Firewall system with intelligent early warning function

By setting up cleaning boards and scrapers in the firewall system to clean up dust, use hydraulic fluid ester and spring structure to slow down vibration, and improve fire resistance through water storage tank and water curtain structure, the existing firewall system is solved and the problem of false alarms and reduced reliability under the influence of dust and vibration, achieving higher detection accuracy and fire resistance.

CN120100115AInactive Publication Date: 2025-06-06JIANGXI SHENGGUANG DECORATION MATERIAL CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510272122.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2025-06-06
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing firewall systems are susceptible to dust and vibration during use, resulting in sensor false alarms or missed reports, reducing the reliability of the firewall system and user trust.

Method used

A firewall system with intelligent early warning function was designed. By setting cleaning boards and scrapers on the surface of the sensor protective case, dust is cleaned up and the sensor's sensitivity and response ability is improved. At the same time, hydraulic fluid ester and spring structures are used to slow down vibration and improve the stability of the firewall; and through the water storage tank and water curtain structure, flames and smoke are prevented from spreading, and the fire resistance of the firewall is improved.

Benefits of technology

It effectively improves the detection accuracy of the sensor, reduces the risk of false alarms, improves the stability and fire resistance of the firewall, and enhances the trust of the system and user trust.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120100115A_ABST
    Figure CN120100115A_ABST
Patent Text Reader

Abstract

The invention discloses a firewall system with an intelligent early warning function, and relates to the technical field of firewalls, the firewall system with the intelligent early warning function comprises a wall body, the lower surface of the wall body is rotatably connected with a sensor, the outer surface of the sensor is fixedly connected with a protective shell, and the upper surface of the sensor is fixedly connected with a rotating shaft; the outer surface, extending into the wall, of the rotating shaft is fixedly connected with a first gear, the outer surface of the first gear is meshed with a second gear, the lower surface of the second gear is fixedly connected with an auxiliary rod, and the outer surface, extending to the lower portion of the wall, of the auxiliary rod is fixedly connected with a cleaning plate. The dust is prevented from being accumulated on the surface of the protective shell to reduce the sensitivity and response capability of the sensor, so that the accuracy of the detection result of the sensor is improved, the false alarm risk is reduced, the credibility of the system is improved, the stability of the firewall can be improved, and the fire blocking capability and isolation effect of the firewall are improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of firewalls, and in particular to a firewall system with an intelligent early warning function. Background Art

[0002] A fire wall refers to a wall structure with certain fireproof isolation properties that is divided inside a building. It is set up to prevent the rapid spread of fire in the building. Its main purpose is to limit the spread of fire, buy time for the evacuation of personnel, and reduce the damage to the building caused by fire. It is usually made of fireproof materials such as refractory bricks, reinforced concrete, and fireproof boards. Fire walls need to have certain fireproof properties, such as fire resistance time, that is, the time starts from the time of the fire. The wall can remain intact for a certain period of time without cracking or collapsing, and prevent the spread of fire. This is the setting of a fire wall.

[0003] However, the existing firewalls may encounter the following problems during use:

[0004] In order to achieve more accurate detection results, sensors used to detect fire usually need to be installed in an open location inside a building. However, during long-term use, dust in the surrounding environment will adhere to the sensor surface, which will adversely affect the sensor's detection of fire, such as false alarms or missed alarms. False alarms caused by false alarms will interfere with the normal work and life of relevant department staff and surrounding residents. Frequent false alarms or missed alarms will also reduce the reliability of the fire protection system, making it difficult for users to trust and rely on it.

[0005] In addition, when the firewall is in use, vibrations from the surrounding environment, such as those generated by nearby traffic, construction, and the operation of mechanical equipment, may be transmitted to the firewall. At the same time, vibrations generated during the operation of mechanical equipment and air-conditioning systems in the building may also affect adjacent firewalls. After being affected by the vibrations, cracks may appear in the fire-resistant panels on the firewalls, reducing their fire resistance and heat and smoke insulation capabilities, increasing the risk of fire spread, and affecting the overall safety of the building.

[0006] Therefore, the present invention proposes a firewall system with intelligent early warning function to make up for and improve the deficiencies of the prior art. Summary of the invention

[0007] 1. Technical issues to be solved

[0008] In view of the deficiencies in the prior art, the present invention provides a firewall system with an intelligent early warning function, which solves the problems raised in the above background technology.

