Self-purification pipe body adaptive to still water area of pipeline

By installing purification components inside water pipes and utilizing the movement mechanism of purification cotton with magnetic connection, the problem of sediment removal in still water areas is solved, achieving efficient water quality maintenance and safety assurance.

CN224063571UActive Publication Date: 2026-03-31冯凯
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-30
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Static water areas in villa water pipes are prone to flocculent sedimentation and bacterial growth, leading to water pollution that is difficult to clean thoroughly.

Method used

A purification component is installed inside the water pipe. Purification cotton is used to absorb sediment, and the movement and periodic replacement of the purification cotton are achieved through the magnetic connection between the outer and inner magnets, ensuring efficient removal of sediment.

Benefits of technology

It effectively cleans sediment from water pipes, keeps water clean and unobstructed, prevents bacterial growth, and ensures water safety.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a self-purification pipe body adaptive to a still water area of a pipeline. The problem that sediment generated due to non-circulation of water in the water pipe does not have a standard and effective cleaning mode is solved. The water pipe comprises a water pipe body, a three-way connector and a purification assembly, the three-way connector is arranged at the disconnected position of the water pipe body, and the purification assembly is arranged on the three-way connector. The purification assembly comprises a sealing cover, a rotating piece, two pieces of purification cotton, two inner magnets, two outer magnets, two connecting lines, two connecting rings and two side lugs, the sealing cover is detachably connected to an opening in the lower end of the three-way connector, a movable cavity is machined in the inner wall of the sealing cover, and the rotating piece is hinged to the interior of the movable cavity; the two sides of the upper end of the rotating part are each provided with a piece of purification cotton, the purification cotton is in a long strip shape, one end of each piece of purification cotton is detachably connected with an inner magnet, the inner magnets and the outer magnets are arranged in a one-to-one correspondence mode, the inner magnets are arranged in the water pipe body in a penetrating mode, the outer magnets are attached to the outer wall of the water pipe body, and the outer magnets are magnetically connected with the inner magnets.
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Description

Technical Field

[0001] This utility model specifically relates to a self-purifying pipe body adapted to the still water area of ​​a pipeline, belonging to the field of building water supply and drainage. Background Technology

[0002] The installation of water supply and drainage systems in villas requires comprehensive consideration of design planning, pipe laying, equipment installation, and system commissioning. The water supply system should be rationally zoned according to water demand, using PP-R pipes for laying, and a whole-house water purification system should be installed to ensure water quality. The drainage system needs to incorporate the design of combined sewer overflows and basement pressurized drainage, selecting appropriate pipes and sewage lifting equipment, and conducting rigorous water filling tests. During construction, it is essential to ensure pipe protection, joint sealing, and system commissioning to achieve safe and efficient operation of the water supply and drainage system.

[0003] In the interior environment of a villa, there are numerous water terminals. These terminals are used at varying frequencies, with some potentially remaining idle for extended periods with very low usage. In such cases, the water in a connected pipe may become a "stagnant water zone" or "still water zone" due to lack of flow. Water that remains stagnant for extended periods is prone to developing flocculent sediment. Simultaneously, this stagnant environment provides a breeding ground for bacteria, posing a potential threat to water quality and safety. The resulting flocculent sediment often adheres to the inner wall of the pipe. When water flows through the terminal, the strong adhesion of the sediment and bacteria makes it difficult to completely flush out in a short time, leading to incomplete drainage. This negatively impacts the water quality at the terminal, posing a significant safety hazard without a corresponding standardized solution. Utility Model Content

[0004] To overcome the shortcomings of existing technologies, a self-cleaning pipe body adapted to the still water area of ​​pipelines is provided to solve the above problems.

