Environment-friendly sewage treatment device

By installing a retractable expansion joint pipe at the inlet of the sewage treatment device and connecting it to the external stabilizing kit, the problem of inflexible inlet design of traditional sewage treatment devices is solved, enabling flexible adjustment and stable connection of the sewage introduction path, thereby improving treatment efficiency and the flexibility and availability of the equipment.

CN224091624UActive Publication Date: 2026-04-07INNER MONGOLIA LIANYOU CONSTRUCTION ENGINEERING GROUP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

The inlet design of traditional sewage treatment equipment cannot be flexibly adjusted, resulting in low efficiency of water source introduction and inconvenient operation, which affects treatment efficiency and equipment flexibility.

Method used

A retractable expansion joint pipe is installed at the inlet of the sewage tank. It is connected to the support pipe through an external stabilizing kit and a sealing ring and magnetic attraction to achieve flexible adjustment and stable connection of the sewage introduction path.

Benefits of technology

It improves the efficiency of wastewater introduction and the flexibility of the equipment, prevents leakage, extends equipment life, reduces maintenance costs, and ensures treatment effect and stability.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses an environment-friendly sewage treatment device which comprises a water inlet pipe arranged on a sewage treatment device body, one end of the water inlet pipe is provided with a sewage pool, the sewage pool is connected with a connector, and the connector is used for conveying sewage into the water inlet pipe. The connector opening is connected with a telescopic joint pipe through an outer stabilizing sleeve so as to guide sewage into a sewage pool. According to the environment-friendly sewage treatment device, through the arranged telescopic joint pipe, the length of the telescopic joint pipe can be flexibly adjusted according to the distance and position change of a sewage source, and the sewage introduction efficiency and the device flexibility are improved. In operation, an operator can adjust the sewage introduction path by manually stretching or retracting the telescopic joint pipe, and the operation is simpler and more convenient than a traditional mode. In addition, the outer stabilizing sleeve piece is connected with the connector and the first supporting pipe opening through threads, a sealing ring can guarantee the sealing performance of the connecting position during rotating installation, sewage leakage is prevented, environmental pollution is avoided, it is guaranteed that all sewage enters a treatment system, and the treatment effect is guaranteed.
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Description

Technical Field

[0001] This utility model relates to the field of wastewater treatment, specifically an environmentally friendly wastewater treatment device. Background Technology

[0002] In today's society, with the acceleration of urbanization and the continuous improvement of industrialization, water resource protection and management have become major global issues. While traditional wastewater treatment plants can treat wastewater to some extent, their design limitations restrict their efficiency and flexibility. Especially in densely populated areas with frequent economic activity, the effective treatment of domestic sewage and industrial wastewater is directly related to improving environmental quality and enhancing residents' quality of life. Therefore, developing a more efficient and flexible wastewater treatment system is of paramount importance.

[0003] Traditional wastewater treatment plants typically suffer from problems such as large footprint, low treatment efficiency, and high operating costs. Among these, the design of the wastewater tank inlet is particularly critical, as it not only affects the efficiency of wastewater introduction but also the convenience of subsequent treatment and the overall flexibility of the equipment. Traditional inlet designs often use fixed pipes, whose length cannot be adjusted according to actual needs. This not only limits the flexibility of water source introduction but also brings many inconveniences to operation.

[0004] To address the aforementioned problems, a new type of environmentally friendly wastewater treatment device has been developed. This device innovatively connects a retractable pipe to the inlet of the wastewater tank. This improvement greatly enhances the flexibility of the equipment and also brings numerous conveniences to practical operation. Utility Model Content

[0005] The purpose of this utility model is to provide an environmentally friendly wastewater treatment device to solve the problem mentioned in the background art that the inlet of the wastewater tank in the current traditional device is inconvenient to adjust.

[0006] To achieve the above objectives, the present invention provides the following technical solution: an environmentally friendly sewage treatment device, comprising an inlet pipe disposed on the sewage treatment device body, a sewage tank disposed at one end of the inlet pipe, an interface connected to the sewage tank, the interface being used to transport sewage into the inlet pipe, and the interface opening being connected to a telescopic joint pipe through an external stabilizing kit to guide sewage into the sewage tank.

