Gas pipeline monitoring and positioning device

By using a support plate and a motor-driven clamping mechanism, the problem of swaying during the movement of gas pipelines is solved, achieving stable connection and precise positioning of the pipelines, and improving the stability and accuracy of the connection.

CN224201265UActive Publication Date: 2026-05-05YANTAI MARINE AEROSPACE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YANTAI MARINE AEROSPACE TECH CO LTD
Filing Date
2025-06-24
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Existing gas pipelines are prone to shaking during relocation, affecting the accuracy of connections.

Method used

The system employs components such as a support plate, a movable frame, a motor-driven clamping mechanism, and rotating wheels. The motor-driven screw and sleeve achieve stable clamping and rotation of the pipeline, and the system combines height and position adjustments to ensure pipeline stability.

Benefits of technology

It improves the stability and accuracy of gas pipeline connections, reduces shaking, and enhances connection reliability.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224201265U_ABST
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Abstract

The utility model relates to the technical field of gas pipeline monitoring, and discloses a gas pipeline monitoring and positioning device which comprises a supporting plate, an adjusting through groove is formed in the top end of the supporting plate, a movable frame is installed in the adjusting through groove through a position adjusting mechanism, and two stable through grooves are formed in the top end of the supporting plate. Adjusting through holes are formed in the two sides of the bottom end of the interior of the movable frame correspondingly, and placing plates are installed between the two adjusting through holes and the two stable through grooves through height adjusting mechanisms correspondingly. And the output end of the first motor drives the rotating wheel to rotate, the gas pipeline is driven to rotate under the contact of the rotating wheel and the gas pipeline, and the stability of the gas pipeline during connection is improved.
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Description

Technical Field

[0001] This utility model relates to the field of gas pipeline monitoring technology, specifically a gas pipeline monitoring and positioning device. Background Technology

[0002] In daily life, natural gas is one of the world's three major energy pillars. With the continuous development of the times, people's lives are inseparable from natural gas. In order to beautify the city and improve safety, natural gas pipelines need to be buried underground. Therefore, in the process of installing natural gas pipelines, it is necessary to open trenches in the ground, then install the natural gas pipelines into the trenches, and then fill the trenches.

[0003] A search revealed that Chinese utility model patent CN220506376U discloses a gas pipeline monitoring and positioning device, comprising a base plate, a support plate, a pipe body, a support assembly, multiple sets of hoisting assemblies, and a monitoring mechanism. The monitoring mechanism includes two support rods, a rack, a sliding plate, multiple locking blocks, a motor bracket, a moving motor, gears, and monitoring components. The rack has a groove. Both support rods are fixedly connected to the support assembly, and the rack is fixedly connected to both support rods. The sliding plate is movably connected to the rack, the motor bracket is fixedly connected to the sliding plate, the moving motor is fixedly connected to the motor bracket, and the gear is fixedly connected to the moving motor and located at the output end of the moving motor. The gear and rack cooperate with each other. When connecting the pipeline, the device supports the outer wall of the pipeline via a lifting rope. However, during the support process, the movement of the equipment causes the pipeline to sway, affecting the accuracy of the pipeline connection. Therefore, a gas pipeline monitoring and positioning device for stable pipeline fixing is proposed. Utility Model Content

[0004] (a) Technical problems to be solved

[0005] In view of the shortcomings of the prior art, this utility model provides a gas pipeline monitoring and positioning device, which solves the problem that the pipeline is prone to shaking during movement in the prior art.

[0006] (II) Technical Solution

[0007] To achieve the above objectives, this utility model provides the following technical solution: a gas pipeline monitoring and positioning device, including a support plate, an adjustment slot is provided at the top of the support plate, and a movable frame is installed inside the adjustment slot through a position adjustment mechanism;

[0008] The top of the support plate has two stabilizing slots, and the bottom sides of the movable frame are provided with adjustment holes. Each of the two adjustment holes and the two stabilizing slots is connected to a placement plate by a height adjustment mechanism.

[0009] The top four corners of the placement plate are fixedly connected to stabilizing pillars, and the tops of the four stabilizing pillars are fixedly connected to clamping blocks. The top of the clamping blocks is provided with clamping slots, and a pipe clamping mechanism is fixedly installed inside the clamping slots.

