Water outlet mechanism and bubble water machine

By incorporating anti-splash components within the housing of the sparkling water machine and utilizing buffer channels and water passages to ensure water output, the problems of splashing and insufficient water output in existing technologies are solved, achieving a balance between anti-splashing and water output.

CN224522904UActive Publication Date: 2026-07-21NINGBO QIANGXIN INTELLIGENT TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NINGBO QIANGXIN INTELLIGENT TECH CO LTD
Filing Date
2025-08-28
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Existing sparkling water machines cannot simultaneously prevent splashing and ensure water output, requiring tools to modify the size of the water outlet gap.

Method used

An anti-splash assembly is installed inside the housing, including a buffer section and a water passage section. The outer side of the buffer section is provided with a buffer channel to guide the water flow and ensure the water output. The water output is also increased by the spacing formed by the support plates.

Benefits of technology

It effectively prevents splashing while ensuring water output, and has a simple structure that is easy to install and replace.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224522904U_ABST
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Abstract

The utility model discloses a water outlet mechanism and bubble water machine, shell, the shell has cavity, water inlet and water outlet, prevent splashing subassembly, establish in the cavity, prevent splashing subassembly includes buffer portion and water passing portion, water passing portion hollow along water passing portion axial direction direction, water passing portion establishes in the position of cavity corresponding water outlet, buffer portion is away from the one end of water inlet and establishes in water passing portion, buffer portion is close to the one end of water inlet and stretches in the cavity, buffer portion outside surface is equipped with with water passing portion intercommunication's buffer channel, and the utility model provides a water outlet mechanism and bubble water machine can prevent splashing and can ensure water outlet capacity.
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Description

Technical Field

[0001] This utility model relates to the field of beverage equipment technology, and in particular to a water dispensing mechanism and a sparkling water machine. Background Technology

[0002] Sparkling water is a carbonated beverage made by injecting carbon dioxide into water under pressure. It is typically produced using a sparkling water machine, which injects carbon dioxide into a sealed water bottle via a gas cylinder to mix with water.

[0003] According to existing technology, there is a sparkling water machine, publication number CN222929597U, which mainly includes a water supply component, an air supply component, a mixing chamber, and a gas-liquid separator. The water supply component is connected to the mixing chamber and supplies it with water, and the air supply component is connected to the mixing chamber and supplies it with air. The gas-liquid separator has a gas-liquid separation chamber, a water inlet, a water outlet, and an exhaust port. The gas-liquid separation chamber is connected to the outlet of the mixing chamber through the water inlet. The sparkling water in the gas-liquid separation chamber is discharged through the water outlet, and the gas is discharged through the exhaust port. The water outlet is equipped with an adjustable water flow rate. The water outlet regulating valve includes a regulating valve core connected to the water outlet. An annular water outlet gap is formed between the front end of the regulating valve core and the water outlet. The regulating valve core moves axially relative to the water outlet to change the size of the water outlet gap and adjust the water flow. The annular water outlet gap formed between the front end of the regulating valve core and the water outlet can further prevent splashing during the discharge of aerated water and stabilize the water flow. Although the water outlet gap can prevent splashing, the water flow cannot be guaranteed, and tools are needed to change the size of the water outlet gap. Utility Model Content

[0004] The technical problem to be solved by this utility model is to overcome the defects of the prior art and provide a water outlet mechanism and a bubble water machine that can prevent splashing and ensure water output.

[0005] To achieve the above objectives, the technical solution of this utility model is: a water outlet mechanism, comprising:

[0006] A housing having a cavity, an inlet, and an outlet;

[0007] A splash-proof assembly is disposed within a cavity. The splash-proof assembly includes a buffer section and a water-passing section. The water-passing section is hollow along its axial direction and is located within the cavity at a position corresponding to the water outlet. One end of the buffer section away from the water inlet is disposed within the water-passing section, and the other end of the buffer section near the water inlet extends into the cavity. A buffer channel communicating with the inside of the water-passing section is provided on the outer side of the buffer section.

