A ground pipeline leakage detection device
Patent Information
- Application Number
- CN202522380143.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-10
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-11-10
AI Technical Summary
[0004]本实用新型要解决的技术问题是,现在仪器基本都是通过人员手持进行检测,这种方式不便于对高处管道进行检测,需要额外借用攀爬设备,但如此一来移动就会受到影响,提供一种地面管道漏水检测装置,使其能与检测仪器连接,这样人员只需要手持支架装置就能对管道进行检测,且能根据检测的位置调节支架的长度和角度,提高应用的灵活性
[0011]本实用新型具有以下优点:将检测仪器插进安装槽内,这样能将检测仪器与设备连接,使用时只需要移动本设备就能带动检测仪器同步移动,因为转动柱与对接座为转动关系,因此能根据需要调节检测仪器的朝向角度,提高检测调节的灵活性,以便于适应不同的检测环境,将伸缩杆从随动板内抽出,这样能调节本设备本身的长度,从而将检测仪器送到合适的位置进行检测,提高检测的覆盖范围,且不需要使用额外的攀爬设备,便于进行行走检测。
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Figure CN224743283U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of water leakage detection equipment, specifically to a ground pipeline water leakage detection device. Background Technology
[0002] Ground-level pipelines are pipelines laid on the ground. These pipelines are easily damaged by external influences, making them more prone to leaks. Therefore, regular inspections are necessary to repair leaks and ensure the normal flow of water within the pipeline.
[0003] There are many current detection methods. By using different instruments, the leak point of the pipeline can be accurately located, which greatly improves the efficiency of detection and repair. However, most of the instruments are currently handheld by personnel, which is not convenient for detecting pipelines at high altitudes. Additional climbing equipment is required, which affects movement. Therefore, a ground pipeline leak detection device is proposed. Utility Model Content
[0004] The technical problem this utility model aims to solve is that current instruments are mostly inspected by hand, which is inconvenient for inspecting pipes at heights and requires additional climbing equipment, which affects movement. This utility model provides a ground pipe leakage detection device that can be connected to the detection instrument, so that personnel only need to hold the support device to inspect the pipe, and the length and angle of the support can be adjusted according to the inspection position, improving the flexibility of application.
[0005] The technical solution adopted by this utility model to solve the technical problem is: a ground pipe leakage detection device, including a connecting seat, a docking seat fixedly connected to the middle of the top side wall of the connecting seat, the docking seat having a U-shaped structure, a rotating column rotatably connected to the middle of the docking seat, a folding column rotatably connected to the edge of the rotating column away from the docking seat via a rotating shaft, a telescopic rod movably connected inside the folding column, a handle fixedly connected to the middle of the side wall of one end of the telescopic rod, an installation groove opened in the connecting seat, and a detection instrument inserted into the installation groove.
[0006] As a preferred technical solution of this utility model, an anti-slip pad is fixedly connected to the inner wall of the mounting groove, the anti-slip pad is in contact with the outer wall of the testing instrument, a sealing plate is detachably connected to one side opening of the mounting groove, and an open opening is provided through the bottom of the mounting groove.
[0007] As a preferred technical solution of this utility model, a button is movably connected to the side wall of the rotating column near one end edge, a locking groove is opened on the top side wall of the rotating column near the edge, a locking block is fixedly connected to the bottom side wall of the folding column opposite to the locking groove, a locking hole is opened through the locking block, and the locking block is inserted into the locking groove.
[0008] As a preferred technical solution of this utility model, two top support springs are fixedly connected to one side wall of the lock groove, a linkage plate is fixedly connected to one end of the top support spring, a limiting block is fixedly connected to the middle side wall of the linkage plate away from the top support spring, the top side wall of the limiting block is inclined, and the limiting block is inserted into the lock hole on the lock block.
[0009] As a preferred embodiment of this utility model, one end of the button extends into the lock groove, and a connecting plate is fixedly connected to the end of the button located in the lock groove and near both sides. The end of the connecting plate away from the button is fixedly connected to both sides of the linkage plate.
[0010] As a preferred technical solution of this utility model, the telescopic rod is inserted into a positioning hole on one side wall of the folding column. A plug is inserted into the positioning hole. One end of the plug is tapered. Follower plates are fixedly connected to both sides of the plug at the end that passes through the side wall of the folding column. Two tension springs are fixedly connected between each follower plate and the side wall of the folding column. A pull ring is fixedly connected to the middle of one side wall of the plug.
[0011] This utility model has the following advantages: The testing instrument is inserted into the mounting slot, which connects the testing instrument to the equipment. During use, simply moving this equipment will cause the testing instrument to move synchronously. Because the rotating column and the docking seat are in a rotating relationship, the orientation angle of the testing instrument can be adjusted as needed, improving the flexibility of testing adjustment to adapt to different testing environments. The telescopic rod can be pulled out from the follower plate, which allows adjustment of the length of the equipment itself, thereby sending the testing instrument to a suitable position for testing, improving the testing coverage. Moreover, no additional climbing equipment is required, making walking testing convenient. Attached Figure Description
[0012] Figure 1 This is a schematic diagram of the overall structure of a preferred embodiment of the present invention;
[0013] Figure 2 This is a schematic diagram of a half-section of the telescopic rod according to a preferred embodiment of the present invention;
[0014] Figure 3 This is a schematic diagram of a half-section of a folded column according to a preferred embodiment of the present invention.
