CN220488928U - Intelligent gas pipeline anti-collision early warning device - Google Patents

Intelligent gas pipeline anti-collision early warning device Download PDF

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Publication number
CN220488928U
CN220488928U CN202322131129.3U CN202322131129U CN220488928U CN 220488928 U CN220488928 U CN 220488928U CN 202322131129 U CN202322131129 U CN 202322131129U CN 220488928 U CN220488928 U CN 220488928U
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CN
China
Prior art keywords
early warning
shell
camera
gas pipeline
alarm
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CN202322131129.3U
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Chinese (zh)
Inventor
曹祝贵
张亮
王浩
左广宇
廖威
何俊龙
贾特
李静娜
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Shenzhen Gas Corp Ltd
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Shenzhen Gas Corp Ltd
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Priority to CN202322131129.3U priority Critical patent/CN220488928U/en
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Abstract

The application relates to an intelligent gas pipeline anticollision precaution device relates to pipeline early warning technical field. The device comprises a shell, a camera shooting assembly and an early warning alarm, wherein an accommodating cavity is formed in the shell, and a circuit board is arranged in the accommodating cavity; the camera shooting assembly is arranged on the top of the shell and is electrically connected with the circuit board; the early warning alarm is arranged at the top of the shell, the early warning alarm is electrically connected with the circuit board, and an included angle between a connecting line between the camera shooting assembly and the early warning alarm and the orientation of the camera shooting assembly is an acute angle. The camera assembly may capture the passage of the ground recording vehicle. When a vehicle passes through, the camera shooting assembly collects information, and the early warning alarm can carry out alarm early warning after receiving signals, so that the vehicle is far away, scratch and impact with a gas pipeline are avoided, and the problem that the existing camera and the explosion flash lamp occupy a larger space side by side is solved.

Description

Intelligent gas pipeline anti-collision early warning device
Technical Field
The utility model relates to the technical field of pipeline early warning, in particular to an intelligent gas pipeline anti-collision early warning device.
Background
Today, some communities have many gas pipelines, which are generally installed on walls, and community access vehicles (large trucks, concrete mixer trucks, fire trucks, sanitation lights) may scratch the gas pipelines, which have safety risks.
The utility model patent with publication number CN215117791U discloses a road intersection branch warning machine, which comprises a flashing lamp arranged at the top of a frame and a camera arranged at the top of the frame. The camera sets up side by side with exploding the flashing light, and occupation space is great easily, probably influences the travel of vehicle.
Aiming at the related technology, the problem that the existing camera and the explosion flash lamp occupy larger space side by side exists.
Disclosure of Invention
In view of the defects of the prior art, the utility model aims to provide an intelligent gas pipeline anti-collision early warning device, which aims to solve the problem that the existing camera and the explosion flash lamp occupy a larger space side by side.
The application provides an intelligent gas pipeline anticollision precaution device adopts following technical scheme: an intelligent gas pipeline collision avoidance precaution device, comprising:
the shell is internally provided with an accommodating cavity, and a circuit board is arranged in the accommodating cavity;
the camera shooting assembly is arranged at the top of the shell and is electrically connected with the circuit board;
the early warning alarm is arranged at the top of the shell and is electrically connected with the circuit board;
the camera shooting assembly comprises a camera shooting assembly, a warning alarm and a warning alarm, wherein an included angle between the camera shooting assembly and the direction of the camera shooting assembly is an acute angle.
Optionally, the early warning alarm comprises an alarm shell, a light emitting module and a sound emitting module, wherein an alarm cavity is formed in the alarm shell, and the light emitting module is arranged in the alarm cavity;
wherein, the color of the light emitted by the light emitting module is at least two.
Optionally, the decibel values of the sound emitted by the sound emitting module are at least two.
Optionally, still be provided with data storage module and data networking module in the holding cavity, data storage module with the circuit board electricity is connected, data networking module with the circuit board electricity is connected, data storage module is used for the storage the video recording that the subassembly was shot makes a video recording, data networking module is used for with the video recording that the subassembly was made a video recording was shot is sent to background server, cell-phone or computer terminal.