[0009] (II) Technical solution

[0010] To achieve the above objectives, the present invention is implemented through the following technical solutions: a firewall system with intelligent early warning function, including a wall, the interior of the wall is set as a cavity, the lower surface of the wall is rotatably connected to a sensor, the upper surface of the sensor is fixedly connected to a rotating shaft, the end of the rotating shaft away from the sensor extends to the inside of the wall, the outer surface of the sensor is fixedly connected to a protective shell, the outer surface of the rotating shaft extending to the inside of the wall is fixedly connected to gear one, the outer surface of the gear one is meshed with gear two, the lower surface of the gear two is fixedly connected to an auxiliary rod, and the auxiliary rod extends downward at one end away from gear two.

[0011] Preferably, the auxiliary rod extends to the outer surface below the wall and is fixedly connected to a cleaning plate, a side of the cleaning plate away from the auxiliary rod is attached to a soft cloth, the side of the cleaning plate attached to the soft cloth can be attached to the outer surface of the protective shell, and a scraper is fixedly connected to the lower surface of the wall.

[0012] Preferably, a fire-resistant board is fixedly connected to one side of the wall, a keel is fixedly connected to the side of the fire-resistant board away from the wall, and the fire-resistant boards are symmetrically distributed with reference to the vertical center line of the keel.

[0013] Preferably, a connecting tube is rotatably connected to the lower part of the keel, a sleeve is slidably connected to the inside of the connecting tube, the end of the sleeve away from the connecting tube is rotatably connected to the keel, the inside of the sleeve is slidably connected to a piston, a delivery hole is penetrated through the surface of the piston, a connecting rod is fixedly connected to the side of the piston close to the connecting tube, the end of the connecting rod away from the piston extends into the inside of the connecting tube, the end of the connecting rod extending into the inside of the connecting tube is fixedly connected to the connecting tube, a spring is fixedly connected to the inside of the connecting tube, and the end of the spring close to the sleeve is fixedly connected to the sleeve.

[0014] Preferably, the interior of the sleeve is filled with hydraulic fluid ester.

[0015] Preferably, a sealing ring is fixedly connected inside the sleeve and at one end close to the connecting tube.

[0016] Preferably, a water tank 1 is fixedly connected to one side of the fire-resistant board close to the wall, an inclined plate is fixedly connected to the interior of the water tank 1, circular holes 1 are evenly penetrated through the upper surface of the inclined plate, a water pipe is connected to the interior of the water tank 1, a water tank 2 is fixedly connected to the lower surface of the wall close to the fire-resistant board, the water pipe penetrates the inclined plate and extends to the interior of the water tank 2, and circular holes 2 are evenly penetrated through the lower surface of the water tank 2.

[0017] Preferably, a side of the water tank away from the fire-resistant board is arranged as an inclined surface.

[0018] Preferably, the closer the circular hole 2 is to the water pipe, the smaller its aperture size gradually decreases.

[0019] (III) Beneficial effects

[0020] The firewall system with intelligent early warning function provided by the present invention has the following beneficial effects:

[0021] 1. The cleaning plate set on the surface of the auxiliary rod can clean the dust adhered to the surface of the protective shell during use to prevent dust from accumulating on the surface of the protective shell, which may reduce the sensitivity and response ability of the sensor and affect the sensor's recognition and detection of fire risks. This improves the accuracy of the sensor's detection results and prevents the sensor from mistakenly identifying the accumulated dust as fire risk signals such as smoke or gas, thereby causing false alarms. This reduces the risk of false alarms and improves the credibility of the system. At the same time, it can also prevent damage or corrosion to the surface of the protective shell caused by long-term dust accumulation.

[0022] 2. The scraper arranged on the lower surface of the wall can scrape off the dust adhered to the surface of the protective shell when the cleaning board is cleaning the protective shell, so as to avoid the problem that the outer surface of the protective shell is not thoroughly cleaned due to the dust adhered to the surface of the cleaning board when the cleaning board cleans the outer surface of the protective shell again, and the dust on the surface of the cleaning board adheres to the outer surface of the protective shell again, causing pollution to the outer surface of the protective shell, so as to ensure that each time the cleaning board cleans the surface of the protective shell, it is effectively cleaned.

