Water taking track with spraying function
By designing a water intake track with spray, using the spray support pipe and spray head to achieve large-scale spray fire extinguishing, the problem of low fire extinguishing efficiency in short-term large fire situations in the prior art is solved, and the fire extinguishing efficiency is improved and the cost is reduced.
Patent Information
- Application Number
- CN202421045227.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-14
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-05-14
AI Technical Summary
In the case of a short-term fire in large-area fire prevention zones, the robot has low fire extinguishing efficiency, large property losses, and high fire extinguishing costs.
Design a water intake track with spray, including the track body, the spray support pipe, the spray connection pipe and the spray head. The glass balls in the spray head are heated and exploded to spray and extinguish the fire. The fire extinguishing range is large and the fire extinguishing speed is accelerated.
Large-scale spray fire extinguishing has been achieved, fire extinguishing efficiency has been improved, usage cost has been reduced, and robots can quickly extinguish fires.
Smart Images

Figure CN222942837U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of fire fighting, in particular to a water intake track with a sprinkler. Background Art
[0002] In a large-area fire partition, once a fire occurs, the most important thing is to be able to promptly discover the fire point and extinguish it in time. After searching, Chinese patent CN 213760315 U discloses a track-type intelligent fire-fighting robot, including a robot body and a walking track, the robot body is installed on the walking track, the walking track is fixed above the fire partition, the robot body includes a first walking device that cooperates with the walking track, a detection device that can detect the fire partition environment, a first driving device that can drive the first walking device, a fire extinguishing device for extinguishing the fire point, a first power supply device that provides power to the detection device, the first driving device and the fire extinguishing device, and a first control system that can be wirelessly connected to a fire control center. The shortcomings of the above patents are: because fire alarms are complex and diverse, when a large fire occurs in a short time, only robots are used to extinguish the fire, the number of robots is small, the fire extinguishing efficiency is low, the property loss is large, and the number of robots is large, and the fire extinguishing cost is high. Summary of the invention
[0003] The purpose of the utility model is to solve the deficiencies of the prior art and to provide a water-taking track with spraying which has an ingenious structure, can assist a robot in quickly extinguishing a fire, has a large spraying range, has high fire extinguishing efficiency and has low use cost.
[0004] In order to achieve the above purpose, the technical solution adopted by the utility model is:
[0005] A water-intake track with spraying includes a track body, characterized in that: the track body is provided with a track spraying mechanism capable of spraying over a large range, the track spraying mechanism is connected to a water source in the track body, and the track spraying mechanism is connected to the track body so as to realize large-scale spraying fire extinguishing through the track spraying mechanism.
[0006] The track body of the utility model comprises a first water intake track and a second water intake track, the track spray mechanism comprises a spray support pipe, a spray connecting pipe and a spray nozzle, at least one spray support pipe is arranged between the first water intake track and the second water intake track, one end of the spray support pipe is connected with the water source of the first water intake track via a pipeline, and the other end of the spray support pipe is connected with the water source of the second water intake track via a pipeline, spray connecting pipes are arranged on the spray support pipe at intervals, the spray connecting pipe is connected with the spray support pipe via a pipeline joint, and spray nozzles are fixedly arranged at both ends of the spray connecting pipe, so that when a fire occurs, the glass ball in the spray nozzle explodes due to heat and opens to spray and extinguish the fire, the fire extinguishing range is large, and the fire extinguishing speed is accelerated.
[0007] In the utility model, a first water intake pipe is provided in the first water intake track, and the outer wall of the first water intake pipe is fixedly connected to the first water intake track; a second water intake pipe is provided in the second water intake track, and the outer wall of the second water intake pipe is fixedly connected to the second water intake track; one end of the spray support pipe is fixedly connected to the first water intake pipe via a pipe connector, and the other end is fixedly connected to the second water intake pipe via a pipe connector, so as to supply water to the spray support pipe through the first water intake pipe and the second water intake pipe.
