Anti-seepage detection equipment

By introducing components such as buzzers, water immersion sensors and telescopic bellows into the anti-seepage detection equipment, the problem of water waste in waterproof fabric testing is solved, and efficient resource utilization and sealing testing are achieved.

CN223400785UActive Publication Date: 2025-09-30HUANGSHI LEJIA CHEM MATERIALS CO LTD
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Patent Information

Application Number
CN202422236320.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-12
Publication Date
2025-09-30
Estimated Expiration
2034-09-12

AI Technical Summary

Technical Problem

Existing waterproof fabric testing equipment requires a large amount of water resources during the testing process, resulting in a waste of resources and not conducive to saving consumption.

Method used

An anti-seepage detection device was designed, which adopted components such as buzzer, water immersion sensor, servo motor, return pressure plate, reset spring, telescopic bellows, etc. to realize automatic detection and water recycling, ensuring sealing and efficient use of resources.

Benefits of technology

It realizes the convenient detection of waterproof fabrics, reduces the waste of water resources, and improves the detection efficiency and resource utilization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses anti-seepage detection equipment, which relates to the field of anti-seepage detection and comprises a shell and anti-seepage cloth placed in the shell, a square groove is formed in the shell, a perforated box is fixedly mounted at the bottom of the shell, and a water sensor is arranged in the perforated box. According to the anti-seepage detection equipment, during detection, a threaded rod drives a lifting sleeve plate to descend, the lifting sleeve plate downwards presses a concentric-square-shaped pressing plate through a reset spring, the reset spring is prone to reciprocating vibration, at the moment, under the arrangement of a damping rod, the reciprocating resilience force of the reset spring can be relieved, and the stable pressing effect of the equipment is guaranteed; and if the impermeable cloth does not leak water and is accumulated in the concentric-square-shaped pressing plate, along with starting of the pressure pump, a second telescopic corrugated pipe is driven to absorb water flow in the concentric-square-shaped pressing plate at the moment, the water flow is sucked into the water storage tank again, and therefore circulating use can be achieved, and resource consumption can be saved for workers conveniently.
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Description

Technical Field

[0001] The utility model relates to the technical field of anti-seepage detection, in particular to an anti-seepage detection device. Background Art

[0002] The anti-seepage testing equipment is a special equipment used to test the permeability of waterproof cloth materials; in this way, the waterproof performance of the roll cloth material can be known, the use effect of the material can be guaranteed, and water leakage damage can be avoided;

[0003] In the existing technology, the performance of waterproof materials such as waterproof cloth cannot be guaranteed, so it is necessary to test the waterproof effect of the waterproof material. For the staff, it is inconvenient to test the waterproof material.

[0004] To overcome the above-mentioned shortcomings, a Chinese patent application (publication number CN115266523A) discloses a device for testing the waterproof performance of polymer multilayer waterproof fabrics. The device comprises an adjustment assembly provided on the top of a mounting frame, a sealing assembly installed in a water outlet, a stopwatch provided on the front face of a testing seat, a limit mechanism provided in the upper portion of a support frame, and a pressurizing assembly provided inside a water storage tank. The cooperation of a pressure ring with the limit mechanism and the pressurizing assembly facilitates testing of the waterproof fabric in two waterproof modes, thereby improving the accuracy of the waterproof performance of the waterproof fabric. The device not only enables testing of the waterproof performance of the waterproof fabric under normal pressure, water-carrying and load-bearing conditions, but also facilitates effective testing of the waterproof performance of the fabric after tensioning, thereby effectively improving the efficiency and convenience of testing multilayer waterproof fabrics.

[0005] Although the existing technology can overcome the above-mentioned shortcomings, there are still other problems in its operation. For example, when testing the waterproof performance of the fabric, a large amount of water is required for testing, which easily leads to a large waste of resources and is not conducive to saving resource consumption by the staff. Utility Model Content

[0006] The purpose of the present invention is to provide an anti-seepage detection device to solve the problem raised in the above background technology that when testing the waterproof performance of fabrics, a large amount of water is required for testing, which easily leads to a large waste of resources and is not conducive to saving resources for staff.

