Intelligent modularized low-voltage switch cabinet

By introducing a limit rope detection system and a fire-extinguishing and power-off linkage mechanism into the low-voltage switch cabinet, the problem of unreliable fire extinguishing and power-off is solved, and the dual protection of rapid fire extinguishing and power-off is achieved, the risk of fire reignition is reduced, and a strict fire prevention and control system is built.

CN120357295AInactive Publication Date: 2025-07-22SHAN DONG QI LIN SAN FU GAO FEN ZI CAI LIAO YOU XIAN GONG SI
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Patent Information

Application Number
CN202510624317.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-15
Publication Date
2025-07-22
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing intelligent modular low-voltage switch cabinet fire extinguishing structure is not reliable enough, and it is prone to rekindling after fire extinguishing, and the root causes of the fire cannot be dealt with in a timely manner.

Method used

A limit pull rope detection system surrounding the inside of the cabinet is designed, combining the dual safety mechanism of fire extinguishing and power outage. The fire extinguishing device is triggered to release carbon dioxide and disconnect the power supply through the fuse of the limit pull rope, so as to achieve rapid fire extinguishing and power outage.

Benefits of technology

Respond quickly in the early stage of a fire, and through dual protection of fire extinguishing and power outage, it effectively blocks the spread of fire, reduces fire risks, and builds a strict safety protection system.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of low-voltage switch cabinets, and discloses an intelligent modular low-voltage switch cabinet which comprises a cabinet body and heat dissipation holes formed in the two sides, a cabinet door is hinged to the front end of the cabinet body, a mounting plate is fixed to the middle of the cabinet body, a control module is mounted at the front end of the mounting plate, a connector bar is fixed to the lower end in the cabinet body, and the connector bar is connected with a wire. A positioning plate is fixed at the bottom of the cabinet body, a first connector lug penetrates through the positioning plate, a trunking is arranged at the lower end of the positioning plate, a sealing box is fixed at the upper end of the trunking, a connector base is arranged in the sealing box, a second connector lug is installed in the connector base, transmission rods penetrate through the two sides of the positioning plate, and fixing blocks are fixed at the lower ends of the transmission rods. According to the intelligent modular low-voltage switch cabinet, by arranging the fire extinguishing detection structure, when a fire breaks out due to the conditions of short circuit, poor contact and the like in the cabinet body, the fire extinguishing structure can be triggered to be started, so that carbon dioxide is sprayed to achieve rapid fire extinguishing, external connection can be cut off while fire extinguishing is conducted, and it is ensured that reburning cannot occur due to the conditions of short circuit and the like.
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Description

Technical Field

[0001] The present invention relates to the technical field of low-voltage switch cabinets, and specifically to an intelligent modular low-voltage switch cabinet. Background Art

[0002] A low-voltage switch cabinet is an enclosed vertical complete set of equipment assembled by one or more low-voltage switch electrical appliances and associated secondary equipment such as measurement, control, and protection; it is applicable to industries such as power plants, petroleum, chemical industry, metallurgy, textiles, and high-rise buildings, and is used for power transmission, power distribution, and power conversion;

[0003] The switch cabinet controls the on and off of the circuit through the main circuit breaker, the fuse provides overload and short-circuit protection, the current transformer and voltage transformer monitor the current and voltage values, and the relay realizes various protection and control functions according to the measurement results.

[0004] However, when the existing intelligent modular low-voltage switch cabinets are in use, there are still certain problems:

[0005] Existing is a high and low voltage switch cabinet with an automatic fire extinguishing function, such as the one with the Chinese patent application number CN215387159U, including a high and low voltage switch cabinet, a box body is provided on the high and low voltage switch cabinet, an alarm box is provided on the box body, the box body has a cavity, an automatic fire extinguishing mechanism is provided in the cavity, the automatic fire extinguishing mechanism includes a fire extinguishing bottle, a fixing plate is provided under the fire extinguishing bottle, symmetrically provided with support blocks on both sides of one end of the fixing plate away from the fire extinguishing bottle, a sealing plug is provided in the bottle mouth on one side of the fire extinguishing bottle, a safety pin is provided in the sealing plug, and one end of the safety pin penetrates through the bottle mouth of the fire extinguishing bottle and extends to the outside;

[0006] However, the stability and reliability of the existing fire extinguishing structure of the switch cabinet are relatively poor. Although it can achieve fire extinguishing, usually the fire in the switch cabinet is due to reasons such as short circuit and poor contact. The root cause is not solved after fire extinguishing, and if not dealt with in time, reignition is likely to occur.