Optionally, be provided with infrared camera module in the subassembly of making a video recording, infrared camera module is used for realizing shooting at night.
Optionally, the camera assembly includes:
the connecting rod is arranged at the top of the shell;
the angle adjusting component is arranged on the connecting rod;
the camera is arranged on the angle adjusting component;
the angle adjusting assembly comprises an angle connecting rod and an angle adjusting ball, the angle adjusting ball is connected to one end of the angle connecting rod, the other end of the angle connecting rod is connected with the camera, and an angle adjusting groove matched with the angle adjusting ball in an embedded mode is formed in one end, close to the camera, of the connecting rod.
Optionally, the connecting rod is the telescopic link, the telescopic link is used for adjusting the camera to distance between the casing.
Optionally, the housing is provided with a fixed connection assembly;
the fixed connection assembly comprises a fixed connection column, and one end of the fixed connection column is connected with the shell.
Optionally, the fixed connection assembly further comprises a mounting connection plate, the mounting connection plate is arranged on the side wall of the shell, and a mounting hole is formed in the mounting connection plate.
Optionally, the fixed connection assembly further comprises a penetrating fixing piece, the penetrating fixing piece is arranged on the side wall of the shell, and a penetrating through hole is formed in the penetrating fixing piece.
Compared with the prior art, the embodiment of the utility model has the following advantages:
the anti-collision early warning device is installed at a position close to a gas pipeline, when a vehicle passes through a shooting area of the shooting assembly, the shooting assembly can collect information, the early warning alarm device can carry out alarm early warning after receiving signals, and because an included angle between a connecting line between the shooting assembly and the early warning alarm device and between the directions of the shooting assembly is an acute angle, when the vehicle enters a shooting range of the shooting assembly, an owner can first see the early warning alarm device, the shooting assembly can not shield the alarm device, the warning effect of the early warning alarm device is improved, and the problem that the existing camera and the explosion flash lamp occupy a larger space side by side is solved.
Drawings
In order to more clearly illustrate the embodiments of the present utility model or the technical solutions in the prior art, the drawings that are required to be used in the embodiments or the description of the prior art will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments described in the present utility model, and other drawings may be obtained according to the drawings without inventive effort to those skilled in the art.
FIG. 1 is a schematic diagram of the overall structure of an intelligent gas pipeline anti-collision pre-warning device in an embodiment of the application;
FIG. 2 is an exploded view of a housing of the intelligent gas pipeline collision avoidance pre-warning device in an embodiment of the present application;
fig. 3 is a schematic structural diagram of a door opening and closing of the intelligent gas pipeline anti-collision pre-warning device in the embodiment of the application;
FIG. 4 is a schematic structural view of a housing of the intelligent gas pipeline collision avoidance precaution device in an embodiment of the present application;
FIG. 5 is an exploded view of the housing of the intelligent gas pipeline anti-collision pre-warning device and between the fixed connection post and the installation connection plate in the embodiment of the application;
FIG. 6 is a schematic structural diagram of an early warning alarm of the intelligent gas pipeline anti-collision early warning device in the embodiment of the application;
fig. 7 is a schematic diagram of an installation position of an anti-collision pre-warning device in the intelligent gas pipeline anti-collision pre-warning device in the embodiment of the application.
Reference numerals illustrate:
1. a housing; 11. a circuit board; 12. a wire guide; 13. a rain cover; 14. a communication hole; 141. a protrusion; 15. opening and closing a door; 151. an abutment groove; 152. a lock core; 1521. a lock hole; 2. a camera assembly; a 21 camera; 211. early warning and identifying areas; 2111. a first early warning identification area; 2112. a second early warning identification area; 2113. a third early warning identification area; 22. a connecting rod; 3. an early warning alarm; 31. an alarm housing; 311. a light-transmitting case; 312. a mounting base; 4. a fixed connection assembly; 41. fixing the connecting column; 411. a connecting disc; 42. installing a connecting plate; 421. a first connection plate; 422. a second connecting plate; 4221. a mounting groove; 4222. a mounting hole; 43. penetrating the fixing piece; 431. penetrating into the through hole.
