CN219375947U - Intelligent building suspension type fire control platform - Google Patents

Intelligent building suspension type fire control platform Download PDF

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Publication number
CN219375947U
CN219375947U CN202223363072.1U CN202223363072U CN219375947U CN 219375947 U CN219375947 U CN 219375947U CN 202223363072 U CN202223363072 U CN 202223363072U CN 219375947 U CN219375947 U CN 219375947U
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China
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fire
spraying device
driving vehicle
hollow pipe
intelligent
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Active
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CN202223363072.1U
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Chinese (zh)
Inventor
史一磊
曹毅杰
万朵
郎晓波
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Hangzhou Tiansuo Technology Co ltd
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Hangzhou Tiansuo Technology Co ltd
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Abstract

The utility model discloses an intelligent building suspension type fire-fighting platform, which comprises a cross rod provided with a gear groove, wherein the cross rod is erected on two parallel sliding rails, the sliding rails are movably provided with a first driving vehicle, the cross rod is provided with a second driving vehicle, an intelligent camera is arranged below the second driving vehicle, and a spraying device for extinguishing fire is fixedly arranged on the second driving vehicle. In the using process, the electromagnetic valve is controlled to be opened through the internal single chip microcomputer, the electric telescopic rod is contracted, the hollow pipe is stretched out for spraying water, then the first driving vehicle and the second driving vehicle are controlled to move in a matched mode to move the spraying device to a fire source, the spraying device drives the hollow pipe to rotate through the gear when moving on the cross rod, the spraying device can pre-spray water on a passing path in the moving process, fire spreading is prevented, and when the spraying device moves right above the fire source, the single chip microcomputer controls the electric push rod to retract the hollow pipe, so that water pressure of water discharged from the middle of the hollow pipe is increased, and fire is extinguished.

