Capillary permeable drainage belt connecting device for municipal road reconstruction

By setting up a locking groove and plugging components, mobile mechanisms, and support mechanisms on the connecting belt, the problem of loose and fall of the municipal road drainage belt connection device is solved, and the stable connection and rapid drainage effect is achieved, extending the service life and reducing the water risk of road area.

CN120506006APending Publication Date: 2025-08-19QIHANG (SHANDONG) INVESTMENT & CONSTR GRP CO LTD
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Patent Information

Application Number
CN202510835325.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-20
Publication Date
2025-08-19

AI Technical Summary

Technical Problem

The existing municipal road drainage belt connection device is prone to loosening and falling off under long-term water flow impact and vehicle rolling, resulting in the failure of the drainage system and increasing maintenance costs and safety hazards.

Method used

A locking groove is provided on the connecting belt, combined with the linkage of the plug-in assembly, the moving mechanism and the supporting mechanism, the connection is tilted and pressed through the L-shaped bracket, and a rigid limit structure is used to enhance the stability of the drainage belt and the connecting belt, forming a downward inclined slope to guide the accumulated water to flow downstream quickly.

Benefits of technology

It effectively avoids loosening and falling off at the connection due to external forces or water flow impact, extends the service life of the drainage system, improves drainage efficiency, and reduces the water risk in the road area.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of drainage belts, and particularly discloses a capillary permeable drainage belt connecting device for municipal road reconstruction, which comprises a connecting belt, two drainage belts are symmetrically arranged above the connecting belt, clamping grooves are symmetrically formed in the upper surface of the connecting belt, and connecting mechanisms are respectively arranged at two ends of the two drainage belts. The connecting mechanism comprises a stabilizing block, an operation groove is formed in the stabilizing block, a connecting frame is connected to the bottom of the end, close to the drainage belt, of the stabilizing block, a supporting and dragging block is fixedly installed at the other end of the connecting frame, and a moving mechanism is arranged in the operation groove. According to the device, by means of linkage of the inserting-connecting assembly, the moving mechanism and the supporting and dragging mechanism, the drainage belt and the connecting belt are more stable, the situation that the drainage belt is loosened or disengaged due to external force or water flow impact is effectively avoided, and the drainage belt is more stable. And the service life of the drainage system is prolonged.
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Description

Technical Field

[0001] The invention belongs to the technical field of drainage belts, and in particular relates to a capillary drainage belt connecting device for municipal road reconstruction. Background Art

[0002] Capillary drainage tape, typically made of polyvinyl chloride (PVC), is a highly efficient and environmentally friendly material that utilizes capillary action to drain water. Its operating principle is based on capillary action, the phenomenon by which liquids rise and fall in a narrow tube. When rainwater or groundwater penetrates the tape's surface, water molecules flow through its tiny pores and, driven by gravity and capillary forces, are rapidly drained along the tape's longitudinal structure, effectively preventing water accumulation and keeping the structure dry.

[0003] Existing municipal road drainage belt connection devices mostly use simple clip-on or bolt fixing. Under the influence of external forces such as long-term water flow impact and vehicle crushing, the connection is easy to loosen and fall off, causing the drainage system to fail, increasing subsequent maintenance costs and safety hazards. Summary of the Invention

[0004] The purpose of the present invention is to solve the shortcomings of the prior art and to propose a capillary drainage belt connection device for municipal road reconstruction.

[0005] To achieve the above objectives, the present invention provides a capillary drainage belt connection device for municipal road reconstruction, a capillary drainage belt connection device for municipal road reconstruction, comprising a connecting belt, wherein two drainage belts are symmetrically arranged above the connecting belt, and the upper surface of the connecting belt is symmetrically provided with fixing grooves, the ends of the two drainage belts are respectively clamped in the two fixing grooves, and the two ends of the two drainage belts are respectively provided with a connecting mechanism, wherein the connecting mechanism includes a stabilizing block, an operating groove is provided inside the stabilizing block, the bottom of the stabilizing block is connected to a connecting frame near one end of the drainage belt, and the other end of the connecting frame is fixedly installed with a supporting block, a moving mechanism is provided inside the operating groove, and a supporting mechanism is provided on the top of the supporting block near one end of the operating groove, and the supporting mechanism is used to support the drainage belt and the end of the connecting belt, and a plug-in component is provided just above the stabilizing block, and the plug-in component is used to control the displacement of the moving mechanism, and at the same time, the plug-in component can tilt the supporting mechanism and fix the supporting mechanism.

