Bridge water seepage detection device for bridge engineering

Through the bridge seepage detection device integrating lift, displacement and water supply components, the existing cumbersome problems are solved, and rapid and automated seepage detection is achieved, which improves detection efficiency and data accuracy, reduces costs, and enhances the practicality of detection.

CN223166549UActive Publication Date: 2025-07-29JIANGSU SUXIN ENG CONSULTING CO LTD
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Patent Information

Application Number
CN202421847222.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-01
Publication Date
2025-07-29
Estimated Expiration
2034-08-01

AI Technical Summary

Technical Problem

The existing bridge seepage detection methods are complicated and complex, with large engineering volume, slow inspection progress and lack convenience.

Method used

A bridge seepage detection device including a detection box, rubber sealing ring, lifting assembly, water supply assembly, display operation assembly, displacement assembly and detection assembly was designed. The lifting and displacement were driven by electric cylinders, combined with intelligent control screen and water level detector, to achieve rapid positioning, automated monitoring and water level changes, integrate a circulating water supply system, and reduce manual operation and waste of water resources.

Benefits of technology

It greatly shortens the inspection preparation time, improves the detection efficiency, eliminates human error, enhances the flexibility and adaptability of the device, reduces costs, provides objective data to support bridge maintenance decisions, and improves the practicality of the inspection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of accessory devices of water seepage detection devices, in particular to a quick and simple bridge water seepage detection device for bridge engineering, so that the time for arranging current measures is saved, the detection progress is accelerated, and the detection efficiency is improved. Therefore, the bridge water seepage detection device for the bridge engineering is improved in practicability. Comprising a detection box and a rubber sealing ring, the bottom end of the detection box is connected with the rubber sealing ring, a fixing plate is arranged on the outer wall of the detection box, a lifting assembly is arranged on the fixing plate, a water supply assembly and a display operation assembly are arranged on the lifting assembly, a displacement assembly is arranged on the lifting assembly, and a detection assembly is arranged on the fixing plate.
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Description

Technical Field

[0001] The utility model relates to the technical field of auxiliary devices for water seepage detection devices, in particular to a bridge water seepage detection device for bridge engineering. Background Technique

[0002] As is well known, bridge engineering refers to the working process of bridge survey, design, construction, maintenance and inspection, as well as the science and engineering technology to study this process. It is a branch of civil engineering. Bridge engineering mainly studies bridge crossing design, determines the bridge aperture, considers navigation and line requirements to determine the bridge deck height, considers that the foundation is not scoured or frost heaving to determine the foundation embedment depth, designs diversion structures, bridge type scheme design, bridge structure design, bridge construction, bridge inspection, bridge test, bridge maintenance, etc.

[0003] After the bridge is built, multiple detections need to be carried out on it. Among them, the water seepage detection device is an important one. At present, the current method for the bridge water seepage detection device is mostly to set up sealing water retaining measures around the detection area of the bridge pavement first, and then put an appropriate amount of water in the detection area. After a certain period of time, the water seepage of the bridge pavement is judged by observing the remaining water condition. This detection method has a large amount of work, is more cumbersome and complex to implement, and is not convenient and fast enough. Content of the Utility Model

[0004] In order to solve the above technical problems, the utility model provides a fast and simple bridge water seepage detection device, so as to remove the time for arranging the measures at that time, speed up the detection progress, and thus enhance the practicability of a bridge water seepage detection device for bridge engineering.

[0005] A bridge water seepage detection device for bridge engineering of the utility model comprises a detection box and a rubber sealing ring. The bottom end of the detection box is connected with the rubber sealing ring. A fixed plate is arranged on the outer wall of the detection box. A lifting component is arranged on the fixed plate. A water supply component and a display operation component are arranged on the lifting component. A displacement component is arranged on the lifting component. A detection component is arranged on the fixed plate.

[0006] Preferably, the lifting component comprises a top plate and four groups of electric cylinders. The top end of the top plate is connected with the four groups of electric cylinders. The bottom ends of the four groups of electric cylinders are respectively provided with pneumatic rods. The bottom ends of the four groups of pneumatic rods are respectively connected with the fixed plate.

[0007] Preferably, the displacement component comprises four groups of support columns. The bottom end of the top plate is connected with the four groups of support columns. Four groups of clamping chutes are arranged at the top end of the fixed plate. The four groups of support columns are respectively slidably clamped with the clamping chutes. Universal wheels are respectively arranged at the bottom ends of the four groups of support columns.

[0008] Preferably, the display operation component includes a fixed box and a storage battery. The top end of the top plate is connected to the fixed box. A chamber is provided in the fixed box. A cover plate component is provided at the top end of the fixed box. An intelligent control screen and control buttons are provided at the right end of the fixed box. The bottom end of the chamber is connected to the storage battery.