Description

Intelligent building suspension type fire control platform
Technical Field
The utility model relates to the technical field of fire-fighting equipment, in particular to an intelligent building suspension type fire-fighting platform.
Background
Fire-fighting equipment is an important weapon for fight against fire disaster by human beings, along with the rapid development of science and technology, the interpenetration of various disciplines brings liveliness and vitality to the update development of the fire-fighting equipment, the fire-fighting equipment has wide and various aspects, and the fire-fighting equipment comprises a fire automatic control alarm system, a fire extinguisher, a fixed fire extinguishing system, a pump, a vehicle and water supply equipment, personal equipment and life-saving equipment, a communication scheduling command system, a fire extinguishing agent and a fire-retarding equipment, and can be said to comprise various scientific fields of metallurgy, machinery, transmission, light industry, electronics, computers, chemical industry, materials and the like related to national and national lives. With the continuous development of society, high-rise buildings pull out like spring bamboo shoots after raining, traditional fire-fighting facilities and equipment are limited because the building is too high, and the high-rise is difficult to extinguish fire, then the construction of intelligent buildings is proposed, and meanwhile, the intelligent building hanging type fire-fighting platform needs to be intelligent in fire protection, so that the intelligent building hanging type fire-fighting platform is inoculated.
Among the prior art, the intelligent building suspension type fire control platform of publication No. CN115228026A, including the fixed plate, the bottom both sides fixedly connected with hydraulic stem of fixed plate, the bottom fixedly connected with slide rail of two hydraulic stems, the inside rotation of slide rail is connected with the lead screw, and the one end of lead screw rotates to be connected in the inner wall of slide rail, and the other end of lead screw passes the inner wall of slide rail and rotates to be connected with the power spare, and power spare fixedly connected with is in one side of slide rail, and the surface threaded connection of lead screw has the slider. The dry powder is sprayed to a wider range through the rotating pipe body, the fire extinguishing effect of the device is improved, the installation between the tank body and the rotating shaft is completed, the disassembly and assembly are convenient and quick, and the operation is simple.
However, the prior art still has great disadvantages, such as:
1. the intelligent building suspension type fire-fighting platform can only slide on the sliding rail through the screw rod when a fire is found, the sliding rail is limited in length and small in coverage range, and a plurality of devices are required to be arranged in a room, so that the cost is increased;
2. the dry powder fire extinguishing device has the advantages that the dry powder fire extinguishing device is used for the intelligent building suspension type fire platform, the dry powder in the tank body is limited, if the fire is large, the dry powder can not be continuously extinguished, the fire can be reburning, and the life and property safety of people is threatened.
Disclosure of Invention
The utility model aims to provide an intelligent building suspension type fire-fighting platform so as to solve the problems in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions:
the intelligent building suspension type fire-fighting platform comprises a cross rod, wherein the cross rod is provided with a gear groove, the cross rod is movably arranged on two parallel sliding rails, and the sliding rails are movably provided with a first driving vehicle for moving the cross rod;
the intelligent fire-extinguishing device is characterized in that a second driving vehicle is movably arranged on the cross rod, an intelligent camera is fixedly arranged below the second driving vehicle, the first driving vehicle and the second driving vehicle are connected with the intelligent camera through signals, a spraying device for extinguishing fire is fixedly arranged on one side of the second driving vehicle, which is close to the gear groove, the spraying device is communicated with a hose, and one end, far away from the spraying device, of the hose is communicated with a water inlet pipe fixed on a wall after passing through the recovery device.
Preferably, the movable groove is formed in the spraying device, the movable gear meshed with the gear groove is rotatably arranged in the movable groove, the hollow pipe is fixedly inserted in the middle of the movable gear, one end, away from the movable gear, of the hollow pipe penetrates through the movable groove and then stretches out of the spraying device, the water outlet pipe is inserted into one end, close to the movable gear, of the hollow pipe, and one end, away from the hollow pipe, of the water outlet pipe penetrates out of the spraying device and then is communicated with the hose.
Preferably, the recovery device comprises a fixed plate fixedly arranged on the cross rod, a rotating shaft is rotatably arranged between the two fixed plates, a winch is fixedly arranged on the rotating shaft, a torsion spring fixedly connected between the winch and the fixed plate is sleeved on the rotating shaft, and one end of the hose, far away from the water outlet pipe, is fixedly connected onto the water inlet pipe after being wound by the winch.
Preferably, a plurality of water outlets are formed in one end, far away from the movable gear, of the hollow tube, a bearing is fixedly connected to one end, far away from the movable gear, of the hollow tube, an electric push rod is fixedly connected to the outer ring of the bearing and in signal connection with the intelligent camera, and the electric push rod is fixedly arranged on the inner wall of the movable groove.
Preferably, the hollow tube is kept away from a plurality of connecting rods of fixedly connected with on the pipe wall of movable gear one end, the one end fixedly connected with baffle of hollow tube is kept away from to the connecting rod, water spray hole has been seted up in the middle of the baffle.
Preferably, a telescopic hole for telescopic hollow tube is arranged below the movable groove.
Preferably, the water outlet pipe is fixedly connected with an annular plate in the hollow pipe, and an electromagnetic valve in signal connection with the intelligent camera is fixedly arranged in the movable groove.