[0006] In the above technical solution, further, the supporting and dragging mechanism includes a fixed frame, which is fixedly installed on the top of the supporting and dragging block, and an L-shaped bracket is installed inside the fixed frame through a rotating shaft. The end of the connecting belt is placed on the surface of the L-shaped bracket, and a through groove is provided on the surface of the L-shaped bracket near the top, and a shielding plate is movably installed inside the through groove, and the shielding plate is movably installed above the connecting belt.

[0007] In the above technical solution, further, the moving mechanism includes an L-shaped displacement plate, which is slidably installed inside the operating groove and the connecting frame. A support column is fixedly installed at one end of the L-shaped displacement plate close to the support block, and the top of the support column is set to a semicircular shape, and the top of the support column slides close to the bottom surface of the L-shaped bracket.

[0008] In the above technical solution, further, a recovery groove is provided on the surface of the support block below the fixed frame, and the recovery groove cooperates with the support column, and the support column can be slidably installed in the recovery groove.

[0009] In the above technical solution, further, a ball head is provided at one end of the shielding plate close to the L-shaped displacement plate, and a limit block is fixedly installed on the surface of the L-shaped displacement plate close to the supporting block.

[0010] In the above technical solution, further, a rectangular block is fixedly installed on the bottom of the other end of the L-shaped displacement plate.

[0011] In the above technical solution, further, the plug-in assembly includes a closing plate, a plug-in block is fixedly installed on the bottom of the closing plate, the surface of the plug-in block is provided with an inclined edge and a vertical edge, the vertical edge is provided at the top of the inclined edge, and an extrusion column is fixedly installed on the bottom of the closing plate near one end of the connecting belt, and the extrusion column is directly above the through groove.

[0012] Compared with the prior art, the present invention has the following beneficial effects: The device achieves the initial positioning of the drainage belt and the connecting belt through the locking groove, and then uses the linkage of the plug-in component, the moving mechanism and the supporting and dragging mechanism to tilt the L-shaped bracket and tighten the connection. The rigid limit locking structure greatly enhances the stability between the drainage belt and the connecting belt compared to the traditional simple clamping or bolt connection, effectively preventing the connection from loosening or falling off due to external force or water impact, and extending the service life of the drainage system. The L-shaped bracket can rotate around the axis, so that the connecting belt and the end of the drainage belt form a downward slope. Compared with the traditional horizontal connection method, it can guide the accumulated water to flow faster to the downstream of the drainage system, reducing the retention time of the accumulated water at the connection point. It is especially suitable for heavy rainfall scenarios such as rainstorms, effectively improving the drainage efficiency of municipal roads and reducing the risk of road waterlogging. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 This is a schematic diagram of the drainage belt, connecting belt and connecting mechanism proposed in the present invention; Figure 2 This is a schematic diagram of the connecting mechanism structure proposed by the present invention; Figure 3 This is a schematic diagram of the structure of the moving mechanism and the supporting and dragging mechanism proposed in the present invention; Figure 4 This is a cross-sectional view of the structure of the connecting mechanism proposed by the present invention when it is working; Figure 5 This is a schematic diagram of the drainage belt and connecting belt structure proposed by the present invention; Figure 6 The present invention proposes Figure 5 Enlarged view of point A in the middle.