[0005] A self-purifying pipe body adapted to the still water area of ​​a pipeline includes a water pipe body, a tee connector, and a purification component. A tee connector is provided at the break point of the water pipe body, and the purification component is installed on the tee connector. The purification component includes a sealing cap, a rotating part, two purification cottons, two inner magnets, two outer magnets, two connecting wires, two connecting rings, and two side ears. The sealing cap is detachably connected to the lower opening of the tee connector. A movable cavity is machined into the inner wall of the sealing cap, and a rotating part is hinged within the movable cavity. A purification cotton is provided on each side of the upper end of the rotating part. The purification cotton is elongated, and an inner magnet is detachably connected to one end of each purification cotton. The inner magnets and outer magnets are arranged in a one-to-one correspondence. The inner magnets pass through the water pipe body, and the outer magnets are attached to the outer wall of the water pipe body, magnetically connected to the inner magnets. One end of the outer magnet is connected to one end of a connecting wire, and the other end of the connecting wire is connected to a nearby connecting ring. The connecting rings and side ears are arranged in a one-to-one correspondence, and the connecting rings are fitted onto their corresponding side ears. The two side ears are respectively located on the circumferential outer wall of the sealing cap.

[0006] As a preferred embodiment, the device also includes a replacement connector. The purification cotton is placed on the replacement connector. The replacement connector includes a connecting plate and a fixing screw. The upper end of the rotating part is machined with a threaded hole, which is a blind hole. The connecting plate is provided with a fixing screw along its thickness direction. The fixing screw is threadedly connected to the threaded hole. A purification cotton is provided at each end of the connecting plate.

[0007] As a preferred embodiment: the sealing cover is machined with a through hole, and the rotating part is replaced by a sealing plug. The sealing plug is inserted into the through hole. The sealing plug includes a bottom cover, a pull ring, a rubber plug and a circular connector. The pull ring is located at the lower end of the bottom cover, and the rubber plug is located at the upper end of the bottom cover. The rubber plug is attached to the inner wall of the through hole, and the circular connector is located at the upper end of the rubber plug. A replacement connector is provided on the circular connector.

[0008] As a preferred embodiment: each clean cotton and the inner magnet are connected by a compression member, which includes two round rods, two connectors and two cylindrical parts. The two connectors are arranged vertically side by side, and two round rods are arranged side by side between the two connectors. The two ends of each round rod are connected to the two connectors respectively. A cylindrical part is fitted on each round rod, and a clamping gap is formed between the cylindrical parts. The clean cotton is inserted into the clamping gap between the two cylindrical parts.

[0009] As a preferred option, the outer wall of the rubber stopper is provided with multiple triangular protrusions along its circumference.

[0010] The beneficial effects of this utility model are as follows:

[0011] This invention effectively solves the problem of cleaning sediment in stagnant water areas within a water pipe by installing a purification component inside the pipe body. The purification component uses a purifying cotton to absorb sediment generated within the pipe body. By regularly replacing the purifying cotton, sediment can be cleaned quickly and efficiently, thus maintaining the cleanliness and smooth flow of water within the pipe. This invention uses an external magnet on the outside, and its magnetic connection with an internal magnet allows for precise control of the movement of the internal magnet within the pipe body. When the external magnet moves along the length of the pipe, the internal magnet moves the purifying cotton synchronously within the pipe, fully unfolding it and laying it along the entire length of the pipe. This not only increases the adsorption area of ​​the purifying cotton but also ensures that sediment is fully adsorbed, thus creating a purification effect throughout the entire water purification process. This invention also connects the external magnet to the external structure via a connecting wire, ensuring positioning stability during use and preventing the external magnet from accidentally falling and being lost. Attached Figure Description

[0012] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0013] Figure 2 This is a schematic diagram of the three-dimensional structure of the purification component;

[0014] Figure 3 This is a schematic diagram of a half-section three-dimensional structure of the water pipe body;

[0015] Figure 4 This is a schematic diagram of the cross-sectional structure of the sealing cap and the rotating component;

[0016] Figure 5 A three-dimensional structural diagram of the replacement connector;

[0017] Figure 6 A schematic diagram of the cross-sectional structure of the replacement connector;

[0018] Figure 7 This is a schematic diagram of the three-dimensional structure of the sealing plug;

[0019] Figure 8 for Figure 2 A magnified schematic diagram of the structure of part A in the diagram;

[0020] Figure 9 A three-dimensional structural diagram of the extruded component and the cleaning cotton;

[0021] Figure 10 This is a schematic diagram of the three-dimensional structure of the extruded part;

[0022] Figure 11 This is a three-dimensional structural diagram of a specific embodiment three of the present utility model.