[0007] In view of the above problems, an innovative design is carried out on the basis of the original intelligent modular low-voltage switch cabinet. Summary of the Invention

[0008] The purpose of the present invention is to provide an intelligent modular low-voltage switch cabinet to solve the problem that the existing fire extinguishing structure of the switch cabinet is not reliable enough, and if the cause of the fire cannot be dealt with in time, reignition is likely to occur after fire extinguishing as mentioned in the above background art.

[0009] To achieve the above purpose, the present invention provides the following technical solution: An intelligent modular low-voltage switch cabinet, including a cabinet body and heat dissipation holes opened on both sides, a cabinet door is hinged to the front end of the cabinet body, a mounting plate is fixed in the middle of the cabinet body, and a control module is installed at the front end of the mounting plate:

[0010] A wiring terminal is fixed at the lower end inside the cabinet body, and the wiring terminal is connected to a wire. A positioning plate is fixed at the bottom of the cabinet body. A first wiring head penetrates through the positioning plate. A wire groove is arranged at the lower end of the positioning plate. A sealing box is fixed at the upper end of the wire groove. A wiring seat is arranged inside the sealing box, and a second wiring head is installed inside the wiring seat.

[0011] The transmission rods penetrate through both sides of the positioning plate. A fixing block is fixed at the lower end of the transmission rod. A return spring is sleeved outside the transmission rod. A transmission shaft is arranged inside the cabinet body. Transmission connecting rods penetrate through both sides of the transmission shaft. A first transmission rope is connected to the lower end of the transmission connecting rod.

[0012] A storage tank is arranged at the upper end inside the cabinet body. Valves are connected to both ends of the storage tank. A conduction pipe is connected to the lower end of the valve.

[0013] Preferably, the upper end of the sealing box extends to the positioning plate, and the upper end of the sealing box is snap-fitted with the positioning plate. The second wiring head is designed in a "V" shape. The lower end of the first wiring head is snap-fitted with the second wiring head. The second wiring head is made of elastic metal.

[0014] Adopting the above technical solution, the external cable can be directly conducted with the wire through the first wiring head and the second wiring head, the wire is connected to the wiring terminal, and finally further conduction is achieved between the wiring terminal and the control module. Moreover, the first wiring head and the second wiring head can be equivalent to a snap-fastener design, enabling quick connection and disconnection.

[0015] Preferably, a sealing door is hinged to the front end of the wire groove. Sealing plates are fixed at both ends of the wire groove. Sealing grooves are fixed on both inner walls of the cabinet body, and the sealing grooves are slidably connected to the sealing plates. The left side of the wire groove extends to the outside of the cabinet body, and a wiring conduit is fixed on the left side of the wire groove.

[0016] Adopting the above technical solution, through the sliding fit between the sealing groove and the sealing plate, the movable guiding of the wire groove can be realized. Installing a sealing door at the front end of the wire groove can facilitate the connection between the external cable and the second wiring head, improve the operation convenience, and achieve the sealing protection of the connection point to avoid the connection point from getting damp and other situations.

[0017] Preferably, positioning brackets are fixed on both sides of the positioning plate. The transmission rod penetrates through the middle of the positioning brackets. The transmission rod is slidably connected to the positioning brackets. The upper and lower ends of the return spring are respectively in contact with the positioning brackets and the positioning plate.

[0018] Adopting the above technical solution, by positioning the transmission rod through the positioning brackets, the return spring can be used to push structures such as the transmission rod, the fixing block, and the sealing box downward, thereby providing power for the separation of the first wiring head and the second wiring head and facilitating the quick disconnection of the power supply when the movement of the transmission rod is not restricted.

