Bubble machine

By designing a bubble machine containing water flow-driven components and a bubble sponge, the problem of manual squeeze and rubbing of foaming agents in existing bathing supplies is solved, and automatic foaming and long-term continuous foaming are achieved, which improves bathing efficiency and fun.

CN222942245UActive Publication Date: 2025-06-06杜志伟 +1
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Patent Information

Application Number
CN202421607907.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-09
Publication Date
2025-06-06
Estimated Expiration
2034-07-09

AI Technical Summary

Technical Problem

Among the existing bathing products, the foaming agent needs to be manually squeezed and rubbed, which is cumbersome and inconvenient for children to use, and it cannot be continuously foamed for a long time, which wastes foaming agent.

Method used

A bubble machine is designed, including a water flow drive assembly, a bubble sponge and a filling port, which generates negative pressure through the water flow drive assembly, combines the porous channel structure of the bubble sponge to automatically mix air, foaming agent and water to produce continuous bathing bubbles.

Benefits of technology

Automatic foaming is achieved, reducing the operating time of children during bathing, improving the bathing efficiency and fun, and being able to continuously foam for a long time, avoiding the waste of foaming agent.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a bubble machine which comprises a bubble machine main body provided with a bubble chamber, the bubble machine main body is provided with a water flow driving assembly, the bubble machine main body is provided with a water inlet communicated with the bubble chamber, a bubble outlet and a filling port used for filling a foaming agent, and the water flow driving assembly is used for generating negative pressure at one end of the bubble outlet. Water flow is guided to flow into the bubbling chamber from the water inlet and is finally discharged from the bubble outlet; a foaming device is arranged in the foaming chamber corresponding to the filling port and used for mixing air, a foaming agent and water and generating bubbles under the guiding effect of the water flow driving assembly. The device has the effects of automatically bubbling, improving the bathing efficiency, continuously bubbling for a long time and improving the bathing interestingness.
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Description

Technical Field

[0001] The utility model relates to the technical field of washing products, in particular to a bubble machine. Background Art

[0002] The foaming agent currently on the market is mostly used by manually pressing the foaming agent nozzle, and the foaming agent nozzle is squeezed by external force to pump out the foaming agent in the bottle, but the pumped foaming agent needs to be manually rubbed repeatedly on the skin to generate foam through the action of air. In order to increase the foaming speed and foaming amount of the foam, a bath ball is often needed to achieve rapid foaming, but the foaming of the bath ball needs to be repeatedly rubbed to generate foam, which is cumbersome to operate, and the ball net of the bath ball is also relatively rough for the tender skin of children. Many infants and young children are easily repelled by this, resulting in the emotion of disliking bathing. In addition, the amount of foaming agent squeezed on the bath ball each time cannot be too much, otherwise the excess foaming agent on the bath ball is easy to drip down and cause waste, making the bath ball unable to continuously generate bubbles for a long time. Therefore, it is urgent to develop a bathing product that can continuously produce foam for a long time to improve the fun of bathing, and can continuously produce foam to improve the efficiency of bathing. Utility Model Content

[0003] The utility model aims to provide a bubble machine which has the effects of automatically generating bubbles to improve bathing efficiency and continuously generating bubbles for a long time to improve bathing interest.

[0004] The above technical objectives of the utility model are achieved through the following technical solutions: a bubble machine, comprising a bubble machine body with a bubble chamber, the bubble machine body is provided with a water flow driving component, the bubble machine body is provided with a water inlet connected to the bubble chamber, a bubble outlet and a filling port for filling a bubbler, the water flow driving component is used to generate negative pressure at one end of the bubble outlet, and guide water flow from the water inlet into the bubble chamber and finally discharged from the bubble outlet;

[0005] A foaming device is provided in the foaming chamber corresponding to the filling port, and the foaming device is used to mix air, foaming agent and water and generate bubbles under the guidance of the water flow driving component.

[0006] By adopting the above technical scheme, before use, the foaming agent is first injected into the foaming sponge through the filling port, and then the foaming machine body filled with the foaming agent is placed on the water surface of the bathtub or bathtub filled with water, so that the lower part of the foaming machine body is submerged in water, and the filling port on the upper part is exposed on the water surface, and the water flows into the foaming chamber through the water inlet at the bottom of the foaming machine body, and the foaming device is used to mix air, foaming agent and water to generate bubbles, and finally under the guidance of the water flow driving component, a large number of bubbles generated by the foaming device are discharged from the bubble outlet together with the water flow under the guidance of the water flow driving component. In this way, by using the automatic foaming method of the utility model, children do not need to squeeze the foaming agent on the skin and rub it when bathing, and a large number of dense bath bubbles can be generated on the water surface, which saves the time of rubbing bubbles, thereby improving the efficiency of bathing and increasing the fun of bathing. It has the effects of automatic foaming to improve bathing efficiency and continuous foaming for a long time to improve the fun of bathing.