[0023] In the diagram: 1-Water pipe body; 2-T-connector; 3-Purification component; 3-1-Sealing cap; 3-1-1-Moving cavity; 3-1-2-Through hole; 3-2-Rotating part; 3-2-11-Threaded hole; 3-3-Purification cotton; 3-4-Inner magnet; 3-5-Outer magnet; 3-6-Connecting wire; 3-7-Connecting ring; 3-8-Side ear; 5-Replacement connector; 5-1-Connecting plate; 5-2-Fixing screw; 4-Sealing plug; 4-1-Bottom cover; 4-2-Pull ring; 4-3-Rubber plug; 4-3-1-Triangular protrusion; 4-4-Circular connector; 6-Extrusion part; 6-1-Round rod; 6-2-Connector; 6-3-Cylinder. Detailed Implementation

[0024] The following specific examples illustrate the implementation of this utility model. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification. This utility model can also be implemented or applied through other different specific embodiments, and various details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of this utility model.

[0025] Specific implementation method one: Combining Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 9 , Figure 10 and Figure 11This embodiment describes a self-purifying pipe body adapted for still water areas in a pipeline. It includes a pipe body 1, a tee connector 2, and a purification component 3. The tee connector 2 is located at the break point of the pipe body 1, and the purification component 3 is mounted on the tee connector 2. The purification component 3 includes a sealing cap 3-1, a rotating part 3-2, two purification cottons 3-3, two inner magnets 3-4, two outer magnets 3-5, two connecting wires 3-6, two connecting rings 3-7, and two side ears 3-8. The sealing cap 3-1 is detachably connected to the lower opening of the tee connector 2. A movable cavity 3-1-1 is machined into the inner wall of the sealing cap 3-1. The rotating part 3-2 is hinged within the movable cavity 3-1-1. The upper ends of the rotating part 3-2 are divided into two sections... A purification cotton 3-3 is provided, which is long and narrow. One end of each purification cotton 3-3 is detachably connected to an inner magnet 3-4. The inner magnet 3-4 and the outer magnet 3-5 are arranged one-to-one. The inner magnet 3-4 is inserted into the water pipe body 1. The outer magnet 3-5 is attached to the outer wall of the water pipe body 1. The outer magnet 3-5 and the inner magnet 3-4 are magnetically connected. One end of the outer magnet 3-5 is connected to one end of the connecting line 3-6. The other end of the connecting line 3-6 is connected to a nearby connecting ring 3-7. The connecting ring 3-7 and the side ear 3-8 are arranged one-to-one. The connecting ring 3-7 is fitted onto its corresponding side ear 3-8. The two side ears 3-8 are respectively set on the outer wall of the sealing cover 3-1.

[0026] Insert two inner magnets 3-4 into the lower inlet of the tee connector 2 and place them inside the two water pipe bodies 1 respectively. Then, place the outer magnet 3-5 against the lower end of the water pipe body 1, forming a magnetic connection with the corresponding inner magnet 3-4. By moving the outer magnet 3-5 along the length of the water pipe body 1, the inner magnets 3-4 move in the same direction. During this process, the inner magnet 3-4 inserts the cleaning cotton 3-3 through the bottom of the water pipe body 1. After completing the above operations, install the sealing cap 3-1 at the lower opening of the tee connector 2 to achieve a seal. The connecting wire 3-6 ensures that the outer magnet 3-5 will not be lost in case of accidental drop. The rotating part 3-2 is hinged inside the movable cavity 3-1-1, so when the sealing cap 3-1 is installed at the lower opening of the tee connector 2, the two magnets will not be accidentally pulled.

[0027] Specific Implementation Method Two: This implementation method is a further limitation of Specific Implementation Method One, and also includes a replacement connector 5. The purification cotton 3-3 is disposed on the replacement connector 5. The replacement connector 5 includes a connecting plate 5-1 and a fixing screw 5-2. The upper end of the rotating part 3-2 is machined with a threaded hole 3-2-11, which is a blind hole. The connecting plate 5-1 is provided with a fixing screw 5-2 along its thickness direction. The fixing screw 5-2 is threadedly connected to the threaded hole 3-2-11. A purification cotton 3-3 is disposed at each end of the connecting plate 5-1.