[0010] The top of the placement plate is fixedly connected to multiple arc-shaped load-bearing blocks, one of which has a load-bearing groove at its top. One end of the arc-shaped load-bearing block is fixedly connected to a first motor, and the output end of the first motor extends into the interior of the load-bearing groove and is fixedly connected to a rotating wheel.

[0011] Preferably, the position adjustment mechanism includes a second motor, and two mounting plates are fixedly connected to the bottom end of the support plate. One end of one mounting plate is fixedly connected to one end of the second motor. An adjusting screw is fixedly connected to the output end of the second motor. The other end of the adjusting screw is rotatably connected to one end of the other mounting plate. An adjusting sleeve is screwed onto the outer wall of the adjusting screw, and the top end of the adjusting sleeve is fixedly connected to the bottom end of the movable frame.

[0012] Preferably, the height adjustment mechanism includes two movable sliders, the outer walls of the two movable sliders are slidably connected to the interior of two stabilizing through slots, the top of each of the two movable sliders is provided with a pushing through hole, and the bottom of each of the two movable sliders is fixedly connected with an electric telescopic rod, the top of the two electric telescopic rods is fixedly connected to the bottom sides of the placement plate through the pushing through hole and the adjusting through hole.

[0013] Preferably, the pipe clamping mechanism includes a third motor, one end of the clamping through groove is fixedly connected to one end of the third motor, the output end of the third motor is fixedly connected to a bidirectional screw, a clamping sleeve is screwed onto the outer wall of the bidirectional screw, and an arc-shaped clamping plate is fixedly connected to the bottom end of each of the two clamping sleeves.

[0014] Preferably, the support plate is fixedly connected to four corners at its bottom.

[0015] Preferably, an anti-slip layer is fixedly installed at one end of each of the two arc-shaped clamping plates that are close to each other, and a silicone layer is fixedly installed on the outer wall of the rotating wheel.

[0016] Preferably, the movable frame has limit slots at both ends, and limit sliders are slidably connected inside the two limit slots. One end of each limit slider is fixedly connected to both ends of the placement plate.

[0017] (III) Beneficial Effects

[0018] Compared with the prior art, the present invention provides a gas pipeline monitoring and positioning device, which has the following advantages:

[0019] This gas pipeline monitoring and positioning device works by placing the gas pipeline on top of a placement block. When the third motor is energized, its output drives a bidirectional screw to rotate, which in turn moves the clamping sleeves on both sides. During this movement, the arc-shaped clamping plates move closer together until they contact the outer wall of the gas pipeline, thus securing it. Compared to existing technologies that use ropes for hoisting, this device offers greater stability. Furthermore, when the first motor is energized, its output drives a rotating wheel to rotate. This wheel's contact with the gas pipeline further enhances the stability of the gas pipeline connection. Attached Figure Description

[0020] Figure 1 This is a front view structural diagram of the present invention;

[0021] Figure 2 This is a frontal cross-sectional view of the present invention.

[0022] Figure 3 This is a front view structural diagram of the position adjustment mechanism of this utility model;

[0023] Figure 4 This utility model Figure 2 A magnified view of the structure at point A in the middle;

[0024] Figure 5 This utility model Figure 2 A magnified schematic diagram of the structure at point B in the middle.

[0025] In the diagram: 1. Support plate; 2. Moving frame; 3. Placement plate; 4. Stabilizing support column; 5. Clamping block; 6. Arc-shaped load-bearing block; 7. First motor; 8. Rotating wheel; 9. Second motor; 10. Mounting plate; 11. Adjusting screw; 12. Adjusting sleeve; 13. Moving slider; 14. Electric telescopic rod; 15. Third motor; 16. Bidirectional screw; 17. Clamping sleeve; 18. Arc-shaped clamping plate; 19. Stabilizing foot; 20. Limiting slider. Detailed Implementation

