Efficient water purifier filter element pressurizing structure and efficient water purifier filter element

By designing the gap structure of the booster tube and siphon tube in the water purifier filter element, a siphon effect is generated, which solves the problem of the existing water purifier filter element overflowing when the water volume is high, and efficient filtration and improved filtration efficiency are achieved.

CN222880589UActive Publication Date: 2025-05-16NINGBO XZH ENVIRONMENTAL TECH CO LTD
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Patent Information

Application Number
CN202422032738.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-21
Publication Date
2025-05-16
Estimated Expiration
2034-08-21

AI Technical Summary

Technical Problem

The water inlet of the existing water purifier filter element is through holes, which causes the filter water to overflow when the water is large, and subsequent water cannot enter the filter element in time to complete the filtration, affecting the health of the drinker.

Method used

A high-efficiency water purifier filter element boosting structure is designed, including a booster tube and a siphon tube, and a gap structure is formed between the two to generate a siphon effect, increasing the water inlet pressure of the water flow, thereby improving the filtration efficiency.

Benefits of technology

Through the pressurized structure, the filtration speed and efficiency of the filtered water are improved, overflow is avoided, the filtration effect of the water is ensured, and the quality of drinking water is improved.

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Abstract

The utility model discloses an efficient water purifier filter element pressurizing structure and an efficient water purifier filter element, and belongs to the technical field of water purifiers. The pressurizing pipe and the siphon pipe are detachably connected in a sleeved mode, a gap structure which is composed of a plurality of holes and can allow water to pass through is formed between the opposite side walls, when water flows through the gap structure, the pressurizing pipe and the siphon pipe can form a siphon effect to pressurize the water, the speed of filtered water passing through the pressurizing pipe is increased, and therefore the filtering efficiency is improved. The efficient water purifier filter element comprises a filter bottle, water inlets, a water outlet and a pressurizing structure, at least one water inlet is formed in the bottle opening side of the filter bottle, the water outlet is the bottle opening of the filter bottle, the pressurizing structure is fixedly installed in the center of the filter bottle, the inlet end of the pressurizing structure is located in the filter bottle, and the outlet end of the pressurizing structure is communicated with the water outlet in a sealed mode.
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Description

Technical Field

[0001] The utility model belongs to the technical field of water purifiers, and more specifically relates to a high-efficiency water purifier filter element pressurization structure and a high-efficiency water purifier filter element. Background Art

[0002] A water purifier, also called a water purifier or a water purifier, is a water treatment device that deeply filters and purifies water according to the requirements for water use. The water purifier we usually talk about generally refers to a small purifier used for home use. The filter element is used to purify polluted water to the state required for production and life, that is, to make the water reach a certain degree of cleanliness; but the water inlet of the existing water purifier filter element is a through hole. When the water volume is large, the filtered water will overflow, resulting in the subsequent water being unable to enter the filter element in time to complete the filtration, which is not conducive to the health of the drinker. Therefore, a water purifier filter element with fast filtration speed and high filtration efficiency is needed to solve the problems raised in the above background technology. Utility Model Content

[0003] The technical problem to be solved by the utility model is to provide a high-efficiency water purifier filter element pressurization structure and a high-efficiency water purifier filter element, which can meet the requirements of fast filtering speed and high filtering efficiency of the filter element.

[0004] The utility model discloses a high-efficiency water purifier filter element boosting structure, comprising a boosting pipe and a siphon pipe; the boosting pipe and the siphon pipe are detachably sleeved, and a gap structure consisting of a plurality of holes through which water can pass is formed between opposite side walls; when water flows through the gap structure, the boosting pipe and the siphon pipe can form a siphon effect to pressurize the water flow.

[0005] As a further improvement of the utility model, it also includes a sealing ring, which is buckled on the head of the booster pipe to prevent water leakage during the filtration process from reducing the filtration effect.