[0007] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: an anti-seepage detection device, comprising a housing and an anti-seepage fabric placed inside the housing, wherein a square groove is formed inside the housing, a hole box is fixedly mounted on the bottom of the housing, and a water immersion sensor is disposed inside the hole box, a buzzer is fixedly mounted on the front end of the housing, and the buzzer is connected to the water immersion sensor via a signal, a servo motor is fixedly mounted on the upper end of the housing, and a circular pressure plate is disposed inside the housing, and the position of the circular pressure plate corresponds to the position of the anti-seepage fabric;

[0008] A return spring is fixedly mounted on the upper end of the return spring, and a sealing mechanism is provided on the upper end of the return spring, and a rubber sealing gasket is provided on the sealing mechanism, and the upper end of the rubber sealing gasket is fixedly mounted on the lower end of the return plate;

[0009] A second telescopic bellows is installed through the outer side of the circular pressure plate, and a recycling mechanism is provided on the outer side of the second telescopic bellows, and the recycling mechanism absorbs the detection water through the second telescopic bellows.

[0010] Furthermore, a threaded rod is fixedly installed on the output end of the servo motor, and a lifting sleeve is threadedly connected to the surface of the threaded rod, and the upper end of the lifting sleeve is arranged to pass through the upper end of the shell.

[0011] Furthermore, a water tank is fixedly installed on the upper end of the shell, and a first telescopic bellows is installed through the inner side of the water tank, and the middle end of the first telescopic bellows passes through the lifting sleeve and the circular pressure plate.

[0012] Furthermore, a water spray port is fixedly mounted on the lower end of the first telescopic bellows, and the upper end of the water spray port is fixedly mounted on the inner wall of the circular pressure plate, and the output end of the water spray port is aligned with the surface of the anti-permeability fabric.

[0013] Furthermore, the upper end of the reset spring is fixedly mounted on the lower end of the lifting sleeve, and there are four reset springs.

[0014] Furthermore, a damping rod is fixedly mounted on the upper end of the lifting sleeve, and the lower end of the damping rod passes through the lifting sleeve, and the bottom of the damping rod is fixedly mounted on the upper end of the circular pressure plate.

[0015] Furthermore, the upper end of the second telescopic bellows is installed through the outside of the water tank, and a pressure pump is provided at the middle end of the second telescopic bellows, and the inner side of the pressure pump is fixedly installed on the outside of the shell.

[0016] Compared with the prior art, the beneficial effects of the present invention are:

[0017] 1. A mechanism is provided to conveniently test the anti-seepage effect. When in use, the anti-seepage fabric is placed inside the housing and inside the square groove opened inside the housing. At this time, during the test, the first telescopic bellows guides the water flow inside the water storage tank into the water nozzle, and the water nozzle is aimed at the surface of the anti-seepage fabric and sprayed, and the anti-seepage fabric is automatically pressed down and sealed;

[0018] Furthermore, if the anti-permeability fabric leaks, the water will pass through the anti-permeability fabric and drip onto the surface of the water sensor. The water sensor senses the water droplets and transmits a signal to the buzzer. The buzzer sounds to alert the staff that there is a defect. The water dripping on the water sensor can be drained through the holes inside the perforated box, achieving a convenient detection effect.

[0019] Furthermore, during the test, the lifting sleeve is driven down by the threaded rod, and the lifting sleeve presses down the return pressure plate through the return spring. The return spring is prone to reciprocating vibration. At this time, under the setting of the damping rod, the reciprocating rebound force of the return spring can be relieved to ensure the stable pressing effect of the device and improve the sealing of the device.

[0020] 2. If the anti-permeability fabric does not leak and accumulates inside the circular pressing plate, the pressure pump will start to drive the second telescopic bellows to absorb the water flow inside the circular pressing plate and re-absorb the water flow into the water storage tank. This can be used repeatedly, which is convenient for workers to save resource consumption. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 This is a schematic diagram of the overall three-dimensional structure of the utility model;

[0022] Figure 2 This is a schematic diagram of the three-dimensional structure of the utility model when viewed from above;

[0023] Figure 3 This is a schematic diagram of the front sectional three-dimensional structure of the utility model;

[0024] Figure 4 For this utility model Figure 3 A in the middle is an enlarged structural diagram;

[0025] Figure 5 This is a side sectional perspective structural diagram of the present invention;

[0026] Figure 6 This is a schematic diagram of the three-dimensional structure of the lifting sleeve of the utility model;

[0027] Figure 7 This is a schematic diagram of the front sectional three-dimensional structure of the first telescopic bellows of the present invention.