[0008] The pipeline connecting piece of the utility model includes a first water intake branch pipe, a pipeline joint and a second water intake branch pipe. The first water intake branch pipe is arranged at intervals in the first water intake track, and the first water intake pipe is provided with a first water intake port. One end of the first water intake branch pipe is fixedly connected to the first water intake port, and the other end is connected to one end of a spray support pipe via a pipeline joint. The second water intake branch pipe is arranged at intervals in the second water intake track, and the second water intake pipe is provided with a second water intake port. One end of the second water intake branch pipe is fixedly connected to the second water intake port, and the other end is connected to the other end of the spray support pipe via a pipeline joint, so as to connect the spray support pipe and the first water intake branch pipe and the second water intake branch pipe through the water intake branch pipe.
[0009] The first water intake branch pipe of the utility model is detachably connected to the first water intake pipe via a pipeline joint and a first water intake port, and the second water intake branch pipe is detachably connected to the second water intake pipe via a pipeline joint and a second water intake port, so as to facilitate installation and replacement.
[0010] The utility model discloses a pipeline connector comprising a first water intake pipe, a first water intake valve, a second water intake pipe, a second water intake valve and a pipeline joint. The first water intake rail is provided with a first water intake pipe, the first water intake rail is provided with a first water intake valve at intervals, the outer wall of the first water intake pipe and the valve body of the first water intake valve are fixedly connected to the first water intake rail, the first water intake valve is connected to the first water intake pipe, the first water intake valve is provided with a first water valve intake pipe, one end of the first water valve intake pipe is fixedly connected to the first water intake valve, and the other end is connected to the spray nozzle via a pipeline joint. One end of the shower support pipe is fixedly connected, a second water intake pipe is provided in the second water intake track, a second water intake valve is arranged at intervals in the second water intake track, the outer wall of the second water intake pipe and the valve body of the second water intake valve are fixedly connected to the second water intake track, the second water intake valve is communicated with the second water intake pipe, a second water valve intake pipe is provided on the second water intake valve, one end of the second water valve intake pipe is fixedly connected to the second water intake valve, and the other end is fixedly connected to the other end of the spray support pipe via a pipe joint, so as to supply water to the spray support pipe through the first water intake valve and the second water intake valve.
[0011] The spray nozzle of the utility model is a glass ball nozzle, so that the glass ball bursts after being heated and spraying starts automatically.
[0012] The above technical solution can also be implemented in the following ways:
[0013] The track sprinkler mechanism of the utility model comprises a sprinkler branch pipe, a sprinkler connecting pipe and a sprinkler nozzle. At least one sprinkler branch pipe is arranged on the track body. The sprinkler branch pipe is arranged vertically on the track body. The sprinkler branch pipe is connected with the water source of the track body through a pipeline connector. Sprinkler connecting pipes are arranged at intervals on the sprinkler support pipe. The sprinkler connecting pipe is connected with the sprinkler support pipe through a pipeline joint. Sprinkler nozzles are fixedly arranged at both ends of the sprinkler connecting pipe. When a fire occurs, the glass ball in the sprinkler nozzle explodes due to heat and opens to sprinkle and extinguish the fire. The fire extinguishing range is large and the fire extinguishing speed is accelerated.
[0014] The utility model provides a water intake pipe in the track body, the outer wall of the water intake pipe is fixedly connected to the track body, and the spray branch pipe is fixedly connected to the water intake pipe via a pipeline connector, so as to supply water to the spray branch pipe through the water intake pipe in the track body.
[0015] The pipeline connector of the utility model includes a water intake branch pipe and a pipeline joint. The water intake branch pipes are arranged at intervals in the track body. The water intake pipe is provided with a water intake port. One end of the water intake branch pipe is fixedly connected to the water intake port, and the other end is fixedly connected to the spray branch pipe via the pipeline joint, so as to connect the spray branch pipe through the water intake branch pipe.
[0016] The water intake branch pipe of the utility model is detachably connected to the water intake pipe via a pipeline joint and a water intake port, so as to facilitate installation and replacement.
[0017] The pipeline connector of the utility model includes a water intake pipe, a water intake valve and a pipeline joint. A water intake pipe is arranged in the track body, and water intake valves are arranged at intervals in the track body. The outer wall of the water intake pipe and the valve body of the water intake valve are fixedly connected with the track body. The water intake valve is communicated with the water intake pipe. A water valve intake pipe is arranged on the water intake valve. One end of the water valve intake pipe is fixedly connected with the water intake valve, and the other end is fixedly connected with the spray branch pipe via a pipeline joint to supply water to the spray branch pipe through the water intake valve.