[0019] Preferably, both ends of the transmission shaft are fixedly connected to the inner wall of the cabinet, and both sides of the transmission shaft are rotatably connected to the transmission link. The lower end of the transmission link is fixed to the first transmission rope, and the lower end of the first transmission rope is fixedly connected to the upper end of the transmission rod.

[0020] With the above technical solution, by using the first transmission rope, the connection between the transmission rod and the transmission link can be achieved, and the transmission rod can be pulled and positioned by the transmission link and the first transmission rope. The first transmission rope is made of flame-retardant material and is non-combustible, maintaining stable and reliable transmission.

[0021] Preferably, a positioning shaft is fixed at the front end of the transmission link, and guide rings are fixed at the upper ends on both sides of the positioning shaft. A limiting pull rope passes through the inside of the guide ring. A positioning seat is fixed at the front end of the mounting plate, and the inner end of the limiting pull rope is fixed to the positioning seat. The inner end of the limiting pull rope extends to the upper end at the rear side of the mounting plate, and a guide ring is connected to the upper end at the rear side of the mounting plate, and the limiting pull rope is connected to the guide ring.

[0022] With the above technical solution, through the cooperation of the guide ring and the limiting pull rope, the rotational limit of the transmission link can be achieved. The positioning seat can position both ends of the limiting pull rope. The limiting pull rope is connected to the transmission link through the guide ring, and the surrounding design of the limiting pull rope realizes the rotational restriction of the transmission link. When the limiting pull rope is burned and cut off, the rotational restriction of the transmission link can be released.

[0023] Preferably, torsion springs are sleeved at both ends of the transmission shaft, and both ends of the torsion springs are respectively connected to the transmission link and the transmission shaft.

[0024] With the above technical solution, through the design of the torsion spring, when the rotation of the transmission link is not restricted, the transmission link can be driven to rotate around the transmission shaft.

[0025] Preferably, the valve is a rotating shaft valve, and the liquid outlet end of the valve is conductively connected to the conduction pipe. The lower end of the conduction pipe is connected with a nozzle, and the nozzles are distributed in an equidistant array.

[0026] With the above technical solution, the storage tank can store compressed carbon dioxide. When the valve is opened, the compressed carbon dioxide is transported to the conduction pipe and is transported into the cabinet interior by multiple nozzles.

[0027] Preferably, a pull rod is connected to the shaft end of the valve, and a second transmission rope is connected to the end of the pull rod, and the lower end of the second transmission rope is fixed to the transmission link.

[0028] With the above technical solution, through the cooperation of the pull rod and the second transmission rope, the connection between the valve and the transmission link can be achieved. When the limiting pull rope is burned and broken, the transmission link rotates and pulls the second transmission rope and the pull rod to rotate, thereby opening the valve and realizing fire extinguishing in the cabinet.

[0029] Compared with the prior art, the beneficial effects of the present invention are as follows: The intelligent modular low-voltage switchgear cabinet is provided with a fire extinguishing detection structure. When a fire breaks out inside the cabinet due to short circuit, poor contact, etc., it can trigger the activation of the fire extinguishing structure, thereby spraying carbon dioxide to achieve rapid fire extinguishing, and can cut off the connection of the external power supply while extinguishing the fire to ensure that there will be no reignition due to short circuit or other situations.

[0030] 1. To build a strict safety protection system, this design innovatively adopts a limit pull rope detection system that surrounds the inside of the cabinet. The limit pull rope not only has a physical limit function. When an open flame appears inside the cabinet, the high temperature of the flame will instantly melt the pull rope, triggering a built-in dual safety protection mechanism: on the one hand, the fire extinguishing device will be immediately activated to release a highly efficient fire extinguishing agent to accurately extinguish the open flame; on the other hand, the intelligent power-off system will quickly cut off the power supply to prevent the spread of fire caused by a short circuit in the circuit. This integrated design can not only respond quickly at the initial stage of the fire, but also minimize the fire risk through the dual protection of fire extinguishing and power-off, building a solid and reliable barrier for the safety of equipment and personnel;

