Multifunctional indoor water pipe water leakage detection equipment

Through the multi-functional indoor water pipe leakage detection equipment integrating compression testing, thermal imaging and acoustic positioning technology, the traditional water leakage detection problems are solved, and efficient and accurate water leakage detection and simplified operation are achieved, which is suitable for ordinary users.

CN223153349UActive Publication Date: 2025-07-25WULIAN INTELLIGENT (SHANDONG) GRP CO LTD
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Patent Information

Application Number
CN202422095183.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-28
Publication Date
2025-07-25
Estimated Expiration
2034-08-28

AI Technical Summary

Technical Problem

The traditional water leakage detection method relies on manual experience, is inefficient and prone to missed inspection. The existing equipment has a single function and complex operation. It requires professional personnel to maintain it, which increases the cost and difficulty of use.

Method used

Integrate compression testing, thermal imaging and acoustic positioning technology, combined with flat panels, leak-leakage instruments, heating and pressurization all-in-one machines and active noise reduction headphones, remote operation and big data analysis of the equipment is realized through a dedicated APP, reducing operation difficulty and maintenance costs.

Benefits of technology

Improve the accuracy and efficiency of water leakage detection, reduce missed inspections and misinspections, and ordinary users can easily use equipment for daily maintenance to ensure the safe and stable operation of indoor water pipe systems.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a multifunctional indoor water pipe water leakage detection device which comprises a detection device body, the detection device body comprises a flat plate, a leakage listening instrument, an active noise reduction earphone and a heating and pressurizing all-in-one machine, and the leakage listening instrument, the active noise reduction earphone and the heating and pressurizing all-in-one machine are all connected with the flat plate. One end of one side of the heating and pressurizing all-in-one machine is fixedly communicated with a connecting water pipe, and the other end of one side of the heating and pressurizing all-in-one machine is fixedly communicated with a water bucket. According to the utility model, the water leakage condition can be detected and analyzed more comprehensively, and the possibility of leak detection and false detection is reduced, so that the safe and stable operation of an indoor water pipe system is ensured; by optimizing the structure and the design of the equipment, the operation difficulty and the maintenance cost are reduced, so that a common user can easily use the equipment and carry out daily maintenance work.
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Description

Technical Field

[0001] The utility model relates to the technical field of intelligent detection, and specifically relates to a multifunctional indoor water pipe leakage detection device. Background Technique

[0002] With the progress of technology, the leakage detection technology has gradually evolved from the initial simple detection method to an intelligent system integrating a variety of advanced technologies. In the early stage, leakage detection mainly relied on manual experience judgment and simple sensor devices, which was inefficient and prone to missed detections. With the application of advanced technologies such as thermal imaging technology and acoustic positioning technology, the functions of leakage detection devices have been greatly expanded. Thermal imaging technology can accurately capture the heat distribution of pipelines to help determine the pipeline position and leakage points; acoustic positioning technology locates the leakage position by capturing water noise, achieving precise positioning of leakage points. At the same time, with the development of mobile Internet and big data technologies, leakage detection devices have gradually become intelligent and automated. Through the development of mobile application software, users can easily operate the device, view detection results, and perform data upload and background management. Big data analysis technology can deeply mine and analyze detection data, providing a more scientific basis for leakage prevention and repair.

[0003] In summary, the above patent background technology has developed on the basis of technological progress in multiple fields such as sensor technology, thermal imaging technology, acoustic positioning technology, and mobile application software development. The progress of these technologies provides strong technical support for the research and development and application of leakage detection devices, promoting the continuous development and improvement of leakage detection technology.

[0004] However, the traditional leakage detection methods have the following disadvantages:

[0005] (1) First of all, the traditional leakage detection methods often rely on manual experience judgment, which is not only inefficient but also prone to missed detections, and cannot timely discover and handle leakage problems, bringing inconvenience to people's lives and work;

[0006] (2) In addition, the existing leakage detection devices often have a single function and cannot achieve comprehensive detection and analysis of leakage problems. At the same time, the operation and maintenance of the devices may be relatively complex and require professional personnel to operate and maintain, increasing the use cost and difficulty. Content of the Utility Model

[0007] The purpose of the present utility model is to provide a multifunctional indoor water pipe leakage detection device to solve the problems raised in the above-mentioned background technology. First of all, traditional leakage detection methods often rely on manual experience judgment, which is not only inefficient but also prone to missed detections, unable to detect and handle leakage problems in a timely manner, bringing inconvenience to people's lives and work. In addition, existing leakage detection devices often have a single function, unable to achieve a comprehensive detection and analysis of leakage problems. At the same time, the operation and maintenance of the device may be relatively complex, requiring professional personnel for operation and maintenance, increasing the use cost and difficulty.