Detailed Description
In order to make the present utility model better understood by those skilled in the art, the following description will make clear and complete descriptions of the technical solutions of the embodiments of the present utility model with reference to the accompanying drawings in which it is apparent that the described embodiments are only some embodiments of the present utility model, 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.
The present application is described in further detail below in conjunction with the drawings attached to the specification.
The embodiment of the application discloses an intelligent gas pipeline anticollision precaution device.
As shown in fig. 1, 2 and 7, an intelligent gas pipeline anti-collision early warning device comprises a shell 1, a camera shooting assembly 2 and an early warning alarm 3, wherein a containing cavity is formed in the shell 1, and a circuit board 11 is arranged in the containing cavity; the camera assembly 2 is arranged on the top of the shell 1, and the camera assembly 2 is electrically connected with the circuit board 11; the early warning alarm 3 sets up at casing 1 top, and early warning alarm 3 is connected with the circuit board 11 electricity, and wherein, the contained angle between line and the subassembly 2 of making a video recording between subassembly 2 and the early warning alarm 3 orientation is the acute angle. The casing 1 is arranged at a position close to the gas pipeline at the roadside, and the casing 1 is arranged between the automobile driving route and the gas pipeline.
The anti-collision early warning device is installed at a position close to a gas pipeline, when a vehicle moves from a road to a shooting area of the shooting assembly 2, the shooting assembly 2 can acquire information and transmit the information to the circuit board 11 for processing, the shooting assembly 2 adopts the vehicle identification shooting assembly in the prior art, whether the vehicle exists in the road image or not is judged by acquiring the road image (such as a patent document CN205388826U, CN114026624A, CN113449624A and the like), if the vehicle exists in the road image, a signal is sent to the early warning alarm device 3, the early warning alarm device 3 can carry out warning early warning after receiving the signal (the vehicle identification and the signal transmission are all of the prior art), and because an included angle between the shooting assembly 2 and the early warning alarm device 3 and between the shooting assembly 2 is an acute angle, when the vehicle enters the shooting range of the shooting assembly 2, a vehicle owner can see the early warning alarm device 3 at first, the shooting assembly 2 can not shield the early warning alarm device 3, the warning effect of the early warning alarm device 3 is improved, and the problem that the existing camera and the explosion flash lamp occupy a large space side by side is solved.
Specifically, as shown in fig. 1, 2, 6 and 7, the early warning alarm 3 includes an alarm housing 31, a light emitting module and a sound emitting module, an alarm cavity is formed inside the alarm housing 31, the light emitting module is disposed in the alarm cavity, wherein at least two colors of light emitted by the light emitting module are provided, at least two decibel values of sound emitted by the sound emitting module are provided, and the light emitting module and the sound emitting module are electrically connected with the circuit board 11.
The alarm housing 31 includes a light-transmitting shell 311 and a mounting base 312, the mounting base 312 is columnar, the light-transmitting shell 311 is covered on the mounting base 312, the light-emitting module is arranged on the mounting base 312, and the light-transmitting shell 311 is made of transparent material capable of transmitting light.
The sounding module can be integrally installed with the light-emitting module or can be detachably installed with the light-emitting module.
When the sounding module is integrally installed, the sounding module is arranged on the installation base 312, a sounding hole is formed in the side wall of the installation base 312, and sound generated by the sounding module can be transmitted to the outside through the sounding hole. The integrated design saves space and is convenient for the arrangement of the circuit.
When the sounding module is of a split design, the sounding module is disposed at a position close to the early warning recognition area 211, such as an edge of the early warning recognition area or a position in the early warning recognition area, which does not affect the passing of the vehicle. Thus, when the vehicle enters the early warning recognition area 211, the driver can more clearly hear the prompt tone emitted by the sounding module so as to quickly respond.