[0007] The utility model is further configured as follows: the foaming device comprises a foaming sponge with a porous channel inside, and the filling port is connected to the foaming chamber through the porous channel of the foaming sponge.

[0008] By adopting the above technical solution, the foaming sponge has porous channels, which can allow water and foaming agent to be evenly mixed in the channels. At the same time, the adsorption force generated by the water flow driving component sucks air from the filling port into the porous channels to produce a large number of dense bubbles at the outlet end.

[0009] The utility model is further configured as follows: the foaming machine body is provided with a support frame corresponding to the foaming sponge, and the support frame is provided with a plurality of hollow holes.

[0010] By adopting the above technical solution, the support frame is used to support and place the foaming sponge, and the hollow holes can allow the foaming agent and water in the foaming sponge to pass through.

[0011] The utility model is further configured as follows: the foaming machine body is detachably provided with a blocking piece at the filling port, and when the blocking piece blocks the filling port, an airflow gap is left between the blocking piece and the side wall of the filling port for air to enter.

[0012] By adopting the above technical solution, the operator can open the filling port by pulling out the sealing piece, and then fill the foaming agent into the foaming chamber through the filling port for foaming. When the foaming agent is filled, the sealing piece is sealed on the filling port. At the same time, when the sealing piece is sealed on the filling port, air can still enter the porous channel of the foaming sponge through the air flow gap.

[0013] The utility model is further configured as follows: the blocking member is provided with an anti-detachment rubber ring for anti-detachment cooperation with the filling port.

[0014] By adopting the above technical solution, when the foaming agent is filled, the plugging piece is sealed on the filling port, and the friction force of the anti-slip rubber ring can be used to effectively prevent the plugging piece from slipping off at the filling port.

[0015] The utility model is further configured as follows: the foaming machine body is provided with a plurality of guide plates at the bubble outlet, and gaps for the bubbles to be discharged are formed between adjacent guide plates.

[0016] By adopting the above technical solution, the guide plate can effectively prevent children's fingers from being inserted into the bubble chamber and being injured by the water flow driving component. In addition, the gap between the guide plates can have a guiding effect on the bubbles on one side of the bubble outlet, so that the bubbles can be guided and blown out from the gaps between adjacent guide plates along the same straight line direction.

[0017] The utility model is further configured as follows: the foaming machine body is provided with a power supply component and a control board corresponding to the water flow driving component, the control board is provided with a charging interface for charging the power supply component, and the charging interface and the foaming machine body, and the control board and the foaming machine body are sealed by sealant.

[0018] By adopting the above technical solution, during production, sealant is poured between the charging interface, the control board and the foaming machine body to seal the joints between the control board, the charging interface and the foaming machine, which can effectively prevent the control board from being damaged by short circuit.

[0019] The utility model is further configured as follows: the control panel is electrically connected to a switch button, and the foaming machine body is provided with an elastic pressing portion corresponding to the switch button.

[0020] By adopting the above technical solution, the elastic pressing part is pressed to cause it to deform and act on the switch button, and the start and stop of the bubble machine is controlled through the control panel.

[0021] The utility model is further configured as follows: the foaming machine body is provided with a temperature display screen and a temperature sensing probe, the power supply component is provided with an avoidance hole corresponding to the temperature sensing probe, the temperature sensing probe extends out of the power supply component through the avoidance hole and detects the water temperature, and the temperature sensing probe is sealed with the avoidance hole by a first sealing ring.

[0022] By adopting the above technical solution, the first sealing ring can effectively allow water to flow into the power supply component through the gap between the avoidance hole and the temperature sensing probe, effectively avoiding a short circuit in the power supply component. The utility model utilizes the multiple waterproof effects of the sealant and the first sealing ring to effectively improve the overall waterproof sealing of the utility model, and has the effect of multiple waterproofing and effectively improving the waterproof sealing.

[0023] The utility model is further configured as follows: floating aids are symmetrically arranged on both sides of the foaming machine body.

[0024] By adopting the above technical solution, the buoyancy aids on both sides are used to maintain the balance of the bubbler main body, thereby improving the floating stability of the bubbler main body in water.