[0023] 3. The hydraulic liquid ester filled inside the sleeve will slow down the compression and recovery speed of the spring connected to the connecting tube during use, which plays a role in reducing vibration, effectively absorbing the vibration caused by the environment, as well as the vibration generated by the mechanical equipment and air-conditioning system in the building during operation, and avoiding the vibration acting on the keel. By reducing the vibration of the keel, the stability of the firewall can be improved, and the fire-resistant board on the firewall can be avoided from falling off or breaking due to the vibration of the keel, which will lead to a decrease in the fireproof performance and heat and smoke insulation capabilities of the firewall, thereby maintaining the integrity of the firewall structure and improving its fire blocking ability and isolation effect.

[0024] 4. Through the circular hole 2 set on the lower surface of the water storage tank 2, when in use, the water flowing out through the circular hole 2 forms a water curtain, which can effectively prevent flames and smoke from passing through the firewall, thereby blocking the spread of fire and protecting the space behind the firewall from fire. At the same time, the water curtain absorbs heat through evaporation, lowers the temperature on one side of the firewall, reduces the heat radiation of the fire to the firewall, and improves the fire resistance of the firewall. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 It is a schematic diagram of the main structure of the present invention;

[0026] Figure 2 It is a schematic diagram of the cutaway structure of the main body of the present invention;

[0027] Figure 3 For the present invention Figure 2 A is a schematic diagram of the enlarged structure of the middle part;

[0028] Figure 4 It is a schematic diagram of the partial cross-section structure of the connecting tube and the sleeve of the present invention;

[0029] Figure 5 For the present invention Figure 4 A schematic diagram of the enlarged structure of B;

[0030] Figure 6 It is a schematic diagram of the partial cutaway structure of water storage tank 1 and water storage tank 2 of the present invention;

[0031] Figure 7 For the present invention Figure 6 Schematic diagram of the enlarged structure of C in the middle;

[0032] Figure 8 For the present invention Figure 6 Schematic diagram of the enlarged structure of D in the figure.

[0033] The symbols in the figure represent:

[0034] 1. Wall; 2. Sensor; 3. Rotating shaft; 4. Protective shell; 5. Gear 1; 6. Gear 2; 7. Auxiliary rod; 8. Cleaning plate; 9. Scraper; 10. Refractory board; 11. Keel; 12. Connecting cylinder; 13. Sleeve; 14. Piston; 15. Delivery hole; 16. Connecting rod; 17. Spring; 18. Water tank 1; 19. Inclined plate; 20. Circular hole 1; 21. Water pipe; 22. Water tank 2; 23. Circular hole 2. DETAILED DESCRIPTION

[0035] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0036] refer to Figures 1 to 8According to a preferred embodiment of the present invention, a firewall system with an intelligent early warning function will be described in detail below. A firewall system with an intelligent early warning function includes a wall 1, the interior of the wall 1 is set as a cavity, the lower surface of the wall 1 is rotatably connected to a sensor 2, the sensor 2 is wirelessly connected to an alarm device, the upper surface of the sensor 2 is fixedly connected to a rotating shaft 3, the end of the rotating shaft 3 away from the sensor 2 extends to the inside of the wall 1, the rotating shaft 3 is fixedly connected to the output shaft end of the motor, the outer surface of the sensor 2 is fixedly connected to a protective shell 4, the outer surface of the rotating shaft 3 extending to the inside of the wall 1 is fixedly connected to a gear 1 5, the gear 1 5 is a single gear, so that the cleaning plate 8 can intermittently clean the outer surface of the protective shell 4, avoiding the problem of using the cleaning plate 8 to clean the outer surface of the protective shell 4 all the time and scratching the outer surface of the protective shell 4, the outer surface of the gear 1 5 is meshed with a gear 2 6, the lower surface of the gear 2 6 is fixedly connected to an auxiliary rod 7, and the auxiliary rod 7 extends downward from the end of the gear 2 6.