In this embodiment, the image capturing assembly 2 forms an early warning recognition area 211 in the area captured by the image capturing assembly, when a vehicle enters the early warning recognition area 211, the early warning alarm 3 receives a signal, the light emitting module can emit light that flashes at intervals, and the sound emitting module can emit prompt tones for dispersing the vehicle entering the early warning recognition area 211. Specifically, when the vehicle is at different positions on the road (or the early warning recognition area 211), that is, when the distance between the vehicle and the intelligent gas pipeline anti-collision early warning device is different, the position of the vehicle in the road image captured by the image capturing component 2 is different, the position of the vehicle in the road image can be determined, and the distance between the vehicle and the intelligent gas pipeline anti-collision early warning device can be determined. In this embodiment, the early warning recognition area 211 may include a first early warning recognition area 2111, a second early warning recognition area 2112, and a third early warning recognition area 2113. The distance from the first pre-warning recognition area 2111 to the pre-warning device, the distance from the second pre-warning recognition area 2112 to the pre-warning device, and the distance from the third pre-warning recognition area 2113 to the pre-warning device decrease in sequence. Other sensors may also be used to determine the distance between the vehicle and the intelligent gas pipeline collision avoidance precaution, for example, infrared distance sensors are used to monitor the vehicle position in the patent publication CN 216429187U.
When the vehicle first enters the first early warning recognition area 2111, the light emitting module receives the signal, the light emitting module emits yellow light which flashes at intervals, the sound emitting module receives the signal and emits voice broadcasting content for reminding the vehicle, namely, an overhead gas pipeline is arranged in front of the voice broadcasting content, the vehicle is required to be safely driven, fire accidents are avoided, and the process is repeated for three times at intervals.
When a vehicle enters the second early warning recognition area 2112 through the first early warning recognition area 2111, the light emitting module receives signals, the light emitting module receiving the command emits red light with strong warning effect at intervals, and meanwhile, the sound emitting module receives signals and improves the volume decibel of voice broadcasting content of the reminding vehicle.
When the vehicle enters the third early warning recognition area 2113 through the second early warning recognition area 2112, the light emitting module receives signals, the light emitted by the light emitting module is red and yellow light which alternately flashes, and meanwhile, the sound emitting module emits sound volume decibels for reminding the vehicle of voice broadcasting content to be improved again. It should be noted that the present utility model is not limited by yellow light and red light emitted by the light emitting module, but may be other light with different colors, and is not limited by broadcast content and repetition number emitted by the sound emitting module, but may be other different broadcast content, and the broadcast repetition number may be one, two, four or more times.
An infrared camera module is arranged in the camera assembly 2 and is used for shooting at night.
Specifically, through setting up infrared camera module for anticollision precaution device still can normally work in the night, has improved anticollision precaution device's practicality.
The accommodating cavity is also internally provided with a data storage module and a data networking module. The data storage module and the data networking module are both electrically connected to the circuit board 11. The data storage module is used for storing the video shot by the camera shooting assembly 2, and the data networking module is used for sending the video shot by the camera shooting assembly 2 to a background server or to a mobile phone or a computer terminal.
As shown in fig. 1, 2 and 4, the overall shape of the housing 1 is rectangular, and the size of the housing 1 is 300 mm×180 mm×220 mm. An energy storage battery is further arranged in the accommodating cavity and is electrically connected with the circuit board. The side wall of the shell 1 is provided with a wire guide 12, and wires of the camera assembly 2 and the early warning alarm 3 can extend into the accommodating cavity through the wire guide 12 to be electrically connected with the circuit board 11.
The outer circumference of the wire guide 12 is also provided with a rain cover 13, the lower side of the rain cover 13 is communicated with the outside, and wires can extend into the rain cover 13 from the lower side of the rain cover 13 so as to pass through the wire guide 12. Through the setting of rain-proof cover 13, rainy day rainwater can leave along rain-proof cover 13 and can not flow into the holding cavity through wire guide 12, has effectively protected circuit board 11 in the holding cavity to be drenched.
The side of the housing 1 opposite to the wire guide 12 is provided with a communication hole 14, and the communication hole 14 communicates the accommodating cavity with the outside. The circuit board 11 in the accommodation chamber can be repaired or replaced through the communication hole 14.
The communication hole 14 is rectangular in shape as a whole, and a protrusion 141 extends outward around the hole of the communication hole 14.