[0006] As a further improvement of the utility model, the boost pipe includes a sleeve, a plurality of connecting teeth, a water filter plate and a tube body. The sleeve is fixedly connected to the rear end of the tube body, and the inner diameter of the sleeve is larger than the tube body. The lower end of the water filter plate is sleeved on the upper end of the siphon tube. One end of the plurality of connecting teeth is fixedly connected to the inner ring of the head of the sleeve, and the end of the connecting teeth not connected to the sleeve is fixedly connected to the water filter plate. The connection between the plurality of connecting teeth and the water filter plate forms a plurality of holes, constituting a gap structure. When filtered water enters the filter element, it passes through the gap structure, thereby increasing the water inlet pressure of the boost pipe, and speeding up the speed at which the filtered water enters the boost structure, thereby improving the filtering efficiency.

[0007] As a further improvement of the utility model, a small hole is provided in the center of the water filter plate and the bottom of the siphon tube is sealed. When the filtered water passes through the pressurized structure, the small hole of the water filter plate and the inner cavity of the siphon tube form a siphon effect, increasing the speed of the filtered water passing through the filter tube and improving the filtering efficiency.

[0008] As a further improvement of the utility model, it also includes at least one spare pipe and a small hole is provided in the center of the spare pipe. A joint is extended to the lower end of the siphon pipe, and the lower end of the spare pipe has the same joint. Two spare pipes are provided, namely a first-level spare pipe and a second-level spare pipe. The siphon pipe and the upper end of the first-level spare pipe are clamped together by a joint, and the lower end of the first-level spare pipe and the upper end of the second-level spare pipe are clamped together to prevent the siphon effect from being unable to be realized.

[0009] As a further improvement of the utility model, the siphon tube is provided with a plurality of clamping columns, which are sleeved in the shaft sleeve to increase the connection strength between the siphon tube and the booster tube, and a gap is formed between the clamping columns and the shaft sleeve to facilitate filtered water to flow through.

[0010] A high-efficiency water purifier filter element comprises a filter bottle, a water inlet, a water outlet and a pressurizing structure, wherein at least one water inlet is installed on the bottle mouth side of the filter bottle, the water outlet is the bottle mouth of the filter bottle, and the pressurizing structure is fixedly installed inside the center of the filter bottle, the inlet end of the pressurizing structure is located inside the filter bottle, and the outlet end is sealed and connected to the water outlet.

[0011] Compared with the prior art, the beneficial effects of the utility model are as follows: a gap structure is provided at the water inlet of the boosting structure, the boosting pipe and the siphon pipe can form a siphon effect, increase the water inlet pressure of the boosting pipe, and increase the speed of the filtered water passing through the boosting structure, thereby improving the filtering efficiency; the sealing ring is buckled on the head of the boosting pipe to prevent water leakage during the filtering process from reducing the filtering effect; the tail of the boosting pipe is sleeved on the upper end of the siphon pipe, the boosting pipe and the siphon pipe are clamped, the lower end of the siphon pipe is clamped with the upper end of the first-level spare pipe, and the lower end of the first-level spare pipe is clamped with the upper end of the second-level spare pipe, to prevent the siphon effect from being unable to be realized; the end of the connecting tooth that is not connected to the shaft sleeve is fixedly connected to the water filter plate, and the connection between the plurality of connecting teeth and the water filter plate forms a gap structure, and when the filtered water enters the boosting structure, it passes through the gap structure, increases the water inlet pressure of the boosting pipe, and increases the speed of the filtered water entering the boosting structure, thereby improving the filtering efficiency; the clamping column is sleeved in the shaft sleeve to increase the connection strength of the siphon pipe and the boosting pipe. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 This is a schematic diagram of the structure of the high-efficiency water purifier filter element of the utility model;

[0013] Figure 2 It is a cross-sectional schematic diagram of a high-efficiency water purifier filter element of the utility model;

[0014] Figure 3 It is an explosion diagram of the utility model;

[0015] Figure 4 It is a cross-sectional schematic diagram of the booster pipe of the utility model;

[0016] Figure 5 It is a cross-sectional view and a schematic diagram of the water filtering flow direction of the utility model.