[0037] The auxiliary rod 7 extends to the outer surface below the wall 1 and is fixedly connected with a cleaning plate 8. A soft cloth is attached to the side of the cleaning plate 8 away from the auxiliary rod 7. The side of the cleaning plate 8 attached with the soft cloth can be attached to the outer surface of the protective shell 4. The soft cloth on the surface of the cleaning plate 8 cleans away the dust adhering to the surface of the protective shell 4, avoiding dust accumulation on the surface of the protective shell 4, which causes the sensitivity and response ability of the sensor 2 to be reduced, affecting the sensor 2's recognition and detection of fire risks, so that the accuracy of the sensor 2's detection results is improved, avoiding the sensor 2 from mistakenly identifying the accumulated dust as a fire risk signal such as smoke or gas, thereby causing false alarms, reducing the risk of false alarms of the sensor 2, and improving the credibility of the fire alarm system. At the same time, it can also avoid damage or corrosion to the surface of the protective shell 4 caused by long-term dust accumulation;

[0038] A scraper 9 is fixedly connected to the lower surface of the wall 1. The scraper 9 scrapes off the dust adhered to the surface of the protective shell 4 by the cleaning board 8, so as to avoid the problem of incomplete cleaning caused by the dust adhering to the surface of the cleaning board 8 when the cleaning board 8 cleans the outer surface of the protective shell 4 again. Therefore, each time the cleaning board 8 cleans the surface of the protective shell 4, it is effective.

[0039] A fire-resistant board 10 is fixedly connected to one side of the wall 1, and a keel 11 is fixedly connected to the side of the fire-resistant board 10 away from the wall 1. The fire-resistant boards 10 are symmetrically distributed with the vertical center line of the keel 11 as a reference. The fire-resistant boards 10 and the keel 11 constitute the most basic structure of the firewall. The fire-resistant board 10 effectively isolates the flame and smoke in the fire, preventing the space behind the firewall from being damaged by the fire.

[0040] The lower part of the keel 11 is rotatably connected with a connecting tube 12, and the inner part of the connecting tube 12 is slidably connected with a sleeve 13, and the inner part of the sleeve 13 is filled with hydraulic liquid ester, which has extremely high fire resistance and temperature stability, and is suitable for high temperature and dangerous environments, so as to avoid the situation where the shock absorbing effect of the keel 11 is weakened and the fireproof board 10 is broken in the event of a fire, and effectively prevent the flame and smoke in the fire from passing through the fireproof board 10, and the end of the sleeve 13 away from the connecting tube 12 is rotatably connected with the keel 11, and the inner part of the sleeve 13 is slidably connected with a piston 14, and a conveying hole 15 is opened through the surface of the piston 14, and the opening area of ​​the conveying hole 15 is small, and the inner part of the sleeve 13 is divided into an upper and lower chambers by the piston 14, and the hydraulic liquid ester in the upper and lower chambers flows through the conveying hole 15 opened through the surface of the piston 14, and the activity The movement of the plug 14 causes the hydraulic liquid to flow between the upper and lower chambers. When the hydraulic liquid passes through the delivery hole 15 opened on the surface of the piston 14 during the flow, resistance will be generated due to the small opening area of ​​the delivery hole 15. The resistance will slow down the movement speed of the piston 14, thereby playing a role in reducing vibration, effectively absorbing the vibration caused by the environment, as well as the vibration generated by the mechanical equipment and air-conditioning system in the building during operation, and avoiding the vibration from acting on the keel 11. By reducing the vibration of the keel 11, the stability of the firewall can be improved, and the fire-resistant board 10 on the keel 11 can be avoided from falling off or being damaged due to the vibration of the keel 11, resulting in a reduction in the fireproof performance and heat and smoke insulation capabilities of the firewall, maintaining the integrity of the firewall structure, and improving its fire blocking ability and isolation effect;

[0041] A connecting rod 16 is fixedly connected to one side of the piston 14 close to the connecting cylinder 12. One end of the connecting rod 16 away from the piston 14 extends into the interior of the connecting cylinder 12. The end of the connecting rod 16 extending into the interior of the connecting cylinder 12 is fixedly connected to the connecting cylinder 12. A spring 17 is fixedly connected to the interior of the connecting cylinder 12. One end of the spring 17 close to the sleeve 13 is fixedly connected to the sleeve 13.

[0042] A sealing ring is fixedly connected inside the sleeve 13 and at one end close to the connecting tube 12 to prevent the hydraulic fluid ester inside the sleeve 13 from flowing to the outside of the sleeve 13, thereby preventing the reduction of the hydraulic fluid ester inside the sleeve 13 from affecting the vibration reduction effect of the device.