As shown in fig. 2 and 3, a switch door 15 is provided on one surface of the communication hole 14, one side of the switch door 15 is hinged to one side of the side surface of the housing 1, an abutment groove 151 is provided on one surface of the switch door 15 facing the communication hole 14, the abutment groove 151 is rectangular in shape, and the notch size of the abutment groove 151 is larger than the opening size of the communication hole 14. The lock core 152 is worn to be equipped with by the tank bottom of butt groove 151, and the one end of lock core 152 is provided with lockhole 1521, and the one end that is provided with lockhole 1521 on the lock core 152 is passed the tank bottom of butt groove 151 and is stretched out outside, and when switch door 15 was closed, lock core 152 can pass intercommunicating pore 14 and get into the holding cavity, and lock core 152 rotates when lock core 152 is rotated through lockhole 1521 at this moment, makes lock core 152 and casing 1 inner wall joint, realizes that switch door 15 and casing 1's locking is fixed.
When the switch door 15 is closed, a surface of the switch door 15 facing the housing 1 is abutted against the outer surface of the housing 1, and the projection 141 may be abutted against the bottom of the groove 151. Double-layer sealing is achieved, the sealing performance of the accommodating cavity is improved, and when rainy weather is met, external rainwater is difficult to enter the accommodating cavity through the switch door 15 due to the two-layer sealing structure between the switch door 15 and the shell 1.
As shown in fig. 1, the camera assembly 2 includes a connection rod 22, an angle adjustment assembly, and a camera 21, the connection rod 22 being disposed at the top of the housing 1; the angle adjusting component is arranged on the connecting rod 22; the camera 21 is provided to the angle adjustment assembly.
The angle adjustment assembly comprises an angle connecting rod and an angle adjusting ball, the angle adjusting ball is connected to one end of the angle connecting rod, the other end of the angle connecting rod is connected with the camera 21, and an angle adjusting groove matched with the angle adjusting ball in an embedded mode is formed in one end, close to the camera 21, of the connecting rod 22.
Specifically, the connecting rod 22 is a telescopic rod for adjusting the distance between the camera 21 and the housing 1. The connecting rod 22 comprises a first connecting rod and a second connecting rod, one end of the first connecting rod is fixed on the top surface of the shell 1, an insertion hole is formed in the other end of the first connecting rod, the second connecting rod can be inserted into the insertion hole, a threaded hole is formed in the rod body of the first connecting rod, the threaded hole is close to one end, provided with the insertion hole, of the first connecting rod, the threaded hole is communicated with the insertion hole, and a threaded plug is arranged on the threaded hole.
When the height of the camera 21 needs to be adjusted, the second connecting rod is made to perform displacement adjustment in the communication hole 14, and after the position of the second connecting rod is adjusted, the threaded plug is hung and screwed, so that one end of the threaded plug is finally propped against the rod body of the second connecting rod in the insertion hole, and the position of the second connecting rod can be fixed.
The angle adjustment groove sets up the tip at the second connecting rod, and angle adjustment ball embedding is in the angle adjustment groove, and angle adjustment ball can carry out space rotation in the angle adjustment groove, realizes carrying out the adjustment of angle to camera 21.
As shown in fig. 1, 4 and 5, the housing 1 is provided with a fixed connection assembly 4. The fixed connection assembly 4 comprises a fixed connection column 41, and one end of the fixed connection column 41 is connected with the shell 1.
Specifically, one end of the fixed connection column 41 is provided with a connection disc 411, four threaded holes are formed in the connection disc 411 at intervals, and the fixed connection column 41 is in threaded connection with the bottom surface of the shell 1 through the connection disc 411. The fixed connection column 41 is located at the middle position of the bottom surface of the housing 1, and when the anti-collision pre-warning device needs to be installed, the other end of the fixed connection column 41 can be inserted or welded at a required position.
The fixed connection assembly 4 further comprises a mounting connection plate 42, wherein the mounting connection plate 42 is arranged on the side wall of the shell 1, and mounting holes 4222 are formed in the mounting connection plate 42.
