All-terrain water purifier

The all-terrain water purifier solves the problem of poor adaptability to water sources in different terrains by using polyamide membrane reverse osmosis purification and a motor-driven eccentric wheel system, combined with an energy recovery device. It achieves efficient, low-energy water purification and long-distance water intake, and simplifies the operation process.

CN223936289UActive Publication Date: 2026-02-24HANGZHOU CHIFENG INTELLIGENT EQUIP CO LTD
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Patent Information

Application Number
CN202520519769.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2026-02-24
Estimated Expiration
2035-03-24

AI Technical Summary

Technical Problem

Existing water purification equipment has poor adaptability to different terrains and water sources, is complex to operate, consumes a lot of energy, is inefficient, and is difficult to obtain water when it is far from the water source, and is also complicated to maintain.

Method used

An all-terrain water purifier was designed, which uses a polyamide membrane for reverse osmosis purification, combined with a motor-driven eccentric wheel system, and uses the residual pressure of pressurized wastewater to drive the piston. An integrated energy recovery device simplifies operation and reduces energy consumption.

Benefits of technology

It achieves efficient water purification in any environment, simplifies operation procedures, reduces energy consumption, is suitable for various power supply methods, supports long-distance water source extraction, and facilitates convenient maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an all-terrain water purifier which comprises a water inlet assembly, a driving assembly arranged on one side of the water inlet assembly, a water pumping assembly fixed on one side of the driving assembly, a water purifying assembly fixed on one side of the water inlet assembly, and a pollution discharge assembly fixed on the top of the water inlet assembly, the water purifying assembly comprises a membrane shell, and the membrane shell is fixed on one side of the water inlet assembly. The water inlet assembly comprises a pressurizing shell, a water inlet pipe is fixed in the pressurizing shell, a one-way valve is fixed in the pressurizing shell, a first spring is fixed on one side of the one-way valve, and a water inlet valve body is fixed in the pressurizing shell; a water inlet cavity is formed in the pressurizing shell, and an inner sealing base is fixed in the pressurizing shell. Through the arrangement of the special material of the membrane body, different types of water can be filtered, and the equipment can be mechanically or manually driven in a mode of replacing the driving assembly.
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Description

Technical Field

[0001] This utility model relates to the field of water purifier technology, and more specifically, to an all-terrain water purifier. Background Technology

[0002] In the past, different water purification equipment was needed for different terrains and water sources. Moreover, the equipment was often complex to operate, large in size, and heavy, which was very unfriendly to field research or missions with limited personnel. When the water source was far from the waterline, it was difficult to obtain water. In particular, when encountering different temperatures and salinities, complex adjustments were required. In some cases, the equipment could not purify the water. Even if it could, it was energy-intensive, complex to operate, inefficient, and difficult to maintain after use. Utility Model Content

[0003] (a) Technical problems to be solved

[0004] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide an all-terrain water purifier.

[0005] (II) Technical Solution

[0006] To achieve the above objectives, this utility model provides the following technical solution: a water purifier for all terrains includes a water inlet assembly, a drive assembly on one side of the water inlet assembly, a pumping assembly fixed on one side of the drive assembly, a water purification assembly fixed on one side of the water inlet assembly, a sewage discharge assembly fixed on the top of the water inlet assembly, and a membrane housing fixed to one side of the water inlet assembly. The water purification assembly includes a membrane shell, which is fixed to one side of the water inlet assembly. A water purification port is fixed inside the membrane shell, an end cap is fixed inside the membrane shell, a water purification pipe is fixed inside the membrane shell, and a membrane body is provided on one side of the water purification pipe.

[0007] As a preferred embodiment, the water inlet assembly includes a pressurizing housing, an inlet pipe fixed inside the pressurizing housing, a one-way valve fixed inside the pressurizing housing, a spring fixed to one side of the one-way valve, an inlet valve body fixed inside the pressurizing housing, an inlet chamber opened inside the pressurizing housing, and an inner sealing seat fixed inside the pressurizing housing.

[0008] As a preferred embodiment, the drive assembly includes a connecting seat disposed on one side of the pressurization housing. An eccentric connecting rod is disposed inside the connecting seat. An eccentric wheel is rotatably connected to one side of the eccentric connecting rod. A bearing is fixed to one side of the connecting seat. A pin is disposed inside the bearing. A motor is fixed to one side of the connecting seat. The eccentric wheel is fixed to the output shaft end of the motor.