[0018] The spray nozzle of the utility model is a glass ball nozzle, so that the glass ball bursts after being heated and spraying starts automatically.
[0019] Due to the adoption of the above structure, the utility model has the advantages of ingenious structure, being able to assist the robot in rapid fire extinguishing, large spraying range, high fire extinguishing efficiency, low use cost, etc. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a structural schematic diagram of the utility model.
[0021] Figure 2 This utility model Figure 1Enlarged view of part A in the middle.
[0022] Figure 3 This utility model Figure 1 Enlarged view of part B in the middle.
[0023] Figure 4 This utility model Figure 1 Enlarged view of part C in the middle.
[0024] Figure 5 This utility model Figure 1 Schematic diagram of the connection between the spray support pipe of the middle track spray mechanism and the second water intake pipe in the second water intake track.
[0025] Figure 6 It is another structural schematic diagram of the utility model.
[0026] Figure 7 This utility model Figure 6 Enlarged schematic diagram of the pipe connection part in the middle D part.
[0027] Figure 8 The utility model Figure 6 Schematic diagram of the connection between the spray branch pipe of the mid-track spray mechanism and the water intake pipe.
[0028] Figure numerals: track body 1, first water intake track 2, second water intake track 3, track spray mechanism 4, spray support pipe 5, spray connecting pipe 6, spray nozzle 7, first water intake pipe 8, second water intake pipe 9, pipeline connecting piece 10, pipeline joint 12, second water intake branch pipe 13, first water intake valve 14, first water valve water intake pipe 15, second water intake valve 16, second water valve water intake pipe 17, spray branch pipe 18, pipeline connecting piece 19, water intake pipe 20, water intake valve 21, water valve water intake pipe 22, water intake branch pipe 23. DETAILED DESCRIPTION
[0029] The specific implementation of the utility model is further described in detail below in conjunction with the accompanying drawings.
[0030] Example 1
[0031] As attached Figure 1-5, a water intake track with spraying, comprising a track body 1, characterized in that: the track body 1 comprises a first water intake track 2 and a second water intake track 3, a track spraying mechanism 4 is arranged between the first water intake track 2 and the second water intake track 3, the track spraying mechanism 4 comprises a spraying support pipe 5, a spraying connecting pipe 6 and a spraying nozzle 7, at least one spraying support pipe 5 is arranged between the first water intake track 2 and the second water intake track 3, one end of the spraying support pipe 5 is connected to the water source of the first water intake track 2 through a pipeline, and the other end of the spraying support pipe 5 is connected to the water source of the second water intake track 3 through a pipeline, a spraying connecting pipe 6 is arranged on the spraying support pipe 5 at intervals, the spraying connecting pipe 6 is connected to the spraying support pipe 5 through a pipeline joint, and spraying nozzles 7 are fixedly arranged at both ends of the spraying connecting pipe 6, so that when a fire occurs, the glass ball in the spraying nozzle explodes due to heat and opens to spray and extinguish the fire, the fire extinguishing range is large, and the fire extinguishing speed is accelerated.
[0032] In the utility model, a first water intake pipe 8 is provided in the first water intake track 2, and the outer wall of the first water intake pipe 8 is fixedly connected to the first water intake track 2. A second water intake pipe 9 is provided in the second water intake track 3, and the outer wall of the second water intake pipe 9 is fixedly connected to the second water intake track 3. One end of the spray support pipe 5 is fixedly connected to the first water intake pipe 8 via a pipe connector 10, and the other end is fixedly connected to the second water intake pipe 9 via a pipe connector 10, so as to supply water to the spray support pipe through the first water intake pipe and the second water intake pipe.