[0031] 2. This safety protection scheme deeply integrates the dual safety mechanisms of fire extinguishing and power-off to build an efficient and strict fire prevention and control system. The fire extinguishing structure adopts a fire induction trigger design. When a fire breaks out, it can respond quickly, quickly release a highly efficient fire extinguishing agent to cover the fire source, isolate oxygen and reduce the temperature, accurately extinguish the initial fire, and block the path of fire spread from the source. At the same time, the power-off structure is linked with the fire extinguishing system to eliminate the potential risk of electric sparks caused by circuit short circuit and poor contact, effectively preventing the secondary reignition of the fire, adding a "double insurance" to the safety protection, and comprehensively protecting the fire safety of the use scenario. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] Figure 1 is a schematic diagram of the overall structure of the present invention;

[0033] Figure 2 is a schematic diagram of the internal structure of the cabinet of the present invention;

[0034] Figure 3 is a schematic diagram of the wiring row and wire structure of the present invention;

[0035] Figure 4 is a schematic diagram of the structure of the first wiring head and the second wiring head of the present invention;

[0036] Figure 5 is a schematic diagram of the wire groove and sealed box structure of the present invention;

[0037] Figure 6 is a schematic diagram of the structure of the sealing plate and the sealing groove of the present invention;

[0038] Figure 7 is a schematic diagram of the structure of the transmission connecting rod and the positioning shaft of the present invention;

[0039] Figure 8 Structural schematic diagram of the valve and storage tank of the present invention;

[0040] Figure 9 Structural schematic diagram of the valve and conduction pipe of the present invention;

[0041] Figure 10 Structural schematic diagram of the transmission connecting rod and positioning shaft of the present invention.

[0042] In the figure: 1, cabinet body; 2, heat dissipation holes; 3, cabinet door; 4, mounting plate; 5, control module; 6, wiring row; 7, wire; 8, positioning plate; 9, first wiring head; 10, wire groove; 11, sealed box; 12, wiring seat; 13, second wiring head; 14, wiring conduit; 15, sealing plate; 16, sealing groove; 17, positioning frame; 18, transmission rod; 19, return spring; 20, fixed block; 21, transmission shaft; 22, transmission connecting rod; 23, positioning shaft; 24, first transmission rope; 25, torsion spring; 26, guiding ring; 27, limiting pull rope; 28, positioning seat; 29, storage tank; 30, valve; 31, conduction pipe; 32, pull rod; 33, second transmission rope. Detailed implementation manners

[0043] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0044] Please refer to Figures 1-10, the present invention provides a technical solution: an intelligent modular low-voltage switchgear cabinet, including a cabinet body 1 and heat dissipation holes 2 opened on both sides. A cabinet door 3 is hingedly connected to the front end of the cabinet body 1. An installation plate 4 is fixed in the middle of the cabinet body 1. A control module 5 is installed at the front end of the installation plate 4. A wiring row 6 is fixed at the lower end inside the cabinet body 1, and a wire 7 is connected to the wiring row 6. A positioning plate 8 is fixed at the bottom of the cabinet body 1. A first wiring head 9 penetrates through the positioning plate 8. A wire groove 10 is arranged at the lower end of the positioning plate 8. A sealing box 11 is fixed at the upper end of the wire groove 10. A wiring seat 12 is arranged inside the sealing box 11, and a second wiring head 13 is installed inside the wiring seat 12; the upper end of the sealing box 11 extends to the positioning plate 8, and the upper end of the sealing box 11 is snap-connected to the positioning plate 8. The second wiring head 13 is designed in a "V" shape, and the lower end of the first wiring head 9 is snap-connected to the second wiring head 13, and the second wiring head 13 is made of elastic metal; the heat dissipation holes 2 are installed on both sides of the cabinet body 1. The cabinet door 3 is hingedly connected to the front end of the cabinet body 1. The installation plate 4 is fixed in the middle of the cabinet body 1. The control module 5 is installed at the front end of the installation plate 4. The control module 5 mainly includes circuit breakers such as air circuit breakers, molded case circuit breakers, and load switches, as well as devices such as relays and meters. The wiring row 6 is fixed at the lower end inside the cabinet body 1 and connected to the wire 7. The positioning plate 8 is fixed at the bottom of the cabinet body 1 to divide the upper and lower parts of the wiring end.