[0009] As a preferred embodiment, the pumping assembly includes a sliding sleeve seat, which is disposed inside the bearing. A connecting rod is fixed inside the sliding sleeve seat, and a second pin is fixed inside the connecting rod. A front seal is slidably connected to one side of the second pin, and a sealing ring is fixed inside the front seal. A plug rod is fixed inside the connecting rod.

[0010] As a preferred embodiment, a piston is fixed to one side of the stopper rod, the piston is slidably connected inside the front sealing seat, a second sealing ring is provided inside the front sealing seat, and a through cavity is opened inside the front sealing seat.

[0011] As a preferred embodiment, the sewage discharge assembly includes a sewage discharge seat, which is fixed to the top of the pressurization shell. The sewage discharge seat has a second through cavity inside, and a sliding core is slidably connected inside the sewage discharge seat.

[0012] As a preferred embodiment, a wastewater outlet is fixed inside the sewage discharge seat, a second spring is installed inside the sewage discharge seat, and a pressure relief needle valve is installed inside the sewage discharge seat.

[0013] (III) Beneficial Effects

[0014] Compared with the prior art, this utility model provides an all-terrain water purifier with the following advantages:

[0015] 1. By using a water purification component with a membrane made of polyamide, pressure is applied to water molecules, causing them to pass through a reverse osmosis process. This process separates dissolved salts, impurities, and microorganisms from the water, thereby purifying the water. Therefore, this water purifier is suitable for use in any environment.

[0016] 2. By using the set drive components, the motor drives the eccentric wheel to rotate, which in turn drives the eccentric connecting rod to move the piston rod. This allows the device to extract water from a distant source to the residential area through a suction process.

[0017] 3. Through the set sewage discharge component, the pressurized wastewater filtered by the water purification component is introduced into the back of the piston of the water inlet booster module through the energy conversion device. The residual pressure of the pressurized wastewater is used to drive the piston to do work, thereby reducing the energy consumption of the entire water purification device.

[0018] 4. Through the water inlet component, the one-way valve, and the spring, the water drawn in by the water purifier has a strong water pressure, which effectively allows the water to penetrate the membrane. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0020] Figure 2This is a schematic diagram illustrating the switching of this utility model to a non-mechanical drive.

[0021] Figure 3 This is a schematic diagram of the internal structure of this utility model;

[0022] Figure 4 This is a schematic diagram of the sewage discharge component of this utility model.

[0023] In the diagram: 1. Water inlet assembly; 2. Pressure booster housing; 3. Water inlet pipe; 4. Check valve; 5. Spring 1; 6. Water inlet valve body; 7. Water inlet chamber; 8. Inner seal; 9. Drive assembly; 10. Connecting seat; 11. Eccentric connecting rod; 12. Eccentric wheel; 13. Bearing; 14. Pin 1; 15. Motor; 16. Pumping assembly; 17. Sliding sleeve seat; 18. Connecting rod; 19. Pin 2; 0. Front seal; 21. Sealing ring one; 22. Plug rod; 23. Piston; 24. Sealing ring two; 25. Through cavity one; 26. Water purification assembly; 27. Membrane housing; 28. Water purification outlet; 29. ​​End cap; 30. Water purification pipe; 31. Membrane body; 32. Sewage discharge assembly; 33. Sewage discharge seat; 34. Through cavity two; 35. Sliding core; 36. Wastewater outlet; 37. Spring two; 38. Pressure relief needle valve. Detailed Implementation

[0024] The present invention will be further described and illustrated below with reference to specific embodiments and the accompanying drawings:

[0025] Please see Figure 1-4 This utility model includes a water inlet component 1, a drive component 9 on one side of the water inlet component 1, a pumping component 16 fixed on one side of the drive component 9, a water purification component 26 fixed on one side of the water inlet component 1, and a sewage discharge component 32 fixed on the top of the water inlet component 1. The water purification component 26 includes a membrane housing 27, which is fixed on one side of the water inlet component 1. A water purification port 28 is fixed inside the membrane housing 27 and is fixedly connected to a water purification pipe 30. An end cap 29 is fixed inside the membrane housing 27, and a water purification pipe 30 is fixed inside the membrane housing 27. A membrane body 31 is provided on one side of the water purification pipe 30, and the membrane body 31 serves to filter water.