[0015] Explanation of reference numerals in the attached drawings: 1. Connecting seat; 2. Docking seat; 3. Rotating column; 4. Button; 5. Folding column; 6. Follower plate; 7. Telescopic rod; 8. Handle; 9. Mounting slot; 10. Anti-slip pad; 11. Testing instrument; 12. Sealing plate; 13. Positioning hole; 14. Insert block; 15. Pull ring; 16. Tension spring; 17. Locking block; 18. Locking groove; 19. Linkage plate; 20. Limiting block; 21. Top support spring; 22. Connecting plate. Detailed Implementation
[0016] The present invention will be further described below with reference to the accompanying drawings.
[0017] Please refer to the following: Figure 1-3 This utility model discloses a ground pipe leakage detection device, including a connecting seat 1. A docking seat 2 is fixedly connected to the middle of the top side wall of the connecting seat 1. The docking seat 2 has a U-shaped structure. A rotating column 3 is rotatably connected to the middle of the docking seat 2. A folding column 5 is rotatably connected to the edge of the rotating column 3 away from the docking seat 2 through a rotating shaft. A telescopic rod 7 is telescopically connected inside the folding column 5. A handle 8 is fixedly connected to the middle of the side wall of one end of the telescopic rod 7. An installation groove 9 is opened in the connecting seat 1. A detection instrument 11 is inserted into the installation groove 9. An anti-slip pad 10 is fixedly connected to the inner wall of the installation groove 9. The anti-slip pad 10 fits against the outer wall of the detection instrument 11. A sealing plate 12 is detachably connected to one side opening of the installation groove 9. An open opening is opened through the bottom of the installation groove 9.
[0018] The technical benefits of this solution are as follows: The testing instrument 11 is inserted into the mounting slot 9, and the sealing plate 12 is snapped onto the connecting seat 1 to ensure the stability of the testing instrument 11 within the mounting slot 9. Then, the folding column 5 is rotated, and the locking block 17 is inserted into the locking groove 18 to achieve connection and locking. The device is then moved by holding the handle 8, which moves the testing instrument 11 to the testing position. Because this device eliminates the need for the testing personnel to squat, normal walking is sufficient, improving testing efficiency, reducing fatigue, and extending testing time. The connecting seat 1 is moved to rotate the docking seat 2 along its connection with the rotating column 3, adjusting the connecting seat 1 and the testing instrument 11 to a suitable orientation angle to adapt to different testing environments. The telescopic rod 7 extends from the follower plate 6, allowing adjustment of the device's length as needed, enabling testing of pipes at higher locations without the need for climbing equipment, thus improving testing convenience.
[0019] A button 4 is movably connected to the side wall of the rotating column 3 near one edge. A lock groove 18 is opened on the top side wall of the rotating column 3 near the edge. A lock block 17 is fixedly connected to the bottom side wall of the folding column 5 opposite to the lock groove 18. A lock hole is opened through the lock block 17 and the lock block 17 is inserted into the lock groove 18. Two top support springs 21 are fixedly connected to one side wall of the lock groove 18. A linkage plate 19 is fixedly connected to one end of the top support spring 21. A limiting block 20 is fixedly connected to the middle side wall of the linkage plate 19 away from the top support spring 21. The top side wall of the limiting block 20 is inclined. The limiting block 20 is inserted into the lock hole on the lock block 17. One end of the button 4 extends into the lock groove 18. A connecting plate 22 is fixedly connected to the end of the button 4 in the lock groove 18 near both sides. The end of the connecting plate 22 away from the button 4 is fixedly connected to the two sides of the linkage plate 19.
[0020] The telescopic rod 7 is inserted into the side wall of the folding column 5 and has a positioning hole 13. A plug 14 is inserted into the positioning hole 13. One end of the plug 14 is tapered. Both sides of the plug 14 are fixedly connected to the side edge of the side wall of the folding column 5. Two tension springs 16 are fixedly connected between each follower plate 6 and the side wall of the folding column 5. A pull ring 15 is fixedly connected to the middle of the side wall of one end of the plug 14.
[0021] The technical effect of this solution is as follows: when the locking block 17 is inserted into the locking groove 18, it will push the linkage plate 19 backward. Because the top of the limiting block 20 is an inclined structure, under the pressure of the locking block 17, it will drive the linkage plate 19 to move backward along its inclined surface. When the limiting block 20 is aligned with the lock hole on the locking block 17, the limiting block 20 is inserted into the lock hole under the action of the top support spring 21 to achieve locking, ensuring the stability of the connection between the folding column 5 and the rotating column 3. Pressing the button 4 can drive the linkage plate 19 to move backward through the connecting plate 22, so that the limiting block 20 can be moved out of the lock hole, thereby contacting the connection between the folding column 5 and the rotating column 3. Designing the folding column 5 to be in a folded state can improve the convenience of storage and reduce the space occupied.
