Air suction shower head

By setting up an intake channel in the shower head and handle, and setting the air intake port at the handle, the problem of the shower head being unable to inhale in the water immersed in the shower head, it solves the problem that the shower head cannot inhale and produces bubble water, and improves the functional reliability and cleaning effect of the intake shower.

CN223055852UActive Publication Date: 2025-07-04XIAMEN OCEANS SANITARY WARE CO LTD
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Patent Information

Application Number
CN202421999021.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-19
Publication Date
2025-07-04
Estimated Expiration
2034-08-19

AI Technical Summary

Technical Problem

The existing inhaled showerhead cannot inhale and produce bubble water when the showerhead is immersed in water, resulting in functional failure.

Method used

Set the intake passage in the shower head and the handle. The air intake port is located at the handle and communicates with the outside air. The air outlet is connected to the bubbler to ensure that the outside air can still be sucked in when the shower head is immersed in water to generate bubble water.

Benefits of technology

It realizes that the shower head can still produce bubble water when it is immersed in water, and the function is more reliable to ensure that the cleaning effect is not affected.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223055852U_ABST
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Abstract

The utility model provides an air suction shower head which comprises a shower head and a handle which are connected with each other, and further comprises a bubbler and an air suction channel. The bubbler is arranged on the shower head, and water flow with bubbles can flow out of the bubbler; the air suction channel is arranged in the shower head and the handle, an air inlet of the air suction channel is located at the handle and communicated with outside air, and an air outlet of the air suction channel is communicated with the bubbler. According to the technical scheme, the problem that bubble water is generated due to the fact that air cannot be sucked when the shower head is immersed in water can be solved, and the function is more reliable.
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Description

Technical Field

[0001] The utility model relates to the technical field of shower heads. Background Art

[0002] In the prior art, some shower heads are provided with a bubbler. Such shower heads all have an air suction function. When the shower head discharges water, a negative pressure is formed, and the outside air is sucked into the bubbler by using the negative pressure, so as to form a water flow with bubbles, providing water flow comfort or cleanliness, etc. Summary of the Utility Model

[0003] The inventor found that in the existing air suction shower head products, it is not considered that during the actual use of the shower head, some users will put the shower head into a container such as a bathtub or a washbasin to fill the container with water. And in the existing hand-held air suction shower heads, the air suction channel is integrally arranged at the shower head. When the whole shower head is put into a container such as a bathtub or a washbasin, when the water in the container reaches a certain height, the shower head is often submerged in the water, so that air suction can no longer be carried out, and thus the function of obtaining micro-bubble water through air suction cannot be achieved, etc. For a micro-bubble air suction shower head, when the micro-bubble water is injected into a container such as a bathtub or a washbasin, the micro-bubbles can still remain in the water and play a role in the cleaning effect. Therefore, it is necessary to design an air suction shower head with more reliable functions to avoid the problem that air cannot be sucked to generate bubble water when the shower head is submerged in the water.

[0004] To solve the above technical problems, the purpose of the utility model is to provide an air suction shower head with more reliable functions, which can avoid the problem that air cannot be sucked to generate bubble water when the shower head is submerged in the water.

[0005] To achieve the above purpose, the technical solution adopted by the utility model is as follows:

[0006] An air suction shower head, including a shower head and a handle connected to each other, and further including:

[0007] A bubbler, arranged on the shower head and capable of flowing out a water flow with bubbles;

[0008] An air suction channel, arranged in the shower head and the handle. The air inlet of the air suction channel is located at the handle and is communicated with the outside air, and the air outlet of the air suction channel is communicated with the bubbler.

[0009] Preferably, an air inlet joint is arranged on the handle, and the air inlet of the air suction channel is formed at the air inlet joint; an air outlet joint is arranged on the shower head, and the air outlet of the air suction channel is formed at the air outlet joint. The air suction channel further includes an air suction pipe with two ends respectively connected to the air inlet joint and the air outlet joint.

[0010] Preferably, the air suction pipe is a flexible pipe.

[0011] Preferably, a mixing chamber is provided inside the bubbler, the mixing chamber is provided with an air inlet, a water inlet and a water outlet, an air flow channel communicating the air inlet with the air outlet joint is provided inside the shower head, and the water inlet surrounds the air inlet.