[0033] The pipe connector 10 of the utility model includes a first water intake branch pipe, a pipe joint 12 and a second water intake branch pipe 13. The first water intake rail 2 is provided with a first water intake port, the first water intake pipe 8 is provided with a first water intake port, one end of the first water intake branch pipe is fixedly connected to the first water intake port, and the other end is connected to one end of the spray support pipe 5 via the pipe joint 12. The second water intake rail 3 is provided with a second water intake port, the second water intake pipe 9 is provided with a second water intake port, one end of the second water intake branch pipe 13 is fixedly connected to the second water intake port, and the other end is connected to the other end of the spray support pipe 5 via the pipe joint 12, so as to connect the spray support pipe and the first water intake branch pipe and the second water intake branch pipe through the water intake branch pipe.
[0034] In the present invention, the first water intake branch pipe is detachably connected to the first water intake pipe 8 via the pipeline joint 12 and the first water intake port, and the second water intake branch pipe 13 is detachably connected to the second water intake pipe 9 via the pipeline joint 12 and the second water intake port, so as to facilitate installation and replacement.
[0035] The pipeline connector 10 of the utility model comprises a first water intake pipe 8, a first water intake valve 14, a second water intake pipe 9, a second water intake valve 16 and a pipeline joint 12. The first water intake rail 2 is provided with a first water intake pipe 8, and the first water intake valve 14 is arranged in the first water intake rail 2 at intervals. The outer wall of the first water intake pipe 8 and the valve body of the first water intake valve 14 are fixedly connected to the first water intake rail 2. The first water intake valve 14 is connected to the first water intake pipe 8. The first water intake valve 14 is provided with a first water valve intake pipe 15. One end of the first water valve intake pipe 15 is fixedly connected to the first water intake valve 14, and the other end is connected to the first water intake valve 14 through the pipeline joint. 12 is fixedly connected to one end of the spray support pipe 5, a second water intake pipe 9 is provided in the second water intake rail 3, a second water intake valve 16 is spaced apart in the second water intake rail 3, the outer wall of the second water intake pipe 9 and the valve body of the second water intake valve 16 are fixedly connected to the second water intake rail 3, the second water intake valve 16 is communicated with the second water intake pipe 9, a second water valve intake pipe 17 is provided on the second water intake valve 16, one end of the second water valve intake pipe 17 is fixedly connected to the second water intake valve 16, and the other end is fixedly connected to the other end of the spray support pipe 5 via the pipe joint 12, so as to supply water to the spray support pipe through the first water intake valve and the second water intake valve.
[0036] As attached Figure 1-5 The track body 1 includes a first water intake track 2 and a second water intake track 3. The first water intake track 2 and the second water intake track 3 have the same structure. Water intake tracks can be respectively set on both sides of the first water intake track 2. The first water intake track 2 is connected to the water intake tracks on both sides through a hanging track reversing device. The hanging track reversing device can refer to the utility model patent with patent number CN217097771U previously applied by the applicant. The water intake tracks on both sides of the first water intake track 2 are respectively connected to the two ends of the second water intake track 3 through the hanging track reversing device to form a square ring track, as shown in the attached Figure 1 , these four water intake rails can be fixed at a high altitude where fire is prone to occur through a lifting mechanism. There is a fire-fighting robot under the water intake rail. The fire-fighting robot connects with the water intake valve to take water. The fire-fighting robot adopts existing technology, which will not be repeated here. The spray support pipe 5 and the spray connection pipe 6 can be fixedly connected through a three-way joint and a branch pipe. The fixed connection method can be welding or threaded connection. The spray support pipe 5 is connected to the spray connection pipe 6 through a three-way joint and a branch pipe. There are two ways of pipe connectors 10 between the track spray mechanism 4 and the first water intake rail 2 and the second water intake rail 3. Taking the second water intake rail 3 as an example, one is as shown in the attached Figure 1-3 The water of the second water intake pipe 9 of the second water intake track 3 passes through the second water intake pipe 17 of the second water intake valve 15, and then passes through the pipeline joint 12 to reach the spray support pipe 5. The second method is as shown in the attached Figure 5The water of the second water intake pipe 9 of the second water intake track 3 passes through the second water intake branch pipe 13 and then passes through the pipe joint 12 to reach the spray support pipe 5. In the utility model, the attached Figure 5 In the embodiment, the second water intake branch pipe 13 and the second water intake pipe 9 can be connected by welding or by threaded connection. When the threaded connection is adopted, a pipe joint can be fixed on the second water intake branch pipe 9, and the pipe joint is threadedly connected to the second water intake branch pipe 13. In these two ways, the spray support pipe 5 can draw water from the water intake pipe in the water intake track, or from the water intake valve in the water intake track, which can be set according to the needs.