[0043] A water tank 18 is fixedly connected to one side of the fireproof board 10 close to the wall 1, and an inclined plate 19 is fixedly connected inside the water tank 18. The upper surface of the inclined plate 19 is evenly penetrated with circular holes 20. When the water inside the water tank 22 flows out from the inside of the water tank 22 through the circular holes 23 penetrated through the lower surface of the water tank 22, and drips onto the upper part of the inclined plate 19 inside the water tank 18, it will flow to the lower part of the inclined plate 19 through the circular holes 20 evenly penetrated on the surface of the inclined plate 19, and then under the action of the water pump, it will be transported to the inside of the water tank 22 through the water pipe 21 again, and flow out from the inside of the water tank 22 through the circular holes 23 penetrated through the lower surface of the water tank 22, so that the water inside the water tank 18 can be recycled, saving water resources;

[0044] The interior of the water tank 18 is connected with a water pipe 21, and the water pipe 21 is connected to a water pump. The switch of the water pump is located at the driving device of the sensor 2. A water tank 22 is fixedly connected to the lower surface of the wall 1 and close to the fire-resistant board 10. The water pipe 21 penetrates the inclined plate 19 and extends to the inside of the water tank 22. Circular holes 23 are evenly penetrated on the lower surface of the water tank 22. When the water inside the water tank 22 flows out from the circular holes 23, a water curtain will be formed. The water curtain can effectively prevent flames and smoke from passing through the firewall, thereby blocking the spread of fire and protecting the space behind the firewall from fire. At the same time, the water curtain absorbs heat through evaporation, reduces the temperature on one side of the firewall, reduces the heat radiation of the fire to the firewall, and improves the fire resistance of the firewall.

[0045] The side of the water tank 18 away from the fireproof board 10 is set as an inclined surface to prevent water from dripping from the circular hole 23 into the water tank 18 and splashing, thereby preventing people passing by from slipping due to water on the ground and reducing the risk of injury to people passing by.

[0046] The closer the circular hole 23 is to the water pipe 21, the gradually decreasing aperture size thereof makes the flow rate of water flowing to the outside of the water storage tank 22 through the circular holes 23 at different positions the same, so that when the water curtain absorbs heat by evaporation, it has the same cooling effect on different positions, thereby reducing the heat radiation of the fire wall to the fire wall, avoiding the problem of inconsistent fire resistance performance of the fire wall, and improving the overall fire resistance performance of the fire wall.

[0047] The following is the entire working process and working principle of the above embodiment:

[0048] Before use, the staff turns on the switch of the motor. When the output shaft end of the motor rotates, it drives the rotating shaft 3 fixedly connected thereto to rotate. When the rotating shaft 3 rotates, it drives the sensor 2 fixedly connected to the rotating shaft 3 to rotate. When the sensor 2 rotates, it detects the fire in the building. When the sensor 2 detects a fire in the building, the sensor 2 sends a fire signal to the alarm device, and the alarm device sounds an alarm to remind people in the building to evacuate quickly to avoid injuries caused by the fire. When the sensor 2 rotates, it drives the protective shell 4 fixedly connected to the sensor 2 to rotate.

[0049] When in use, first, when the rotating shaft 3 is in use, it drives the gear 1 5 fixedly connected to the rotating shaft 3 to rotate. When the gear 1 5 rotates, it drives the gear 2 6 meshing with the gear 1 5 to rotate. When the gear 2 6 rotates, it drives the auxiliary rod 7 fixedly connected to the gear 2 6 to rotate. When the auxiliary rod 7 rotates, it drives the cleaning plate 8 fixedly connected to the outer surface of the auxiliary rod 7 to rotate. When the cleaning plate 8 rotates to fit the outer surface of the protective shell 4, since the sensor 2 is fixedly connected to the protective shell 4, the sensor 2 drives the protective shell 4 to rotate. When the protective shell 4 rotates, the cleaning plate 8 moves away from the soft cloth set on the side of the auxiliary rod 7 to clean the dust adhered to the outer surface of the protective shell 4, so as to avoid dust accumulation on the surface of the protective shell 4, which causes the sensitivity and response ability of the sensor 2 to decrease, affecting the sensor 2 to identify and detect the fire risk, so as to improve the accuracy of the detection result of the sensor 2, and avoid the sensor 2 mistakenly identifying the accumulated dust as a fire risk signal such as smoke or gas, thereby causing false alarms, reducing the risk of false alarms, and improving the credibility of the system. At the same time, it can also avoid damage or corrosion to the surface of the protective shell 4 caused by long-term dust accumulation.

