A monitoring instrument fixing device for sewer safety monitoring
Patent Information
- Application Number
- CN202521190822.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-11
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-06-11
AI Technical Summary
1.该用于排水管道安全监测的监测仪固定装置设置有拉套、载物板、第一滑块和第二滑槽,通过操作者拉动拉套移动后,拉套带动第一滑块在第二滑槽内进行滑动,通过第一滑块在第二滑槽内进行滑动时,拉套在固定板表面进行滑动,使拉套提高载物板带动监测仪进行移动,将监测仪移动到管道开口处,从而方便操作者对监测仪进行维修或检查,提高操作者检查或维修的便捷性。
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Figure CN224786925U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of fixed device technology, and in particular relates to a monitoring instrument fixing device for safety monitoring of drainage pipelines. Background Technology
[0002] Safety monitoring of drainage pipelines is crucial for urban flood control, drainage capacity, and environmental protection. To ensure the normal operation of the drainage system and monitor the status of the drainage network in real time, when the operator installs the monitoring device on the drainage pipeline, the operator first installs the mounting frame on the inner wall of the drainage pipeline, and then installs the monitoring device on the mounting frame, thus installing the monitoring device on the inner wall of the drainage pipeline. Therefore, it can be seen that the existing fixing devices basically meet people's practical needs, but the following problems still exist.
[0003] When an operator installs a monitoring instrument on a drainage pipe, after long-term use, the operator needs to periodically inspect or maintain the monitoring instrument. When inspecting or maintaining the monitoring instrument, the operator may need to enter the pipe. Subsequently, the operator inspects or maintains the monitoring instrument installed on the inner wall of the pipe. For this reason, we propose a monitoring instrument fixing device for drainage pipe safety monitoring. Utility Model Content
[0004] This utility model provides a monitoring instrument fixing device for safety monitoring of drainage pipelines. When the operator pulls the pull sleeve, the pull sleeve slides on the surface of the fixing plate, causing the pull sleeve to move the monitoring instrument through the load plate and move the monitoring instrument to the pipeline opening. This makes it convenient for the operator to maintain or inspect the monitoring instrument and improves the convenience of the operator's inspection or maintenance.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a monitoring instrument fixing device for safety monitoring of drainage pipelines, comprising a mounting plate, a traction block fixed on the surface of the mounting plate, and a pull sleeve sleeved on the surface of the traction block, a traction member provided in the middle of the traction block and the fixing plate, a first slider fixed on the contact side of the pull sleeve facing the fixing plate, and the first slider slidably embedded in a second sliding groove opened on the fixing plate, and a load plate fixed on the surface of the pull sleeve.
[0006] Furthermore, the fixed plate has a traction groove in the middle, and a traction block is inserted in the middle of the traction groove. The end of the traction block is fixed to the inner wall of the pull sleeve. The end of the traction block has symmetrical clearance grooves, and a stop plate is inserted in the middle of each clearance groove. The end of each stop plate has a first rotating shaft fixed to the inner wall of the clearance groove.
[0007] Furthermore, the traction block has a spring groove at the end near the abutment plate, and a push button and a spring are respectively installed inside the spring groove. Both ends of the spring abut against the push button, and the ends of the push button abut against the surface of the abutment plate.
[0008] Furthermore, all the clearance slots are configured as rectangular grooves, and all the abutments are configured as rectangular blocks that match the rectangular grooves of the clearance slots.
[0009] Furthermore, the pull sleeve has a storage groove in the middle, and a handle and a connecting rod sleeved on both sides of the handle are respectively provided in the storage groove. A third rotating shaft fixed to the inner wall of the connecting rod passes through both sides of the storage groove. A rotating block is fixed to the end of the connecting rod, and a second rotating shaft fixed to the inner wall of the storage groove passes through the end of the rotating block.
[0010] Furthermore, the end of the carrying plate is symmetrically fitted with a bracket, and a rotating rod passes through one end of each bracket. A second slider is fixed to the end of each rotating rod, and the surface of each second slider is fitted with a first groove opened on the carrying plate.