[0007] Preferably, one end of the expansion joint tube is connected to a first support pipe port and the other end is connected to a second support pipe port. The second support pipe port is connected to the inlet of the interface. An outer connecting hoop is connected to the outer periphery of the interface. The outer walls of the outer connecting hoop and the first support pipe port are provided with external threads that are compatible with the internal threads of the outer stabilizing kit. The outer stabilizing kit can be installed on the outside of the first support pipe port and the outer connecting hoop by rotation and threaded connection.

[0008] Preferably, the end of the external stabilizing kit facing the outer wall of the sewage tank is provided with a sealing ring for sealing.

[0009] Preferably, the length of the external stabilizing kit is greater than the total length of the interface and the first support tube opening, and the portion of the external stabilizing kit extending beyond the interface and the first support tube opening allows the retracted telescopic joint tube to be located therein.

[0010] Preferably, a positioning plug is connected to the opening of the outer stabilizing kit at the end facing the second support tube, and a slot is connected to the opening of the second support tube at the end facing the outer stabilizing kit. The positioning plug and the slot are adapted to be inserted into each other.

[0011] Preferably, the external stabilizing kit is connected to a rotating ring for rotation, and the outer wall of the rotating ring is uniformly provided with anti-slip texture.

[0012] Preferably, the bottom of the external stabilizing kit is connected to a support sleeve, and a support base plate is rotatably connected inside the support sleeve via threads. A threaded rotating rod is connected to the bottom of the support base plate, and an anti-slip pad is glued to the bottom of the threaded rotating rod for anti-slip purposes.

[0013] Compared with the prior art, the beneficial effects of this utility model are:

[0014] 1. This application utilizes a telescopic joint pipe, whose length can be flexibly adjusted according to changes in the distance and location of the sewage source, improving sewage introduction efficiency and device flexibility. Operationally, operators can manually extend or retract the telescopic joint pipe to adjust the sewage introduction path, which is simpler than traditional methods. Furthermore, the external stabilizing kit connects to the interface and the first support pipe via threads; its sealing ring ensures a tight seal at the connection point during rotational installation, preventing sewage leakage, avoiding environmental pollution, ensuring all sewage enters the treatment system, and guaranteeing treatment effectiveness.

[0015] 2. In this application, when the telescopic joint tube is retracted, it can be stored within a specific space of the external stabilizing kit. Furthermore, during retraction, the second support tube opening causes the positioning insert to be tightly inserted into the corresponding structural slot. Simultaneously, the magnetic attraction between the first and second support tube openings further enhances stability. This stable storage structure prevents the telescopic joint tube from accidentally unfolding when not in use, protecting it, extending its service life, and avoiding potential damage to other equipment components caused by the telescopic joint tube's uncontrolled movement.

[0016] 3. The support structure, consisting of a support sleeve, support base plate, threaded rotating rod, and anti-slip pad connected to the bottom of the external stabilizing kit, provides reliable support for the device. The height of the threaded rotating rod can be adjusted by rotating the support base plate, ensuring stability on different planes. This stable support helps maintain the overall structural stability of the device during wastewater introduction and treatment, reducing potential damage caused by shaking or imbalance, and ensuring smooth wastewater treatment operations.

[0017] 4. The device's structural design facilitates maintenance; the telescopic pipes and adjustable support structure are easy to inspect and repair. For example, the storage and connection methods for the telescopic pipes simplify the operation when inspection or replacement is required. This ease of maintenance reduces maintenance costs, minimizes downtime due to equipment failure, and improves the overall availability and economy of the wastewater treatment system. Attached Figure Description

[0018] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0019] Figure 2 This is a schematic diagram of the disassembled structure of this utility model;

[0020] Figure 3 This is a schematic diagram of a partially disassembled structure of the present invention;

[0021] Figure 4 This is a partial structural schematic diagram of the right-side cross-sectional view of the sewage tank and expansion joint pipe of this utility model;

[0022] Figure 5 This is a partial structural schematic diagram of the right-side cross-sectional view of the disassembly point of the external stabilizing kit and the sealing ring of this utility model;

[0023] Figure 6 This is a rear view partial structural diagram of the telescopic joint tube of this utility model;

[0024] Figure 7 This is a partial structural diagram of the support base plate of this utility model.

