exacerbating the spread of fire and toxic high-temperature smoke.

[0004] However, in the process of implementing the utility model technical solution in the embodiment of the present application, the applicant found that the above technology has at least the following technical problems:

[0005] 1. Normal insulated fire and smoke dampers use fireproof boards as frames and blade materials. To achieve a fire resistance of 180 minutes, the thickness of the fireproof boards generally needs to be increased to ensure thermal insulation. This results in an increase in the thickness of the blades and the covering thickness of the frame. When the valve blades are fully open, the effective ventilation area is reduced, especially for smaller valves, where the effective ventilation area ratio is less than 50%.

[0006] 2. The blades of the fire and smoke damper deform quickly under the influence of long-term heat radiation and heat transfer. Under the influence of thermal deformation and negative pressure, displacement may occur, exacerbating the failure of the blocking effect of the fire and smoke damper.

[0007] 3. Due to the volatile environmental factors at the installation site, existing fire and smoke dampers have complex structures, low assembly efficiency, and poor disassembly. When assembled fire and smoke dampers fail to open properly or close with a poor seal, design, inspection, and assembly personnel are unable to disassemble and re-verify them, forcing them to completely dismantle the dampers to identify the root cause. This structural constraint also makes post-installation maintenance difficult. Utility Model Content

[0008] The embodiment of the present application provides a high-flow efficiency heat-insulating fire and smoke damper, and the effective ventilation area when the blades are fully open is significantly increased. The effective ventilation area of ​​valves with smaller sizes is higher than 50%, which increases the heat deformation resistance. Slight deformation only occurs inside the plug plate and the slot, and will not affect the sealing effect of the valve in a high-temperature environment. The assembly requirements are low and the debugging is simple. After being connected to the outer frame, it will not affect the later disassembly and error correction. The disassembly and assembly are quick and convenient. The outer frame independently assumes the interface installation function and the installation is fast.

[0009] An embodiment of the present application provides a high-flow efficiency heat-insulating fire and smoke damper, comprising: an outer frame and a locking assembly, wherein the outer frame is fixed with a signal box by the locking assembly, and blades are fixed in the outer frame by fasteners, and the blades include a blade frame, a blade fan, a transmission main shaft and an auxiliary shaft, and the transmission main shaft and the auxiliary shaft are arranged on both sides of the outer frame, and the transmission main shaft is fixed by locking the meniscus with screws, and the transmission main shaft passes through an action execution mechanism, and the action execution mechanism is arranged on the outer frame, and the outer frame includes a flange frame, a frame heat-insulating fireproof board, a fusible bolt mounting column, a corner guard, and a shaft sleeve, and the outer ring of the flange frame is covered with a frame heat-insulating fireproof board.

[0010] The frame heat insulation and fireproof board is fixed by self-drilling and self-tapping screws and wraps the entire flange frame. Fireproof sealant is applied between the frame heat insulation and fireproof board and the flange frame. A fusible plug and a temperature sensing element are arranged in the flange frame. The fusible plug is fixed in the fusible plug mounting column. The four corners of the flange frame are covered with corner guards, and the corner guards are connected and fixed to the flange frame by welding.

[0011] Axial holes are provided on both sides of the flange frame, the transmission main shaft and auxiliary shaft cooperate with the axis holes, shaft sleeves are provided between the transmission main shaft and auxiliary shaft and the axis holes, the transmission main shaft and auxiliary shaft are inserted into the outer frame, the blade frame and the blade fan are socketed with each other and form a whole, the blade frame and the outer frame are connected by fasteners, and the transmission main shaft and auxiliary shaft are connected to the blade fan by fixings.

[0012] The blade frame includes a blade frame insert, a blade frame slot, and a blade frame heat-insulating and fire-proof board. The blade frame slot is welded and formed by five-axis integral processing. The blade frame insert is formed by bending a thick plate. Fireproof sealant is applied between the blade frame heat-insulating and fire-proof board and the blade frame slot. The blade frame insert, blade frame slot and blade frame heat-insulating and fire-proof board are connected by fasteners.