Preferably, a rubber sleeve for blocking the water outlet hole is fixedly arranged on the inner wall of the telescopic hole.
Compared with the prior art, the utility model has the beneficial effects that:
1. according to the intelligent fire extinguishing device, the two parallel sliding rails are arranged on the wall surfaces on two sides of the roof, after the intelligent cameras intelligently identify fire, the first driving vehicle and the second driving vehicle are controlled by the internal single chip microcomputer, the spraying device is moved to the fire source, the electromagnetic valve is controlled to be opened by the single chip microcomputer, water can be sprayed to the fire source for extinguishing fire, indoor omnibearing dead-angle-free fire extinguishing can be achieved, and the coverage area is large.
2. When the electromagnetic valve is opened, water can be continuously sprayed out through the hose until fire is extinguished, and life and property losses caused by re-burning due to the fact that the fire is not extinguished because of lack of water are avoided.
3. When the intelligent camera recognizes fire, the electromagnetic valve is controlled to be opened by the singlechip, the electric push rod is controlled to be contracted to extend the hollow tube out of the spraying device, the first driving vehicle is controlled to move the cross rod and the spraying device to the cross section where the fire source is located, the second driving vehicle is controlled to move the spraying device to the fire source for extinguishing fire, when the spraying device moves on the cross rod, the gear groove on the cross rod drives the movable gear to rotate, so that the hollow tube rotates to spray water, thereby pre-spraying water around the fire source when the spraying device moves towards the fire source to prevent fire from spreading, and the hollow tube rotates to spray water to enable the coverage area to be larger;
4. when sprinkler reaches the fire source department, control electric putter through the singlechip and extend, retract hollow tube to in the telescopic hole, the apopore of hollow tube lower extreme is plugged up to increase the water pressure at hollow tube center, spray the fire source, spray on the baffle from hollow tube spun water, part water sprays downwards through the hole for water spraying on the baffle, after part water sprays on the baffle, spray around again, thereby put out a fire to the fire source and all around.
When the intelligent camera head is used for shooting a fire, the electromagnetic valve is controlled to be opened through the internal singlechip, the electric telescopic rod is controlled to be contracted, the hollow pipe is stretched out, the first driving vehicle and the second driving vehicle are controlled to move in a moving mode to move the spraying device to the fire source, the spraying device drives the gear to rotate through the gear groove when moving on the cross rod, so that the hollow pipe is driven to rotate, the spraying device can pre-spray water on a path passing through in the moving process, fire spread is prevented, the spraying device can spray and extinguish the fire at any position of a whole house, and the coverage area is wide;
when the spraying device moves to the position right above the fire source, the single-chip microcomputer controls the electric push rod to extend, the hollow pipe is retracted, the rubber sleeve in the telescopic hole plugs the water outlet hole, so that the water pressure of water outlet in the middle of the hollow pipe is increased, the fire source is extinguished, water can be continuously sprayed out of the hollow pipe, and the condition of re-combustion cannot occur.
Drawings
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a schematic top view of the present utility model;
FIG. 3 is a schematic diagram of the front view structure of the present utility model;
FIG. 4 is a schematic top view of the recovery mechanism of the present utility model;
FIG. 5 is a schematic view of the front view of the sprinkler of the present utility model;
FIG. 6 is an enlarged schematic view of the area A in FIG. 5;
fig. 7 is an enlarged schematic view of the area B in fig. 5.
In the figure: 1. a cross bar; 2. a gear groove; 3. a second drive vehicle; 4. an intelligent camera; 5. a spraying device; 6. a hose; 7. a winch; 8. a fixing plate; 9. a water inlet pipe; 10. a torsion spring; 11. a slide rail; 12. a first drive vehicle; 13. a rotating shaft; 501. a movable groove; 502. a movable gear; 503. a hollow tube; 504. a bearing; 505. an electric push rod; 506. a telescopic hole; 507. a water outlet hole; 508. a rubber sleeve; 509. a water outlet pipe; 510. an electromagnetic valve; 511. an annular plate; 512. a connecting rod; 513. a baffle; 514. and water spraying holes.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-7, the present utility model provides a technical solution:
embodiment one:
the utility model provides an intelligent building suspension type fire control platform, including horizontal pole 1, gear groove 2 has been seted up to horizontal pole 1 in one side with sprinkler 5 contact, horizontal pole 1 activity is erect on two parallel slide rail 11, the wall on roof both sides is fixed to two parallel slide rail 11, slide rail 11 activity is provided with the first driving truck 12 that is used for removing horizontal pole 1, the inside gyro wheel that has of first driving truck 12 supports on slide rail 11, drive the gyro wheel through inside motor and roll on slide rail 11, activity is provided with second driving truck 3 on horizontal pole 1, second driving truck 3 is inside to have the gyro wheel to support on horizontal pole 1, drive the gyro wheel through the motor and roll on horizontal pole 1, the fixed intelligent camera 4 that is provided with in second driving truck 3 below, thereby make its drive by intelligent camera 4's inside singlechip control, make first driving truck 12 drive horizontal pole 1 on slide rail 11, make second driving truck 3 drive sprinkler slide on horizontal pole 1, when taking place the condition of a fire, intelligent camera 4 discerns condition, send control instruction through inside singlechip and make motor drive roller roll on horizontal pole 1, thereby it is difficult to carry out the hose 5 to rotate, this water inlet tube 5 is fixed to the hose 5, the hose is rotated to the side of the hose 5, the hose is difficult to be connected to the side of the intercommunication, the hose is equipped with sprinkler, the hose is connected to the side of the sprinkler is 5, the hose is difficult to be connected to the side of the sprinkler, the hose is connected with the sprinkler, the hose is connected with the hose 5, and the hose is connected with the hose 5.