[0028] By removing the fixing screw 5-2, the connecting plate 5-1 can be quickly removed from the rotating part 3-2, and then the two purification cottons 3-3 can be quickly removed to achieve the purpose of quickly replacing the purification cottons 3-3. The purification cottons 3-3 are displaced to ensure that the purification cottons 3-3 are laid flat inside the water pipe body 1.

[0029] Specific Implementation Method 3: This implementation method is a further limitation of Specific Implementation Method 1 or 2. A through hole 3-1-2 is machined on the sealing cover 3-1. The rotating part 3-2 is replaced by a sealing plug 4. The sealing plug 4 passes through the through hole 3-1-2. The sealing plug 4 includes a bottom cover 4-1, a pull ring 4-2, a rubber plug 4-3, and a circular connector 4-4. The pull ring 4-2 is located at the lower end of the bottom cover 4-1. The rubber plug 4-3 is located at the upper end of the bottom cover 4-1. The rubber plug 4-3 is attached to the inner wall of the through hole 3-1-2. The circular connector 4-4 is located at the upper end of the rubber plug 4-3. A replacement connector 5 is provided on the circular connector 4-4.

[0030] Pull down the pull ring 4-2 to pull the rubber plug 4-3 and the circular connector 4-4 out of the through hole 3-1-2, and then pull out the replacement connector 5 on the circular connector 4-4, so as to pull out the two purification cotton 3-3 on the replacement connector 5, which facilitates the quick replacement or cleaning of the two purification cotton 3-3.

[0031] Specific Implementation Method Four: This implementation method further defines Specific Implementation Method One, Two, or Three. Each purification cotton 3-3 is fitted with a compression member 6 at the connection between it and the inner magnet 3-4. The compression member 6 includes two round rods 6-1, two connectors 6-2, and two cylindrical parts 6-3. The two connectors 6-2 are arranged vertically side by side, and two round rods 6-1 are arranged side by side between the two connectors 6-2. The two ends of each round rod 6-1 are connected to the two connectors 6-2 respectively. A cylindrical part 6-3 is fitted on each round rod 6-1, and a clamping gap is formed between the cylindrical parts 6-3. The purification cotton 3-3 is inserted into the clamping gap between the two cylindrical parts 6-3.

[0032] When the purification cotton 3-3 is removed, it will have a large amount of water and flocculent sediment adsorbed on it. At this time, you can hold the connectors 6-2 at both ends and move the extruder 6 along the length of the purification cotton 3-3 so that the two cylinders 6-3 can roll forward and squeeze out the water adsorbed on the purification cotton 3-3.

[0033] Specific Implementation Method 5: This implementation method is a further limitation of Specific Implementation Method 1, 2, 3 or 4. The outer wall of the rubber stopper 4-3 is provided with a plurality of triangular protrusions 4-3-1 along its circumferential direction. The plurality of triangular protrusions 4-3-1 can strengthen the contact force between the rubber stopper 4-3 and the inner wall of the through hole 3-1-2, thereby achieving the purpose of enhancing the sealing performance.

[0034] Working principle:

[0035] When installing purification component 3, the following two installation methods can be used depending on the actual situation:

[0036] When this utility model is used in a newly installed water supply and drainage system, the corresponding working process is as follows:

[0037] For initial installation, a T-connector 2 can be installed between the two water pipe bodies 1, and then the purification component 3 can be installed inside the water pipe body 1 and the T-connector 2.

[0038] When this utility model is used in the renovation and upgrading of an existing water supply and drainage system, the corresponding working process is as follows:

[0039] For systems that have already been installed, the water pipe body 1 can be cut in the middle first, and then the tee connector 2 can be installed at the cut end of the water pipe body 1. After installation, the purification component 3 can be installed inside the water pipe body 1 and the tee connector 2.

[0040] When installing the purification component 3, first insert the two inner magnets 3-4 through the lower inlet of the tee connector 2, placing them inside the water pipe bodies 1 on both sides. Then, place the outer magnet 3-5 against the lower end of the water pipe body 1, creating a magnetic connection with the corresponding inner magnet 3-4. By moving the outer magnet 3-5 along the length of the water pipe body 1, the inner magnets 3-4 move in the same direction. During this process, the inner magnets 3-4 insert the purification cotton 3-3 through the bottom of the water pipe body 1. After completing the above operations, install the sealing cap 3-1 at the lower opening of the tee connector 2 to achieve a seal.