[0014] In the figure: 1. Drainage belt; 2. Connecting belt; 3. Fixing groove; 4. Connecting mechanism; 5. Stabilizing block; 6. Operating groove; 7. Connecting frame; 8. Support block; 9. Recovery groove; 10. Fixing frame; 11. L-shaped bracket; 12. Shielding plate; 13. Ball head; 14. L-shaped displacement plate; 15. Support column; 16. Rectangular block; 17. Limiting block; 18. Plug-in assembly; 19. Plug-in block; 20. Closing plate; 21. Extrusion column; 22. Inclined edge; 23. Vertical edge. DETAILED DESCRIPTION

[0015] In order to more clearly understand the above-mentioned objects, features and advantages of the present invention, the present invention is further described in detail below with reference to the accompanying drawings and specific embodiments.

[0016] like Figures 1-6The capillary drainage belt connection device for municipal road reconstruction shown in the figure includes a connecting belt 2, two drainage belts 1 are symmetrically arranged above the connecting belt 2, and the upper surface of the connecting belt 2 is symmetrically provided with fixing grooves 3. The ends of the two drainage belts 1 are respectively clamped in the two fixing grooves 3, and the two ends of the two drainage belts 1 are respectively provided with a connecting mechanism 4. The connecting mechanism 4 includes a stabilizing block 5, and an operating groove 6 is opened inside the stabilizing block 5. The bottom of the stabilizing block 5 near one end of the drainage belt 1 is connected to a connecting frame 7, and the other end of the connecting frame 7 is fixedly installed with a supporting block 8. A moving mechanism is provided inside the operating groove 6, and a supporting mechanism is provided on the top of the supporting block 8 near one end of the operating groove 6. The supporting mechanism is used to The support of the ends of the drainage belt 1 and the connecting belt 2 is provided with a plug-in component 18 directly above the stabilizing block 5. The plug-in component 18 is used to control the displacement of the moving mechanism. At the same time, the plug-in component 18 can tilt the supporting mechanism and fix the supporting mechanism. The device utilizes the linkage of the plug-in component 18, the moving mechanism and the supporting mechanism to make the drainage belt 1 and the connecting belt 2 more stable, effectively preventing the drainage belt 1 from loosening or falling off due to external force or water impact, thereby extending the service life of the drainage system. At the same time, the connecting belt 2 and the end of the drainage belt 1 form a downward slope, which can guide the accumulated water to flow faster to the downstream of the drainage system compared to the traditional horizontal connection method, reducing the retention time of the accumulated water at the connection.

[0017] When the L-shaped bracket 11 is rotated and connected to the fixed frame 10 by the rotating shaft, the two drainage belts 1 connected to it can also be tilted. At this time, the ends of the connecting belt 2 and the drainage belt 1 will be in a downward tilted state, which can make the accumulated water flow faster along the drainage belt to the downstream of the drainage system, thereby effectively improving the drainage efficiency.

[0018] The moving mechanism includes an L-shaped displacement plate 14, which is slidably installed inside the operating groove 6 and the connecting frame 7. A support column 15 is fixedly installed at one end of the L-shaped displacement plate 14 close to the support block 8. The top of the support column 15 is set to a semicircular shape, and the top of the support column 15 slides close to the bottom surface of the L-shaped bracket 11. When the L-shaped displacement plate 14 is displaced, the support column 15 will move synchronously with it. Since the top of the support column 15 slides on the bottom surface of the L-shaped bracket 11, the support column 15 has a certain supporting effect on it during the movement of the bottom of the L-shaped bracket 11, so that the L-shaped bracket 11 will not tilt under the action of its own gravity.

[0019] A recovery groove 9 is provided on the surface of the support block 8 below the fixed frame 10, and the recovery groove 9 cooperates with the support column 15. The support column 15 can be slidably installed in the recovery groove 9. When the L-shaped displacement plate 14 slides, the support column 15 connected to the L-shaped displacement plate 14 moves accordingly. After the L-shaped displacement plate 14 moves toward the support block 8, the support column 15 will eventually move into the recovery groove 9. At this time, the support column 15 cancels the supporting effect on the L-shaped bracket 11, and the L-shaped bracket 11 will rotate around the rotating shaft due to its own gravity, thereby tilting.

