Detection device for a sealed waterproof structure

By designing a testing device with a sealed and waterproof structure, and utilizing methods such as gas and liquid pressure testing, airbag filling, and color change of testing paper, the problem of pipeline sealing testing has been solved. This enables effective detection of pipeline sealing locations and leakage monitoring, ensuring the safety performance of pipelines.

CN223611042UActive Publication Date: 2025-11-28YUNFEI AVIATION EQUIP (TIANJIN) CO LTD
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Patent Information

Application Number
CN202520247085.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-17
Publication Date
2025-11-28
Estimated Expiration
2035-02-17

AI Technical Summary

Technical Problem

In existing technologies, it is difficult to effectively test the sealing and waterproofing performance of pipe structures after they break or are spliced, which makes it impossible to ensure that their performance and safety meet the usage requirements.

Method used

A testing device for a sealed and waterproof structure was designed, including components such as a rotating beam, clamping arm, valve, air bladder, pressure gauge, and semi-circular cover. It can detect the sealing position of pipelines and monitor leaks through methods such as gas and liquid pressure testing, air bladder filling, and color change of test paper.

Benefits of technology

It can effectively detect the sealing effect of pipeline sealing positions, prevent gas and liquid leakage, improve the accuracy and reliability of detection, and ensure the safety performance of pipelines.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to detection technical field more specifically is detection equipment of sealed waterproof structure, including the crossbeam that rotatory connection has the pivot, and the thread of opposite rotation is seted up in the both sides of pivot, and the both sides of pivot are connected with the clamping arm respectively, and the valve is fixedly connected with in the both ends of two clamping arms, and the rubber pad is fixedly connected on the inside surface of each clamping arm, and the pressure table is installed in the outside of each clamping arm, and the gas pipeline and liquid pipeline are connected with the valve outside end respectively, the valve inside fixedly connected with the inside block, and the air bag is fixedly connected between the inside block and clamping arm, and the connecting mouth for the air bag is filled, and the air bag is fixedly connected with the air outlet, can carry out the detection to the sealed position of pipeline type structure.
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Description

TECHNICAL FIELD

[0001] The utility model relates to detection technical field more specifically is the detection equipment of sealed waterproof structure. BACKGROUND

[0002] Sealed waterproof detection is more common in industrial production, for example, the structure of the pipeline type at present, when breaking or splicing, the breaking or splicing position needs to be sealed and waterproofed, so that the structure of the pipeline type is remedied, and after the remedy, in order to ensure that its performance and safety performance meet normal use, the breaking or splicing position needs to be monitored, so the application provides the detection equipment of sealed waterproof structure, which can detect the sealing position of the structure of the pipeline type. SUMMARY

[0003] The utility model provides sealed waterproof structure's detection equipment, its beneficial effect can detect the sealing position of the structure of the pipeline type.

[0004] The detection equipment of sealed waterproof structure, including the crossbeam that rotation is connected with the pivot, the thread of opposite rotation is set up in the both sides of pivot, the both sides of pivot are connected with the clamping arm respectively, and the valve is fixedly connected in the front end of two clamping arms, and the rubber pad is fixedly connected on the inner side of each clamping arm, and the pressure gauge is installed on the outside of each clamping arm, and the gas pipeline and liquid pipeline are connected with the outer end of two valves respectively;

[0005] The inner side of valve is fixedly connected with the inner block, and the air bag is fixedly connected between the inner block and the clamping arm, and the connecting mouth for the air bag is fixedly connected outside the air bag.

[0006] The rear end of crossbeam is rotationally connected on the base.

[0007] The left end of pivot passes through the crossbeam, and the left end of pivot is fixedly connected with the rotating wheel.

[0008] The semicircular cover is fixedly connected in the middle of crossbeam, another semicircular cover is rotationally connected with the upper end of semicircular cover, and two semicircular covers can be buckled around the sealed waterproof structure.

[0009] The inner wall surface of semicircular cover is fixedly connected with detection paper, and the detection agent that changes color when meeting water is coated on detection paper. BRIEF DESCRIPTION OF DRAWINGS

[0010] The utility model will be further explained in detail in combination with the drawings and specific implementation method.

[0011] Figure 1 It is the structure schematic drawing of detection equipment;

[0012] Figure 2 It is the structure schematic drawing of another direction of detection equipment.