[0050] Furthermore, when gear 2 6 drives the cleaning plate 8 to rotate through the auxiliary rod 7 until the scraper 9 is in contact with it, the auxiliary rod 7 continues to drive the cleaning plate 8 to rotate. During the rotation, the scraper 9 scrapes off the dust adhered to the soft cloth attached to one side of the cleaning plate 8 when cleaning the surface of the protective shell 4, thereby avoiding the problem of incomplete cleaning caused by dust adhering to the surface of the cleaning plate 8 when the soft cloth attached to one side of the cleaning plate 8 cleans the outer surface of the protective shell 4 again. This ensures that each time the cleaning plate 8 cleans the surface of the protective shell 4 through the soft cloth attached to one side, it is an effective cleaning.

[0051] Next, when the vibration of the surrounding environment, such as the vibration generated by the nearby traffic, construction, operation of mechanical equipment, etc., and the vibration generated by the mechanical equipment, air conditioning system, etc. in the building during operation, is transmitted to the firewall, it will act on the keel 11 inside the firewall, and the keel 11 will be transmitted to the connecting tube 12 rotatably connected thereto. At this time, the connecting tube 12 drives the piston 14 slidably connected to the inside of the sleeve 13 to deviate through the connecting rod 16. Since the inside of the sleeve 13 is filled with hydraulic fluid ester, and the inside of the sleeve 13 is divided into an upper and lower chamber by the piston 14, therefore, when the piston 14 moves, it will cause the hydraulic fluid ester to flow between the upper and lower chambers inside the sleeve 13. The hydraulic fluid ester flowing in the upper and lower chambers inside the sleeve 13 can only pass through the delivery hole opened through the surface of the piston 14. 15 is circulated, and when the hydraulic liquid ester circulates through the delivery hole 15 opened on the surface of the piston 14, a certain resistance will be generated. The resistance causes the movement speed of the piston 14 to slow down. Further, the compression and recovery speed of the spring 17 connected to the connecting tube 12 will be slowed down, thereby playing a role in reducing vibration, effectively absorbing the vibration caused by the environment, as well as the vibration generated by the mechanical equipment and air-conditioning system in the building during operation, avoiding the vibration acting on the keel 11. By reducing the vibration of the keel 11, the stability of the firewall can be improved, and the fire-resistant board 10 on the keel 11 can be avoided from falling off or being damaged due to the vibration of the keel 11, resulting in a decrease in the fireproof performance and heat and smoke insulation capabilities of the firewall, maintaining the integrity of the firewall structure, and improving its fire blocking ability and isolation effect.

[0052] Finally, when the sensor 2 detects a fire in the building, the sensor 2 sends a fire signal to the driving device, and the driving device turns on the water pump switch. After the water pump switch is turned on, the water inside the water tank 18 is transported to the inside of the water tank 22 through the water pipe 21 under the action of the water pump. Since a circular hole 23 is penetrated through the lower surface of the water tank 22, the water transported to the inside of the water tank 22 will flow out from the inside of the water tank 22 through the circular hole 23 penetrated through the lower surface of the water tank 22, and drip into the inside of the water tank 18. Above the inclined plate 19, since the second circular hole 23 is evenly opened, and the closer the second circular hole 23 is to the water pipe 21, the aperture size thereof gradually decreases. Therefore, when the water in the second water storage tank 22 flows out from the second circular hole 23, water curtains with the same flow rate will be formed at different positions. The water curtain can effectively prevent flames and smoke from passing through the firewall, thereby blocking the spread of fire and protecting the space behind the firewall from fire. At the same time, the water curtain absorbs heat by evaporation, reduces the temperature on one side of the firewall, reduces the heat radiation of the fire to the firewall, and improves the fire resistance of the firewall.