[0013] The blade fan includes: a blade fan insert, a blade fan slot, and a blade fan heat insulation and fireproof board. The blade fan insert is formed by bending a thick plate. The blade fan slot is formed by assembly welding and then processed by five-axis integral machining. The blade fan insert and the blade fan slot are assembled in the form of intermittent spot welding. The blade frame heat insulation and fireproof board and the welded blade fan insert and blade fan slot are provided with fireproof sealant by applying and connected with fasteners.

[0014] The frame heat insulation fireproof board, the blade frame heat insulation fireproof board and the blade fan heat insulation fireproof board are made of calcium silicate. The fusible plug is arranged on the non-fire surface and is located on the same horizontal line as the lock hole of the locking meniscus.

[0015] One or more technical solutions provided in the embodiments of this application have at least the following technical effects or advantages:

[0016] 1. The fire-exposed surface of the valve is evenly arranged with frame insulation fireproof panels, blade frame insulation fireproof panels and blade fan insulation fireproof panels as fire-resistant barriers. The temperature rise of the back-fire surface is slow, and the deformation of the blade frame slots, blade frame inserts, blade fan inserts, blade fan slots, transmission shafts and auxiliary shafts on the back-fire surface is small, which protects the transmission parts and sealing parts. The effective ventilation area when the blades are fully open is significantly increased, and the effective ventilation area of ​​valves with smaller sizes is higher than 50%.

[0017] 2. The blade fan insert plate and the blade fan slot are made into two parts, which ensures a certain blade fan insert plate thickness and blade fan slot processing accuracy. The blade fan insert plate and the blade fan slot are connected and inserted into a whole, which greatly increases the heat deformation resistance. Slight deformation only exists inside the insert plate and the slot, and will not affect the sealing effect of the valve in a high temperature environment.

[0018] 3. The blades are disassembled into blade frames and blade fans. The blades independently become a complete enclosed body, assuming the functions of fire barrier and sealing. The outer frame only assumes the functions of installation interface and outer fire barrier. The traditional blade shaft is split into a transmission main shaft and an auxiliary shaft, and the blades and the frame are connected in sections. The blades are a separate complete body with low assembly requirements and simple debugging. After being connected to the outer frame, it does not affect the later disassembly and error correction. The disassembly and assembly are quick and convenient. The outer frame independently assumes the interface installation function and is quickly installed. After the overall assembly is completed, the overall performance is good. Due to the blade fan plug-in board of a certain thickness, the influence of factors such as fatigue and deformation during operation is avoided. No replacement or maintenance work is required, which reduces the work of later on-site maintenance. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a schematic diagram of the specific structure of the utility model;

[0020] Figure 2 This is a schematic structural diagram of the outer frame of the present utility model;

[0021] Figure 3 This is a schematic diagram of the structure of the blade in the utility model;

[0022] Figure 4 This is a cross-sectional view of the blade frame in the present invention;

[0023] Figure 5 This is a cross-sectional view of the blade fan in the utility model;

[0024] Figure 6 This is a schematic diagram of the installation and operation of the high-flow efficiency heat-insulating fire and smoke damper of the utility model. DETAILED DESCRIPTION

[0025] In order to better understand the above technical solution, the above technical solution will be described in detail below with reference to the accompanying drawings and specific implementation methods. Example

[0026] A high-flow efficiency heat-insulating fire and smoke damper, comprising: an outer frame 1 and a locking assembly 3, wherein the outer frame 1 is fixed with a signal box 42 via the locking assembly 3, a blade 2 is fixed in the outer frame 1 via a fastener, the blade 2 comprises a blade frame 21, a blade fan 22, a transmission main shaft 23 and an auxiliary shaft 24, the transmission main shaft 23 and the auxiliary shaft 24 are arranged on both sides of the outer frame 1, the transmission main shaft 23 is fixed by a locking meniscus 31 with screws, the transmission main shaft 23 passes through an action actuator 4, and the action actuator 4 is arranged on the outer frame 1, the outer frame 1 comprises a flange frame 11, a frame heat-insulating fireproof board 12, a fusible plug mounting column 13, a corner guard 14, and a shaft sleeve 15, and the outer ring of the flange frame 11 is covered with a frame heat-insulating fireproof board 12;

[0027] The frame heat insulation fireproof board 12 is fixed by self-drilling and self-tapping screws and wraps the entire flange frame 11. Fireproof sealant is applied between the frame heat insulation fireproof board 12 and the flange frame 11. A fusible plug 32 and a temperature sensing element 44 are provided in the flange frame 11. The fusible plug 32 is fixed in the fusible plug mounting column 13. The four corners of the flange frame 11 are covered with corner guards 14, and the corner guards 14 are connected and fixed to the flange frame 11 by welding.