[0008] To achieve the above object, the present utility model provides the following technical solution: A multifunctional indoor water pipe leakage detection device, including a detection device main body, the detection device main body includes a flat panel, a leak detector, active noise-canceling headphones, and a heating and pressurizing integrated machine. The leak detector, active noise-canceling headphones, and heating and pressurizing integrated machine are all connected to the flat panel. One end of one side of the heating and pressurizing integrated machine is fixedly communicated with a connecting water pipe, and the other end of one side of the heating and pressurizing integrated machine is fixedly communicated with a water bucket. The leak detector includes a vertical leak detector and a horizontal leak detector. The flat panel includes a panel main body and an infrared lens. One side of the panel main body is fixedly connected to one side of the infrared lens. By integrating multiple functions, this device of the detection device main body realizes a comprehensive and efficient detection of indoor water pipe leakage points.

[0009] As a preferred technical solution of the present utility model, a power button, a volume increase button, and a volume decrease button are sequentially fixedly installed on the top of the panel main body from left to right. An earphone jack, a Type-C power interface, and a DC power interface are sequentially opened on one side of the panel main body from top to bottom. A communication interface is opened at the bottom of the panel main body. The flat panel is equipped with a thermal imaging module and a dedicated APP for controlling device operations and displaying detection results. As the control center of the device, the flat panel is equipped with a thermal imaging module that can take thermal imaging photos of the pipeline to help users determine the pipeline position. At the same time, a dedicated APP is installed on the flat panel, and users can perform various operations on the device through the APP and view the detection results in real time, making the operation more convenient and intuitive.

[0010] As a preferred technical solution of the utility model, the vertical leak detector comprises a bottom protection device and a first outer shell. The top end of the bottom protection device is fixedly connected to the bottom end of the first outer shell. In the middle of the top end of the bottom protection device, a fixed chassis is fixedly installed. In the middle of the top end of the fixed chassis, a first anti-external sound interference bottom shell is fixedly installed. A first anti-external sound interference top cover is snap-fitted on the top end of the first anti-external sound interference bottom shell. A first sound sensor is fixedly installed inside the first anti-external sound interference top cover. The bottom end of the first sound sensor is fixedly installed with a first sound collector extending into the first anti-external sound interference bottom shell. A signal transmission installation port is fixedly installed on the top end of the first outer shell. A handheld part is arranged on the top end of the first outer shell. A first button switch is fixedly installed on the top end of the handheld part. A first locking joint is fixedly installed on one side of the handheld part. A signal transmission installation column is fixedly installed at the bottom end of the handheld part. The signal transmission installation column is snap-fitted with the signal transmission installation port. The leak detector is divided into two types: vertical and horizontal, and is used for acoustic positioning.

[0011] As a preferred technical solution of the utility model, both the first sound sensor and the first sound collector are connected to a tablet.

[0012] As a preferred technical solution of the utility model, the horizontal leak detector comprises a protection chassis and a second outer shell. The top end of the protection chassis is fixedly connected to the bottom end of the second outer shell. In the middle of the top end of the protection chassis, a second anti-external sound interference bottom shell is fixedly installed. A second anti-external sound interference top cover is snap-fitted on the top end of the second anti-external sound interference bottom shell. A second sound sensor is fixedly installed inside the second anti-external sound interference top cover. A second sound collector extending into the second anti-external sound interference bottom shell is fixedly installed inside the second sound sensor. A second button switch is fixedly installed at one end of the second outer shell. A second locking joint is fixedly installed at the other end of the second outer shell. The leak detector is a key component for acoustic positioning and is divided into two types: vertical and horizontal to meet the detection requirements in different scenarios. The vertical leak detector is mainly used to detect water leakage points on the horizontal ground, while the horizontal leak detector is more suitable for detecting water leakage points on walls or in narrow spaces.

[0013] As a preferred technical solution of the utility model, both the second sound sensor and the second sound collector are connected to a tablet.

