Water conservancy equipment detection device
By designing a water conservancy equipment testing device, using multi-stage electric push rods and electromagnets to fix the fences, combined with corrosion-resistant liquid injection and pH sensors, the problem of existing equipment being unable to test multiple fences simultaneously was solved, improving testing efficiency and recording the testing process.
Patent Information
- Application Number
- CN202520051557.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-10
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-01-10
AI Technical Summary
Existing corrosion resistance testing equipment cannot test multiple hydraulic fences at once, resulting in low testing efficiency.
A hydraulic equipment testing device was designed, comprising a base, a top cover, a corrosion-resistant seat, and a transparent glass cover. It uses a multi-stage electric push rod to drive the pressure plate, enabling simultaneous testing of multiple fences. The fences are fixed by an adsorption seat and an electromagnet. The device combines a corrosion-resistant injection pipe and a pH sensor for solution testing and is equipped with a camera and supplementary lighting to record the testing process.
It enables simultaneous detection of multiple fences, improving detection efficiency. The detection process is recorded by a camera, avoiding light obstruction that could affect the detection results, and the solution discharge does not contaminate the next detection.
Smart Images

Figure CN223770017U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of fence inspection, specifically, it relates to a water conservancy equipment inspection device. Background Technology
[0002] In water conservancy projects, it is often necessary to construct waterways to allocate water resources to different areas. However, garbage and weeds can easily float on the water surface, causing blockages in sluice gates. Therefore, hydraulic fences are often installed on the outside of the sluice gates to block the debris. The fences need to be designed to withstand corrosion before being put into production.
[0003] Existing corrosion resistance testing equipment cannot test multiple fences at once and requires individual testing, which is inefficient. Therefore, this utility model is proposed. Utility Model Content
[0004] The technical problem to be solved by this utility model is to overcome the shortcomings of the existing technology and provide a water conservancy equipment testing device.
[0005] To solve the above-mentioned technical problems, the basic concept of the technical solution adopted by this utility model is as follows:
[0006] A water conservancy equipment testing device includes a base, a top cover, a corrosion-resistant seat, and a transparent glass cover. The upper end of the base is fixed to the top cover by a support column. The corrosion-resistant seat is fixed at the upper end of the base. The upper end of the corrosion-resistant seat has accommodating cavities at equal intervals for simultaneously testing the corrosion resistance of multiple fences. The front end of each accommodating cavity is fitted with a transparent glass cover by a fixing bolt. Above each accommodating cavity is an adsorption seat for fixing the fence. A limiting block adapted to the curvature of the fence surface is fixed at the middle of the bottom end of the adsorption seat.
[0007] A pressure plate is fixed to the upper end of the adsorption seat, and the pressure plate is driven by a multi-stage electric push rod at the top of the top cover.
[0008] Optionally, the number of pressure plates is matched with the number of multi-stage electric push rods. All multi-stage electric push rods are fixed to the top cover by angle brackets, and a clearance groove is provided in the middle of the top plate for the extension and retraction ends of the multi-stage electric push rods to pass through.
[0009] Optionally, each of the multi-stage electric push rods is fitted with a dustproof telescopic sleeve on its telescopic end. A metal ring that is magnetically attracted to the magnetic ring is fixed inside the upper and lower ends of each dustproof telescopic sleeve, and the two metal rings are respectively fixed on the opposite surfaces of the top plate and the pressure plate.
[0010] Optionally, the adsorption seat is provided with an electromagnet for magnetically adsorbing the fence, and the electromagnet is connected to the controller at the front end of the pressure plate through a wire. The outer side of the adsorption seat is provided with a sealing strip for abutting the port of the receiving cavity, and the limiting block is made of magnetic material.
[0011] Optionally, guide rods are fixed on both sides of the pressure plate, and the top of the guide rods penetrates the top cover and is threadedly connected to the anti-loosening bolt.
[0012] Optionally, the inner wall of each containment cavity is equipped with a corrosion-resistant injection pipe for injecting diluent and acidic corrosive liquid. A corrosion-resistant one-way solenoid valve is installed at the port of each corrosion-resistant injection pipe, and a corrosion-resistant filter screen is provided at the bottom of each containment cavity.
[0013] Optionally, a corrosion-resistant drain pipe is installed on the lower front side of each of the transparent glass covers, and a corrosion-resistant drain valve is installed on the external port of each corrosion-resistant drain pipe. Furthermore, a pH sensor for detecting the acidity or alkalinity of the solution is fixed to the front end of each transparent glass cover, with the detection end of the pH sensor located on the back of the transparent glass cover.