[0025] In the diagram: 1. Wastewater treatment device body; 101. Inlet pipe; 2. Wastewater tank; 201. Interface; 202. External connecting clamp; 3. Expansion joint pipe; 301. First support pipe opening; 302. Second support pipe opening; 303. Slot; 4. External stabilizing kit; 401. Positioning plug; 402. Rotating ring opening; 403. Sealing ring; 5. Support sleeve; 501. Threaded rotating rod; 502. Support base plate; 503. Anti-slip pad. Detailed Implementation

[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0027] Please see Figure 1-7 This utility model provides a technical solution: an environmentally friendly sewage treatment device, including an inlet pipe 101 installed on the sewage treatment device body 1, a sewage tank 2 installed at one end of the inlet pipe 101, an interface 201 connected to the sewage tank 2, the interface 201 is used to transport sewage into the inlet pipe 101, and the opening of the interface 201 is connected to a telescopic joint pipe 3 through an external stabilizing kit 4 to guide the sewage into the sewage tank 2.

[0028] The environmentally friendly wastewater treatment device of this application is mainly composed of a wastewater treatment device body 1, a wastewater tank 2, an expansion joint pipe 3, and an external stabilizing kit 4, etc., and its detailed working principle is as follows.

[0029] Assembly and preparation of the device

[0030] Connection between wastewater treatment unit 1 and wastewater tank 2: First, place wastewater treatment unit 1 in a suitable working area to ensure its stability. An inlet pipe 101 is installed on wastewater treatment unit 1, and a wastewater tank 2 is installed at one end of the inlet pipe 101. The wastewater tank 2 is connected to an interface 201, which is used to transport wastewater into the inlet pipe 101. In this process, the interface 201 plays a crucial role in connecting and transporting wastewater. It is generally made of corrosion-resistant metal, such as stainless steel, to ensure long-term use without corrosion by wastewater.

[0031] Installation of the expansion joint pipe 3: The expansion joint pipe 3 is a key innovative part of this device. One end is connected to the first support pipe port 301, and the other end is connected to the second support pipe port 302. The first support pipe port 301 is mated with the interface 201, and an outer connecting clamp 202 is connected to the outer periphery of the interface 201. Both the outer walls of the first support pipe port 301 and the outer connecting clamp 202 are provided with external threads that are compatible with the internal threads of the outer stabilizing kit 4. The outer stabilizing kit 4 can be made of hard plastic or metal materials such as aluminum alloy, which have certain strength and corrosion resistance. By rotating the outer stabilizing kit 4, it is installed on the outside of the first support pipe port 301 and the outer connecting clamp 202 in a threaded connection manner, realizing a stable connection between the expansion joint pipe 3 and the sewage tank 2. A sealing ring 403 is provided at the end of the outer stabilizing kit 4 facing the outer wall of the sewage tank 2. The sealing ring 403 can be made of elastic sealing materials such as rubber to ensure the sealing of the connection and prevent sewage leakage.

[0032] Installation of the support structure: A rotating ring 402 is connected to the outside of the outer stabilizing kit 4. Anti-slip textures are evenly distributed on the outer wall of the rotating ring 402 for easy operation. The rotating ring 402 can be made of plastic, which is easy to process and has a low cost. A support sleeve 5 is connected to the bottom of the outer stabilizing kit 4. The support sleeve 5 is internally connected to a support base plate 502 via threads. A threaded rotating rod 501 is connected to the bottom of the support base plate 502. A rubber anti-slip pad 503 is glued to the bottom of the threaded rotating rod 501. Rotating the support base plate 502 moves the threaded rotating rod 501 up and down, thereby adjusting the support height and ensuring the stability of the entire device on different working surfaces.