[0014] As a preferred technical solution of the utility model, the heating and pressurizing integrated machine comprises a lower shell assembly and a cover plate. The top end of the lower shell assembly is snap-connected to the bottom end of the cover plate. An upper cover is fixedly installed at the top end of the cover plate. A decorative plate is fixedly installed in the middle of the top end of the upper cover. A control module is fixedly installed on one side of the inner wall of the lower shell assembly. A heating module is fixedly installed on the other side of the inner wall of the lower shell assembly. One end of the lower shell assembly is fixedly communicated with a water inlet and outlet assembly. A water circulation assembly fixedly communicated with the water inlet and outlet assembly is fixedly installed inside the lower shell assembly. A booster pump is fixedly installed at one end of the inner wall of the lower shell assembly. The heating and pressurizing integrated machine is used for pressure testing and heating pipelines. By applying a certain pressure to the pipelines and maintaining the pressure, the heating and pressurizing integrated machine can judge whether there is water leakage in the pipelines. At the same time, the heating and pressurizing integrated machine can also heat the pipelines, so that the pipelines present clear thermal imaging under the infrared lens, which is convenient for users to determine the pipeline position and identify suspicious water leakage points. Among them, the active noise-canceling headphones are used to assist in acoustic positioning. The auxiliary role of the active noise-canceling headphones in acoustic positioning is that by wearing the active noise-canceling headphones, users can more clearly hear the sound emitted by the water leakage point, and according to the size and direction of the sound, assist in determining the specific position of the water leakage point. This function improves the accuracy and efficiency of acoustic positioning.

[0015] As a preferred technical solution of the utility model, one end of the water inlet and outlet assembly away from the lower shell assembly is fixedly communicated with a connecting water pipe.

[0016] Compared with the prior art, the beneficial effects of the utility model are as follows:

[0017] By integrating multiple technologies such as pressure testing, thermal imaging and acoustic positioning, the utility model significantly improves the accuracy and efficiency of water leakage detection. Compared with the traditional single detection method, the utility model can more comprehensively detect and analyze the water leakage situation, reduce the possibility of missed detection and false detection, so as to ensure the safe and stable operation of the indoor water pipe system;

[0018] By comprehensively applying a variety of advanced technologies, the comprehensive and efficient detection of water leakage problems is realized. By combining various technical means such as sensor technology, thermal imaging technology and acoustic positioning technology, the position of the pipeline and the position of the water leakage point can be judged more accurately, and the accuracy and reliability of the detection are improved;

[0019] By developing a dedicated APP and a background management system, the remote operation and monitoring of the device are realized, which is convenient for users to view the detection results and conduct data analysis at any time. At the same time, by using big data analysis technology, the detection data can be deeply mined and analyzed, providing a more scientific basis for water leakage prevention and maintenance;

[0020] By optimizing the structure and design of the device, the operation difficulty and maintenance cost are reduced, enabling ordinary users to easily operate the device and perform daily maintenance and upkeep work. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 Schematic diagram of the framework of the main body of the detection device of the present utility model;

[0022] Figure 2 Stereogram of the flat panel of the present utility model;

[0023] Figure 3 Side view of the flat panel of the present utility model;

[0024] Figure 4 Stereogram of the vertical leak detector of the present utility model;

[0025] Figure 5 Side view of the vertical leak detector of the present utility model;

[0026] Figure 6 Cross-sectional view of the vertical leak detector of the present utility model;

[0027] Figure 7 Stereogram of the horizontal leak detector of the present utility model;

[0028] Figure 8 Side view of the horizontal leak detector of the present utility model;

[0029] Figure 9 Bottom view of the horizontal leak detector of the present utility model;

[0030] Figure 10 Cross-sectional view of the horizontal leak detector of the present utility model;

[0031] Figure 11 Stereogram of the heating and pressurizing integrated machine of the present utility model;

[0032] Figure 12 Side view of the heating and pressurizing integrated machine of the present utility model;

[0033] Figure 13 Schematic diagram of the framework of Embodiment 1 of the present utility model;

[0034] Figure 14 Schematic diagram of the framework of Embodiment 2 of the present utility model.