[0014] Optionally, each of the transparent glass covers is provided with an auxiliary plate in front, and each auxiliary plate has a supplementary light bulb and a camera on the upper back side. The back of the supplementary light bulb and the camera are connected to the touch screen at the front of the auxiliary plate through wires. The front of the corrosion-resistant seat is provided with a sliding rod with the same number as the transparent glass covers. Each sliding rod is fitted with two sliding sleeves. The sliding sleeves are fixed to the sliding rods by limiting bolts. One side of the sliding sleeve is fixed to the auxiliary plate by a connecting strip.
[0015] By adopting the above technical solution, the present invention has the following beneficial effects compared with the prior art. Of course, any product implementing the present invention does not necessarily need to achieve all of the following advantages at the same time:
[0016] This invention allows for the simultaneous detection of multiple fences through multiple receiving cavities. Furthermore, the concentration of the corrosive solution in each receiving cavity can be adjusted as needed, thus significantly improving detection efficiency. During detection, a camera can be used to record the process, specifically filming the corrosion resistance test of the fences placed in the corrosive solution. The supplementary lighting beads provide supplementary illumination to the camera's footage, preventing the auxiliary plate from blocking some light and affecting the brightness of the recorded image.
[0017] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings. Attached Figure Description
[0018] The accompanying drawings described below are merely some embodiments. Those skilled in the art can obtain other drawings based on these drawings without any creative effort.
[0019] In the picture:
[0020] Figure 1This is a schematic diagram of the front cross-sectional structure of this utility model;
[0021] Figure 2 for Figure 1 A schematic diagram of the structure of part A in the diagram;
[0022] Figure 3 for Figure 1 A schematic diagram of the structure of part B in the diagram;
[0023] Figure 4 for Figure 1 A schematic diagram of the structure of part C in the diagram;
[0024] Figure 5 for Figure 1 A schematic diagram of the structure of part D in the diagram;
[0025] Figure 6 for Figure 1 A schematic diagram of the structure of part E in the diagram.
[0026] The attached diagram lists the components represented by each number as follows:
[0027] 1. Base; 2. Support column; 3. Top cover; 4. Corrosion-resistant seat; 5. Receiving cavity; 6. Transparent glass cover; 7. Adsorption seat; 8. Limiting block; 9. Fixing bolt; 10. Pressure plate; 11. Multi-stage electric push rod; 12. Dustproof telescopic sleeve; 13. Magnetic ring; 14. Metal ring; 15. Electromagnet; 16. Controller; 17. Sealing strip; 18. Guide rod; 19. Anti-detachment bolt; 20. Corrosion-resistant injection pipe; 21. Corrosion-resistant one-way solenoid valve; 22. Corrosion-resistant filter screen; 23. Corrosion-resistant drain pipe; 24. Corrosion-resistant drain valve; 25. pH sensor; 26. Auxiliary plate; 27. Supplemental light bead; 28. Camera; 29. Sliding rod; 30. Sliding sleeve; 31. Limiting bolt; 32. Connecting strip; 33. Touch screen.
[0028] It should be noted that these accompanying drawings and textual descriptions are not intended to limit the scope of the present invention in any way, but rather to illustrate the concept of the present invention to those skilled in the art by referring to specific embodiments. Detailed Implementation
[0029] The present invention will now be described in further detail with reference to the accompanying drawings.
[0030] Please see Figures 1 to 6This utility model provides a technical solution: a water conservancy equipment testing device, including a base 1, a top cover 3, a corrosion-resistant seat 4, and a transparent glass cover 6. The upper end of the base 1 is fixed to the top cover 3 by a support column 2. The corrosion-resistant seat 4 is fixed at the upper end of the base 1. The upper end of the corrosion-resistant seat 4 is provided with accommodating cavities 5 at equal intervals for testing the corrosion resistance of multiple fences at the same time. The front end of each accommodating cavity 5 is equipped with a transparent glass cover 6 by a fixing bolt 9. Above each accommodating cavity 5, there is an adsorption seat 7 for fixing the fence. The bottom center of the adsorption seat 7 is fixed with a limiting block 8 that matches the curvature of the fence surface.