[0012] Preferably, a water inlet channel is provided inside the shower head and the handle and is in communication with each other, and the air suction channel is arranged side by side with the water inlet channel.

[0013] Preferably, the handle includes a handle housing and a water inlet pipe provided inside the handle housing and having the front part of the water inlet channel, the shower head includes a head housing and a water inlet cavity provided inside the head housing and having the rear part of the water inlet channel, an air inlet joint is provided on the water inlet pipe, and the air inlet of the air suction channel is formed at the air inlet joint; an air outlet joint is provided on the water inlet cavity, and the air outlet of the air suction channel is formed at the air outlet joint. The air suction channel further includes an air suction pipe with two ends respectively connected to the air inlet joint and the air outlet joint.

[0014] Preferably, the air inlet of the air suction channel is located closer to the end of the handle away from the shower head.

[0015] Preferably, the air suction channel is integrally formed inside the shower head and the handle.

[0016] Preferably, when the air suction shower is in water, a partial area of the handle away from the shower head will tilt upward under the action of buoyancy to form a tilted area, and the air inlet of the air suction channel is provided at the tilted area of the handle.

[0017] Preferably, the bubbler is a bubbler capable of forming microbubbles at the nanometer level.

[0018] Compared with the prior art, the present utility model has at least the following beneficial effects:

[0019] In the present utility model, the air suction channel is provided inside the shower head and the handle, rather than being integrally arranged inside the shower head. The air inlet of the air suction channel is located at the handle and is in communication with the outside air, and the air outlet of the air suction channel is in communication with the bubbler. In this way, the air suction channel extends from the shower head to the handle, and the air inlet of the air suction channel is not at the shower head but at the handle. When the shower head is immersed in water, the outside air can still be inhaled into the air suction channel through the air inlet of the air suction channel at the handle, and then sucked to the bubbler to be mixed with water to obtain bubble water. The technical solution of the present utility model can avoid the problem that no air can be sucked to generate bubble water when the shower head is immersed in water, and the function is more reliable. Description of the Drawings

[0020] The accompanying drawings described herein are used to provide a further understanding of the present utility model and form a part of the present utility model. The schematic embodiments of the present utility model and their descriptions are used to explain the present utility model and do not constitute an improper limitation of the present utility model.

[0021] Among them:

[0022] Figure 1 is a schematic three-dimensional structure diagram of an air-absorbing shower head according to an embodiment of the present utility model;

[0023] Figure 2 is a cross-sectional view of an air-absorbing shower head according to an embodiment of the present utility model;

[0024] Figure 3 is a schematic three-dimensional structure diagram of an air-absorbing shower head with the head housing and the handle housing hidden according to an embodiment of the present utility model;

[0025] Figure 4 is Figure 3 one of the exploded views of

[0026] Figure 5 is Figure 3 the second exploded view of

[0027] Figure 6 is Figure 3 the front view of

[0028] Figure 7 is Figure 6 the cross-sectional view taken along line A-A in

[0029] In the figure, the reference numerals are:

[0030] 1 - shower head; 11 - air outlet joint; 12 - head housing; 13 - water inlet cavity; 14 - air flow channel;

[0031] 2 - handle; 21 - air inlet joint; 22 - water inlet pipe; 221 - buckle; 23 - handle housing;

[0032] 3 - bubbler; 31 - mixing cavity; 311 - air inlet; 312 - water inlet; 313 - water outlet; 32 - foaming net;

[0033] 4 - air absorption channel (air suction pipe);

[0034] 5 - water inlet channel;

[0035] 6 - air passing gap. Detailed implementation manners

[0036] In order to make the technical problems, technical solutions and beneficial effects to be solved by the present utility model clearer and more understandable, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.

[0037] Please refer to Figures 1 to 7 , an air - absorbing shower head provided by a preferred embodiment of the present utility model includes a shower head 1 and a handle 2 which are connected to each other, and further includes a bubbler 3 and an air - intake channel 4. The bubbler 3 is provided on the shower head 1 and can flow out water with bubbles; the air - intake channel 4 is provided in the shower head 1 and the handle 2. The air - inlet of the air - intake channel 4 is located at the handle 2 and is in communication with the outside air, and the air - outlet of the air - intake channel 4 is connected to the bubbler 3.