[0017] Description of the numbers in the figure:

[0018] Filter bottle 1; water inlet 2; water outlet 3; boost structure 4; sealing ring 4-1; boost pipe 4-2; shaft sleeve 4-2-1; connecting tooth 4-2-2; water filter plate 4-2-3; pipe body 4-2-4; siphon tube 4-3; clamping column 4-3-1; primary spare pipe 4-4; secondary spare pipe 4-5. DETAILED DESCRIPTION

[0019] Specific embodiment 1: Please refer to Figure 1-Figure 5 The utility model relates to a high-efficiency water purifier filter element boosting structure, including a boosting pipe 4-2 and a siphon pipe 4-3; the boosting pipe 4-2 and the siphon pipe 4-3 are detachably connected, and a gap structure consisting of a plurality of holes through which water can pass is formed between the opposite side walls. When water flows through the gap structure, the boosting pipe 4-2 and the siphon pipe 4-3 can form a siphon effect to pressurize the water flow, increase the water inlet pressure of the boosting pipe 4-2, and increase the speed at which the filtered water enters the boosting structure 4, thereby improving the filtration efficiency.

[0020] In a further embodiment, Figure 2 As shown, it also includes a sealing ring 4-1, which is buckled on the head of the boosting pipe 4-2 to prevent water leakage during the filtration process, which leads to a reduction in the filtration effect. The tail of the boosting pipe 4-2 is sleeved on the upper end of the siphon pipe 4-3, and the boosting pipe 4-2 and the siphon pipe 4-3 are clamped.

[0021] In a further embodiment, Figure 3 As shown, the boost pipe 4-2 includes a sleeve 4-2-1, a plurality of connecting teeth 4-2-2, a water filter plate 4-2-3 and a tube body 4-2-4. The sleeve 4-2-1 is fixedly connected to the tail of the tube body 4-2-4, and the inner diameter of the sleeve 4-2-1 is larger than that of the tube body 4-2-4. The lower end of the water filter plate 4-2-3 is sleeved on the upper end of the siphon tube 4-3. One end of a plurality of connecting teeth 4-2-2 is fixedly connected to the inner ring of the head of the sleeve 4-2-1. The end of the connecting teeth 4-2-2 that is not connected to the sleeve 4-2-1 is fixedly connected to the water filter plate 4-2-3. The connection between the plurality of connecting teeth 4-2-2 and the water filter plate 4-2-3 forms a plurality of holes, constituting a gap structure. When the filtered water enters the boost structure 4, it passes through the gap structure, thereby increasing the water inlet pressure of the boost pipe 4-2, so that the speed at which the filtered water enters the boost structure 4 is increased, thereby improving the filtering efficiency.

[0022] In a further embodiment, Figure 4 As shown, the siphon tube 4-3 is provided with a plurality of clamping columns 4-3-1, which are sleeved in the shaft sleeve 4-2-1 to increase the connection strength between the siphon tube 4-3 and the booster tube 4-2, and a gap is formed between the clamping columns 4-3-1 and the shaft sleeve 4-2-1 to facilitate the flow of filtered water.

[0023] In a further embodiment, Figure 5As shown, a small hole is provided in the center of the water filter plate 4-2-3, and the bottom of the siphon tube 4-3 is sealed. When the filtered water passes through the boost structure 4, the small hole of the water filter plate 4-2-3 and the siphon tube 4-3 form a siphon effect, increasing the speed of the filtered water passing through the filter tube 4 and improving the filtering efficiency.

[0024] In a further embodiment, a primary spare pipe 4-4 and a secondary spare pipe 4-5 are also included, and a small hole is provided in the center of the spare pipes, the lower end of the siphon pipe 4-3 is clamped with the upper end of the primary spare pipe 4-4, and the lower end of the primary spare pipe 4-4 is clamped with the upper end of the secondary spare pipe 4-5. When the small hole in the center of the water filter plate 4-2-3 cannot meet the conditions of the siphon effect, any one of the primary spare pipe 4-4 or the secondary spare pipe 4-5 is disconnected from its original connection, and the two ends are respectively connected to the lower end of the boosting pipe 4-2 and the upper end of the siphon pipe 4-3 to ensure the generation of the siphon effect.

[0025] A high-efficiency water purifier filter element comprises a filter bottle 1, a water inlet 2, a water outlet 3 and a pressurizing structure 4, wherein at least one water inlet 2 is installed on the bottle mouth side of the filter bottle 1, the water outlet 3 is the bottle mouth of the filter bottle 1, and the pressurizing structure is fixedly installed inside the center of the filter bottle 1, the inlet end of the pressurizing structure is located inside the filter bottle 1, and the outlet end is sealed and connected to the water outlet 3.