[0009] Preferably, the cover plate component includes a cover plate and four groups of screws. Four groups of installation threaded holes are provided at the top end of the fixed box. Four groups of installation through holes are provided at the top end of the cover plate. The four groups of screws are respectively threadedly connected to the installation threaded holes through the installation through holes.

[0010] Preferably, a sealing strip is provided at the bottom end of the cover plate.

[0011] Preferably, the water supply component includes a water storage tank, a support plate, a water pump, a first pipe and a second pipe. The top end of the top plate is connected to the water storage tank. A water inlet pipe is provided at the left end of the water storage tank. A water outlet pipe is provided at the bottom end of the water storage tank. The water outlet pipe is hermetically penetrated through the bottom end of the top plate. The left end of the fixing plate is connected to the support plate. The top end of the support plate is connected to the water pump. The output end of the water pump is communicated with the first pipe. The first pipe is hermetically inserted into the water storage tank. The input end of the water pump is communicated with the second pipe. The second pipe is hermetically inserted into the detection box.

[0012] Preferably, the detection component includes a water level detector and a water level detection head. The top end of the fixing plate is connected to the water level detector. A signal line is provided at the rear end of the water level detector. The signal line is hermetically inserted into the detection box. The bottom end of the signal line is connected to the water level detection head.

[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows: The bridge seepage detection device of the present utility model realizes the rapid positioning and height adjustment of the detection box through the lifting and displacement component driven by the electric cylinder, greatly shortening the detection preparation time and cycle, eliminating the cumbersome on-site layout. Then, the integrated intelligent control screen and control buttons simplify the operation process, automatically monitor the water level change, and do not require continuous manual observation, improving the efficiency. After that, the water level detector and the detection head ensure the detection accuracy, eliminate the human error, provide objective data. Secondly, the universal wheels and the vertical adjustment ability improve the mobility and adaptability of the device, do not require repeated platform construction, and enhance the flexibility. Then, the key components designed for industrial use ensure the stable operation of the equipment under harsh conditions. The rubber sealing ring and the sealing strip ensure the water tightness, save water, and protect the bridge structure. After that, the combination of the circulating water supply system with the water pump and pipes reduces the water consumption, lowers the cost, and takes into account both environmental protection and economic benefits. Finally, the intelligent control screen records data, supports data analysis and report compilation, provides scientific support for bridge maintenance decision-making, thereby removing the time for arranging the measures at that time, accelerating the detection progress, and thus enhancing the practicability. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 is the connection structure schematic diagram of the present utility model;

[0015] Figure 2 is a schematic diagram of the connection structure between the fixed box and the top plate of the present utility model;

[0016] Figure 3 is a schematic diagram of the connection structure between the top plate and the support column of the present utility model;

[0017] Figure 4 is a schematic diagram of the enlarged partial structure A of the present utility model;

[0018] Reference numerals in the drawings: 1, detection box; 2, rubber sealing ring; 3, fixing plate; 4, top plate; 5, electric cylinder; 6, pneumatic rod; 7, support column; 8, universal wheel; 9, fixed box; 10, chamber; 11, intelligent control screen; 12, control button; 13, storage battery; 14, cover plate; 15, screw; 16, sealing strip; 17, water storage tank; 18, water inlet pipe; 19, water outlet pipe; 20, support plate; 21, water pump; 22, first pipe; 23, second pipe; 24, water level detector; 25, signal line; 26, water level detection head. Detailed implementation manners

[0019] The following combines the drawings and embodiments to further describe in detail the specific implementation manners of the present utility model. The following embodiments are used to illustrate the present utility model, but are not used to limit the scope of the present utility model.

[0020] Such as Figures 1 to 4As shown in the figure, a bridge seepage detection device for bridge engineering of the present utility model includes a detection box 1 and a rubber sealing ring 2. The bottom end of the detection box 1 is connected to the rubber sealing ring 2. A fixing plate 3 is arranged on the outer wall of the detection box 1. A lifting component is arranged on the fixing plate 3. A water supply component and a display operation component are arranged on the lifting component. A displacement component is arranged on the lifting component. A detection component is arranged on the fixing plate 3. The bridge seepage detection device of the present utility model realizes the rapid positioning and height adjustment of the detection box through the lifting and displacement components driven by electric cylinders, greatly shortening the detection preparation time and cycle, eliminating the cumbersome on-site layout. Then, the integrated intelligent control screen and control buttons simplify the operation process, automatically monitor the water level change, without the need for continuous manual observation, improving the efficiency. After that, the water level detector and the detection head ensure the detection accuracy, eliminate the human error, provide objective data. Secondly, the universal wheels and the vertical adjustment ability improve the mobility and adaptability of the device, without the need for repeated platform construction, enhancing the flexibility. Then, the key components designed for industrial use ensure the stable operation of the equipment under harsh conditions. The rubber sealing ring and the sealing strip ensure the water tightness, save water, and protect the bridge structure. After that, the combination of the circulating water supply system with the water pump and the pipeline reduces the water consumption, reduces the cost, taking into account both environmental protection and economic benefits. Finally, the intelligent control screen records the data, supports data analysis and report compilation, providing scientific support for bridge maintenance decision-making, thus removing the time for arranging measures at that time, accelerating the detection progress, and thereby enhancing the practicability.