[0028] In the figure: 1. Shell; 2. Anti-penetration fabric; 3. Opening box; 4. Water immersion sensor; 5. Buzzer; 6. Servo motor; 7. Threaded rod; 8. Lifting sleeve; 9. Return spring; 10. Back-shaped pressure plate; 11. Rubber sealing gasket; 12. Damping rod; 13. Water tank; 14. First telescopic bellows; 15. Electronic valve; 16. Water nozzle; 17. Second telescopic bellows; 18. Pressure pump. DETAILED DESCRIPTION

[0029] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0030] Example 1:

[0031] like Figure 1 、 Figure 2 、 Figure 3 、 Figure 5 、 Figure 6 and Figure 7 The technical solution shown in the figure, in order to solve the problem of inconvenience in detecting waterproof fabrics by the device, discloses: a shell 1 and an anti-permeation fabric 2 placed inside the shell 1, and a square groove is opened inside the shell 1, and an opening box 3 is fixedly installed at the bottom of the shell 1, and a water immersion sensor 4 is set inside the opening box 3, a buzzer 5 is fixedly installed at the front end of the shell 1, and the buzzer 5 is connected to the water immersion sensor 4 through a signal, a servo motor 6 is fixedly installed at the upper end of the shell 1, and a circular pressing plate 10 is set inside the shell 1, and the position of the circular pressing plate 10 corresponds to the position of the anti-permeation fabric 2, and the servo motor 6 is fixedly installed at the upper end of the shell 1. The output end of the motor 6 is fixedly mounted with a threaded rod 7, and the surface of the threaded rod 7 is threadedly connected to a lifting sleeve 8, and the upper end of the lifting sleeve 8 is arranged through the upper end of the shell 1, and the upper end of the shell 1 is fixedly mounted with a water tank 13, and the inner side of the water tank 13 is penetrated by a first telescopic bellows 14, and the middle end of the first telescopic bellows 14 is arranged through the lifting sleeve 8 and the circular pressing plate 10, and the lower end of the first telescopic bellows 14 is fixedly mounted with a water nozzle 16, and the upper end of the water nozzle 16 is fixedly mounted on the inner wall of the circular pressing plate 10, and the output end of the water nozzle 16 is aligned with the surface of the anti-permeation fabric 2;

[0032] In the embodiment, a mechanism is provided for conveniently detecting the anti-seepage effect. When in use, the anti-seepage fabric 2 is placed inside the shell 1 and inside the square groove opened inside the shell 1. At this time, when performing the detection, the servo motor 6 is started, and the servo motor 6 drives the threaded rod 7 to rotate. The rotation of the threaded rod 7 drives the lifting sleeve 8 threadedly connected at its bottom to perform lifting and adjustment. At this time, as the lifting sleeve 8 descends, the circular pressing plate 10 is driven to press the anti-seepage fabric 2 downward, and then the first telescopic bellows 14 is opened through the electronic valve 15. The first telescopic bellows 14 introduces the water flow inside the water tank 13 into the water spray port 16. The water spray port 16 is aimed at the surface of the anti-seepage fabric 2 and sprayed. At this time, the anti-seepage fabric 2 is automatically pressed down and sealed. If the anti-seepage fabric 2 leaks, the water passes through the anti-seepage fabric 2 and drips onto the surface of the water immersion sensor 4. The water immersion sensor 4 senses the water droplets and transmits a signal to the buzzer 5. The buzzer 5 emits a sound to remind the staff that there is a defect. The water dripping on the water immersion sensor 4 can be drained through the holes inside the opening box 3, thereby achieving a convenient detection effect.

[0033] Example 2:

[0034] like Figures 1-6 The technical solution shown, in order to solve the problem of defects in sealing detection, discloses: a return spring 9 is fixedly mounted on the upper end of the circular pressure plate 10, and a sealing fitting mechanism is provided on the upper end of the return spring 9, and the sealing fitting mechanism is provided with a rubber sealing gasket 11, and the upper end of the rubber sealing gasket 11 is fixedly mounted on the lower end of the circular pressure plate 10, the upper end of the return spring 9 is fixedly mounted on the lower end of the lifting sleeve 8, and the number of return springs 9 is provided. A damping rod 12 is fixedly mounted on the upper end of the lifting sleeve 8, and the lower end of the damping rod 12 passes through the lifting sleeve 8, and the bottom of the damping rod 12 is fixedly mounted on the upper end of the circular pressure plate 10;

[0035] In the embodiment, when testing, the lifting sleeve 8 is driven to descend by the threaded rod 7, and the lifting sleeve 8 is pressed down by the return spring 9. The return pressure plate 10 is pressed down by the rubber sealing gasket 11, and the return pressure plate 10 is pressed against the edge of the anti-permeation fabric 2. At this time, under the action of the return spring 9, the downward pressure can be increased to ensure the sealing effect. If the device vibrates, the return spring 9 is prone to reciprocating vibration. At this time, under the setting of the damping rod 12, the reciprocating rebound force of the return spring 9 can be relieved to ensure the stable pressing effect of the device and improve the sealing performance of the device.