[0045] A sealing door is hingedly connected to the front end of the wire groove 10. Sealing plates 15 are fixed at both ends of the wire groove 10. Sealing grooves 16 are fixed on the inner walls of both sides of the cabinet body 1, and the sealing grooves 16 are slidably connected to the sealing plates 15. The left side of the wire groove 10 extends to the outside of the cabinet body 1, and a wiring conduit 14 is fixed on the left side of the wire groove 10; when in use, an external cable is inserted into the wire groove 10. The external cable is connected to the left end of the wire groove 10 by using the wiring conduit 14, and the connection end can be kept sealed. After the external cable extends into the wire groove 10, it is bolted to the lower end of the second wiring head 13. And for improving the operation convenience, a sealing door that rotates and opens is arranged in the middle of the wire groove 10. The second wiring head 13 and the first wiring head 9 can be snap-connected to realize the conduction between the external cable and the connecting wire 7. The second wiring head 13 and the sealing box 11 are connected through the wiring seat 12, and the upper end of the sealing box 11 is snap-connected to the positioning plate 8 to realize sealing, and the sealing box 11 and the positioning plate 8 can be slidably connected.

[0046] Inside the cabinet body 1, a transmission shaft 21 is arranged. On both sides of the transmission shaft 21, transmission connecting rods 22 penetrate through. At the lower end of the transmission connecting rod 22, a first transmission rope 24 is connected. Both ends of the transmission shaft 21 are fixedly connected to the inner wall of the cabinet body 1, and both sides of the transmission shaft 21 are rotatably connected to the transmission connecting rod 22. A positioning shaft 23 is fixed at the front end of the transmission connecting rod 22. At the upper ends on both sides of the positioning shaft 23, a guiding ring 26 is fixed. A limiting pull rope 27 penetrates through the inside of the guiding ring 26. A positioning seat 28 is fixed at the front end of the mounting plate 4. The inner end of the limiting pull rope 27 is fixedly connected to the positioning seat 28. The inner end of the limiting pull rope 27 extends to the upper rear side of the mounting plate 4. At the upper rear side of the mounting plate 4, a guiding ring is connected. The limiting pull rope 27 is connected to the guiding ring. The transmission connecting rod 22 can be connected by the transmission shaft 21. The transmission connecting rod 22 can rotate around the transmission shaft 21. Both ends of the transmission connecting rod 22 are connected with guiding rings 26. The limiting pull rope 27 can be inserted into the inside of the guiding ring 26, and both ends of the limiting pull rope 27 are connected and fixed to the middle of the mounting plate 4 with the positioning seat 28. Both sides of the limiting pull rope 27 extend to the upper rear side of the mounting plate 4. At the rotating shaft of the limiting pull rope 27, it can be connected to the mounting plate 4 by the guiding ring, so as to ensure smooth movement after disconnection. The cooperation between the limiting pull rope 27 and the guiding ring 26 can pull the transmission connecting rod 22 from the upper end to limit its downward rotation. If there is an open fire inside the cabinet body 1, the limiting pull rope 27 will be burned and broken, thereby releasing the restriction on the downward rotation of the transmission connecting rod 22. And the limiting pull rope 27 covers multiple positions, and can realize multi-position open fire detection.

[0047] On both sides of the positioning plate 8, the transmission rod 18 penetrates through. At the lower end of the transmission rod 18, a fixed block 20 is fixed. An external reset spring 19 is sleeved on the transmission rod 18. On both sides of the positioning plate 8, a positioning frame 17 is fixed. The transmission rod 18 penetrates through the middle of the positioning frame 17. The transmission rod 18 is slidably connected to the positioning frame 17. The upper and lower ends of the reset spring 19 are respectively in contact with the positioning frame 17 and the positioning plate 8. The lower end of the transmission connecting rod 22 is fixedly connected to the first transmission rope 24. The lower end of the first transmission rope 24 is fixedly connected to the upper end of the transmission rod 18. The transmission rod 18 penetrates through both ends of the positioning plate 8. By using the cooperation of the transmission rod 18 and the fixed block 20, the positioning of the sealed box 11 and the second connection head 13 can be realized. By using the cooperation of the transmission connecting rod 22 and the first transmission rope 24, the transmission rod 18 can be pulled upward to prevent it from moving downward, so as to maintain the stable and reliable engagement of the first connection head 9 and the second connection head 13. When the limiting pull rope 27 is disconnected, the transmission connecting rod 22 and the positioning shaft 23 rotate downward. The reset spring 19 is used to push the transmission rod 18, the fixed block 20, and the sealed box 11 to move downward, thereby releasing the engagement between the first connection head 9 and the second connection head 13, realizing rapid power-off, and avoiding the subsequent secondary re-ignition caused by short circuit or poor contact again.