Specifically, the mounting connection plate 42 includes a first connection plate 421 and a second connection plate 422, the first connection plate 421 and the second connection plate 422 are vertically disposed, the overall shape of the mounting connection plate 42 is an "L" shape, and the first connection plate 421 is in threaded connection with the bottom surface of the housing 1. Specifically, the first connecting plate 421 is located between the housing 1 and the fixed connecting posts 41, and threaded holes corresponding to the number and positions of the fixed connecting posts 41 are provided on the first connecting plate 421. Therefore, the first connecting plate 421 can be screwed with the housing 1 alone or the first connecting plate 421 and the fixed connecting post 41 can be screwed with the housing 1 at the same time, and the first connecting plate 421 is clamped between the housing 1 and the fixed connecting post 41.
The second connecting plate 422 is provided with mounting groove 4221 near the one side of casing 1, and the one side that the second connecting plate 422 kept away from casing 1 just is provided with a plurality of mounting holes 4222 to the position array of mounting groove 4221, in this embodiment, mounting hole 4222 is provided with four, mounting hole 4222 and mounting groove 4221 intercommunication, and mounting hole 4222 is the waist hole perpendicular with the bottom surface, when the application scene is unsuitable for using fixed connection post 41 to fix, can be through installing the couple on the wall, makes the couple penetrate in the mounting hole 4222 and realizes hanging casing 1 on the wall.
The fixed connection assembly 4 further comprises a penetrating fixing piece 43, the penetrating fixing piece 43 is arranged on the side wall of the shell 1, and a penetrating through hole 431 is formed in the penetrating fixing piece 43.
Specifically, penetrating fixing members 43 are disposed on the side face of the housing 1 and different from the side face on which the second connecting plate 422 is disposed, the penetrating fixing members 43 are disposed in plurality, the penetrating fixing members 43 are disposed on the side face of the housing 1 in an array, in this embodiment, four penetrating fixing members 43 are disposed, and the four penetrating fixing members 43 are connected to form a rectangle. The penetrating fixing piece 43 is in a convex shape, the penetrating fixing piece 43 is welded on the side wall of the shell 1, two penetrating through holes 431 penetrating the fixing piece 43 at the same height are also located at the same height, and the connecting line of the two penetrating through holes 431 is parallel to the ground. When the application scene is not suitable for being fixed by using the fixed connection column 41 or hanging on a wall by using the mounting hole 4222, a binding rope can be respectively threaded through two penetrating fixing pieces 43 above the shell 1 and two penetrating fixing pieces 43 below the shell 1 in a threading manner, and the shell 1 is bound at a certain position, such as a telegraph pole or the like, by the binding rope.
In summary, the intelligent gas pipeline anti-collision early warning device comprises a shell 1, a camera assembly 2 and an early warning alarm 3, wherein a containing cavity is formed in the shell 1, and a circuit board 11 is arranged in the containing cavity; the camera assembly 2 is arranged on the top of the shell 1, and the camera assembly 2 is electrically connected with the circuit board 11; the early warning alarm 3 sets up at casing 1 top, and early warning alarm 3 is connected with the circuit board 11 electricity, and wherein, the contained angle between line and the subassembly 2 of making a video recording between subassembly 2 and the early warning alarm 3 orientation is the acute angle.
The anti-collision early warning device is installed at a position close to a gas pipeline, when a vehicle passes through a shooting area of the shooting assembly 2, the shooting assembly 2 can acquire information, the early warning alarm device 3 can carry out alarm early warning after receiving signals, and because an included angle between a connecting line between the shooting assembly 2 and the early warning alarm device 3 and between directions of the shooting assembly 2 is an acute angle, when the vehicle enters a shooting range of the shooting assembly 2, a vehicle owner can first see the early warning alarm device 3, the shooting assembly 2 can not shield the alarm device 3, the warning effect of the early warning alarm device 3 is improved, and the problem that the existing camera and the explosion flash lamp occupy a larger space side by side is solved.
It should be noted that, without conflict, the embodiments and features of the embodiments in the present application may be combined with each other.
It should be noted that the specific structure and working principle of the utility model are described by taking an intelligent gas pipeline anti-collision early warning device as an example, but the application of the utility model is not limited by the intelligent gas pipeline anti-collision early warning device, and the utility model can be applied to the production and the use of other similar workpieces.
It is to be understood that the utility model is not limited to the precise arrangements and instrumentalities shown in the drawings, which have been described above, and that various modifications and changes may be effected without departing from the scope thereof. The scope of the utility model is limited only by the appended claims.