[0020] A ball head 13 is provided at one end of the shielding plate 12 close to the L-shaped displacement plate 14. The setting of the ball head 13 can slide more smoothly on the surface of the L-shaped displacement plate 14 when the L-shaped bracket 11 is tilted. A limit block 17 is fixedly installed on the surface of the L-shaped displacement plate 14 close to the support block 8. The limit block 17 can limit the inclination of the L-shaped bracket 11 to prevent the drainage belt 1 and the connecting belt 2 from breaking due to excessive inclination angle.

[0021] A rectangular block 16 is fixedly installed at the bottom of the other end of the L-shaped displacement plate 14. The setting of the rectangular block 16 can leave a certain gap between the L-shaped displacement plate 14 and the inner wall of the operating groove 6. This gap facilitates the plug-in component 18 to operate the L-shaped displacement plate 14.

[0022] The plug-in assembly 18 includes a sealing plate 20, and a plug-in block 19 is fixedly installed at the bottom of the sealing plate 20. The surface of the plug-in block 19 is provided with an inclined edge 22 and a vertical edge 23. The vertical edge 23 is provided at the top of the inclined edge 22. The bottom of the sealing plate 20 near one end of the connecting belt 2 is fixedly installed with an extrusion column 21. The extrusion column 21 is located directly above the through-groove and pushes the plug-in assembly 18 downward. The sealing plate 20 drives the bottom plug-in block 19 to insert into the gap between the L-shaped displacement plate 14 and the inner wall of the stabilizing block 5. The inclined edge 22 on the surface of the plug-in block 19 first contacts the L-shaped displacement plate 14. As the plug-in assembly 18 continues to move downward, the inclined edge 22 generates a horizontal thrust on the L-shaped displacement plate 14, causing it to slide toward the support block 8. When the L-shaped displacement plate 14 moves, the support column 15 fixedly connected to it slides synchronously and gradually enters the return groove on the surface of the support block 8. The L-shaped bracket 11 is pressed against the bottom edge of the L-shaped bracket 11, and the L-shaped bracket 11 is pressed against the bottom edge of the L-shaped bracket 11, so that the connecting structure can reach a stable state.

[0023] Working principle: First, lay the connecting belt 2 flat on the installation position, align the ends of the two drainage belts 1 with the fixing grooves 3 on the upper surface of the connecting belt 2, press the ends of the drainage belt 1 downward to make it snap into the fixing grooves 3 to complete the initial positioning. At this time, the ends of the connecting belt 2 are placed on the horizontal surfaces of the L-shaped brackets 11 of the support and drag mechanisms on both sides to form a stable horizontal support. Next, hold the closing plate 20 of the plug-in assembly 18, apply downward pressure, drive the closing plate 20 to drive the bottom plug-in block 19 and the extrusion column 21 to move downward synchronously, and the inclined edge 22 of the plug-in block 19 first contacts the side of the L-shaped displacement plate 14. As the plug-in assembly continues to move downward, the inclined edge 22 generates a horizontal thrust on the L-shaped displacement plate 14, causing it to slide toward the support and drag block 8. When the L-shaped displacement plate 14 moves, it drives the support column 15 fixed at one end thereof to slide synchronously toward the support and drag block 8, and the support column 15 gradually moves from The bottom surface of the L-shaped bracket 11 detaches and enters the recovery groove 9 of the support block 8, canceling the supporting effect on the L-shaped bracket. During the movement of the L-shaped displacement plate 14, its top contacts and squeezes the ball head 13 at one end of the shielding plate 12, pushing the shielding plate 12 to slide in the through groove of the L-shaped bracket 11 until it completely covers the top of the drainage belt 1, preventing debris from entering the connection. When the support column 15 slides completely into the recovery groove 9, the vertical edge 23 of the plug-in block 19 is close to the side of the L-shaped displacement plate 14, forming a rigid limit, preventing the L-shaped displacement plate 14 from continuing to move, ensuring that the position of the moving mechanism is fixed. In the next step, the plug-in assembly 18 continues to move downward, and the extrusion column 21 at the bottom of the sealing plate 20 is aligned with the end of the L-shaped bracket 11. The vertical pressure forces the L-shaped bracket 11 to rotate around the rotating axis and tilt downward. Finally, the plug-in assembly 18 and the stabilizing block 5 are connected by bolts.