[0008] With the above structure, this utility model has the following advantages compared with the prior art: an anti-splash component is provided inside the shell to buffer the water coming in from the inlet and prevent splashing; in addition, the anti-splash component includes a buffer part and a water passage part. The outer side of the buffer part is provided with a buffer channel that communicates with the inside of the water passage part. The buffer channel is provided to guide the water to the water passage part. The width of the buffer channel is sufficient to ensure the water output.

[0009] Preferably, the number of buffer channels is one or more, and the buffer channels are distributed circumferentially along the buffer section to increase the water output.

[0010] Preferably, the buffer section includes:

[0011] The buffer plate is positioned facing the water inlet.

[0012] Multiple support plates are provided, with one end of the support plate facing the buffer plate and positioned circumferentially on the bottom surface of the buffer plate, and the other end of the support plate away from the buffer plate positioned on the inner side of the water passage. The buffer channel is formed by the spacing between two adjacent support plates. The buffer plate is used to buffer the water flow, and the spacing between the support plates forms a buffer channel, resulting in a simple structure.

[0013] Preferably, the diameter of the support plate is smaller than the diameter of the inner side of the water passage to ensure that more water flows into the buffer channel and ensures the water output.

[0014] Preferably, the anti-splash component is detachably connected to the cavity for easy installation.

[0015] Preferably, it also includes a water outlet, which is detachably connected to the housing at the position corresponding to the water outlet, and the end of the anti-splash assembly facing the water outlet abuts against the inside of the water outlet, making it easy to replace the water outlet and the anti-splash assembly.

[0016] Preferably, the inner side of the water outlet is provided with an annular groove for upper limit positioning of the anti-splash component, and the end of the anti-splash component facing the water outlet abuts against the top surface of the annular groove, which facilitates upper limit positioning of the anti-splash component.

[0017] Preferably, the outer side of the anti-splash assembly facing the water outlet is provided with a limiting protrusion. The limiting protrusion is arranged along the axial direction of the anti-splash assembly. One end of the limiting protrusion abuts against the top surface of the annular groove, and the other end of the limiting protrusion abuts against the inner surface of the water outlet, which facilitates the upper and lower limiting of the anti-splash assembly.

[0018] A sparkling water machine comprising a water dispensing mechanism as described in any of the preceding claims. Attached Figure Description

[0019] Figure 1 This is a perspective view of a water outlet mechanism anti-splash component of this utility model.

[0020] Figure 2 This is a front sectional view of a water outlet mechanism according to this utility model.

[0021] Figure 3 This is a perspective view of a water outlet mechanism according to this utility model.

[0022] Among them, 1. shell, 110. cavity, 120. water inlet, 130. water outlet, 131. annular groove, 2. anti-splash assembly, 210. buffer part, 211. buffer plate, 212. support plate, 220. water passage part, 221. water passage channel, 230. limiting protrusion, 3. buffer channel, 4. water outlet. Detailed Implementation

[0023] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0024] Figure 1 This is a perspective view of a water outlet mechanism anti-splash component according to this utility model. Figure 2 This is a front sectional view of a water outlet mechanism according to this utility model, as shown below. Figure 1 and 2 In the illustrated embodiment, this utility model provides a water outlet mechanism, including a housing 1 and an anti-splash assembly 2. The housing 1 has a cavity 110, an inlet 120, and an outlet 130. The housing 1 has a first end and a second end along the axial direction of the housing 1. The cavity 110 is located inside the housing 1. The inlet 120 is located at the first end of the housing 1, and the outlet 130 is located at the second end of the housing 1. Water enters the cavity 110 through the inlet 120 and flows out through the outlet 130. Specifically, to prevent water from splashing out of the outlet 130, the anti-splash assembly 2 is located inside the cavity 110. The anti-splash assembly 2 buffers the water flowing from the inlet 120 into the cavity 110, thus preventing splashing. Specifically, in this embodiment, the first end is the upper end, and the second end is the lower end.