[0053] Furthermore, when the water inside the water tank 22 flows out from the water tank 22 through the circular hole 23 penetrated through the lower surface of the water tank 22, and drips onto the top of the inclined plate 19 inside the water tank 18, it will flow to the bottom of the inclined plate 19 through the circular hole 120 evenly penetrated through the surface of the inclined plate 19, and then under the action of the water pump, it will be transported to the inside of the water tank 22 again through the water pipe 21, and flow out from the water tank 22 through the circular hole 23 penetrated through the lower surface of the water tank 22, so that the water inside the water tank 18 can be recycled, saving water resources.

[0054] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A fire wall system with an intelligent early warning function, comprising a wall (1), the interior of the wall (1) being arranged as a cavity, a sensor (2) being rotatably connected to the lower surface of the wall (1), a rotating shaft (3) being fixedly connected to the upper surface of the sensor (2), an end of the rotating shaft (3) away from the sensor (2) extending to the interior of the wall (1), and a protective shell (4) being fixedly connected to the outer surface of the sensor (2), characterized in that: The outer surface of the rotating shaft (3) extending to the inside of the wall (1) is fixedly connected to a gear 1 (5), the outer surface of the gear 1 (5) is meshed with a gear 2 (6), the lower surface of the gear 2 (6) is fixedly connected to an auxiliary rod (7), and the auxiliary rod (7) extends downward from one end away from the gear 2 (6).

2. The firewall system with intelligent early warning function according to claim 1 is characterized in that: The auxiliary rod (7) extends to the outer surface below the wall (1) and is fixedly connected to a cleaning plate (8); a side of the cleaning plate (8) away from the auxiliary rod (7) is affixed with a soft cloth; the side of the cleaning plate (8) affixed with the soft cloth can be affixed to the outer surface of the protective shell (4); and a scraper (9) is fixedly connected to the lower surface of the wall (1).

3. The firewall system with intelligent early warning function according to claim 1 is characterized in that: A fireproof board (10) is fixedly connected to one side of the wall (1), a keel (11) is fixedly connected to the side of the fireproof board (10) away from the wall (1), and the fireproof boards (10) are symmetrically distributed with the vertical center line of the keel (11) as a reference.

4. The firewall system with intelligent early warning function according to claim 3 is characterized in that: A connecting tube (12) is rotatably connected to the lower part of the keel (11), a sleeve (13) is slidably connected to the interior of the connecting tube (12), an end of the sleeve (13) away from the connecting tube (12) is rotatably connected to the keel (11), a piston (14) is slidably connected to the interior of the sleeve (13), a conveying hole (15) is penetrated through the surface of the piston (14), a connecting rod (16) is fixedly connected to the side of the piston (14) close to the connecting tube (12), an end of the connecting rod (16) away from the piston (14) extends into the interior of the connecting tube (12), an end of the connecting rod (16) extending into the interior of the connecting tube (12) is fixedly connected to the connecting tube (12), a spring (17) is fixedly connected to the interior of the connecting tube (12), an end of the spring (17) close to the sleeve (13) is fixedly connected to the sleeve (13).

5. The firewall system with intelligent early warning function according to claim 4 is characterized in that: The interior of the sleeve (13) is filled with hydraulic fluid ester.

6. The firewall system with intelligent early warning function according to claim 4 is characterized in that: A sealing ring is fixedly connected inside the sleeve (13) and at one end close to the connecting tube (12).

7. The firewall system with intelligent early warning function according to claim 3 is characterized in that: A water tank 1 (18) is fixedly connected to one side of the fireproof board (10) close to the wall (1), an inclined plate (19) is fixedly connected to the interior of the water tank 1 (18), a circular hole 1 (20) is evenly penetrated through the upper surface of the inclined plate (19), the interior of the water tank 1 (18) is connected to a water pipe (21), a water tank 2 (22) is fixedly connected to the lower surface of the wall (1) close to the fireproof board (10), the water pipe (21) penetrates the inclined plate (19) and extends to the interior of the water tank 2 (22), and a circular hole 2 (23) is evenly penetrated through the lower surface of the water tank 2 (22).

8. The firewall system with intelligent early warning function according to claim 7 is characterized in that: The side of the water storage tank 1 (18) away from the fireproof board (10) is arranged as an inclined surface.

9. The firewall system with intelligent early warning function according to claim 7 is characterized in that: The closer the second circular hole (23) is to the water pipe (21), the smaller its hole diameter gradually decreases.