[0021] As a preference of the above embodiment, the lifting component includes a top plate 4 and four groups of electric cylinders 5. The top end of the top plate 4 is connected to the four groups of electric cylinders 5. The bottom ends of the four groups of electric cylinders 5 are respectively provided with pneumatic rods 6. The bottom ends of the four groups of pneumatic rods 6 are respectively connected to the fixing plate 3. The lifting mechanism driven by the electric cylinders can quickly adjust the height of the detection box, realize rapid positioning, greatly shortening the preparation work before detection and the whole detection cycle, so that the detection box can quickly land or rise, thus enhancing the practicability.

[0022] As a preference of the above embodiment, the displacement component includes four groups of support columns 7. The bottom end of the top plate 4 is connected to the four groups of support columns 7. The top end of the fixing plate 3 is provided with four groups of clamping chutes. The four groups of support columns 7 are respectively slidably clamped with the clamping chutes. The bottom ends of the four groups of support columns 7 are respectively provided with universal wheels 8. It can be supported by the four groups of support columns and can be moved by the four groups of universal wheels. And when the detection box moves downward, it is guided by the four groups of support columns to ensure its stability, thus enhancing the practicability.

[0023] As a preference of the above embodiment, the display operation component includes a fixed box 9 and a storage battery 13. The top end of the top plate 4 is connected to the fixed box 9. A chamber 10 is provided in the fixed box 9. A cover plate 14 assembly is provided at the top end of the fixed box 9. A smart control screen 11 and control buttons 12 are provided at the right end of the fixed box 9. The bottom end of the chamber 10 is connected to the storage battery 13. The smart controller, control buttons, water pump and water level detector can be powered by the storage battery, and then the detection equipment can be operated through the smart control screen and control buttons, thereby enhancing the practicability.

[0024] As a preference of the above embodiment, the cover plate 14 assembly further includes a cover plate 14 and four groups of screws 15. Four groups of installation threaded holes are provided at the top end of the fixed box 9. Four groups of installation through holes are provided at the top end of the cover plate 14. The four groups of screws 15 are respectively threadedly connected to the installation threaded holes through the installation through holes. The fixed box can be sealed by the cover plate and the four groups of screws, so as to protect the parts in the fixed box and facilitate maintenance, thus enhancing the practicability.

[0025] As a preference of the above embodiment, a sealing strip 16 is provided at the bottom end of the cover plate 14. The sealing performance between the cover plate and the fixed box can be enhanced through the sealing strip, thereby enhancing the practicability.

[0026] As a preference of the above embodiment, the water supply component includes a water storage tank 17, a support plate 20, a water pump 21, a first pipe 22 and a second pipe 23. The top end of the top plate 4 is connected to the water storage tank 17. A water inlet pipe 18 is provided at the left end of the water storage tank 17. A water outlet pipe 19 is provided at the bottom end of the water storage tank 17. The water outlet pipe 19 is hermetically penetrated through the bottom end of the top plate 4. The left end of the fixing plate 3 is connected to the support plate 20. The top end of the support plate 20 is connected to the water pump 21. The output end of the water pump 21 is communicated with the first pipe 22. The first pipe 22 is hermetically inserted into the water storage tank 17. The input end of the water pump 21 is communicated with the second pipe 23. The second pipe 23 is hermetically inserted into the detection box 1. The water outlet pipe can be opened through the solenoid valve to inject water into the detection box fixed on the ground. After the detection, the water pump will pump out the water in the detection box and inject it into the water storage tank for water recycling, so as to avoid water resource waste and potential damage to the bridge structure, thereby enhancing the practicability.

[0027] As a preference of the above embodiment, the detection component includes a water level detector 24 and a water level detection head 26. The top end of the fixing plate 3 is connected to the water level detector 24. A signal line 25 is provided at the rear end of the water level detector 24. The signal line 25 is hermetically inserted into the detection box 1. The bottom end of the signal line 25 is connected to the water level detection head 26. The water level in the detection box can be detected through the water level detection head and the water level detector, so as to conduct penetration detection through the water level, thereby enhancing the practicability.