[0026] As a preferred embodiment, the water inlet assembly 1 includes a pressure boosting shell 2, an inlet pipe 3 fixed inside the pressure boosting shell 2, a one-way valve 4 fixed inside the pressure boosting shell 2, the one-way valve 4 restricts the direction of water flow, a spring 5 fixed on one side of the one-way valve 4, the spring 5 serves to restrict the one-way valve 4, an inlet valve body 6 fixed inside the pressure boosting shell 2, an inlet chamber 7 opened inside the pressure boosting shell 2, and an inner sealing seat 8 fixed inside the pressure boosting shell 2.

[0027] As a preferred embodiment, the drive assembly 9 includes a connecting seat 10, which is disposed on one side of the pressurization housing 2. An eccentric connecting rod 11 is disposed inside the connecting seat 10. An eccentric wheel 12 is rotatably connected to one side of the eccentric connecting rod 11. A bearing 13 is fixed to one side of the connecting seat 10. A pin 14 is disposed inside the bearing 13. A motor 15 is fixed to one side of the connecting seat 10. The eccentric wheel 12 is fixed to the output shaft end of the motor 15.

[0028] As a preferred embodiment, the pumping assembly 16 includes a sliding sleeve seat 17, which is disposed inside the bearing 13. A connecting rod 18 is fixed inside the sliding sleeve seat 17, and a second pin 19 is fixed inside the connecting rod 18. The second pin 19 serves as a fixed connection. A front sealing seat 20 is slidably connected to one side of the second pin 19. A first sealing ring 21 is fixed inside the front sealing seat 20, and the first sealing ring 21 provides a sealing effect. A plug rod 22 is fixed inside the connecting rod 18, and a piston 23 is fixed to one side of the plug rod 22. The piston 23 is slidably connected inside the front sealing seat 20. A second sealing ring 24 is disposed inside the front sealing seat 20, and a through cavity 25 is opened inside the front sealing seat 20.

[0029] As a preferred embodiment, the sewage discharge assembly 32 includes a sewage discharge seat 33, which is fixed to the top of the pressurization shell 2. The sewage discharge seat 33 has a through cavity 34 inside, a sliding core 35 is slidably connected inside the sewage discharge seat 33, a wastewater outlet 36 is fixed inside the sewage discharge seat 33, a spring 37 is installed inside the sewage discharge seat 33, and a pressure relief needle valve 38 is installed inside the sewage discharge seat 33.

[0030] The working principle of this utility model is as follows: The all-terrain water purification device comes in various specifications, with a maximum purification capacity of 50L / h. It uses a permanent magnet DC motor as the drive component, and the body is made of 316L stainless steel. It has a built-in RO membrane filter and energy recovery device, with a maximum power of 400W. It can be powered by various types of power modules, or by solar power. In the event that a power source is unavailable, a manual module can be directly replaced for purification (e.g., ...). Figure 2As shown), the motor 15, which is connected to the external power supply and fixed on the connecting seat 10, starts. Through the eccentric wheel 12, bearing 13, eccentric connecting rod 11, and pin 14, it reciprocates to pull the connecting rod 18, which is fixed in position by the sliding sleeve seat 17. The connecting rod 18 and the plug rod 22 are connected by pin 19, pulling the piston 23 backward, thus entering a water-suction state. Raw water enters the inlet chamber 7 through the inlet pipe 3 (connected to a flexible hose) and pushes open the one-way valve 4 held by spring 5. At this time... Raw water fills the entire inlet channel and reaches a certain pressure. Under the pressure of the back pressure from the piston 23, the sliding core 35 overcomes its own pressure and slides forward, connecting the wastewater outlet 36, allowing excess wastewater to flow out. When the piston 23 pushes forward, water enters the inlet pipe 3, the one-way valve 4 closes, and water enters the membrane 31 through the inlet chamber 7 and the inner seal 8. A small portion of the water permeates through the membrane 31, becoming fresh water, and flows out through the clean water pipe 30 and the clean water outlet 28. At the same time, the sliding core 35 moves backward due to the pressure difference. When the piston slides to the bottom, most of the pressurized wastewater enters the back of piston 23 through the passage 25, pushing piston 23 to assist in achieving energy-saving pressurization. Since the cross-sectional area of ​​the sliding core 35 is smaller than that of piston 23, as long as piston 23 makes a small movement, sliding core 35 will make a large movement. Whenever piston 23 makes a reverse movement, sliding core 35 will slide very quickly. Therefore, with each reciprocating movement of piston 23, the volume equal to the displacement of the cross-section of the piston rod 22 is added to this closed system, and the pressure in the system continues to build up until the pressure exceeds the osmotic pressure of membrane 31. Then the purified water passes through membrane 31 and is concentrated in water purification pipe 30 and flows out from water purification port 28. The device can be driven by electric and manual methods, which can be used interchangeably. The external power supply can use new energy sources and solar charging. The whole device has a one-button start and stop mode, which is extremely simple and convenient. All external pipelines adopt quick connection technology, which is convenient and reliable.