[0037] The spray nozzle 7 in the utility model adopts a glass ball nozzle. The glass in the glass ball nozzle generally explodes at 68° or above. When a fire occurs, when the temperature rises to a certain level, the glass in the glass ball nozzle bursts, and the water in the first water intake pipe 8 of the first water intake track 2 and the second water intake pipe 9 of the second water intake track 3 is sprayed out through the pipeline joint 12, the spray support pipe 5, the spray connecting pipe 6, and the spray nozzle 7, so as to realize large-scale spray fire extinguishing. A plurality of groups of spray support pipes 5 can be arranged between the first water intake track 2 and the second water intake track 3, and a plurality of spray connecting pipes 6 can be arranged on the spray support pipe 5, which makes it possible to arrange a plurality of spray nozzles 7 in the entire space, so as to realize large-area spraying, and can quickly extinguish fire, with high fire extinguishing efficiency, convenient pipeline arrangement, and low use cost.
[0038] Example 2
[0039] As attached Figure 6-8 A water-intake track with spraying comprises a track body 1, characterized in that: a track spraying mechanism 4 is arranged on the track body 1, the track spraying mechanism 4 comprises a spray branch pipe 18, a spray connecting pipe 6 and a spray nozzle 7, at least one spray branch pipe 18 is arranged on the track body 1, the spray branch pipe 18 is arranged vertically on the track body 1, the spray branch pipe 18 is connected to the water source of the track body 1 through a pipeline connector 19, spray connecting pipes 6 are arranged at intervals on the spray support pipe 5, the spray connecting pipe 6 is connected to the spray support pipe 5 through a pipeline joint, and spray nozzles 7 are fixedly arranged at both ends of the spray connecting pipe 6, so that when a fire occurs, the glass ball in the spray nozzle explodes due to heat and opens to spray and extinguish the fire, the fire extinguishing range is large, and the fire extinguishing speed is accelerated.
[0040] The track body 1 of the utility model is provided with a water intake pipe 20, the outer wall of the water intake pipe 20 is fixedly connected to the track body 1, and the spray branch pipe 18 is fixedly connected to the water intake pipe 20 via a pipeline connector 19, so as to supply water to the spray branch pipe through the water intake pipe in the track body.
[0041] The pipeline connector 19 of the utility model includes a water intake branch pipe 23 and a pipeline joint. The water intake branch pipe 23 is arranged at intervals in the track body 1. The water intake pipe 20 is provided with a water intake port. One end of the water intake branch pipe 23 is fixedly connected to the water intake port, and the other end is fixedly connected to the spray branch pipe 18 via a pipeline joint, so as to connect the spray branch pipe through the water intake branch pipe.
[0042] The water intake branch pipe 23 of the utility model is detachably connected to the water intake pipe 20 via a pipeline joint and a water intake port, so as to facilitate installation and replacement.
[0043] The pipeline connector 19 of the utility model includes a water intake pipe 20, a water intake valve 21 and a pipeline joint. The track body 1 is provided with a water intake pipe 20, and the track body 1 is provided with water intake valves 21 at intervals. The outer wall of the water intake pipe 20 and the valve body of the water intake valve 21 are fixedly connected to the track body 1. The water intake valve 21 is connected to the water intake pipe 20. A water valve intake pipe 22 is provided on the water intake valve 21. One end of the water valve intake pipe 22 is fixedly connected to the water intake valve 21, and the other end is fixedly connected to the spray branch pipe 18 via a pipeline joint to supply water to the spray branch pipe through the water intake valve.