The foregoing description of the preferred embodiments of the utility model is not intended to limit the utility model to the precise form disclosed, and any such modifications, equivalents, and alternatives falling within the spirit and scope of the utility model are intended to be included within the scope of the utility model.

Claims (10)

1. An intelligent gas pipeline anticollision precaution device, which is characterized in that the device comprises:
the shell is internally provided with an accommodating cavity, and a circuit board is arranged in the accommodating cavity;
the camera shooting assembly is arranged at the top of the shell and is electrically connected with the circuit board;
the early warning alarm is arranged at the top of the shell and is electrically connected with the circuit board;
the camera shooting assembly comprises a camera shooting assembly, a warning alarm and a warning alarm, wherein an included angle between the camera shooting assembly and the direction of the camera shooting assembly is an acute angle.
2. The intelligent gas pipeline anti-collision early warning device according to claim 1, wherein the early warning alarm comprises an alarm shell, a light-emitting module and a sound-producing module, wherein an alarm cavity is formed in the alarm shell, and the light-emitting module is arranged in the alarm cavity;
wherein, the color of the light emitted by the light emitting module is at least two.
3. The intelligent gas pipeline collision avoidance warning apparatus of claim 2 wherein there are at least two decibel values of sound emitted by the sound emitting module.
4. The intelligent gas pipeline anti-collision early warning device according to claim 1, wherein a data storage module and a data networking module are further arranged in the accommodating cavity, the data storage module is electrically connected with the circuit board, the data networking module is electrically connected with the circuit board, the data storage module is used for storing video shot by the shooting assembly, and the data networking module is used for sending the video shot by the shooting assembly to a background server, a mobile phone or a computer terminal.
5. The intelligent gas pipeline anti-collision early warning device according to claim 1, wherein an infrared camera module is arranged in the camera assembly and is used for shooting at night.
6. The intelligent gas pipeline collision avoidance warning apparatus of claim 1 wherein the camera assembly comprises:
the connecting rod is arranged at the top of the shell;
the angle adjusting component is arranged on the connecting rod;
the camera is arranged on the angle adjusting component;
the angle adjusting assembly comprises an angle connecting rod and an angle adjusting ball, the angle adjusting ball is connected to one end of the angle connecting rod, the other end of the angle connecting rod is connected with the camera, and an angle adjusting groove matched with the angle adjusting ball in an embedded mode is formed in one end, close to the camera, of the connecting rod.
7. The intelligent gas pipeline collision avoidance warning apparatus of claim 6 wherein the connecting rod is a telescoping rod for adjusting the distance between the camera and the housing.
8. The intelligent gas pipeline anti-collision pre-warning device according to claim 1, wherein the shell is provided with a fixed connection assembly;
the fixed connection assembly comprises a fixed connection column, and one end of the fixed connection column is connected with the shell.
9. The intelligent gas pipeline anti-collision pre-warning apparatus according to claim 8, wherein the fixed connection assembly further comprises a mounting connection plate, the mounting connection plate is arranged on the side wall of the shell, and a mounting hole is formed in the mounting connection plate.
10. The intelligent gas pipeline anti-collision pre-warning device according to claim 8, wherein the fixed connection assembly further comprises a penetrating fixing piece, the penetrating fixing piece is arranged on the side wall of the shell, and a penetrating through hole is formed in the penetrating fixing piece.
CN202322131129.3U 2023-08-08 2023-08-08 Intelligent gas pipeline anti-collision early warning device Active CN220488928U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322131129.3U CN220488928U (en) 2023-08-08 2023-08-08 Intelligent gas pipeline anti-collision early warning device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322131129.3U CN220488928U (en) 2023-08-08 2023-08-08 Intelligent gas pipeline anti-collision early warning device

Publications (1)

Publication Number Publication Date
CN220488928U true CN220488928U (en) 2024-02-13

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Application Number Title Priority Date Filing Date
CN202322131129.3U Active CN220488928U (en) 2023-08-08 2023-08-08 Intelligent gas pipeline anti-collision early warning device

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