Embodiment two:
the present embodiment discloses a spraying device 5 based on the first embodiment, specifically: the sprinkler 5 is internally provided with a movable groove 501 for providing a moving space for a movable gear 502, a bearing 504 and a hollow tube 503, the movable gear 502 meshed with the gear groove 2 is rotatably arranged in the movable groove 501, the hollow tube 503 is fixedly inserted in the middle of the movable gear 502, when the sprinkler 5 slides on a cross rod 1, the movable gear 502 meshed with the gear groove 2 rotates to drive the hollow tube 503 to rotate together, one end of the hollow tube 503 far away from the movable gear 502 is provided with a plurality of water outlet holes 507, one end of the hollow tube 503 far away from the movable gear 502 is fixedly connected with the bearing 504, the outer ring of the bearing 504 is fixedly connected with an electric push rod 505 connected with an intelligent camera 4 in a signal manner, the electric push rod 505 is fixedly arranged on the inner wall of the movable groove 501, when the intelligent camera 4 finds a fire, an internal singlechip controls the electric push rod 505 to retract to drive the bearing 504 to move downwards, because the inner ring of the bearing 504 is fixedly connected with the hollow tube 503, thereby driving the hollow tube 503 to extend out of the spraying device 5, the water outlet holes 507 are exposed outside, thereby enabling water to be sprayed out of the hollow tube 503 and the water outlet holes 507, when the movable gear 502 rotates, the hollow tube 503 is driven to rotate together, thereby enabling the spraying device 5 to pre-spray water on a path passing through in the moving process, the rotating hollow tube 503 and the water outlet holes 507 also perform rotary spraying, the spraying area is wider, one end of the hollow tube 503 far away from the movable gear 502 passes through the movable groove 501 and then extends out of the spraying device 5, a water outlet pipe 509 is inserted at one end of the hollow tube 503 close to the movable gear 502, the water outlet pipe 509 is of a fixed structure, the hollow tube 503 is of a rotating structure, so that the water outlet pipe 509 is inserted into the hollow tube 503, the water is ensured to flow into the hollow tube 503 from the water outlet pipe 509, the water outlet pipe 509 is fixedly connected with an annular plate 511 inside the hollow tube 503, can prevent that water from spouting from hollow tube 503 top, outlet pipe 509 is fixed in movable tank 501 be provided with intelligent camera signal connection's solenoid valve 510, but the blowout of steerable water, outlet pipe 509 wears out sprinkler 5 after the one end of keeping away from hollow tube 503 and communicates with hose 6, finally with inlet tube 9 together, guarantee that the hydroenergy spouts from hollow tube 503, when sprinkler 5 moves to the fire source department, control electric putter 505 through intelligent camera 4 inside singlechip, electric putter 505 promotes bearing 504 and upwards moves, thereby retract hollow tube 503 into expansion hole 506, the flexible hole 506 that is used for hollow tube 503 is seted up to the movable tank 501 below, fixedly on the inner wall of expansion hole 506 be provided with be used for blocking up apopore 507's rubber sleeve 508, after hollow tube 503 is retracted to expansion hole 506, rubber sleeve 508 blocks up apopore 507, thereby increase hollow tube 503 below water pressure of water, fixedly connected with a plurality of connecting rods 512 on the pipe wall of hollow tube 503 one end of keeping away from movable gear 502, the one end of connecting rod 512 is fixedly connected with baffle 513, the baffle 513 is seted up in the centre, when hollow tube 503 is kept away from hollow tube 503, water is sprayed to the baffle 513, when the water is sprayed to the impact surface is sprayed to the baffle 513 when part is sprayed to the hollow tube 503, thereby the water impact surface is sprayed to the impact surface is increased.
Embodiment III:
the embodiment discloses a recovery device based on the first embodiment, specifically: the recovery device comprises a fixed plate 8 fixedly arranged on the cross rod 1, a rotating shaft 13 is arranged between the two fixed plates 8 in a rotating mode, a winch 7 is fixedly arranged on the rotating shaft 13, a torsion spring 10 fixedly connected between the winch 7 and the fixed plate 8 is sleeved on the rotating shaft 13, one end of the hose 6, far away from the water outlet pipe 509, is fixedly connected to the water inlet pipe 9 after being wound by the winch 7, when the spraying device 5 moves, the hose 6 is pulled, when the spraying device 5 returns, the torsion spring 10 drives the winch 7 to rotate, and accordingly the pulled hose 6 is recovered, the hose 6 cannot be loosened, and the movement of the cross rod 1 is affected.
Working principle: when the intelligent camera 4 discovers fire, firstly, the electromagnetic valve 510 is controlled to be opened through the internal single chip microcomputer, the electric push rod 505 is controlled to be contracted, the hollow pipe 503 extends out of the spraying device 5, then the first driving vehicle 12 and the second driving vehicle 3 are controlled to move in a moving mode to move the spraying device 5 to the fire source, the spraying device 5 drives the movable gear 502 to rotate through the gear groove 2 when moving on the cross rod 1, so that the hollow pipe 503 is driven to rotate, the spraying device 5 can pre-spray water to a path passing by in the moving process, fire spreading is prevented, the spraying device can spray and extinguish fire at any position of a whole house, and the coverage range is wide.
When the spraying device 5 moves to the position right above the fire source, the singlechip controls the electric push rod 505 to extend, the hollow pipe 503 is retracted, the rubber sleeve 508 in the telescopic hole 506 plugs the water outlet 507, so that the water pressure of water outlet in the middle of the hollow pipe 503 is increased, the fire source is extinguished, the water can be continuously sprayed out of the hollow pipe 503, and the condition of re-combustion cannot occur.
When the spraying device 5 moves, the hose 6 is also continuously stretched or retracted, and the hose 6 can be recovered by driving the winch 7 to rotate through the torsion spring 10, so that the hose 6 is always kept in a tightened state.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (8)