[0038] By arranging the air - intake channel 4 in the shower head 1 and the handle 2 instead of setting the whole air - intake channel 4 in the shower head 1, locating the air - inlet of the air - intake channel 4 at the handle 2, and connecting the air - outlet of the air - intake channel 4 to the bubbler 3, the air - intake channel 4 extends from the shower head 1 to the handle 2. The air - inlet of the air - intake channel 4 is not at the shower head 1 but at the handle 2. When the shower head 1 is immersed in water, the outside air can still be inhaled into the air - intake channel 4 through the air - inlet of the air - intake channel at the handle 2, and then sucked to the bubbler 3 to be mixed with water to obtain bubble water. By adopting the above - mentioned scheme, the problem that bubble water cannot be generated due to inability to inhale air when the shower head 1 is immersed in water can be avoided, and the function is more reliable.

[0039] For the convenience of installation, in this embodiment, an air - intake joint 21 is provided on the handle 2, and the air - inlet of the air - intake channel 4 is formed at the air - intake joint 21; an air - outlet joint 11 is provided on the shower head 1, and the air - outlet of the air - intake channel 4 is formed at the air - outlet joint 11. The air - intake channel 4 further includes an air - suction pipe 4 with two ends respectively connected to the air - intake joint 21 and the air - outlet joint 11. By providing the air - intake joint 21 and the air - outlet joint 11, the installation of the air - suction pipe 4 can be made simpler and more convenient. Preferably, the air - suction pipe 4 is a flexible pipe made of silica gel material. Of course, the air - suction pipe 4 can also be a rigid pipe, and the material can also be made of plastic and other materials, without limitation.

[0040] In this embodiment, a mixing cavity 31 is provided in the bubbler 3, and the mixing cavity 31 is provided with an air - inlet 311, a water - inlet 312 and a water - outlet 313. An air - flow channel 14 communicating the air - inlet 311 with the air - outlet joint 11 is provided in the shower head 1. The outside air enters the mixing cavity 31 through the air - intake channel 4, the air - outlet joint 11, the air - flow channel 14 and the air - inlet 311 and is mixed with the water flow at the water - inlet 312 in the mixing cavity 31 to form bubble water. Preferably, the water - inlet 312 surrounds the air - inlet 311. In this way, the middle - air - suction method can make the water - air mixing more uniform, and the generated negative - pressure value is larger, and the air - suction effect is better.

[0041] Outside the water outlet 313 of the mixing chamber 31 inside the bubbler 3, there are several foaming nets 32 arranged at intervals along the water outlet direction. The foaming nets 32 are used to further break the bubbles, thereby forming micro-bubble water.

[0042] In this embodiment, an interconnected water inlet channel 5 is provided inside the shower head 1 and the handle 2. The air intake channel 4 is arranged side by side with the water inlet channel 5. In this way, the air intake channel and the water inlet channel do not affect each other, and it can be avoided that the water in the water inlet channel seeps into the air intake channel, resulting in a deteriorated air intake effect or even an inability to intake air.

[0043] Specifically, in this embodiment, the handle 2 includes a handle housing 23 and a water inlet pipe 22 provided inside the handle housing 23 and having the front part of the water inlet channel 5. The shower head 1 includes a head housing 12 and a water inlet chamber 13 provided inside the head housing 12 and having the rear part of the water inlet channel 5. An air intake joint 21 is provided on the water inlet pipe 22, and an air outlet joint 11 is provided on the water inlet chamber 13. More specifically, the water inlet pipe 22 is sleeved inside the handle housing 23, and there is an air passage gap between the water inlet pipe 22 and the handle housing 23. The outside air is connected to the air intake joint 21 through the air passage gap.

[0044] Preferably, in this embodiment, several buckles 221 are further provided on the outer wall of the water inlet pipe 22. The buckles 221 are used to clamp the air intake pipe 4 to limit the air intake pipe 4.