[0036] Example 3:

[0037] like Figure 1 、 Figure 2 、 Figure 3 and Figure 7To address the problem of resource waste, the technical solution shown in the figure discloses that: a second telescopic bellows 17 is installed through the outer side of the circular pressure plate 10, and a recycling mechanism is provided on the outer side of the second telescopic bellows 17. The recycling mechanism absorbs the test water through the second telescopic bellows 17. The upper end of the second telescopic bellows 17 is installed through the outer side of the water storage tank 13, and a pressure pump 18 is provided at the middle end of the second telescopic bellows 17. The inner side of the pressure pump 18 is fixedly mounted on the outer side of the housing 1.

[0038] In the embodiment, if the anti-permeability fabric 2 does not leak water and accumulates inside the circular pressure plate 10, the pressure pump 18 is started, driving the second telescopic bellows 17 to absorb the water flow inside the circular pressure plate 10 and re-absorb the water flow into the water storage tank 13, so that it can be used repeatedly, which is convenient for the staff to save resource consumption.

[0039] Although the 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 may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An anti-seepage detection device, comprising a shell (1) and an anti-seepage cloth (2) placed inside the shell (1), wherein a square groove is provided inside the shell (1), and a hole box (3) is fixedly installed at the bottom of the shell (1), and a water immersion sensor (4) is provided inside the hole box (3), a buzzer (5) is fixedly installed at the front end of the shell (1), and the buzzer (5) is connected to the water immersion sensor (4) through a signal, a servo motor (6) is fixedly installed at the upper end of the shell (1), and a circular pressing plate (10) is provided inside the shell (1), and the position of the circular pressing plate (10) corresponds to the position of the anti-seepage cloth (2); Its characteristics are: A return spring (9) is fixedly mounted on the upper end of the return spring (9), and a sealing mechanism is provided on the upper end of the return spring (9), and a rubber sealing pad (11) is provided on the sealing mechanism, and the upper end of the rubber sealing pad (11) is fixedly mounted on the lower end of the return pressure plate (10); A second telescopic bellows (17) is installed through the outer side of the circular pressure plate (10), and a recycling mechanism is provided on the outer side of the second telescopic bellows (17), and the recycling mechanism absorbs the detection water through the second telescopic bellows (17).

2. The anti-seepage detection device according to claim 1, characterized in that: The output end of the servo motor (6) is fixedly mounted with a threaded rod (7), and the surface of the threaded rod (7) is threadedly connected with a lifting sleeve (8), and the upper end of the lifting sleeve (8) is arranged to pass through the upper end of the housing (1).

3. The anti-seepage detection device according to claim 2, characterized in that: A water storage tank (13) is fixedly mounted on the upper end of the housing (1), and a first telescopic bellows (14) is installed through the inner side of the water storage tank (13), and the middle end of the first telescopic bellows (14) is installed through the lifting sleeve (8) and the circular pressure plate (10).

4. The anti-seepage detection device according to claim 3, characterized in that: A water spout (16) is fixedly mounted on the lower end of the first telescopic bellows (14), and the upper end of the water spout (16) is fixedly mounted on the inner wall of the circular pressing plate (10), and the output end of the water spout (16) is aligned with the surface of the anti-permeation fabric (2).

5. The anti-seepage detection device according to claim 1, characterized in that: The upper end of the reset spring (9) is fixedly mounted on the lower end of the lifting sleeve (8), and the number of the reset springs (9) is four.

6. The anti-seepage detection device according to claim 5, characterized in that: A damping rod (12) is fixedly mounted on the upper end of the lifting sleeve (8), and the lower end of the damping rod (12) passes through the lifting sleeve (8), and the bottom of the damping rod (12) is fixedly mounted on the upper end of the circular pressure plate (10).

7. The anti-seepage detection device according to claim 1, characterized in that: The upper end of the second telescopic bellows (17) is installed through the outside of the water storage tank (13), and a pressure pump (18) is provided at the middle end of the second telescopic bellows (17), and the inner side of the pressure pump (18) is fixedly installed on the outside of the housing (1).

Citation Information

Patent Citations

  • Waterproof performance detection device for macromolecular multilayer waterproof cloth

    CN115266523A