[0026] Please see Figure 1 and Figure 3A gas pipeline monitoring and positioning device includes a support plate 1. An adjustment slot is provided at the top of the support plate 1. A movable frame 2 is installed inside the adjustment slot via a position adjustment mechanism. The position adjustment mechanism includes a second motor 9. Two mounting plates 10 are fixedly connected to the bottom of the support plate 1. One end of one mounting plate 10 is fixedly connected to one end of the second motor 9. An adjustment screw 11 is fixedly connected to the output end of the second motor 9. The other end of the adjustment screw 11 is rotatably connected to one end of the other mounting plate 10. An adjustment sleeve 12 is screwed onto the outer wall of the adjustment screw 11. The top end of the adjustment sleeve 12 is fixedly connected to the bottom end of the movable frame 2. When the second motor 9 is powered on, the output end of the second motor 9 drives the adjustment screw 11 to rotate and, through the thread, moves the position of the adjustment sleeve 12. The movement of the adjustment sleeve 12 then moves the position of the movable frame 2, thus enabling free adjustment of the left and right positions of the gas pipeline connection.

[0027] Please see Figure 3 The top of the support plate 1 has two stabilizing slots. The bottom of the movable frame 2 has adjustment holes on both sides. The two adjustment holes are connected to the two stabilizing slots by a height adjustment mechanism, and the height adjustment mechanism includes two sliding sliders 13. The outer walls of the two sliding sliders 13 are slidably connected to the inside of the two stabilizing slots. The top of the two sliding sliders 13 has a pushing hole. The bottom of the two sliding sliders 13 is fixedly connected to an electric telescopic rod 14. The top of the two electric telescopic rods 14 is fixedly connected to the bottom of the placement plate 3 through the pushing hole and the adjustment hole. When the electric telescopic rods 14 are activated, the output end of the electric telescopic rods 14 will push the placement plate 3 to move inside the movable frame 2 and freely adjust the connection height of the gas pipeline.

[0028] Please see Figure 2 and Figure 5 A stabilizing support column 4 is fixedly connected to the top four corners of the placement plate 3. A clamping block 5 is fixedly connected between the tops of the four stabilizing support columns 4. A clamping groove is opened at the top of the clamping block 5. A pipe clamping mechanism is fixedly installed inside the clamping groove. The pipe clamping mechanism includes a third motor 15. One end of the clamping groove is fixedly connected to one end of the third motor 15. A bidirectional screw 16 is fixedly connected to the output end of the third motor 15. A clamping screw sleeve 17 is screwed onto the outer wall of the bidirectional screw 16. An arc clamping plate 18 is fixedly connected to the bottom end of each of the two clamping screw sleeves 17.

[0029] Please see Figure 4Multiple arc-shaped load-bearing blocks 6 are fixedly connected to the top of the placement plate 3. One of the arc-shaped load-bearing blocks 6 has a load-bearing groove at its top. A first motor 7 is fixedly connected to one end of the arc-shaped load-bearing block 6. The output end of the first motor 7 extends into the interior of the load-bearing groove and is fixedly connected to a rotating wheel 8. When the first motor 7 is powered on, its output end drives the rotating wheel 8 to rotate. Through the contact between the rotating wheel 8 and the gas pipeline, the gas pipeline will rotate, improving the stability of the gas pipeline connection.

[0030] It should also be noted that stable feet 19 are fixedly connected to the four corners of the bottom of the support plate 1 to increase the height of the support plate 1 and support its position. Anti-slip layers are fixedly installed on the ends of the two arc-shaped clamping plates 18 that are close to each other. A silicone layer is fixedly installed on the outer wall of the rotating wheel 8 to further improve the protective effect when the rotating wheel 8 comes into contact with the outer wall of the gas pipeline. Limiting grooves are opened at both ends inside the moving frame 2. Limiting sliders 20 are slidably connected inside the two limiting grooves. One end of the two limiting sliders 20 is fixedly connected to the two ends of the placement plate 3 respectively. When the placement plate 3 moves, the stability of the movement of the placement plate 3 is improved by the limiting sliders 20.