[0011] The beneficial effects of this utility model are: 1. The monitoring instrument fixing device for drainage pipeline safety monitoring is equipped with a pull sleeve, a carrying plate, a first slider, and a second slide groove. After the operator pulls the pull sleeve, the pull sleeve drives the first slider to slide in the second slide groove. When the first slider slides in the second slide groove, the pull sleeve slides on the surface of the fixing plate, causing the pull sleeve to lift the carrying plate and move the monitoring instrument to the pipeline opening. This facilitates the operator to maintain or inspect the monitoring instrument and improves the convenience of the operator's inspection or maintenance.
[0012] 2. The monitoring instrument fixing device for drainage pipeline safety monitoring is equipped with a traction block, a support plate, a first rotating shaft, a clearance groove, and a traction groove. When the operator pulls the pull sleeve, the pull sleeve drives the traction block to slide in the traction groove, causing the traction block to move the support plate out of the traction groove. Then, the operator pulls the support plate, which rotates through the first rotating shaft, causing the support plate to move out of the clearance groove. After the operator releases the pull sleeve, the traction block slides in the traction groove, and the support plate supports the traction block through the first rotating shaft, thereby fixing the monitoring instrument mounted on the carrier plate. When the operator is viewing the data, they no longer need to constantly move the pull sleeve, improving the usability of the operation. Attached Figure Description
[0013] Figure 1 is a frontal cross-sectional view of the present invention. Figure 2 is a side view sectional structural diagram of this utility model; Figure 3 is a side view sectional view of the traction groove and traction block of this utility model. Figure 4 is a front view sectional view of the traction groove and traction block of this utility model. Figure 5 is a top view cross-sectional structural diagram of this utility model; Figure 6 is a top view cross-sectional structural diagram of the grip of this utility model; Figure 7 is an enlarged structural schematic diagram of point A in Figure 1 of this utility model; Figure 8 shows the present invention. Figure 2 Enlarged structural diagram at point B; Figure 9 shows the present invention. Figure 4 A magnified structural diagram at point C; Figure 10 shows the present invention. Figure 4 A magnified structural diagram at point D; Figure 11 shows the present invention. Figure 5 A magnified structural diagram at point E in the middle.
[0014] In the diagram: 1. Mounting plate; 2. Fixing plate; 3. Loading plate; 4. First slide groove; 5. Bracket; 6. Pull sleeve; 7. First slider; 8. Traction block; 9. Traction groove; 10. First rotating shaft; 11. Clearance groove; 12. Support plate; 13. Second slide groove; 14. Rotating block; 15. Storage groove; 16. Second rotating shaft; 17. Second slider; 18. Third rotating shaft; 19. Handle; 20. Connecting rod; 21. Push button; 22. Spring; 23. Spring groove; 24. Rotating rod. Detailed Implementation
[0015] To further understand the utility model's content, features, and effects, the following embodiments are provided, along with detailed descriptions in conjunction with the accompanying drawings. Example
[0016] Please refer to Figures 1-11. A monitoring instrument fixing device for safety monitoring of drainage pipes includes a mounting plate 1. A traction block 8 is welded to the surface of the mounting plate 1, and a pull sleeve 6 is fitted onto the surface of the traction block 8. A traction component is provided in the middle of the traction block 8 and the fixing plate 2. A first slider 7 is fixed on the contact side of the pull sleeve 6 facing the fixing plate 2, and the first slider 7 is slidably embedded in a second sliding groove 13 opened on the fixing plate 2. A carrying plate 3 is welded to the surface of the pull sleeve 6. When the operator installs the monitoring instrument at the drainage pipe, the operator first moves the mounting plate 1. The mounting plate 1 drives the pull sleeve 6 to move through the fixing plate 2, and the pull sleeve 6 drives the carrying plate 3 to move. The operator installs the mounting plate 1 on the inner wall of the pipe with bolts. After the operator aligns the monitoring instrument with the carrying plate 3, the operator installs the monitoring instrument on the carrying plate 3 with bolts. The monitoring device is installed on the pipe. When the operator needs to view the data on the monitoring device after long-term use, the operator first pulls the pull sleeve 6 to move it. The pull sleeve 6 drives the first slider 7 to slide in the second slide groove 13. When the first slider 7 slides in the second slide groove 13, the pull sleeve 6 slides on the surface of the fixed plate 2. When the pull sleeve 6 slides on the surface of the fixed plate 2, the pull sleeve 6 drives the carrier plate 3 to move. After the carrier plate 3 moves, the carrier plate 3 drives the monitoring instrument to move, making it convenient for the operator to move the monitoring instrument to the pipe opening, so that the operator can easily observe the data on the monitoring instrument and improve the convenience of the operator to detect the monitoring instrument.