[0024] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions only describe the principles of the present invention. Various changes and improvements are possible without departing from the spirit and scope of the present invention, and such changes and improvements fall within the scope of the invention as claimed.

Claims

1. A capillary drainage belt connection device for municipal road reconstruction, comprising a connection belt (2), characterized in that: Two drainage belts (1) are symmetrically arranged above the connecting belt (2), and the upper surface of the connecting belt (2) is symmetrically provided with locking grooves (3), and the ends of the two drainage belts (1) are respectively engaged in the two locking grooves (3), and the two ends of the two drainage belts (1) are respectively provided with connecting mechanisms (4), and the connecting mechanisms (4) include a stabilizing block (5), and an operating groove (6) is provided inside the stabilizing block (5). The bottom of the stabilizing block (5) near one end of the drainage belt (1) is connected to a connecting frame (7), and the connecting frame (7) is connected to the bottom of the stabilizing block (5) near one end of the drainage belt (1). ) is fixedly mounted with a support block (8) at the other end thereof, a moving mechanism is provided inside the operating slot (6), a support mechanism is provided at the top of the support block (8) near one end of the operating slot (6), and the support mechanism is used to support the ends of the drainage belt (1) and the connecting belt (2), and a plug-in assembly (18) is provided just above the stabilizing block (5), and the plug-in assembly (18) is used to control the displacement of the moving mechanism, and at the same time, the plug-in assembly (18) can tilt the support mechanism and fix the support mechanism.

2. A capillary drainage tape connection device for municipal road reconstruction according to claim 1, characterized in that: The supporting and dragging mechanism comprises a fixed frame (10), the fixed frame (10) being fixedly mounted on the top of the supporting and dragging block (8), an L-shaped bracket (11) being rotatably mounted inside the fixed frame (10) via a rotating shaft, the end of the connecting belt (2) being placed on the surface of the L-shaped bracket (11), a through groove being provided on the surface of the L-shaped bracket (11) near the top, a shielding plate (12) being movably mounted inside the through groove, and the shielding plate (12) being movably mounted above the connecting belt (2).

3. A capillary drainage tape connection device for municipal road reconstruction according to claim 2, characterized in that: The moving mechanism comprises an L-shaped displacement plate (14), which is slidably mounted inside the operating slot (6) and the connecting frame (7), and a support column (15) is fixedly mounted on one end of the L-shaped displacement plate (14) close to the support block (8), and the top of the support column (15) is configured to be semicircular, and the top of the support column (15) slides close to the bottom surface of the L-shaped bracket (11).

4. A capillary drainage tape connection device for municipal road reconstruction according to claim 3, characterized in that: A recovery groove (9) is provided on the surface of the support block (8) below the fixed frame (10). The recovery groove (9) cooperates with the support column (15), and the support column (15) can be slidably installed in the recovery groove (9).

5. The capillary drainage tape connection device for municipal road reconstruction according to claim 3, characterized in that: A ball head (13) is provided at one end of the shielding plate (12) close to the L-shaped displacement plate (14), and a limiting block (17) is fixedly installed on the surface of the L-shaped displacement plate (14) close to the support block (8).

6. A capillary drainage tape connection device for municipal road reconstruction according to claim 5, characterized in that: A rectangular block (16) is fixedly mounted on the bottom of the other end of the L-shaped displacement plate (14).

7. A capillary drainage tape connection device for municipal road reconstruction according to claim 2, characterized in that: The plug-in assembly (18) includes a sealing plate (20), a plug-in block (19) is fixedly installed at the bottom of the sealing plate (20), an inclined edge (22) and a vertical edge (23) are provided on the surface of the plug-in block (19), and the vertical edge (23) is provided at the top of the inclined edge (22). An extrusion column (21) is fixedly installed at the bottom of the sealing plate (20) near one end of the connecting belt (2), and the extrusion column (21) is located directly above the through groove.