[0028] The flange frame 11 is provided with shaft holes on both sides, the transmission main shaft 23 and the auxiliary shaft 24 cooperate with the shaft holes, and a shaft sleeve 15 is provided between the transmission main shaft 23 and the auxiliary shaft 24 and the shaft holes. The transmission main shaft 23 and the auxiliary shaft 24 are inserted into the outer frame 1, and the blade frame 21 and the blade fan 22 are socketed with each other and form a whole. The blade frame 21 and the outer frame 1 are connected to each other through fasteners, and the transmission main shaft 23 and the auxiliary shaft 24 are connected to the blade fan 22 through fixing members.

[0029] The blade frame 21 includes a blade frame insert 211, a blade frame slot 212, and a blade frame heat insulation and fireproof board 213. The blade frame slot 212 is formed by welding and then processed by five-axis integral processing. The blade frame insert 211 is formed by bending a thick plate. Fireproof sealant is applied between the blade frame heat insulation and fireproof board 213 and the blade frame slot 212. The blade frame insert 211, the blade frame slot 212 and the blade frame heat insulation and fireproof board 213 are connected by fasteners.

[0030] The blade fan 22 includes: a blade fan insert 221, a blade fan slot 222, and a blade fan heat insulation and fireproof board 223. The blade fan insert 221 is formed by bending a thick plate, and the blade fan slot 222 is formed by assembly welding and then processed by five-axis integral machining. The blade fan insert 221 and the blade fan slot 222 are assembled in the form of intermittent spot welding. The blade frame heat insulation and fireproof board 213 and the welded blade fan insert 221 and blade fan slot 222 are provided with fireproof sealant by applying and connected with fasteners.

[0031] The frame heat insulation fireproof board 12, the blade frame heat insulation fireproof board 213 and the blade fan heat insulation fireproof board 223 are made of calcium silicate. The fusible plug 32 is arranged on the back fire surface and is located on the same horizontal line as the lock hole of the locking meniscus 31.

[0032] Calcium silicate fireproof board can ensure thermal insulation. During and after the fire water impact test of the thermal insulation fire and smoke damper after the fire resistance test, the calcium silicate fireproof board will not collapse quickly due to water absorption, thus ensuring its use in the event of accidental fire in nuclear power plants.

[0033] The technical solutions in the above embodiments of the present application have at least the following technical effects or advantages:

[0034] The fire-exposed surface of the valve is evenly arranged with a frame insulation fireproof board 12, a blade frame insulation fireproof board 213 and a blade fan insulation fireproof board 223 as a fire-resistant barrier. The temperature of the back-to-fire surface rises slowly. The deformation of the components such as the blade frame slot 212, the blade frame insert 211, the blade fan insert 221, the blade fan slot 222, the transmission shaft and the auxiliary shaft 24 on the back-to-fire surface is small, which protects the transmission parts and sealing parts. The effective ventilation area when the blade 2 is fully open is significantly increased, and the effective ventilation area of ​​valves with smaller sizes is higher than 50%.

[0035] The blade fan insert plate 221 and the blade fan slot 222 are made into two parts, which are respectively installed on the blade frame 21 and the blade fan 22. They are formed by bending thick steel plates, and the blade fan slot 222 is processed by CNC five-axis machining to ensure a certain thickness of the blade fan insert plate 221 and the processing accuracy of the blade fan slot 222. The blade fan insert plate 221 and the blade fan slot 222 are connected and inserted into a whole, which greatly increases the heat deformation resistance. Slight deformation only exists inside the insert plate and the slot, and will not affect the sealing effect of the valve in a high temperature environment.