[0041] When water does not circulate for a long time, sediment may form and adhere to the cleaning cotton 3-3. To clean it, simply open the sealing cap 3-1 and remove the two cleaning cotton 3-3s for replacement or washing.

Claims

1. A self-cleaning pipe body adapted to a pipe hydrostatic region, characterized by: The utility model provides a water pipe body (1), three -way joint (2), purification subassembly (3), the break of water pipe body (1) is provided with three -way joint (2), is provided with purification subassembly (3) on three -way joint (2), purification subassembly (3) includes sealing cover (3-1), rotator (3-2), two purification cotton (3-3), two inner magnet (3-4), two outer magnet (3-5), two connecting wire (3-6), two connecting ring (3-7) and two side ear (3-8), sealing cover (3-1) can be detachably connected in the lower end opening of three -way joint (2), the inner wall of sealing cover (3-1) is processed with movable cavity (3-1-1), rotator (3-2) is hinged in movable cavity (3-1-1), rotator (3-2) upper end's both sides are provided with one purification cotton (3-3) respectively, the shape of purification cotton (3-3) is strip, and one end of every purification cotton (3-3) is detachably connected with one inner magnet (3-4), and inner magnet (3-4) is set up with outer magnet (3-5) one to one, and inner magnet (3-4) is arranged in water pipe body (1), and outer magnet (3-5) is attached to the outer wall of water pipe body (1), and outer magnet (3-5) is magnetically connected with inner magnet (3-4), and one end of outer magnet (3-5) is connected with one end of connecting wire (3-6), and the other end of connecting wire (3-6) is connected with the connecting ring (3-7) close to it, and connecting ring (3-7) is set up with side ear (3-8) one to one, and connecting ring (3-7) is sleeved on its corresponding side ear (3-8), and two side ears (3-8) are arranged on the circumferential outer wall of sealing cover (3-1) respectively.

2. The self-cleaning tube according to claim 1, wherein: Also including replacement connecting piece (5), purification cotton (3-3) is arranged on replacement connecting piece (5), replacement connecting piece (5) includes connecting plate (5-1) and fixed screw (5-2), the upper end of rotator (3-2) is processed with threaded hole (3-2-11), threaded hole (3-2-11) is blind hole, fixed screw (5-2) is arranged in connecting plate (5-1) along its thickness direction, fixed screw (5-2) is threadedly connected with threaded hole (3-2-11), and the both ends of connecting plate (5-1) are provided with one purification cotton (3-3) respectively.

3. The self-cleaning tube according to claim 1, wherein: Sealing cover (3-1) is processed with through -hole (3-1-2), rotator (3-2) is replaced with sealing plug (4), sealing plug (4) is arranged in through -hole (3-1-2), sealing plug (4) includes bottom cover (4-1), pull ring (4-2), rubber plug (4-3) and circular connecting piece (4-4), pull ring (4-2) is arranged at the lower end of bottom cover (4-1), and the upper end of bottom cover (4-1) is provided with rubber plug (4-3), and rubber plug (4-3) is attached to the inner wall of through -hole (3-1-2), and the upper end of rubber plug (4-3) is provided with circular connecting piece (4-4), and circular connecting piece (4-4) is provided with replacement connecting piece (5).

4. The self-cleaning tube according to claim 1, wherein: An extrusion piece (6) is sleeved on the connection between each purification cotton (3-3) and the inner magnet (3-4), the extrusion piece (6) comprises two round rods (6-1), two connecting heads (6-2) and two cylinder pieces (6-3), the two connecting heads (6-2) are vertically arranged in parallel, the two round rods (6-1) are arranged in parallel between the two connecting heads (6-2), the two ends of each round rod (6-1) are connected with the two connecting heads (6-2) respectively, and one cylinder piece (6-3) is sleeved on each round rod (6-1), the cylinder pieces (6-3) are formed with a clamping gap therebetween, and the purification cotton (3-3) is arranged in the clamping gap between the two cylinder pieces (6-3).

5. The self-cleaning tube according to claim 3, wherein: The outer wall of the rubber plug (4-3) is provided with a plurality of triangular protrusions (4-3-1) along the circumferential direction thereof.