[0013] Figure 3 It is the structural schematic view of the clamping arm;

[0014] Figure 4 It is the structural schematic view of the valve;

[0015] Figure 5 It is the structural schematic view of the air bag;

[0016] Figure 6 It is the structural schematic view of the half round cover;

[0017] In the drawing: clamping arm 01; rubber pad 02; valve 03; pressure gauge 04; inner stop 05; air bag 06; connecting mouth 07; crossbeam 08; rotating shaft 09; rotating wheel 10; half round cover 11; detection paper 12; base 13. DETAILED DESCRIPTION

[0018] Referring to Figures 1 to 6 , one can understand from the structure in the drawing that one implementation process of clamping and detection in the utility model,

[0019] The detection equipment of the sealing waterproof structure comprises a crossbeam 08 rotatably connected with a rotating shaft 09, threads with opposite rotation directions are formed on the two sides of the rotating shaft 09, clamping arms 01 are respectively connected to the two sides of the rotating shaft 09, valve 03s are fixedly connected to the front ends of the two clamping arms 01, rubber pads 02 are fixedly connected to the inner side surfaces of each clamping arm 01, pressure gauges 04 are installed on the outer sides of each clamping arm 01, and gas pipelines and liquid pipelines are respectively connected to the outer ends of the two valves 03. The pipeline structure which is spliced and sealed in the middle is horizontally placed, and the two ends of the spliced pipeline are respectively aligned with the two clamping arms 01, then the rotating shaft 09 is rotated to drive the two clamping arms 01 to approach each other, so that the two valves 03 extend into the spliced pipeline from the two ends of the spliced pipeline until the two clamping arms 01 clamp the spliced pipeline from the two ends, then gas is filled into the spliced pipeline through one of the valves 03, the gas pressure in the spliced pipeline is increased and kept still for five minutes, and the pressure gauge 04 is observed, if the value of the pressure gauge 04 is stable, it indicates that the sealing effect of the splicing position is good; in addition, after the gas pressure test is completed, the gas is discharged, and then another valve 03 is used to introduce clean water into the spliced pipeline, so that the spliced pipeline is filled with clean water and the pressure is increased, and the state of the pressure gauge 04 thereon is observed to judge the sealing and waterproof effect of the splicing position.

[0020] Referring to Figures 1 to 6 , one can understand from the structure in the drawing that one implementation process of avoiding pressure leakage in the utility model,

[0021] The valve 03 is fixedly connected with an inner block 05, the inner block 05 is fixedly connected with an air bag 06 between the clamping arm 01, and the air bag 06 is fixedly connected with a connecting mouth 07 for inflating and deflating the air bag 06; after the spliced pipeline is clamped, the gas source can be connected to the connecting mouth 07, so that the gas is filled into the air bag 06, the air bag 06 enters between the valve 03 and the inner wall of the spliced pipeline, the gap between the valve 03 and the inner wall of the spliced pipeline is filled, and the leakage from the gap between the valve 03 and the inner wall of the spliced pipeline when the gas and the liquid are filled into the spliced pipeline is avoided, so that the sealing effect after clamping is improved.

[0022] Referring to Figures 1 to 6 , it can be understood from the structure in the drawing that an implementation process of detecting in the motion in the utility model,

[0023] The rear end of the cross beam 08 is rotationally connected to the base 13, the rear end of the base 13 is provided with a speed reducer motor for driving the cross beam 08 to rotate, the spliced pipeline can be clamped and filled with gas or liquid, the cross beam 08 is driven by the speed reducer motor to rotate in the vertical direction, so that the detected spliced pipeline is moved, and the detection of the spliced structure in the motion state is realized.

[0024] Referring to Figures 1 to 6 , it can be understood from the structure in the drawing that an implementation process of facilitating rotation in the utility model,

[0025] The left end of the rotating shaft 09 penetrates through the cross beam 08, the left end of the rotating shaft 09 is fixedly connected with a rotating wheel 10, and the detection personnel can rotate the rotating wheel 10, so that the rotating wheel 10 drives the rotating shaft 09 to rotate, thereby facilitating the operation process of clamping the spliced pipeline.