[0025] Specifically, the axis of the end of the cavity 110 facing the inlet 120 and the axis of the end of the cavity 110 away from the inlet 120 are not on the same straight line. That is to say, the axis of the end of the cavity 110 facing the inlet 120 deviates from the axis of the end of the cavity 110 away from the inlet 120. In this way, when water enters the cavity 110 from the inlet 120, part of the water impacts the inner wall of the cavity 110, and the other part of the water impacts the anti-splash component 2. The buffering effect is good, and it will not splash out from the outlet 130, thus ensuring high reliability.

[0026] As one embodiment, the anti-splash assembly 2 includes a buffer section 210 and a water passage section 220. The buffer section 210 is used to buffer the water; the water passage section 220 is used to guide the buffered water flow to the outlet 130. Specifically, the water passage 220 is hollow along its axial direction, meaning that a water passage channel 221 is provided inside the water passage 220. The water passage channel 221 is arranged along the axial direction of the water passage 220 and passes through the water passage 220 along its axial direction. The water passage 220 is located in the cavity 110 at the position corresponding to the water outlet 130, and the water passage channel 221 is aligned with the water outlet 130. The buffer part 210 is located at one end away from the water inlet 120 inside the water passage 220, and at the other end of the buffer part 210 near the water inlet 120 extending into the cavity 110. The outer side of the buffer part 210 is provided with a buffer channel 3 that communicates with the water passage channel 221. The end of the buffer part 210 facing the water inlet 120 is aligned with the water inlet 120 to block and buffer the water flow. The water flow reaches the buffer channel 3 on the side of the buffer part 210, and then flows out from the water outlet 130 through the water passage channel 221. Water is diverted to the water passage section 220 using the buffer channel 3. The width of the buffer channel 3 is larger than the gap, which can ensure the water output.

[0027] As one embodiment, the number of buffer channels 3 is one or more, and the buffer channels 3 are distributed circumferentially along the buffer section 210 to increase the water output. Specifically, the number of buffer channels 3 is four, resulting in a large water output.

[0028] In one embodiment, the buffer section 210 includes a buffer plate 211 and multiple support plates 212. The buffer plate 211 is positioned facing the inlet 110. One end of the support plate 212 facing the buffer plate 211 is disposed circumferentially on the bottom surface of the buffer plate 211, and the other end of the support plate 212 away from the buffer plate 211 is disposed on the inner side of the water passage section 220. The buffer channel 3 is formed by the spacing between two adjacent support plates 212. The buffer plate 211 buffers the water flow, and the spacing between the support plates 212 forms the buffer channel 3. The support plates 212 are directly fixed to the buffer plate 211, resulting in a simple structure that is easy to manufacture. This also allows for a large space at the lower end of the buffer section 210, facilitating water discharge. Specifically, the diameter of the support plate 212 is smaller than the diameter of the inner side of the water passage section 220, ensuring that more water flows into the buffer channel 3 and ensuring sufficient water output.

[0029] As one embodiment, the splash shield 2 is detachably connected inside the cavity 110 for easy replacement and installation.

[0030] Figure 3 This is a perspective view of a water outlet mechanism according to this utility model, as shown below. Figure 3In the illustrated embodiment, it also includes a water outlet 4, which is detachably connected to the housing 1 at the position corresponding to the water outlet 130. The end of the anti-splash assembly 2 facing the water outlet 130 abuts against the inside of the water outlet 4, facilitating the replacement of the water outlet 4 and the anti-splash assembly 2. Specifically, the water outlet 4 is screwed to the housing 1 at the position corresponding to the water outlet 130 and sealed using a sealing tape.

[0031] Furthermore, the inner side of the outlet 130 is provided with an annular groove 131 for upper limit of the anti-splash component 2. The end of the anti-splash component 2 facing the outlet 130 abuts against the top surface of the annular groove 131 to facilitate upper limit of the anti-splash component 2. The outlet nozzle 4 lowers the anti-splash component 2.

[0032] Furthermore, a limiting protrusion 230 is provided on the outer side of the end of the anti-splash assembly 2 facing the outlet 130. The limiting protrusion 230 is arranged along the axial direction of the anti-splash assembly 2. One end of the limiting protrusion 230 abuts against the top surface of the annular groove 131, and the other end of the limiting protrusion 230 abuts against the inner surface of the outlet 4, which facilitates the upper and lower limiting of the anti-splash assembly 2. Specifically, the annular groove 131 penetrates the housing 1 in a direction away from the inlet 120, which facilitates the installation of the anti-splash assembly 2 in the housing 1, so that the limiting protrusion 230 abuts against the top surface of the annular groove 131.