[0031] In summary, when using this gas pipeline monitoring and positioning device, the gas pipeline is first placed on top of the placement block. Then, after the third motor 15 is energized, its output drive rotates the bidirectional screw 16, which in turn moves the positions of the clamping sleeves 17 on both sides via the thread. During this movement, the arc-shaped clamping plates 18 move closer together until they contact the outer wall of the gas pipeline, thus clamping and fixing the pipeline. Simultaneously, after the first motor 7 is energized, its output drive rotates the rotating wheel 8, which in turn rotates the gas pipeline. When the pipe comes into contact, it will cause the gas pipe to rotate. When the second motor 9 is energized, the output end of the second motor 9 will drive the adjusting screw 11 to rotate and drive the adjusting sleeve 12 to move through the thread. The movement of the adjusting sleeve 12 will drive the moving frame 2 to move, so as to freely adjust the left and right position of the gas pipe connection. When the electric telescopic rod 14 is activated, the output end of the electric telescopic rod 14 will push the placement plate 3 to move inside the moving frame 2 and freely adjust the connection height of the gas pipe.

[0032] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A gas pipeline monitoring and positioning device, comprising a support plate (1), characterized in that: The top of the support plate (1) is provided with an adjustment slot, and a movable frame (2) is installed inside the adjustment slot through a position adjustment mechanism; The top of the support plate (1) has two stabilizing slots, and the bottom of the movable frame (2) has adjustment holes on both sides. The two adjustment holes are connected to the two stabilizing slots by a height adjustment mechanism and a placement plate (3) is installed. The top four corners of the placement plate (3) are fixedly connected with stabilizing pillars (4), and the tops of the four stabilizing pillars (4) are fixedly connected with clamping blocks (5). The top of the clamping blocks (5) is provided with clamping slots, and a pipe clamping mechanism is fixedly installed inside the clamping slots. The top of the placement plate (3) is fixedly connected to a plurality of arc-shaped load-bearing blocks (6), one of which has a load-bearing groove at its top. One end of the arc-shaped load-bearing block (6) is fixedly connected to a first motor (7), and the output end of the first motor (7) extends into the interior of the load-bearing groove and is fixedly connected to a rotating wheel (8).

2. The gas pipeline monitoring and positioning device according to claim 1, characterized in that: The position adjustment mechanism includes a second motor (9), and two mounting plates (10) are fixedly connected to the bottom end of the support plate (1). One end of one mounting plate (10) is fixedly connected to one end of the second motor (9). An adjusting screw (11) is fixedly connected to the output end of the second motor (9). The other end of the adjusting screw (11) is rotatably connected to one end of the other mounting plate (10). An adjusting sleeve (12) is screwed onto the outer wall of the adjusting screw (11). The top end of the adjusting sleeve (12) is fixedly connected to the bottom end of the moving frame (2).

3. A gas pipeline monitoring and positioning device according to claim 2, characterized in that: The height adjustment mechanism includes two movable sliders (13). The outer walls of the two movable sliders (13) are slidably connected to the interior of two stabilizing through slots. The top of each of the two movable sliders (13) is provided with a push through hole. The bottom of each of the two movable sliders (13) is fixedly connected with an electric telescopic rod (14). The top of each of the two electric telescopic rods (14) is fixedly connected to both sides of the bottom of the placement plate (3) through the push through hole and the adjustment through hole.

4. A gas pipeline monitoring and positioning device according to claim 3, characterized in that: The pipe clamping mechanism includes a third motor (15), one end of the clamping through groove is fixedly connected to one end of the third motor (15), the output end of the third motor (15) is fixedly connected to a bidirectional screw (16), a clamping sleeve (17) is screwed on the outer wall of the bidirectional screw (16), and the bottom ends of the two clamping sleeves (17) are fixedly connected to arc clamping plates (18).

5. A gas pipeline monitoring and positioning device according to claim 4, characterized in that: The support plate (1) is fixedly connected to four corners at the bottom of each of its four corners with a stable support leg (19).

6. A gas pipeline monitoring and positioning device according to claim 5, characterized in that: The two arc-shaped clamping plates (18) are fixedly installed with anti-slip layers at their close ends, and a silicone layer is fixedly installed on the outer wall of the rotating wheel (8).

7. A gas pipeline monitoring and positioning device according to claim 6, characterized in that: The movable frame (2) has limit slots at both ends, and limit sliders (20) are slidably connected inside the two limit slots. One end of each limit slider (20) is fixedly connected to both ends of the placement plate (3).

Citation Information

Patent Citations

  • Gas pipeline monitoring and positioning device

    CN220506376U