[0026] Referring to Figures 1 to 6 , it can be understood from the structure in the drawing that an implementation process of avoiding splashing of clean water in the utility model,

[0027] The middle part of the cross beam 08 is fixedly connected with a semicircular cover 11, another semicircular cover 11 is rotationally connected to the upper end of the semicircular cover 11, and the two semicircular covers 11 can be buckled around the sealing and waterproof structure; when the spliced pipeline is clamped and the detection is carried out by filling clean water, the semicircular cover 11 in front is first rotated upward to be opened, the spliced pipeline is moved to the middle of the semicircular cover 11 fixed on the cross beam 08, and then the semicircular cover 11 in front is lowered, so that the two semicircular covers 11 are buckled around the spliced part of the spliced pipeline by the self weight, the protection can be carried out during the detection process, the leaked clean water can be shielded when the clean water is filled, and the splashing of clean water outward is avoided when the spliced part leaks;

[0028] In addition, the lower end of the semicircular cover 11 is fixedly connected with a magnet, the two lower ends of the semicircular cover 11 can be adsorbed together, the two magnets at the lower end can be adsorbed when the semicircular cover 11 in front is put down, so that the two semicircular covers 11 can be stably connected together, and opening is avoided when monitoring in a moving state.

[0029] With reference to Figures 1 to 6 , it can be understood from the structure in the figure that in the embodiment of the utility model, one implementation process of facilitating observation of clean water leakage,

[0030] The inner wall surface of the semicircular cover 11 is fixedly connected with a detection paper 12, the detection paper 12 is coated with a detection agent that changes color when meeting water, when detecting waterproof performance, clean water can drop in the semicircular cover 11 when meeting clean water leakage, the clean water drops on the detection paper 12, so that the detection paper 12 changes color, and the leakage condition of the clean water is observed by the detection personnel.

[0031] With reference to Figures 1 to 6 , it can be understood from the structure in the figure that in the embodiment of the utility model, one implementation process of facilitating observation of sealing effect,

[0032] The front end of the clamping arm 01 is made of transparent material, the air bag 06 can be observed, the inflation effect of the air bag 06 can be observed through the clamping arm 01 when the air bag 06 inflates, and the sealing process is understood.

[0033] With reference to Figures 1 to 6 , it can be understood from the structure in the figure that in the embodiment of the utility model, one implementation process of facilitating observation of clean water leakage,

[0034] The semicircular cover 11 is made of transparent material, the detection paper 12 can be observed through the semicircular cover 11 when the detection paper 12 changes color after clean water leakage.

Claims

1. An inspection apparatus of a sealed waterproof structure, characterized by comprising: Including the crossbeam (08) that is rotatably connected with the rotating shaft (09), the rotating shaft (09) is provided with opposite screw threads on both sides, the rotating shaft (09) is connected with the clamping arm (01) on both sides, the valve (03) is fixedly connected to the front end of the two clamping arms (01), the rubber pad (02) is fixedly connected to the inner side of each clamping arm (01), the pressure gauge (04) is installed on the outer side of each clamping arm (01), and the gas pipeline and the liquid pipeline are connected with the outer end of the two valves (03).

2. The detection apparatus of a sealed waterproof structure according to claim 1, characterized by: The inner side of the valve (03) is fixedly connected with the inner block (05), the air bag (06) is fixedly connected between the inner block (05) and the clamping arm (01), and the connecting mouth (07) for inflating and deflating the air bag (06) is fixedly connected to the outer side of the air bag (06).

3. The detection apparatus of a sealed waterproof structure according to claim 2, characterized by: The rear end of the crossbeam (08) is rotatably connected to the base (13).

4. The detection apparatus of a sealed waterproof structure according to claim 3, characterized by: The left end of the rotating shaft (09) penetrates out of the crossbeam (08), and the rotating shaft (09) is fixedly connected with the rotating wheel (10) at the left end.

5. The detection apparatus of a sealed waterproof structure according to claim 4, characterized by: The middle part of the crossbeam (08) is fixedly connected with the semicircular cover (11), and another semicircular cover (11) is rotatably connected to the upper end of the semicircular cover (11), and the two semicircular covers (11) can be buckled around the waterproof structure.

6. The detection apparatus of a sealed waterproof structure according to claim 5, characterized by: The inner wall of the semicircular cover (11) is fixedly connected with the detection paper (12), and the detection paper (12) is coated with a detection agent that changes color when water is encountered.

7. The detection apparatus of a sealed waterproof structure according to claim 2, characterized by: The front end of the clamping arm (01) is made of transparent material, and the air bag (06) can be observed.

8. The detection apparatus of claim 4, wherein: The rear end of the base (13) is provided with a speed reducer motor for driving the crossbeam (08) to rotate.

9. The detection apparatus of a sealed waterproof structure according to claim 5, characterized by: The semicircular cover (11) is made of transparent material.

10. The detection apparatus of a sealed waterproof structure according to claim 5, characterized by: The lower end of the semicircular cover (11) is fixedly connected with a magnet, so that the lower ends of the two semicircular covers (11) are attracted together.