1. The utility model provides an intelligent building suspension type fire control platform, includes horizontal pole (1), its characterized in that: the transverse rod (1) is provided with a gear groove (2), the transverse rod (1) is movably erected on two parallel sliding rails (11), and the sliding rails (11) are movably provided with a first driving vehicle (12) for moving the transverse rod (1);
the intelligent fire-extinguishing device is characterized in that a second driving vehicle (3) is movably arranged on the cross rod (1), an intelligent camera (4) is fixedly arranged below the second driving vehicle (3), the first driving vehicle (12) and the second driving vehicle (3) are connected with the intelligent camera (4) through signals, a spraying device (5) for extinguishing fire is fixedly arranged on one side, close to the gear groove (2), of the second driving vehicle (3), a hose (6) is communicated with the spraying device (5), and one end, far away from the spraying device (5), of the hose (6) penetrates through a recovery device and then is communicated with a water inlet pipe (9) fixed on a wall.
2. An intelligent building suspension fire platform according to claim 1, wherein: the novel spraying device is characterized in that a movable groove (501) is formed in the spraying device (5), a movable gear (502) meshed with the gear groove (2) is arranged in the movable groove (501) in a rotating mode, a hollow pipe (503) is fixedly inserted in the middle of the movable gear (502), one end of the hollow pipe (503), far away from the movable gear (502), penetrates through the movable groove (501) and then stretches out of the spraying device (5), a water outlet pipe (509) is inserted in one end, close to the movable gear (502), of the hollow pipe (503), and one end, far away from the hollow pipe (503), of the water outlet pipe (509) is communicated with a hose (6) after penetrating out of the spraying device (5).
3. An intelligent building suspension fire platform according to claim 1, wherein: the recovery device comprises a fixed plate (8) fixedly arranged on the cross rod (1), a rotating shaft (13) is rotatably arranged between the two fixed plates (8), a winch (7) is fixedly arranged on the rotating shaft (13), a torsion spring (10) fixedly connected between the winch (7) and the fixed plate (8) is sleeved on the rotating shaft (13), and one end, far away from the water outlet pipe (509), of the hose (6) is fixedly connected onto the water inlet pipe (9) after being wound by the winch (7).
4. An intelligent building suspension fire platform according to claim 2, wherein: a plurality of apopores (507) have been seted up to one end that movable gear (502) was kept away from to hollow pipe (503), one end fixedly connected with bearing (504) that movable gear (502) was kept away from to hollow pipe (503), bearing (504) outer lane fixedly connected with and intelligent camera (4) signal connection's electric putter (505), electric putter (505) are fixed to be set up on the inner wall of movable groove (501).
5. An intelligent building suspension fire platform according to claim 2, wherein: a plurality of connecting rods (512) are fixedly connected to the pipe wall of one end, far away from the movable gear (502), of the hollow pipe (503), a baffle (513) is fixedly connected to one end, far away from the hollow pipe (503), of the connecting rods (512), and a water spraying hole (514) is formed in the middle of the baffle (513).
6. An intelligent building suspension fire platform according to claim 2, wherein: a telescopic hole (506) for telescopic hollow tube (503) is arranged below the movable groove (501).
7. An intelligent building suspension fire platform according to claim 2, wherein: the water outlet pipe (509) is fixedly connected with an annular plate (511) in the hollow pipe (503), and an electromagnetic valve (510) in signal connection with the intelligent camera is fixedly arranged in the movable groove (501) in the water outlet pipe (509).
8. The intelligent building suspension fire platform of claim 6 wherein: the inner wall of the telescopic hole (506) is fixedly provided with a rubber sleeve (508) for blocking the water outlet hole (507).
CN202223363072.1U 2022-12-14 2022-12-14 Intelligent building suspension type fire control platform Active CN219375947U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223363072.1U CN219375947U (en) 2022-12-14 2022-12-14 Intelligent building suspension type fire control platform

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223363072.1U CN219375947U (en) 2022-12-14 2022-12-14 Intelligent building suspension type fire control platform

Publications (1)

Publication Number Publication Date
CN219375947U true CN219375947U (en) 2023-07-21

Family

ID=87167830

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223363072.1U Active CN219375947U (en) 2022-12-14 2022-12-14 Intelligent building suspension type fire control platform

Country Status (1)

Country Link
CN (1) CN219375947U (en)

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