[0028] A bridge seepage detection device for bridge engineering of the present utility model has the following working principle. When it works, first, the device is moved to the position to be detected through four groups of pulleys. Then, the four groups of pneumatic rods are started to move downward by controlling buttons, so that the device is lifted by the detection box. After that, the solenoid valve is controlled to inject water into the detection box. When the water level reaches the standard water level detected by the water level detector, the solenoid valve is then controlled to close the water outlet pipe. After that, if there is a seepage area on the bridge surface, the water level will drop, and the water level detector will notify the intelligent control screen for display. After the detection is completed, the water pump is started. The water pump injects the water in the detection box back into the water storage phase through the second pipe and the first pipe. Then, the four groups of electric cylinders retract the pneumatic rods, and then the device is supported by the four groups of support columns and universal wheels. After that, the device can be moved to the next detection point.

[0029] As used herein, the terms "vertical", "horizontal", "left", "right" and similar expressions are for illustrative purposes only.

[0030] In the present utility model, the "first", "second", "third" do not represent specific quantities and sequences, but are only used for name distinction.

[0031] The above are only the preferred embodiments of the present utility model. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the technical principle of the present utility model, several improvements and modifications can still be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.

Claims

1. A bridge seepage detection device for bridge engineering, characterized in that It includes a detection box (1) and a rubber sealing ring (2). The bottom end of the detection box (1) is connected to the rubber sealing ring (2). A fixing plate (3) is provided on the outer wall of the detection box (1). A lifting component is provided on the fixing plate (3). A water supply component and a display operation component are provided on the lifting component. A displacement component is provided on the lifting component. A detection component is provided on the fixing plate (3).

2. The bridge seepage detection device for bridge engineering according to claim 1, characterized in that, The lifting component includes a top plate (4) and four groups of electric cylinders (5). The top end of the top plate (4) is connected to the four groups of electric cylinders (5). The bottom ends of the four groups of electric cylinders (5) are respectively provided with pneumatic rods (6). The bottom ends of the four groups of pneumatic rods (6) are respectively connected to the fixing plate (3).

3. The bridge seepage detection device for bridge engineering according to claim 2, characterized in that, The displacement component includes four groups of support columns (7). The bottom end of the top plate (4) is connected to the four groups of support columns (7). Four groups of clamping chutes are provided at the top end of the fixing plate (3). The four groups of support columns (7) are respectively slidably clamped with the clamping chutes. Universal wheels (8) are respectively provided at the bottom ends of the four groups of support columns (7).

4. The bridge seepage detection device for bridge engineering according to claim 3, characterized in that, The display operation component includes a fixing box (9) and a storage battery (13). The top end of the top plate (4) is connected to the fixing box (9). A chamber (10) is provided in the fixing box (9). A cover plate (14) component is provided at the top end of the fixing box (9). An intelligent control screen (11) and control buttons (12) are provided at the right end of the fixing box (9). The bottom end of the chamber (10) is connected to the storage battery (13).

5. The bridge seepage detection device for bridge engineering according to claim 4, characterized in that, The cover plate (14) component includes a cover plate (14) and four groups of screws (15). Four groups of installation threaded holes are provided at the top end of the fixing box (9). Four groups of installation through holes are provided at the top end of the cover plate (14). The four groups of screws (15) are respectively threadedly connected to the installation threaded holes through the installation through holes.

6. The bridge seepage detection device for bridge engineering according to claim 5, characterized in that, A sealing strip (16) is provided at the bottom end of the cover plate (14).

7. The bridge seepage detection device for bridge engineering according to claim 6, characterized in that, The water supply component includes a water storage tank (17), a support plate (20), a water pump (21), a first pipe (22) and a second pipe (23). The top end of the top plate (4) is connected to the water storage tank (17). A water inlet pipe (18) is provided at the left end of the water storage tank (17). A water outlet pipe (19) is provided at the bottom end of the water storage tank (17). The water outlet pipe (19) penetrates through the bottom end of the top plate (4) in a sealed manner. The left end of the fixing plate (3) is connected to the support plate (20). The top end of the support plate (20) is connected to the water pump (21). The output end of the water pump (21) is communicated with the first pipe (22). The first pipe (22) is inserted into the water storage tank (17) in a sealed manner. The input end of the water pump (21) is communicated with the second pipe (23). The second pipe (23) is inserted into the detection box (1) in a sealed manner.

8. The bridge seepage detection device for bridge engineering according to claim 7, wherein, The detection component includes a water level detector (24) and a water level detection head (26). The top end of the fixing plate (3) is connected to the water level detector (24). A signal line (25) is provided at the rear end of the water level detector (24). The signal line (25) is inserted into the detection box (1) in a sealed manner. The bottom end of the signal line (25) is connected to the water level detection head (26).