[0035] In the figure: 1. Main body of the detection device; 2. Tablet; 21. Power button; 22. Volume increase button; 23. Volume decrease button; 24. Headphone jack; 25. Type-C power interface; 26. DC power interface; 27. Communication interface; 28. Infrared lens; 29. Main body of the board; 3. Vertical leak detector; 301. Bottom protection device; 302. Fixed chassis; 303. First bottom case for preventing external sound interference; 304. First sound collector; 305. First sound sensor; 306. First top case for preventing external sound interference; 307. First outer shell; 308. Signal transmission installation port; 309. Signal transmission installation post; 310. Handheld part; 311. First button switch; 312. First locking joint; 4. Horizontal leak detector; 41. Protection chassis; 42. Second bottom case for preventing external sound interference; 43. Second sound collector; 44. Second sound sensor; 45. Second top case for preventing external sound interference; 46. Second outer shell; 47. Second button switch; 48. Second locking joint; 5. Heating and pressurizing integrated machine; 51. Water inlet and outlet assembly; 52. Lower shell assembly; 53. Cover plate; 54. Upper cover; 55. Decorative plate; 56. Control module; 57. Heating module; 58. Booster pump; 59. Water circulation assembly; 6. Leak detector; 7. Active noise canceling headphones. Detailed implementation manners

[0036] Next, embodiments of the present utility model will be combined to clearly and completely describe the technical solutions in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments in the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the protection scope of the present utility model.

[0037] Please refer to Figure 1-14 , the present utility model provides a multifunctional indoor water pipe leakage detection device, including a main body 1 of the detection device. The main body 1 of the detection device includes a tablet 2, a leak detector 6, active noise canceling headphones 7, and a heating and pressurizing integrated machine 5. The leak detector 6, the active noise canceling headphones 7, and the heating and pressurizing integrated machine 5 are all connected to the tablet 2. One end of one side of the heating and pressurizing integrated machine 5 is fixedly communicated with a connecting water pipe, and the other end of the other side of the heating and pressurizing integrated machine 5 is fixedly communicated with a water bucket. The leak detector 6 includes a vertical leak detector 3 and a horizontal leak detector 4. The tablet 2 includes a main body 29 of the board and an infrared lens 28. One side of the main body 29 of the board is fixedly connected to one side of the infrared lens 28. By integrating multiple functions, this device of the main body 1 of the detection device realizes the comprehensive and efficient detection of indoor water pipe leakage points.

[0038] At the top of the main body 29 of the board, a power button 21, a volume up button 22 and a volume down button 23 are fixedly installed in sequence from left to right. On one side of the main body 29 of the board, a headphone jack 24, a Type-C power interface 25 and a DC power interface 26 are provided in sequence from top to bottom. At the bottom end of the main body 29 of the board, a communication interface 27 is provided. The tablet 2 is equipped with a thermal imaging module and a dedicated APP, which are used to control the device operation and display the detection results. The tablet 2 serves as the control center of the device and is equipped with a thermal imaging module, which can take thermal imaging photos of the pipeline to help users determine the pipeline position. At the same time, a dedicated APP is installed on the tablet 2. Users can perform various operations of the device through the APP and view the detection results in real time, making the operation more convenient and intuitive.

[0039] The vertical leak detector 3 includes a bottom protection device 301 and a first outer shell 307. The top end of the bottom protection device 301 is fixedly connected to the bottom end of the first outer shell 307. In the middle of the top end of the bottom protection device 301, a fixed chassis 302 is fixedly installed. In the middle of the top end of the fixed chassis 302, a first bottom shell for preventing external sound interference 303 is fixedly installed. At the top of the first bottom shell for preventing external sound interference 303, a first top cover for preventing external sound interference 306 is snap-fitted. Inside the first top cover for preventing external sound interference 306, a first sound sensor 305 is fixedly installed. At the bottom end of the first sound sensor 305, a first sound collector 304 extending into the inside of the first bottom shell for preventing external sound interference 303 is fixedly installed. At the top of the first outer shell 307, a signal transmission installation port 308 is fixedly installed. At the top of the first outer shell 307, a handheld part 310 is provided. At the top of the handheld part 310, a first button switch 311 is fixedly installed. On one side of the handheld part 310, a first locking joint 312 is fixedly installed. At the bottom end of the handheld part 310, a signal transmission installation post 309 is fixedly installed. The signal transmission installation post 309 is snap-fitted with the signal transmission installation port 308. The leak detector is divided into two types: vertical and horizontal, and is used for acoustic positioning.