[0036] The blade 2 is disassembled into the blade frame 21 and the blade fan 22. The blade 2 independently becomes a complete enclosed body, which assumes the functions of fire barrier and sealing. The outer frame 1 only assumes the functions of installation interface and outer fire barrier. The traditional blade 2 axis is split into the transmission main shaft 23 and the auxiliary shaft 24, and the blade 2 and the frame are connected in sections. The blade 2 is a separate complete body with low assembly requirements and simple debugging. After being connected to the outer frame 1, it does not affect the later disassembly and error correction, and the disassembly and assembly are quick and convenient. The outer frame 1 independently assumes the interface installation function and is quickly installed. After the overall assembly is completed, the overall performance is good. Due to the blade fan plug-in board 221 of a certain thickness, the influence of factors such as fatigue and deformation during operation is avoided. No replacement or maintenance work is required, which reduces the work of later on-site maintenance.

[0037] Although the preferred embodiments of the present invention have been described, those skilled in the art may make additional changes and modifications to these embodiments once they have learned the basic creative concept. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments and all changes and modifications that fall within the scope of the present invention.

[0038] Obviously, those skilled in the art may make various modifications and variations to the present invention without departing from the spirit and scope of the present invention. Thus, if such modifications and variations fall within the scope of the claims of the present invention and their equivalents, the present invention is intended to include such modifications and variations.

Claims

1. A high-flow efficiency heat-insulating fire and smoke damper, comprising: The outer frame and locking assembly are characterized in that the outer frame is fixed with a signal box through a locking assembly, the blades are fixed in the outer frame through fasteners, the blades include a blade frame, a blade fan, a transmission main shaft and an auxiliary shaft, the transmission main shaft and the auxiliary shaft are arranged on both sides of the outer frame, the transmission main shaft is fixed by locking the meniscus with screws, the transmission main shaft passes through the action actuator, and the action actuator is arranged on the outer frame, the outer frame includes a flange frame, a frame heat insulation and fireproof board, a fusible bolt mounting column, a corner guard, and a shaft sleeve, and the outer ring of the flange frame is covered with a frame heat insulation and fireproof board.

2. A high flow efficiency heat insulation type fire and smoke damper according to claim 1, characterized in that: The frame heat insulation and fireproof board is fixed by self-drilling and self-tapping screws and wraps the entire flange frame. Fireproof sealant is applied between the frame heat insulation and fireproof board and the flange frame. A fusible plug and a temperature sensing element are arranged in the flange frame. The fusible plug is fixed in the fusible plug mounting column. The four corners of the flange frame are covered with corner guards, and the corner guards are connected and fixed to the flange frame by welding.

3. A high flow efficiency heat insulation type fire and smoke damper as claimed in claim 2, characterized in that: Axial holes are provided on both sides of the flange frame, the transmission main shaft and auxiliary shaft cooperate with the axis holes, shaft sleeves are provided between the transmission main shaft and auxiliary shaft and the axis holes, the transmission main shaft and auxiliary shaft are inserted into the outer frame, the blade frame and the blade fan are socketed with each other and form a whole, the blade frame and the outer frame are connected by fasteners, and the transmission main shaft and auxiliary shaft are connected to the blade fan by fixings.

4. A high flow efficiency heat insulation type fire and smoke damper as claimed in claim 3, characterized in that: The blade frame includes a blade frame insert, a blade frame slot, and a blade frame heat-insulating and fire-proof board. The blade frame slot is welded and formed by five-axis integral processing. The blade frame insert is formed by bending a thick plate. Fireproof sealant is applied between the blade frame heat-insulating and fire-proof board and the blade frame slot. The blade frame insert, blade frame slot and blade frame heat-insulating and fire-proof board are connected by fasteners.

5. A high flow efficiency heat insulation type fire and smoke damper according to claim 4, characterized in that: The blade fan includes: a blade fan insert, a blade fan slot, and a blade fan heat insulation and fireproof board. The blade fan insert is formed by bending a thick plate. The blade fan slot is formed by assembly welding and then processed by five-axis integral machining. The blade fan insert and the blade fan slot are assembled by intermittent spot welding. Fireproof sealant is applied between the blade frame heat insulation and fireproof board and the welded blade fan insert and blade fan slot and connected by fasteners.

6. A high flow efficiency heat insulation type fire and smoke damper according to claim 5, characterized in that: The frame heat insulation fireproof board, the blade frame heat insulation fireproof board and the blade fan heat insulation fireproof board are made of calcium silicate. The fusible plug is arranged on the non-fire surface and is located on the same horizontal line as the lock hole of the locking meniscus.