[0017] In other embodiments, a traction groove 9 is provided in the middle of the fixed plate 2, and a traction block 8 is inserted into the middle of the traction groove 9. The ends of the traction blocks 8 are welded to the inner wall of the pull sleeve 6. Symmetrical clearance grooves 11 are provided at the ends of the traction blocks 8, and abutment plates 12 are inserted into the middle of each clearance groove 11. Each clearance groove 11 is a rectangular groove, and each abutment plate 12 is a rectangular block that matches the rectangular groove of the clearance groove 11. A first rotating shaft 10, welded to the inner wall of the clearance groove 11, passes through the ends of each abutment plate 12. When the operator pulls the pull sleeve 6 to slide on the surface of the fixed plate 2, the pull sleeve 6 drives the traction blocks 8 to slide within the traction groove 9. The sliding of the traction blocks 8 within the traction groove 9 causes the traction blocks 8 and the traction groove 9 to pull the pull sleeve 6, improving the stability of the pull sleeve 6 moving on the surface of the fixed plate 2. Furthermore, the traction blocks 8 drive the first rotating shaft 10 to move through the clearance groove 11, and the first rotating shaft 10 drives the abutment plates 12. Move the abutment plate 12 to the opening of the traction groove 9. Then, the operator pulls the abutment plate 12, which rotates via the first rotating shaft 10, causing the abutment plate 12 to move out of the clearance groove 11. After the abutment plate 12 moves out of the clearance groove 11, the operator releases the pull sleeve 6. Under the action of gravity, the pull sleeve 6 and the traction block 8 move downward within the traction groove 9. As the traction block 8 moves downward, it drives the first rotating shaft 10 to move via the clearance groove 11. The first rotating shaft 10 drives the abutment plate 12 to move, so that one side of the abutment plate 12 is in contact with the inner wall of the clearance groove 11, and the other side of the abutment plate 12 is in contact with the surface of the fixing plate 2. The abutment plate 12 and the first rotating shaft 10 support the traction block 8, fixing the position of the traction block 8 within the traction groove 9. The pull sleeve 6 is then released. The position is fixed, thus fixing the monitoring instrument installed on the carrier plate 3. When the operator is viewing the data, the operator no longer needs to keep moving the pull sleeve 6, improving the usability of the operator.
[0018] In other embodiments, the traction block 8 has a spring groove 23 at the end near the abutment plate 12, and a push button 21 and a spring 22 are respectively provided inside the spring groove 23. Both ends of the spring 22 abut against the push button 21, and the ends of the push button 21 abut against the surface of the abutment plate 12. When the operator moves the abutment plate 12 away from the opening of the traction groove 9, the abutment plate 12 no longer restricts the inner wall of the traction groove 9. After the abutment plate 12 no longer squeezes the spring 22 through the push button 21, the spring 22 recovers its elastic deformation and pushes the abutment plate 12 to move, so that the abutment plate 12 rotates through the first rotating shaft 10 and pushes the abutment plate 12 out of the clearance groove 11. When the operator needs to remove the abutment plate 12 from the clearance groove 11, the operator no longer needs to press the abutment plate 12 to remove it from the clearance groove 11, which improves the convenience of the operator to pick up the abutment plate 12.
[0019] In other embodiments, the pull sleeve 6 has a storage groove 15 in the middle, and a handle 19 and connecting rods 20 sleeved on both sides of the handle 19 are respectively provided in the middle of the storage groove 15. A third rotating shaft 18 welded to the inner wall of the connecting rod 20 passes through both sides of the storage groove 15. A rotating block 14 is welded to the end of each connecting rod 20, and a second rotating shaft 16 welded to the inner wall of the storage groove 15 passes through the end of each rotating block 14. When the operator needs to pull the pull sleeve 6, the operator first pulls the handle 19, which moves out of the storage groove 15. The oblong holes on both sides of the handle 19 slide on the cylindrical surface of the third rotating shaft 18, allowing the handle 19 to slide within the connecting rod 20. When the operator pulls the handle 19 upwards, the handle 19... The oblong holes at both ends rotate on the cylindrical surface of the third rotating shaft 18, causing deformation in the angle between the handle 19 and the connecting rod 20. As the connecting rod 20 moves with the handle 19 and changes angle, it drives the rotating block 14 to rotate on the surface of the second rotating shaft 16, thereby removing the handle 19 from the storage slot 15. The operator then holds the handle 19, which moves the connecting rod 20 via the third rotating shaft 18. The connecting rod 20 moves the second rotating shaft 16 via the rotating block 14, and the second rotating shaft 16 moves the pull sleeve 6 via the storage slot 15, allowing the operator to pull the pull sleeve 6 for movement.