[0026] When in use, the high-efficiency water purifier filter element boosting structure is installed at the inner center of the filter bottle 1, the filtered water inlet pipe is connected to the water inlet 2, the filtered water outlet pipe is connected to the water outlet 3, the outlet valves of the inlet and outlet pipes are opened, the filtered water flows into the filter bottle 1 from the water inlet 2, the water flows into the filter bottle 1, and the filtered water is filtered in the filter bottle 1. When the filtered filtered water passes through the boosting structure 4 quickly, it passes through the gap structure formed by the connection of several connecting teeth 4-2-2 and the filter plate 4-2-3, and the small holes of the filter plate 4-2-3 and the siphon tube 4-3 produce a siphon effect, which increases the water inlet pressure of the boosting pipe 4-2, and the filtered water is discharged from the water outlet 3 to complete the filtration.

Claims

1. A high-efficiency water purifier filter element pressurization structure, characterized in that: The device comprises a boosting pipe (4-2) and a siphon pipe (4-3); the boosting pipe (4-2) and the siphon pipe (4-3) are detachably sleeved, and a gap structure consisting of a plurality of holes capable of passing water is formed between opposite side walls; when water flows through the gap structure, the boosting pipe (4-2) and the siphon pipe (4-3) can form a siphon effect to pressurize the water flow.

2. The high-efficiency water purifier filter element pressurization structure according to claim 1 is characterized in that: It also includes a sealing ring (4-1), which is buckled on the head of the boosting pipe (4-2).

3. The high-efficiency water purifier filter element pressurization structure according to claim 2 is characterized in that: It also comprises at least one spare pipe, a joint is extended from the lower end of the siphon pipe (4-3), and the upper end of the siphon pipe (4-3) is clamped together with the joint.

4. The high-efficiency water purifier filter element pressurization structure according to claim 3 is characterized by: Two spare pipes are provided, namely a primary spare pipe (4-4) and a secondary spare pipe (4-5); the lower end of the primary spare pipe (4-4) also has a joint and is clamped to the upper end of the secondary spare pipe (4-5).

5. The high-efficiency water purifier filter element pressurization structure according to claim 1 is characterized by: The boost pipe (4-2) comprises a shaft sleeve (4-2-1), a plurality of connecting teeth (4-2-2), a water filter plate (4-2-3) and a pipe body (4-2-4); the shaft sleeve (4-2-1) is fixedly connected to the rear end of the pipe body (4-2-4), and the inner diameter of the shaft sleeve (4-2-1) is larger than that of the pipe body (4-2-4); the lower end of the water filter plate (4-2-3) is sleeved on the upper end of the siphon pipe (4-3); one end of the plurality of connecting teeth (4-2-2) is fixedly connected to the inner ring of the head of the shaft sleeve (4-2-1); one end of the connecting teeth (4-2-2) not connected to the shaft sleeve (4-2-1) is fixedly connected to the water filter plate (4-2-3); the connection between the plurality of connecting teeth (4-2-2) and the water filter plate (4-2-3) forms a plurality of holes, forming a gap structure.

6. A high-efficiency water purifier filter element pressurization structure according to claim 5, characterized in that: A small hole is provided in the center of the water filter plate (4-2-3), and the bottom of the siphon tube (4-3) is sealed.

7. The high-efficiency water purifier filter element pressurization structure according to claim 5, characterized in that: The siphon tube (4-3) is provided with a plurality of clamping columns (4-3-1), the clamping columns (4-3-1) are sleeved in the shaft sleeve (4-2-1), and a water-passing gap is formed between the clamping columns (4-3-1) and the shaft sleeve (4-2-1).

8. A high-efficiency water purifier filter element, characterized in that: The invention comprises a filter bottle (1), a water inlet (2), a water outlet (3) and a high-efficiency water purifier filter element pressurization structure as described in any one of claims 1 to 7, wherein at least one water inlet (2) is installed on the bottle mouth side of the filter bottle (1), the water outlet (3) is the bottle mouth of the filter bottle (1), and the pressurization structure is fixedly installed inside the center of the filter bottle (1), the inlet end of the pressurization structure is located inside the filter bottle (1), and the outlet end is sealed and connected to the water outlet (3).