[0031] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit the scope of protection of this utility model. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the essence and scope of the technical solutions of this utility model.

Claims

1. An all-terrain water purifier, comprising a water inlet assembly (1), characterized in that: A drive assembly (9) is provided on one side of the water inlet assembly (1), a pumping assembly (16) is fixed on one side of the drive assembly (9), a water purification assembly (26) is fixed on one side of the water inlet assembly (1), a sewage discharge assembly (32) is fixed on the top of the water inlet assembly (1), the water purification assembly (26) includes a membrane shell (27), the membrane shell (27) is fixed on one side of the water inlet assembly (1), a water purification port (28) is fixed inside the membrane shell (27), an end cap (29) is fixed inside the membrane shell (27), a water purification pipe (30) is fixed inside the membrane shell (27), and a membrane body (31) is provided on one side of the water purification pipe (30).

2. The all-terrain water purifier according to claim 1, characterized in that: The water inlet assembly (1) includes a pressurizing shell (2), an inlet pipe (3) is fixed inside the pressurizing shell (2), a one-way valve (4) is fixed inside the pressurizing shell (2), a spring (5) is fixed on one side of the one-way valve (4), an inlet valve body (6) is fixed inside the pressurizing shell (2), an inlet chamber (7) is opened inside the pressurizing shell (2), and an inner sealing seat (8) is fixed inside the pressurizing shell (2).

3. The all-terrain water purifier according to claim 2, characterized in that: The drive assembly (9) includes a connecting seat (10), which is disposed on one side of the pressurized housing (2). An eccentric connecting rod (11) is disposed inside the connecting seat (10). An eccentric wheel (12) is rotatably connected to one side of the eccentric connecting rod (11). A bearing (13) is fixed to one side of the connecting seat (10). A pin (14) is disposed inside the bearing (13). A motor (15) is fixed to one side of the connecting seat (10). The eccentric wheel (12) is fixed to the output shaft end of the motor (15).

4. The all-terrain water purifier according to claim 3, characterized in that: The pumping assembly (16) includes a sliding sleeve seat (17), which is disposed inside the bearing (13). A connecting rod (18) is fixed inside the sliding sleeve seat (17), and a second pin (19) is fixed inside the connecting rod (18). A front seal seat (20) is slidably connected to one side of the second pin (19). A first sealing ring (21) is fixed inside the front seal seat (20), and a plug rod (22) is fixed inside the connecting rod (18).

5. The all-terrain water purifier according to claim 4, characterized in that: A piston (23) is fixed on one side of the piston rod (22). The piston (23) is slidably connected inside the front sealing seat (20). A second sealing ring (24) is provided inside the front sealing seat (20). A through cavity (25) is opened inside the front sealing seat (20).

6. The all-terrain water purifier according to claim 2, characterized in that: The sewage discharge assembly (32) includes a sewage discharge seat (33), which is fixed on the top of the pressurization shell (2). A through cavity (34) is opened inside the sewage discharge seat (33), and a sliding core (35) is slidably connected inside the sewage discharge seat (33).

7. The all-terrain water purifier according to claim 6, characterized in that: The sewage outlet (33) is fixed inside the sewage outlet (36), the sewage outlet (33) is provided with a second spring (37), and the sewage outlet (33) is provided with a pressure relief needle valve (38).