[0020] In other embodiments, brackets 5 are symmetrically attached to the ends of the carrying plate 3, and rotating rods 24 penetrate one end of each bracket 5. Second sliders 17 are welded to the ends of the rotating rods 24, and the surfaces of the second sliders 17 are fitted with first grooves 4 formed on the carrying plate 3. When the operator installs the monitoring instrument, the operator first pulls the bracket 5, causing the circular through-hole at the end of the bracket 5 to rotate on the surface of the rotating rod 24, moving the bottom end of the bracket 5 away from the carrying plate 3, making the bracket 5 perpendicular to the first groove 4. Then, the operator places the monitoring instrument against the carrying plate 3 and positions it on the bracket 5, allowing the bracket 5 to support the monitoring instrument. This facilitates the installation of the monitoring instrument and improves its ease of use. Furthermore, when the operator needs to adjust the support position of the bracket 5, the operator first pulls the bracket 5, and the bracket 5 rotates through the rotating rod 24... The second slider 17 is pushed to slide within the first slide groove 4. By sliding the second slider 17 within the first slide groove 4, the bracket 5 can slide on the surface of the carrying plate 3, making it convenient for the operator to adjust the position of the bracket 5 and increasing the operator's range of use.
[0021] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A monitoring device fixing device for sewer safety monitoring, comprising a mounting plate (1), characterized in that: The installation plate (1) surface is fixed with traction block (8), and traction block (8) surface is equipped with pull sleeve (6), traction block (8) and fixed plate (2) middle part is provided with traction component, the first sliding block (7) is fixed to the fixed plate (2) of the pull sleeve (6) side, and the first sliding block (7) is slidably embedded in the second sliding slot (13) on the fixed plate (2), the pull sleeve (6) surface is fixed with the object plate (3).
2. The monitoring device fixing device for sewer safety monitoring according to claim 1, characterized in that: The fixed plate (2) middle part is provided with traction slot (9), and the traction slot (9) middle part is inserted into the traction block (8), the traction block (8) end is fixed on the inner wall of pull sleeve (6), the traction block (8) end is symmetrically provided with avoiding slot (11), and the avoiding slot (11) middle part is inserted into the abutment plate (12), the abutment plate (12) end is penetrated and fixed on the inner wall of avoiding slot (11) first rotation shaft (10).
3. The monitoring device fixing apparatus for sewer safety monitoring according to claim 2, characterized in that: The traction block (8) is provided with spring groove (23) near the one side end of abutment plate (12), and the spring groove (23) is provided with push button (21) and spring (22) respectively, the spring (22) both sides end is abutted on push button (21), and the push button (21) end is abutted on the surface of abutment plate (12).
4. The monitoring device fixing device for sewer safety monitoring according to claim 2, characterized in that: The avoiding slot (11) is provided as rectangular groove, the abutment plate (12) is provided as rectangular block matched with the rectangular groove of avoiding slot (11).
5. The monitoring device fixing apparatus for sewer safety monitoring according to claim 1, characterized in that: The pull sleeve (6) middle part is provided with receiving groove (15), and the receiving groove (15) middle part is provided with handle (19) and connecting rod (20) sleeved on both sides of handle (19) respectively, the receiving groove (15) both sides end is penetrated and fixed on the inner wall of connecting rod (20) third rotation shaft (18), the connecting rod (20) end is fixed with rotating block (14), and the rotating block (14) end is penetrated and fixed on the inner wall of receiving groove (15) second rotation shaft (16).
6. The monitoring device fixing apparatus for sewer safety monitoring according to claim 5, characterized in that: The object plate (3) end is symmetrically matched with bracket (5), and the one side end of bracket (5) is penetrated with rotating rod (24), the rotating rod (24) end is fixed with second sliding block (17), and the surface of second sliding block (17) is sleeved with first sliding slot (4) provided on object plate (3).