[0045] In this embodiment, the air inlet of the air intake channel 4 is located closer to the end of the handle 2 away from the shower head 1. In this way, while ensuring that the air inlet of the air intake channel 4 does not get water, it is easier to place the air intake shower, and it is more convenient to use.

[0046] In other embodiments, the air intake channel 4 may not be formed in the independently provided air intake pipe 4, but may be integrally formed inside the shower head 1 and the handle 2.

[0047] In a preferred embodiment, when the air intake shower is in the water, a part of the handle 2 away from the shower head 1 will tilt upward under the action of buoyancy to form a tilted area. The air inlet of the air intake channel 4 is provided at the tilted area of the handle 2. In this way, when the entire air intake shower is placed in a container such as a bathtub or a washbasin, the air inlet of the air intake channel 4 can always be exposed above the water surface to achieve air intake. The function is perfect, and there is no need to deliberately expose the air inlet of the air intake channel 4 for placement, which is more convenient to use.

[0048] The bubbler 3 of the present utility model is particularly suitable for a bubbler that forms micro-bubbles at the nanometer level. In this way, when the head of the air intake shower is inserted into the water to fill a container such as a bathtub or a washbasin, micro-bubble water can still be formed in the water, and the micro-bubble water can also exert a good cleaning effect in the water.

[0049] The present utility model has been described by way of example in conjunction with the accompanying drawings. Obviously, the specific implementation of the present utility model is not limited by the above methods. As long as various non-substantive improvements are made by adopting the method concept and technical solution of the present utility model, or the concept and technical solution of the present utility model are directly applied to other occasions without improvement, they are all within the protection scope of the present utility model.

Claims

1. An inhalation shower head, comprising a shower head and a handle connected to each other, characterized in that, Further comprising: A bubbler, provided on the shower head and capable of discharging water flow with bubbles; An air intake channel, provided in the shower head and the handle. The air inlet of the air intake channel is located at the handle and communicates with the outside air, and the air outlet of the air intake channel is connected to the bubbler.

2. The suction shower head according to claim 1, characterized in that, An air intake joint is provided on the handle, and the air inlet of the air intake channel is formed at the air intake joint; an air outlet joint is provided on the shower head, and the air outlet of the air intake channel is formed at the air outlet joint. The air intake channel further includes an air suction pipe with two ends respectively connected to the air intake joint and the air outlet joint.

3. The suction shower head according to claim 2, wherein, The air suction pipe is a flexible pipe.

4. The suction shower head according to claim 2, characterized in that A mixing chamber is provided in the bubbler. The mixing chamber is provided with an air inlet, a water inlet and a water outlet. An air flow channel communicating the air inlet with the air outlet joint is provided in the shower head, and the water inlet surrounds the air inlet.

5. The suction shower head according to claim 1, wherein A water inlet channel communicating with each other is provided in the shower head and the handle, and the air intake channel is arranged side by side with the water inlet channel.

6. The suction shower head according to claim 5, characterized in that, The handle includes a handle housing and a water inlet pipe provided in the handle housing and having the front part of the water inlet channel. The shower head includes a head housing and a water inlet cavity provided in the head housing and having the rear part of the water inlet channel. An air intake joint is provided on the water inlet pipe, and the air inlet of the air intake channel is formed at the air intake joint; an air outlet joint is provided on the water inlet cavity, and the air outlet of the air intake channel is formed at the air outlet joint. The air intake channel further includes an air suction pipe with two ends respectively connected to the air intake joint and the air outlet joint.

7. The suction shower head according to claim 1, wherein, The air inlet of the air intake channel is located closer to the end of the handle away from the shower head.

8. The suction shower head according to claim 1, characterized in that, The air intake channel is integrally formed in the shower head and the handle.

9. The suction shower head according to any one of claims 1-8, characterized in that, In the state of the suction shower in water, a partial area of the handle away from the shower head will tilt upward under the action of buoyancy to form a tilted area, and the air inlet of the air intake channel is provided at the tilted area of the handle.

10. The suction shower head according to any one of claims 1-8, characterized in that, The bubbler is a bubbler capable of forming microbubbles at the nanometer level.