[0031] A pressure plate 10 is fixed to the upper end of the adsorption seat 7. The pressure plate 10 is driven by a multi-stage electric push rod 11 at the upper end of the top cover 3. Considering the shortcomings of existing corrosion resistance testing equipment, which cannot test multiple fences at one time and requires individual testing, resulting in low efficiency, this utility model can simultaneously test multiple fences through multiple receiving cavities 5. Furthermore, the concentration of the corrosion solution in each receiving cavity 5 can be adjusted as needed, thus significantly improving the testing efficiency.
[0032] The number of pressure plates 10 matches the number of multi-stage electric push rods 11. Multiple multi-stage electric push rods 11 are fixed to the top cover 3 by corner brackets. The top plate has a through slot in the middle for the extension and retraction ends of the multi-stage electric push rods 11 to pass through. By setting up multi-stage electric push rods 11, the pressure plates 10 are driven to rise and fall. When the pressure plates 10 are raised, the inspectors can place the fence at the bottom of the adsorption seat 7 below the pressure plates 10, and use the magnetic force generated by the electromagnet 15 to complete the magnetic adsorption.
[0033] Each multi-stage electric push rod 11 has a dustproof telescopic sleeve 12 fitted on the outside of its telescopic end. Inside the upper and lower ends of each dustproof telescopic sleeve 12, there are metal rings 14 that are magnetically attracted to the magnetic ring 13. The two metal rings 14 are respectively fixed on the opposite sides of the top plate and the pressure plate 10. By setting the dustproof telescopic sleeve 12, the telescopic end of the multi-stage electric push rod 11 is protected from dust, preventing dust from adhering to the telescopic end of the multi-stage electric push rod 11.
[0034] The adsorption seat 7 is equipped with an electromagnet 15 for magnetic adsorption of the fence. The electromagnet 15 is connected to the controller 16 at the front end of the pressure plate 10 through a wire. The outer side of the adsorption seat 7 is equipped with a sealing strip 17 for contacting the port of the receiving cavity 5. The limiting block 8 is made of magnetic material. By setting the limiting block 8, the fence adsorbed at the bottom of the adsorption seat 7 is positioned, thereby ensuring that the fence is located in the middle of the adsorption seat 7.
[0035] Guide rods 18 are fixed on both sides of the pressure plate 10. The top of the guide rods 18 penetrates the top cover 3 and is threadedly connected to the anti-loosening bolt 19. By setting the guide rods 18, the pressure plate 10 plays a guiding role in longitudinal movement, preventing it from shifting its position during lifting.
[0036] The inner wall of the receiving cavity 5 is equipped with a corrosion-resistant injection pipe 20 for injecting diluent and acidic corrosive liquid. A corrosion-resistant one-way solenoid valve 21 is installed at the port of each corrosion-resistant injection pipe 20, and a corrosion-resistant filter screen 22 is provided at the bottom of each receiving cavity 5. The one-way solenoid valve is used to prevent liquid from splashing into the interior of the corrosion-resistant injection pipe 20 during the process of placing the screen into the receiving cavity 5.
[0037] Each transparent glass cover 6 has a corrosion-resistant drain pipe 23 installed on its lower front end, and a corrosion-resistant drain valve 24 installed on the external port of each corrosion-resistant drain pipe 23. Furthermore, each transparent glass cover 6 has a fixed pH sensor 25 for detecting the acidity or alkalinity of the solution. The detection end of the pH sensor 25 is located on the back of the transparent glass cover 6. The corrosion-resistant drain pipe 23, in conjunction with the corrosion-resistant drain valve 24, effectively drains the solution after each test, preventing contamination of the solution and ensuring the results of subsequent experiments. The pH sensor 25 is used to detect the acidity or alkalinity of the solution, facilitating the mixing of the test solution by the testing personnel as needed.
[0038] Each transparent glass cover plate 6 has an auxiliary plate 26 in front of it. Each auxiliary plate 26 has a supplementary light bulb 27 and a camera 28 on its upper back. The back of the supplementary light bulb 27 and the camera 28 are connected to the touch screen 33 at the front of the auxiliary plate 26 via wires. The front of the corrosion-resistant seat 4 has a sliding rod 29 with the same number as the transparent glass cover plate 6. Each sliding rod 29 has two sliding sleeves 30 on its outside. The sliding sleeves 30 are fixed to the sliding rod 29 by a limiting bolt 31. One side of the sliding sleeve 30 is fixed to the auxiliary plate 26 by a connecting strip 32. The camera 28 and the touch screen 33 on the auxiliary plate 26 work together to facilitate the inspection personnel to review the inspected object. In other words, in addition to the inspection personnel’s visual observation, the inspection process can also be recorded by the camera 28, that is, the corrosion resistance inspection process of the fence placed in the corrosion solution. The supplementary light bulb 27 provides supplementary lighting for the image captured by the camera 28, preventing the auxiliary plate 26 from blocking part of the light and affecting the brightness of the recorded image.