[0040] Both the first sound sensor 305 and the first sound collector 304 are connected to the tablet 2.

[0041] The horizontal leak detector 4 includes a protective chassis 41 and a second outer casing 46. The top end of the protective chassis 41 is fixedly connected to the bottom end of the second outer casing 46. In the middle of the top end of the protective chassis 41, a second bottom case 42 for preventing external sound interference is fixedly installed. At the top end of the second bottom case 42 for preventing external sound interference, a second top cover 45 for preventing external sound interference is snap-fitted. Inside the second top cover 45 for preventing external sound interference, a second sound sensor 44 is fixedly installed. Inside the second sound sensor 44, a second sound collector 43 extending into the interior of the second bottom case 42 for preventing external sound interference is fixedly installed. At one end of the second outer casing 46, a second button switch 47 is fixedly installed. At the other end of the second outer casing 46, a second locking joint 48 is fixedly installed. The leak detector is a key component for acoustic positioning and is divided into two types: vertical and horizontal to meet the detection requirements in different scenarios. The vertical leak detector 3 is mainly used to detect leak points on the horizontal ground, while the horizontal leak detector 4 is more suitable for detecting leak points on walls or in narrow spaces.

[0042] Both the second sound sensor 44 and the second sound collector 43 are connected to the tablet 2.

[0043] The heating and pressurizing integrated machine 5 includes a lower shell assembly 52 and a cover plate 53. The top end of the lower shell assembly 52 is snap-fitted to the bottom end of the cover plate 53. At the top end of the cover plate 53, an upper cover 54 is fixedly installed. In the middle of the top end of the upper cover 54, a decorative plate 55 is fixedly installed. On one side of the inner wall of the lower shell assembly 52, a control module 56 is fixedly installed. On the other side of the inner wall of the lower shell assembly 52, a heating module 57 is fixedly installed. At one end of the lower shell assembly 52, a water inlet and outlet assembly 51 is fixedly connected. Inside the lower shell assembly 52, a water circulation assembly 59 fixedly connected to the water inlet and outlet assembly 51 is fixedly installed. At one end of the inner wall of the lower shell assembly 52, a booster pump 58 is fixedly installed. The heating and pressurizing integrated machine 5 is used for pressure testing and heating the pipeline. By applying a certain pressure to the pipeline and maintaining the pressure, the heating and pressurizing integrated machine 5 can determine whether there is a leak in the pipeline. At the same time, the heating and pressurizing integrated machine 5 can also heat the pipeline, making the pipeline present a clear thermal image under the infrared lens 28, which is convenient for users to determine the pipeline position and identify suspicious leak points. Among them, the active noise-canceling headphones 7 are used to assist acoustic positioning. The auxiliary function of the active noise-canceling headphones 7 in acoustic positioning is that by wearing the active noise-canceling headphones 7, users can hear the sound emitted by the leak point more clearly, and according to the size and direction of the sound, assist in determining the specific position of the leak point. This function improves the accuracy and efficiency of acoustic positioning.

[0044] One end of the water inlet and outlet assembly 51 away from the lower shell assembly 52 is fixedly connected to a connecting water pipe.

[0045] Example 1:

[0046] In this utility model, the main body 1 of the water leakage detection device mainly consists of the following parts: a flat panel 2, a leak detector, a heating and pressurizing integrated machine 5, an active noise-canceling headphone 7, and related connecting wires and interfaces. The flat panel 2 serves as the core control unit of the device and is equipped with a dedicated APP for controlling the entire detection process, displaying detection results, and uploading reports. The flat panel 2 is also equipped with a thermal imaging module for taking thermal imaging photos of the pipeline. The vertical leak detector 3 is used to detect water leakage sounds and transmit the sound signals to the flat panel 2; the heating and pressurizing integrated machine 5 is responsible for applying pressure to the pipeline, heating the water in the pipeline, and feeding back relevant information to the flat panel 2 in real time; the active noise-canceling headphone 7 is used to filter background noise, enabling users to hear water leakage sounds more clearly and assisting in locating the water leakage point; the flat panel 2 is equipped with a dedicated APP with functions such as a pressure tester, thermal imaging, acoustic positioning, and report uploading; it is equipped with a thermal imaging module capable of taking thermal imaging photos of the pipeline; it is equipped with multiple interfaces for connecting external devices such as the leak detector and the heating and pressurizing integrated machine 5 and the headphone; the leak detector 6 is equipped with a highly sensitive sound sensor capable of capturing tiny water leakage sounds; it has a built-in signal amplifier to ensure that the sound signals can be clearly transmitted to the flat panel 2; its structural design is reasonable to adapt to detection requirements in different scenarios; the heating and pressurizing integrated machine 5 precisely controls the pressure applied to the pipeline and the heating temperature; it has a real-time feedback function and can transmit the status information of the pipeline to the flat panel 2 in real time. It is compact in structure, easy to carry and operate; the active noise-canceling headphone 7 adopts advanced noise-canceling technology, effectively filters background noise, has clear sound quality, truly restores water leakage sounds, is comfortable to wear, and is suitable for long-term use. The connection relationships of each part: The flat panel 2 is connected to the leak detector 6 through a plug to ensure stable transmission of sound signals; the flat panel 2 is connected to the heating and pressurizing integrated machine 5 through Bluetooth to achieve wireless data transmission and control; the flat panel 2 is connected to the active noise-canceling headphone 7 through the headphone jack 24 to ensure clear sound playback; in addition, power and signals are transmitted between each part through cables and connecting wires to ensure the stability and reliability of the entire detection system; the operation process of this product: Preparation work: Close the valve of the pipeline to be tested and drain the liquid or gas in the pipeline; Equipment connection: Connect the leak detector 6, the heating and pressurizing integrated machine 5 to the flat panel 2 to ensure stable and reliable connection, and wear the active noise-canceling headphone 7 well; Startup and setting: Open the dedicated APP on the flat panel 2 and start the water leakage detection function. Set the relevant parameters of the pressure test, thermal imaging, and acoustic positioning according to actual needs;Pressure test and pressure holding: The pipeline is pressured through the heating and pressurizing integrated machine 5, and the pressure is kept stable for a certain period of time. The tablet 2 monitors the pressure change of the pipeline in real time to determine whether there is a water leakage point. Thermal imaging positioning: The thermal imaging function is started. The heating and pressurizing integrated machine 5 injects heated water into the pipeline. The tablet 2 takes thermal imaging photos of the pipeline. The user determines the pipeline position and possible water leakage points by analyzing the photos. Acoustic positioning: The leak detector 6 is used to detect along the pipeline. The tablet 2 receives and analyzes the sound signal to generate a spectrogram. The user determines the specific position of the water leakage point by analyzing the spectrogram and the sound played in the earphone. Report upload: After the detection is completed, the user can upload the inspection report to the background through the tablet 2 APP for subsequent data analysis and processing. The above is the specific implementation manner of the water leakage detection device, including the components, technical features, connection relationships and operation processes of the product. In this way, the user can conveniently use the device for water leakage detection, quickly and accurately locate the water leakage point, and improve the repair efficiency.;

[0047] Embodiment 2:

[0048] In the present utility model, the horizontal leak detector 4 is equipped with a highly sensitive sound sensor, which can capture tiny water leakage sounds; an internal signal amplifier is provided to ensure that the sound signal can be clearly transmitted to the tablet 2; the structure is reasonably designed to adapt to the detection requirements in different scenarios; the heating and pressurizing integrated machine 5 precisely controls the pressure and heating temperature applied to the pipeline; it has a real-time feedback function and can transmit the state information of the pipeline to the tablet 2 in real time. The structure is compact, easy to carry and operate; Active noise-canceling earphone 7: Adopts advanced noise-canceling technology, effectively filters background noise, has clear sound quality, truly restores the water leakage sound, is comfortable to wear, and is suitable for long-term use. Connection relationship of each part: The tablet 2 and the leak detector 6 are connected by a plug to ensure stable transmission of the sound signal; the tablet 2 and the heating and pressurizing integrated machine 5 are connected by Bluetooth to achieve wireless data transmission and control; the tablet 2 and the active noise-canceling earphone 7 are connected through the earphone jack 24 to ensure clear sound playback.