[0048] The limiting pull rope 27 is connected to the positioning shaft 23 by means of a guiding ring 26. The distance between the guiding ring 26 and the transmission shaft 21 is greater than the distance between the first transmission rope 24 and the transmission shaft 21. It can maintain the stability of pulling and positioning the upper end of the first transmission rope 24 with a smaller pulling force, and a thinner rope diameter can be designed to improve the response speed of the first transmission rope 24 being burned off in case of an open flame. Moreover, the first transmission rope 24 and the second transmission rope 33 are made of flame-retardant materials, preferably steel ropes with a diameter of 3 mm, to avoid being burned off by an open flame. The limiting pull rope 27 is a hemp rope. Hemp fibers have a certain heat resistance, but are also easily burned off under the direct action of a flame. The diameter of the hemp rope is 2 - 3 mm. When hemp fibers burn, the flame is relatively mild, and it is usually difficult to maintain continuous burning after the fire source is removed, avoiding expanding the combustion range inside the cabinet 1.

[0049] Inside the upper end of the cabinet 1, a storage tank 29 is provided. Both ends of the storage tank 29 are connected to valves 30, and the lower ends of the valves 30 are connected to a conduction pipe 31. Both ends of the transmission shaft 21 are sleeved with torsion springs 25, and both ends of the torsion springs 25 are respectively connected to the transmission link 22 and the transmission shaft 21. The valve 30 is a rotary shaft valve 30, and the liquid outlet end of the valve 30 is conductively connected to the conduction pipe 31. The lower end of the conduction pipe 31 is connected with spray nozzles, and the spray nozzles are distributed in an equidistant array. The shaft end of the valve 30 is connected with a pull rod 32, and the end of the pull rod 32 is connected with a second transmission rope 33, and the lower end of the second transmission rope 33 is fixed to the transmission link 22. Through the storage tank 29, compressed storage of carbon dioxide can be realized, and the valves 30 at both ends of the storage tank 29 are connected to the transmission link 22 by means of the pull rod 32 and the second transmission rope 33. When the limiting pull rope 27 is burned off, the restriction on the downward rotation of the transmission link 22 is released, and the torsion spring 25 can drive the transmission link 22 to rotate downward and pull the valves 30 and 32 to rotate and open. The angles of the valves 30 and the pull rod 32 are 0 - 30°, and the carbon dioxide or stored aerosol inside the storage tank 29 is transported to the conduction pipe 31 and sprayed out by multiple groups of spray nozzles opened at the lower end, which can achieve a reliable and effective fire extinguishing effect after a fire breaks out. Both the torsion spring 25 and the return spring 19 can provide the power for the downward rotation of the transmission link 22 after the limiting pull rope 27 is burned off, ensuring that the valve 30 can rotate and open smoothly and has sufficient power. Moreover, the pull rod 32 can further increase the pulling force generated by the second transmission rope 33, further ensuring that there is sufficient pulling force when the transmission link 22 rotates.