[0033] A sparkling water machine comprising a water dispensing mechanism as described in any of the preceding claims.

[0034] The principle of this utility model is to install an anti-splash component 2 inside the housing 1. The anti-splash component 2 is used to buffer the water coming in from the water inlet 120 to prevent splashing. In addition, the anti-splash component 2 includes a buffer part 210 and a water passage part 220. The outer side of the buffer part 210 is provided with a buffer channel 3 that communicates with the inside of the water passage part 220. The buffer channel 3 is provided to guide the water to the water passage part 220. The buffer channel 3 is wide enough to ensure the water output.

[0035] Working principle: The water from the sparkling water machine is pumped to the inlet 120 and then enters the cavity 110 through the inlet 120. The water flows onto the buffer plate 211, which blocks and buffers the water flow. The water flows to the buffer channel 3 on the side of the buffer section 210, and then flows out from the outlet 4 through the water passage 221 and the outlet 130.

[0036] Based on the above solutions, if any modifications or variations to this utility model do not depart from the spirit and scope of this utility model, and if such modifications and variations fall within the scope of the claims and equivalent technologies of this utility model, then this utility model also intends to include such modifications and variations.

Claims

1. A water outlet mechanism, characterized in that: It includes: The housing (1) has a cavity (110), an inlet (120) and an outlet (130); A splash-proof assembly (2) is provided inside the cavity (110). The splash-proof assembly (2) includes a buffer section (210) and a water passage section (220). The water passage section (220) is hollow along the axial direction of the water passage section (220) and is located inside the cavity (110) at a position corresponding to the water outlet (130). One end of the buffer section (210) away from the water inlet (120) is located inside the water passage section (220), and the other end of the buffer section (210) near the water inlet (120) extends into the cavity (110). A buffer channel (3) communicating with the inside of the water passage section (220) is provided on the outer side of the buffer section (210).

2. The water outlet mechanism according to claim 1, characterized in that: The number of buffer channels (3) is one or more, and the buffer channels (3) are distributed circumferentially along the buffer section (210).

3. The water outlet mechanism according to claim 1, characterized in that: The buffer section (210) includes: A buffer plate (211) is positioned facing the water inlet (120); Multiple support plates (212) are provided on the bottom surface of the buffer plate (211) along the circumference of the buffer plate (211) at one end facing the buffer plate (211), and on the inner side of the water passage (220) at the other end of the support plate (212) away from the buffer plate (211). The buffer channel (3) is formed by the spacing between two adjacent support plates (212).

4. The water outlet mechanism according to claim 3, characterized in that: The diameter of the support plate (212) is smaller than the diameter of the inner side of the water passage (220).

5. A water outlet mechanism according to claim 1, characterized in that: The splash-proof component (2) is detachably connected inside the cavity (110).

6. A water outlet mechanism according to claim 5, characterized in that: It also includes a water outlet (4), which is detachably connected to the housing (1) at the position corresponding to the water outlet (130), and the anti-splash assembly (2) abuts against the water outlet (4) at one end facing the water outlet (130).

7. A water outlet mechanism according to claim 6, characterized in that: The inner side of the outlet (130) is provided with an annular groove (131) for upper limit of the anti-splash component (2), and the end of the anti-splash component (2) facing the outlet (130) abuts against the top surface of the annular groove (131).

8. A water outlet mechanism according to claim 7, characterized in that: The anti-splash assembly (2) has a limiting protrusion (230) on the outer side of one end facing the water outlet (130). The limiting protrusion (230) is arranged along the axial direction of the anti-splash assembly (2). One end of the limiting protrusion (230) abuts against the top surface of the annular groove (131), and the other end of the limiting protrusion (230) abuts against the inner surface of the water outlet (4).

9. A sparkling water machine, characterized in that: It includes a water outlet mechanism as described in any one of claims 1-8.