[0033] Wastewater introduction operation

[0034] Adjustment of the telescopic joint pipe 3: When sewage needs to be introduced, the operator can adjust the length of the telescopic joint pipe 3 by stretching or contracting it according to the location and distance of the sewage source. The telescopic joint pipe 3 is made of a special stretchable material, such as rubber or plastic composite material with a certain degree of elasticity and flexibility. This material can freely stretch and contract within a certain range, making it easy to adapt to different working environments. During the adjustment process, the second support port 302 of the telescopic joint pipe 3 moves with the extension and contraction of the telescopic joint pipe 3.

[0035] Wastewater is introduced into wastewater tank 2: After adjusting the length of the expansion joint pipe 3, the wastewater is guided into the wastewater tank 2 through the expansion joint pipe 3, and then enters the inlet pipe 101 through the interface 201, and then enters the wastewater treatment device body 1 for treatment.

[0036] Storage operation of the device

[0037] Storage of the telescopic joint pipe 3: When the sewage treatment work is completed or the device needs maintenance, the telescopic joint pipe 3 is retracted. The length of the outer stabilizing kit 4 is greater than the total length of the interface 201 and the first support pipe opening 301. After the telescopic joint pipe 3 is retracted, it can be stored in the part of the outer stabilizing kit 4 that extends out of the interface 201 and the first support pipe opening 301. This part is not threaded. During the retraction process, the second support pipe opening 302 will move closer to the opening of the outer stabilizing kit 4 as the telescopic joint pipe 3 retracts, causing the positioning plug 401 to be tightly inserted into the corresponding structural slot 303 on the second support pipe opening 302, improving the stability of the connection between the two. At the same time, the first support pipe opening 301 and the second support pipe opening 302 can be made of materials that can magnetically attract each other, such as partially iron-containing materials, to further enhance the stability during storage.

[0038] Working principle

[0039] sewage introduction principle

[0040] Telescopic Adjustment: The telescopic joint pipe 3, as a retractable component, can change its length according to actual conditions. Operators can easily adjust its length by manually stretching or retracting the telescopic joint pipe 3 to guide external sewage into the sewage tank 2. This telescopic design overcomes the problem that traditional fixed pipes cannot adapt to different sewage source locations, greatly improving the flexibility of sewage introduction.

[0041] Connection and Sealing: One end of the expansion joint pipe 3 connects to the interface 201 on the sewage tank 2 via the first support pipe port 301. The outer stabilizing kit 4 matches the external thread of the outer connecting clamp 202 on the outer periphery of the first support pipe port 301 and the interface 201 via its internal thread. Rotating the outer stabilizing kit 4 allows it to fit between the two, achieving a secure connection. During rotation, the sealing ring 403 at the inner end of the outer stabilizing kit 4 presses tightly against the outer periphery of the interface 201, ensuring the sealing of the connection and preventing sewage leakage during transmission. This ensures that sewage can smoothly enter the sewage tank 2 and then enter the inlet pipe 101 through the interface 201.

[0042] Storage principles

[0043] When wastewater treatment is completed or maintenance is required, the telescopic joint pipe 3 needs to be retracted. First, the operator manually retracts the telescopic joint pipe 3, utilizing its inherent expandable and contractible nature. The external stabilizing kit 4 plays a crucial role in the overall device design; its length is carefully designed to be greater than the combined length of the interface 201 and the first support pipe 301. This unique design creates ideal conditions for the retraction of the telescopic joint pipe 3, allowing it to be perfectly accommodated within this specially reserved extra space after retraction. Furthermore, it is noteworthy that this space for retracting the telescopic joint pipe 3 is threadless, a very ingenious design detail. Because there are no threads, the telescopic joint pipe 3 is not affected by threaded structures during retraction, allowing for smooth retraction without issues such as jamming or damage due to thread friction.

[0044] Enhanced Storage Stability: During the retraction of the telescopic joint tube 3, a series of mechanisms enhance storage stability. As the telescopic joint tube 3 retracts, it moves the second support tube opening 302 along with it. With continued retraction, the second support tube opening 302 gradually fits into the opening of the outer stabilizing kit 4. At this location, a crucial and stable connection design is implemented: the positioning plug 401 and the corresponding structural slot 303 on the second support tube opening 302 are tightly interlocked. This interlocking method acts like a precise lock, effectively improving the stability of the connection and preventing the telescopic joint tube 3 from easily loosening or shifting in the retracted state.