[0049] Although the present utility model has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A multifunctional indoor water pipe leakage detection device, comprising a detection device main body (1), characterized in that: The main body (1) of the detection device includes a flat plate (2), a leak detector (6), active noise-canceling headphones (7), and a heating and pressurizing integrated machine (5). The leak detector (6), active noise-canceling headphones (7), and heating and pressurizing integrated machine (5) are all connected to the flat plate (2). One end of one side of the heating and pressurizing integrated machine (5) is fixedly communicated with a connecting water pipe, and the other end of one side of the heating and pressurizing integrated machine (5) is fixedly communicated with a water bucket. The leak detector (6) includes a vertical leak detector (3) and a horizontal leak detector (4). The flat plate (2) includes a plate body (29) and an infrared lens (28). One side of the plate body (29) is fixedly connected to one side of the infrared lens (28).

2. The detection device according to claim 1, wherein: On the top of the plate body (29), a power button (21), a volume increase button (22), and a volume decrease button (23) are fixedly installed in sequence from left to right. On one side of the plate body (29), a headphone jack (24), a Type-C power jack (25), and a DC power jack (26) are provided in sequence from top to bottom. A communication interface (27) is provided at the bottom of the plate body (29).

3. The detection device according to claim 1, characterized in that: The vertical leak detector (3) includes a bottom protection device (301) and a first outer shell (307). The top of the bottom protection device (301) is fixedly connected to the bottom of the first outer shell (307). In the middle of the top of the bottom protection device (301), a fixed chassis (302) is fixedly installed. In the middle of the top of the fixed chassis (302), a first bottom shell for preventing external sound interference (303) is fixedly installed. A first top shell for preventing external sound interference (306) is snap-fitted on the top of the first bottom shell for preventing external sound interference (303). A first sound sensor (305) is fixedly installed inside the first top shell for preventing external sound interference (306). The bottom of the first sound sensor (305) is fixedly installed with a first sound collector (304) extending into the inside of the first bottom shell for preventing external sound interference (303). A signal transmission installation port (308) is fixedly installed on the top of the first outer shell (307). A handheld part (310) is provided on the top of the first outer shell (307). A first button switch (311) is fixedly installed on the top of the handheld part (310). A first locking joint (312) is fixedly installed on one side of the handheld part (310). A signal transmission installation post (309) is fixedly installed at the bottom of the handheld part (310). The signal transmission installation post (309) is snap-fitted with the signal transmission installation port (308).

4. The detection device according to claim 3, characterized in that: Both the first sound sensor (305) and the first sound collector (304) are connected to the flat plate (2).

5. The detection device according to claim 1, wherein: The horizontal leak detector (4) includes a protection chassis (41) and a second outer shell (46). The top end of the protection chassis (41) is fixedly connected to the bottom end of the second outer shell (46). In the middle of the top end of the protection chassis (41), a second bottom shell for preventing external sound interference (42) is fixedly installed. A second top cover for preventing external sound interference (45) is snap-fitted on the top end of the second bottom shell for preventing external sound interference (42). A second sound sensor (44) is fixedly installed inside the second top cover for preventing external sound interference (45). A second sound collector (43) extending into the inside of the second bottom shell for preventing external sound interference (42) is fixedly installed inside the second sound sensor (44). A second button switch (47) is fixedly installed at one end of the second outer shell (46), and a second locking joint (48) is fixedly installed at the other end of the second outer shell (46).

6. The detection device according to claim 5, wherein: Both the second sound sensor (44) and the second sound collector (43) are connected to the tablet (2).

7. The detection device according to claim 1, wherein: The heating and pressurizing integrated machine (5) includes a lower shell assembly (52) and a cover plate (53). The top end of the lower shell assembly (52) is snap-fitted to the bottom end of the cover plate (53). An upper cover (54) is fixedly installed on the top end of the cover plate (53). A decorative plate (55) is fixedly installed in the middle of the top end of the upper cover (54). A control module (56) is fixedly installed on one side of the inner wall of the lower shell assembly (52), and a heating module (57) is fixedly installed on the other side of the inner wall of the lower shell assembly (52). A water inlet and outlet assembly (51) is fixedly connected to one end of the lower shell assembly (52). A water circulation assembly (59) fixedly connected to the water inlet and outlet assembly (51) is fixedly installed inside the lower shell assembly (52). A booster pump (58) is fixedly installed at one end of the inner wall of the lower shell assembly (52).

8. The detection device according to claim 7, wherein: One end of the water inlet and outlet assembly (51) far from the lower shell assembly (52) is fixedly connected to a connecting water pipe.