[0044] As attached Figure 6-8 It is another embodiment of the utility model. In this embodiment, the track body 1 can be provided with only one water intake track. The water intake track is provided with multiple spray branch pipes 18 at intervals along the water flow direction. Multiple spray connection pipes 6 are provided at intervals on each spray branch pipe 18. The spray branch pipe 18 and the spray connection pipe 6 can be fixedly connected through a three-way joint and a branch pipe. The spray branch pipe 18 is connected to the spray connection pipe 6 through the three-way joint and the branch pipe. Spray nozzles 7 are installed at both ends of each spray connection pipe. The spray nozzles 7 are glass ball nozzles. After being heated, The firefighting robot and the firefighting robot on the water intake track are connected by a hanging track reversing device. The firefighting robot and the firefighting robot take water, walk and extinguish fire on the water intake track in the same way as the prior art, which will not be described in detail. In this embodiment, there are two ways to connect each sprinkler branch pipe 18 to the track body 1. One is as shown in the attached figure. Figure 7 The spray branch pipe 18 is connected to the water intake pipe 20 through the water valve intake pipe 22 of the water intake valve 21. Figure 8 The spray branch pipe 18 is connected to the water intake pipe 20 via the water intake branch pipe 23. Both methods can be set according to needs.
[0045] When a fire occurs, when the temperature rises to a certain level, the glass in the glass ball nozzle explodes, and the water in the water intake pipe 20 of the track body 1 flows through the pipeline connection 19 into the sprinkler branch pipe 18, and then passes through the sprinkler connecting pipe 6 and is sprayed out through the sprinkler nozzle 7 to achieve large-scale sprinkler fire extinguishing.
[0046] Due to the adoption of the above structure, the utility model has the advantages of ingenious structure, being able to assist the robot in rapid fire extinguishing, large spraying range, high fire extinguishing efficiency, low use cost, etc.
Claims
1. A water intake track with a sprinkler, comprising a track body (1), characterized in that: The track body (1) is provided with a track spray mechanism (4) capable of spraying over a wide range. The track spray mechanism (4) is connected to a water source in the track body (1). The track spray mechanism (4) is connected to the track body (1). The track body (1) comprises a first water intake track (2) and a second water intake track (3). The track spray mechanism (4) comprises a spray support pipe (5), a spray connection pipe (6) and a spray nozzle (7). At least one spray support pipe (5) is provided between the first water intake track (2) and the second water intake track (3). One end of the spray support pipe (5) is connected to the water source of the first water intake track (2) via a pipeline, and the other end is connected to the water source of the second water intake track (3) via a pipeline. Spray connection pipes (6) are arranged at intervals on the spray support pipe (5). The spray connection pipe (6) is connected to the spray support pipe (5) via a pipeline joint. Spray nozzles (7) are fixedly provided at both ends of the spray connection pipe (6).
2. A water intake track with a sprinkler according to claim 1, characterized in that: A first water intake pipe (8) is provided in the first water intake track (2), and the outer wall of the first water intake pipe (8) is fixedly connected to the first water intake track (2); a second water intake pipe (9) is provided in the second water intake track (3), and the outer wall of the second water intake pipe (9) is fixedly connected to the second water intake track (3); one end of the spray support pipe (5) is fixedly connected to the first water intake pipe (8) via a pipeline connector (10), and the other end is fixedly connected to the second water intake pipe (9) via the pipeline connector (10).
3. A water intake track with spraying according to claim 2, characterized in that: The pipeline connector (10) comprises a first water intake branch pipe, a pipeline joint (12) and a second water intake branch pipe (13); the first water intake rail (2) is provided with a first water intake port, the first water intake pipe (8) is provided with a first water intake port, one end of the first water intake branch pipe is fixedly connected to the first water intake port, and the other end is connected to one end of a spray support pipe (5) via a pipeline joint (12); the second water intake rail (3) is provided with a second water intake port, the second water intake pipe (9) is provided with a second water intake port, one end of the second water intake branch pipe (13) is fixedly connected to the second water intake port, and the other end is connected to the other end of the spray support pipe (5) via a pipeline joint (12).
4. A water intake track with spraying according to claim 3, characterized in that: The first water intake branch pipe is detachably connected to the first water intake pipe (8) via a pipeline joint (12) and a first water intake port, and the second water intake branch pipe (13) is detachably connected to the second water intake pipe (9) via a pipeline joint (12) and a second water intake port.