[0022] When the telescopic rod 7 is pulled outward, the insert 14 will be inserted into the corresponding positioning hole 13 to lock the telescopic rod 7. Multiple positioning holes 13 can be opened at equal intervals on the telescopic rod 7 to achieve flexible length adjustment. When needed, the insert 14 can be pulled outward by the pull ring 15 to disengage the insert 14 from the positioning hole 13, and then the length of the telescopic rod 7 can be adjusted.
[0023] Specifically, when using this utility model, the testing instrument 11 is inserted into the corresponding mounting slot 9, and then the sealing plate 12 is connected to the connecting seat 1. After that, the folding column 5 is driven to rotate. As the folding column 5 rotates, the locking block 17 will be inserted into the locking slot 18. Through the cooperation of the limiting block 20 and the locking hole, the connection between the folding column 5 and the rotating column 3 is locked to ensure the stability of the connection between the folding column 5 and the rotating column 3. Then, as needed, the telescopic rod 7 is pulled outward, and the insert block 14 will be inserted into the corresponding positioning hole 13 to lock the telescopic rod 7 after the length adjustment is completed, thereby adjusting the equipment to different lengths. After all adjustments are completed, the handle 8 can be held to drive the testing instrument 11 to test the pipeline. Because the docking seat 2 and the rotating column 3 are rotatably connected, it is easy to adjust the testing instrument 11 to different angles. Combined with the length adjustment, it can effectively improve the flexibility and convenience of the test. A rubber ring is added at the connection between the docking seat 2 and the rotating column 3 as a damping structure to ensure the stability of the testing instrument 11 after adjustment.
[0024] It should be noted that, depending on the different detection instruments 11, the connector 1 can be replaced with the corresponding connection structure, but it is necessary to ensure that there are no obstructions at the receiving end of the detection instrument 11 to avoid affecting the reception and judgment of pipeline information.
[0025] The above are merely preferred embodiments of this utility model. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principle of this utility model, and these improvements and modifications should also be considered within the scope of protection of this utility model.
[0026] All other parts of this utility model that are not described in detail belong to the prior art, and therefore will not be described in detail here.
[0027] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this utility model.
Claims
1. A ground pipe water leakage detecting device characterized by comprising: The device includes a connecting seat (1), and a docking seat (2) is fixedly connected to the middle of the top side wall of the connecting seat (1). The docking seat (2) has a U-shaped structure. A rotating column (3) is rotatably connected to the middle of the docking seat (2). A folding column (5) is rotatably connected to the edge of the rotating column (3) away from the docking seat (2) through a rotating shaft. A telescopic rod (7) is telescopically connected inside the folding column (5). A handle (8) is fixedly connected to the middle of the side wall of one end of the telescopic rod (7). An installation groove (9) is opened in the connecting seat (1), and a testing instrument (11) is inserted into the installation groove (9).
2. A ground pipe leakage detecting apparatus as claimed in claim 1, wherein An anti-slip pad (10) is fixedly connected to the inner wall of the mounting groove (9). The anti-slip pad (10) is in contact with the outer wall of the testing instrument (11). A sealing plate (12) is detachably connected to one side opening of the mounting groove (9). An open opening is provided through the bottom of the mounting groove (9).
3. The ground pipe leakage detection device as described in claim 1, characterized in that, A button (4) is movably connected to the side wall of the rotating column (3) near one end edge. A lock groove (18) is provided on the top side wall of the rotating column (3) near the edge. A lock block (17) is fixedly connected to the bottom side wall of the folding column (5) opposite to the lock groove (18). A lock hole is provided through the lock block (17), and the lock block (17) is inserted into the lock groove (18).
4. A ground pipe leak detection apparatus as claimed in claim 3, wherein, Two top support springs (21) are fixedly connected to one side wall of the lock groove (18). One end of the top support spring (21) is fixedly connected to a linkage plate (19). A limiting block (20) is fixedly connected to the middle side wall of the linkage plate (19) away from the top support spring (21). The top side wall of the limiting block (20) is inclined. The limiting block (20) is inserted into the lock hole on the lock block (17).
5. A ground pipe leak detection apparatus as claimed in claim 3, wherein, One end of the button (4) extends into the lock groove (18). A connecting plate (22) is fixedly connected to one end of the button (4) in the lock groove (18) and near both sides. The end of the connecting plate (22) away from the button (4) is fixedly connected to both sides of the linkage plate (19).
6. The ground pipeline leakage detection device as described in claim 1, characterized in that, The telescopic rod (7) is inserted into the side wall of the folding column (5) and a positioning hole (13) is provided. A plug (14) is inserted into the positioning hole (13). One end of the plug (14) inside the positioning hole (13) is tapered. A follower plate (6) is fixedly connected to both sides of the plug (14) at the end of the side wall of the folding column (5). Two tension springs (16) are fixedly connected between each follower plate (6) and the side wall of the folding column (5). A pull ring (15) is fixedly connected to the middle of one side wall of the plug (14).