[0039] This utility model is not limited to the above-described embodiments. Anyone should know that structural changes made under the guidance of this utility model, and any technical solutions that are the same as or similar to this utility model, fall within the protection scope of this utility model. Technical aspects, shapes, and structures not described in detail in this utility model are all publicly known technologies.
Claims
1. A water conservancy equipment detection device, comprising a base (1), a top cover (3), a corrosion-resistant seat (4) and a transparent glass cover plate (6), characterized in that, The upper end of the base (1) is fixed with the top cover (3) through the support (2), the corrosion-resistant seat (4) is fixed at the upper end of the base (1), the corrosion-resistant seat (4) is provided with a plurality of containing cavities (5) for simultaneously detecting the corrosion resistance of the fence at equal intervals at the upper end, the front end of each containing cavity (5) is provided with a perspective glass cover plate (6) through a fixing bolt (9), and the adsorption seat (7) for fixing the fence is arranged above each containing cavity (5), and the limiting block (8) matched with the surface curvature of the fence is fixed at the bottom of the adsorption seat (7). The upper end of the adsorption seat (7) is fixed with the pressing plate (10), and the pressing plate (10) is driven by the multi-stage electric push rod (11) at the upper end of the top cover (3).
2. The watercraft detection apparatus of claim 1, wherein The number of the pressing plate (10) matches the number of the multi-stage electric push rod (11), the plurality of multi-stage electric push rods (11) are fixed with the top cover (3) through the corner code, and the middle part of the top plate is provided with a gap slot for the telescopic end of the multi-stage electric push rod (11).
3. The watercraft detection apparatus of claim 1, wherein The telescopic end of each multi-stage electric push rod (11) is provided with a dustproof telescopic sleeve (12), and the metal ring (14) magnetically attracted to the magnetic ring (13) is fixed at the upper and lower ends of each dustproof telescopic sleeve (12).
4. The watercraft detection apparatus of claim 1, wherein The inside of the adsorption seat (7) is provided with the electromagnet (15) for magnetically attracting the fence, and the electromagnet (15) is connected with the controller (16) at the front end of the pressing plate (10) through the wire, the outside of the adsorption seat (7) is provided with the sealing strip (17) for resisting the port of the containing cavity (5), and the limiting block (8) is made of magnetic material.
5. The watercraft detection apparatus of claim 1, wherein The both sides of the pressing plate (10) are fixed with the guide rod (18), and the top of the guide rod (18) penetrates the top cover (3) and is screw-connected with the anti-escape bolt (19).
6. The watercraft detection apparatus of claim 1, wherein The inner side wall of the containing cavity (5) is provided with the corrosion-resistant liquid injection pipe (20) for injecting the diluent and the acid corrosion liquid, the corrosion-resistant one-way electromagnetic valve (21) is arranged at the port of each corrosion-resistant liquid injection pipe (20), and the corrosion-resistant filter screen (22) is arranged at the bottom of each containing cavity (5).
7. The watercraft detection apparatus of claim 1, wherein The front end of each perspective glass cover plate (6) is provided with the corrosion-resistant liquid discharge pipe (23), the outer port of each corrosion-resistant liquid discharge pipe (23) is provided with the corrosion-resistant liquid discharge valve (24), and the front end of each perspective glass cover plate (6) is fixed with the pH sensor (25) for detecting the pH value of the solution, and the detection end of the pH sensor (25) is located at the back of the perspective glass cover plate (6).
8. The watercraft detection apparatus of claim 1, wherein, The front of each of the perspective glass cover plate (6) is provided with an auxiliary plate (26), the back upper side of each auxiliary plate (26) is respectively provided with a light supplement lamp bead (27) and a camera (28), the back of the light supplement lamp bead (27) and the camera (28) is connected with the front end touch screen (33) of the auxiliary plate (26) through wires, the front end of the corrosion-resistant seat (4) is provided with a number of sliding rods (29) consistent with the perspective glass cover plate (6), the outside of each sliding rod (29) is sleeved with two sliding sleeves (30), the sliding sleeve (30) and the sliding rod (29) are fixed through a limiting bolt (31), one side of the sliding sleeve (30) is fixed with the auxiliary plate (26) through a connecting strip (32).