[0050] The content not described in detail in this specification belongs to the prior art well-known to those skilled in the art. Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An intelligent modular low-voltage switchgear cabinet, comprising a cabinet body (1) and heat dissipation holes (2) opened on both sides. A cabinet door (3) is hinged to the front end of the cabinet body (1). An installation plate (4) is fixed in the middle of the cabinet body (1). A control module (5) is installed at the front end of the installation plate (4), and it is characterized in that: A wiring row (6) is fixed at the lower end inside the cabinet body (1), and the wiring row (6) is connected with a wire (7). A positioning plate (8) is fixed at the bottom of the cabinet body (1). A first wiring head (9) penetrates through the positioning plate (8). A wire groove (10) is arranged at the lower end of the positioning plate (8). A sealing box (11) is fixed at the upper end of the wire groove (10). A wiring seat (12) is arranged inside the sealing box (11), and a second wiring head (13) is installed inside the wiring seat (12); The transmission rods (18) penetrate through both sides of the positioning plate (8). A fixed block (20) is fixed at the lower end of the transmission rod (18), and a return spring (19) is sleeved outside the transmission rod (18). A transmission shaft (21) is arranged inside the cabinet body (1), and transmission connecting rods (22) penetrate through both sides of the transmission shaft (21), and a first transmission rope (24) is connected to the lower end of the transmission connecting rod (22); A storage tank (29) is arranged at the upper end inside the cabinet body (1), and valves (30) are connected to both ends of the storage tank (29), and a conduction pipe (31) is connected to the lower end of the valve (30).

2. The intelligent modular low-voltage switchgear according to claim 1, wherein: The upper end of the sealing box (11) extends to the positioning plate (8), and the upper end of the sealing box (11) is snap-connected with the positioning plate (8). The second wiring head (13) is designed in a "V" shape, and the lower end of the first wiring head (9) is snap-connected with the second wiring head (13), and the second wiring head (13) is made of elastic metal.

3. The intelligent modular low-voltage switchgear according to claim 2, characterized in that: A sealing door is hinged to the front end of the wire groove (10). Sealing plates (15) are fixed at both ends of the wire groove (10). Sealing grooves (16) are fixed on the inner walls of both sides of the cabinet body (1), and the sealing grooves (16) are slidably connected with the sealing plates (15). The left side of the wire groove (10) extends to the outside of the cabinet body (1), and a wiring conduit (14) is fixed on the left side of the wire groove (10).

4. An intelligent modular low-voltage switchgear according to claim 1, characterized in that: Positioning frames (17) are fixed on both sides of the positioning plate (8), and the transmission rod (18) penetrates through the middle of the positioning frame (17). The transmission rod (18) is slidably connected with the positioning frame (17), and the upper and lower ends of the return spring (19) are respectively in contact with the positioning frame (17) and the positioning plate (8).

5. An intelligent modular low-voltage switchgear according to claim 4, characterized in that: Both ends of the transmission shaft (21) are fixedly connected with the inner wall of the cabinet body (1), and both sides of the transmission shaft (21) are rotatably connected with the transmission connecting rods (22). The lower end of the transmission connecting rod (22) is fixed to the first transmission rope (24), and the lower end of the first transmission rope (24) is fixed to the upper end of the transmission rod (18).

6. An intelligent modular low-voltage switchgear according to claim 5, characterized in that: A positioning shaft (23) is fixed to the front end of the transmission connecting rod (22), and guide rings (26) are fixed to the upper ends on both sides of the positioning shaft (23). A limiting pull rope (27) passes through the inside of the guide ring (26). A positioning seat (28) is fixed to the front end of the mounting plate (4), and the inner end of the limiting pull rope (27) is fixed to the positioning seat (28). The inner end of the limiting pull rope (27) extends to the upper end at the rear side of the mounting plate (4), and a guide ring is connected to the upper end at the rear side of the mounting plate (4), and the limiting pull rope (27) is connected to the guide ring.

7. An intelligent modular low-voltage switchgear according to claim 6, characterized in that: Torsion springs (25) are sleeved on both ends of the transmission shaft (21), and both ends of the torsion springs (25) are respectively connected to the transmission connecting rod (22) and the transmission shaft (21).

8. An intelligent modular low-voltage switchgear according to claim 1, characterized in that: The valve (30) is a rotary shaft valve (30), and the liquid outlet end of the valve (30) is conductively connected to the conduction pipe (31). A spray head is connected to the lower end of the conduction pipe (31), and the spray heads are distributed in an equidistant array.

9. The intelligent modular low-voltage switchgear according to claim 8, characterized in that: A pull rod (32) is connected to the shaft end of the valve (30), and a second transmission rope (33) is connected to the end of the pull rod (32), and the lower end of the second transmission rope (33) is fixed to the transmission connecting rod (22).

Citation Information

Patent Citations

  • High-low voltage switch cabinet with automatic fire extinguishing function

    CN215387159U