[0045] In addition to the above, there is another factor that further ensures the stability of the storage: the magnetic attraction between the first support tube 301 and the second support tube 302. These two tubes use special materials or designs that enable them to attract each other magnetically. This magnetic attraction plays a crucial role in storage, providing extra stability to the entire storage structure. It acts like a sturdy barrier for the stored telescopic tube 3, effectively preventing it from accidentally unfolding due to slight external vibrations, shaking, or other unforeseen factors while stored. This ensures the stability and safety of the stored state and also helps extend the service life of the telescopic tube 3.

[0046] Support and operating principles

[0047] Rotation Operation: The rotating ring 402 externally connected to the outer stabilizing kit 4 facilitates the operator's rotation of the outer stabilizing kit 4. The anti-slip texture on the outer wall of the rotating ring 402 increases friction, allowing the operator to apply force more effectively during rotation.

[0048] Support function: The support structure consisting of the support sleeve 5 at the bottom of the outer stabilizing kit 4, the support base plate 502, the threaded rotating rod 501, and the anti-slip pad 503 provides support force at the connection points during the folding up or use of the device. By rotating the support base plate 502, the threaded rotating rod 501 can be moved up and down to adjust the support height of the entire device, ensuring that the device remains stable on different planes and that the sewage introduction and treatment process proceeds normally.

[0049] The above is the entire working process of the device, and all contents not described in detail in this specification are existing technologies known to those skilled in the art.

[0050] Although 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 alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An environmentally friendly wastewater treatment device, comprising an inlet pipe (101) disposed on the wastewater treatment device body (1), characterized in that: One end of the inlet pipe (101) is provided with a sewage tank (2), and an interface (201) is connected to the sewage tank (2). The interface (201) is used to transport sewage into the inlet pipe (101). The opening of the interface (201) is connected to a telescopic joint pipe (3) through an external stabilizing kit (4) to guide the sewage into the sewage tank (2).

2. The environmentally friendly wastewater treatment device according to claim 1, characterized in that: One end of the telescopic joint tube (3) is connected to a first support port (301), and the other end is connected to a second support port (302). The second support port (302) is connected to the inlet of the interface (201). An outer connecting clamp (202) is connected to the outer periphery of the interface (201). The outer walls of the outer connecting clamp (202) and the first support port (301) are provided with external threads that are compatible with the internal threads of the outer stabilizing kit (4). The outer stabilizing kit (4) can be installed on the outside of the first support port (301) and the outer connecting clamp (202) by rotation and threaded connection.

3. The environmentally friendly wastewater treatment device according to claim 2, characterized in that: The outer stabilizing kit (4) has a sealing ring (403) at one end facing the outer wall of the sewage tank (2) for sealing.

4. The environmentally friendly wastewater treatment device according to claim 2, characterized in that: The length of the external stabilizing kit (4) is greater than the total length of the interface (201) and the first support port (301). The portion of the external stabilizing kit (4) extending out of the interface (201) and the first support port (301) allows the retractable telescopic joint tube (3) to be located therein.

5. The environmentally friendly wastewater treatment device according to claim 1, characterized in that: The outer stabilizing kit (4) has a positioning plug (401) connected to the opening at one end facing the second support tube (302), and a slot (303) is connected to the opening at one end facing the outer stabilizing kit (4). The positioning plug (401) and the slot (303) are adapted to be inserted.

6. The environmentally friendly wastewater treatment device according to claim 1, characterized in that: The external stabilizing kit (4) is connected to a rotating ring (402) for rotation, and the outer wall of the rotating ring (402) is uniformly provided with anti-slip texture.

7. The environmentally friendly wastewater treatment device according to claim 1, characterized in that: The bottom of the external stabilizing kit (4) is connected to a support sleeve (5), and the support sleeve (5) is connected to a support base plate (502) through a threaded rotation. The bottom of the support base plate (502) is connected to a threaded rotating rod (501), and the bottom of the threaded rotating rod (501) is glued with an anti-slip pad (503) for anti-slip.