5. A water intake track with spraying according to claim 2, characterized in that: The pipeline connector (10) comprises a first water intake valve (14), a second water intake valve (16) and a pipeline joint (12); the first water intake valve (14) is arranged in a spaced relationship inside the first water intake rail (2); the valve body of the first water intake valve (14) is fixedly connected to the first water intake rail (2); the first water intake valve (14) is connected to the first water intake pipe (8); the first water intake valve (14) is provided with a first water valve intake pipe (15); one end of the first water valve intake pipe (15) is fixedly connected to the first water intake valve (14); the other end of the first water valve intake pipe (15) is connected to the first water intake valve (14) via a pipeline. The joint (12) is fixedly connected to one end of the spray support pipe (5); a second water intake valve (16) is provided in the second water intake rail (3); a valve body of the second water intake valve (16) is fixedly connected to the second water intake rail (3); the second water intake valve (16) is connected to the second water intake pipe (9); a second water valve intake pipe (17) is provided on the second water intake valve (16); one end of the second water valve intake pipe (17) is fixedly connected to the second water intake valve (16); and the other end is fixedly connected to the other end of the spray support pipe (5) via the pipe joint (12).
6. A water intake track with a sprinkler according to any one of claims 1 to 5, characterized in that: The spray nozzle (7) is a glass ball nozzle.
7. A water intake track with a sprinkler, comprising a track body (1), characterized in that: The track body (1) is provided with a track spray mechanism (4) capable of spraying over a wide range. The track spray mechanism (4) is connected to a water source in the track body (1). The track spray mechanism (4) is connected to the track body (1). The track spray mechanism (4) comprises a spray branch pipe (18), a spray connecting pipe (6) and a spray nozzle (7). At least one spray branch pipe (18) is provided on the track body (1). The spray branch pipe (18) is arranged vertically to the track body (1). The spray branch pipe (18) is connected to the water source of the track body (1) via a pipeline connector (19). Spray connecting pipes (6) are arranged at intervals on the spray branch pipe (18). The spray connecting pipe (6) is connected to the spray branch pipe (18) via a pipeline joint. Spray nozzles (7) are fixedly provided at both ends of the spray connecting pipe (6).
8. A water intake track with spraying according to claim 7, characterized in that: A water intake pipe (20) is provided in the track body (1), the outer wall of the water intake pipe (20) is fixedly connected to the track body (1), the spray branch pipe (18) is connected to the water intake pipe (20) via a pipeline connector (19), the pipeline connector (19) comprises a water intake branch pipe (23) and a pipeline joint, water intake branch pipes (23) are arranged at intervals in the track body (1), a water intake port is provided on the water intake pipe (20), one end of the water intake branch pipe (23) is detachably connected to the water intake pipe (20) via the pipeline joint and the water intake port, and the other end is fixedly connected to the spray branch pipe (18) via the pipeline joint.
9. The water intake track with spraying according to claim 7, characterized in that: A water intake pipe (20) is provided in the track body (1), the outer wall of the water intake pipe (20) is fixedly connected to the track body (1), the spray branch pipe (18) is connected to the water intake pipe (20) via a pipeline connector (19), the pipeline connector (19) comprises a water intake pipe (20), a water intake valve (21) and a pipeline joint. A water intake pipe (20) is provided in the track body (1), a water intake valve (21) is provided at intervals in the track body (1), the outer wall of the water intake pipe (20) and the valve body of the water intake valve (21) are fixedly connected to the track body (1), the water intake valve (21) is connected to the water intake pipe (20), a water valve intake pipe (22) is provided on the water intake valve (21), one end of the water valve intake pipe (22) is fixedly connected to the water intake valve (21), and the other end is fixedly connected to the spray branch pipe (18) via a pipeline joint.
10. A water intake track with a sprinkler according to any one of claims 7 to 9, characterized in that: The spray nozzle (7) is a glass ball nozzle.
Citation Information
Patent Citations
Rail type intelligent fire extinguishing robot
CN213760315U
Lifting rail reversing device
CN217097771U