[0025] In summary, the utility model has the following beneficial effects:

[0026] A water flow driving component, a power supply component, a foaming sponge and a floating component are arranged in a foaming machine body. At the same time, a water inlet connected to a foaming chamber, a foaming outlet and a filling port for filling a foaming agent are arranged on the foaming machine body. Before use, the foaming agent is first injected into the foaming sponge through the filling port, and then the foaming machine body filled with the foaming agent is placed in a bathtub or a bathtub filled with water. The foaming machine body floats on the water surface by the buoyancy provided by the floating component, so that the filling port is exposed on the water surface. When the foaming machine body floats on the water surface, water flows into the foaming chamber through the water inlet at the bottom of the foaming machine body, and the foaming sponge absorbs water to uniformly mix the foaming agent and water to form a mixed liquid. At this time, the water flow driving component is used to act on one end of the foaming chamber close to the foaming outlet to form a negative pressure, so as to drive the foaming sponge to form a mixed liquid. The air is sucked into the porous channel of the foaming sponge from the filling, contacts and mixes with the mixed liquid, and finally generates bubbles at the outlet end of the porous channel. At the same time, since the foaming sponge has a porous channel structure, a large number of dense bubbles are generated at the bottom of the foaming sponge. Finally, under the guidance of the water flow driving component, the large number of bubbles generated at the bottom of the foaming sponge are discharged from the bubble outlet together with the water flow under the guidance of the water flow driving component. By utilizing the automatic foaming method of the utility model, children do not need to squeeze the foaming agent on the skin and rub it when bathing, and a large number of dense bath bubbles can be generated on the water surface, thereby improving the efficiency of bathing and increasing the fun of bathing. The utility model has the effects of automatically foaming to improve the efficiency of bathing and continuously foaming for a long time to improve the fun of bathing. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 It is a structural diagram of the utility model.

[0028] Figure 2 It is a structural diagram of the utility model from another perspective.

[0029] Figure 3 It is a longitudinal sectional view of the utility model.

[0030] Figure 4 This utility model Figure 3 A partial enlarged view of area A.

[0031] Figure 5 This utility model Figure 3 A partial enlarged view of area B in the middle.

[0032] Figure 6 This utility model Figure 3A partial enlarged view of the middle C area.

[0033] Figure 7 This utility model Figure 3 A partial enlarged view of the D area in the middle.

[0034] Figure 8 It is an exploded view of the utility model.

[0035] Fig. 9 It is an exploded view of the water flow drive component of the utility model.

[0036] Fig.10 It is an exploded view of the power supply component of the utility model.

[0037] In the figure: 1. Bubble machine body; 1a. Bubble chamber; 1b. Water inlet; 1c. Bubble outlet; 1d. Filling port; 1e. Liquid storage space; 101. Upper shell; 1011. Embedding part; 102. Lower shell; 102a. Embedding groove; 1021. Elastic pressing part; 10. Bubble sponge; 11. Blocking part; 111. Anti-stripping rubber ring; 12. Sealant; 13. Floating part; 14. Guide plate; 15. Support frame; 15a. Hollow hole; 16. Floating aid; 2. Control panel; 21. Charging interface; 22. Temperature display screen; 23. Temperature sensor Head; 24, switch button; 3, water flow drive component; 31, motor mounting sleeve; 310, third sealing ring; 311, plug-in part; 3111, buckle; 32, drive motor; 33, impeller; 34, second sealing ring; 4, power supply component; 41, battery mounting sleeve; 41a, avoidance hole; 411, plug-in matching part; 411a, card slot; 42, battery pack; 43, battery placement rack; 43a, accommodating groove; 43b, heat dissipation hole; 431, positioning part; 4311, stop rib; 432, clamping part; 44, first sealing ring. DETAILED DESCRIPTION

[0038] The utility model is further described below in conjunction with the accompanying drawings.

[0039] A bubble machine, such as Figure 1-3 and Figure 7As shown, the foaming machine body 1 is formed by buckling an upper shell 101 and a lower shell 102, the foaming machine body 1 is provided with a foaming chamber 1a, an embedding portion 1011 is provided around the upper shell 101, and the lower shell 102 is provided with an embedding groove 102a corresponding to the embedding portion 1011. When the upper shell 101 is buckled on the lower shell 102 and fixedly connected by screws, the embedding portion 1011 is embedded in the corresponding embedding groove 102a, and the buckling sealing between the upper shell 101 and the lower shell 102 is improved by the embedding effect of the embedding portion 1011 and the embedding groove 102a. The foaming machine body 1 is provided with a water flow driving component 3, and the foaming machine body 1 is provided with a water inlet 1b connected to the foaming chamber 1a, a foaming port 1c and a filling port 1d for filling a foaming agent. The foaming agent in this embodiment is set as shower gel, and the water flow driving component 3 is used to generate negative pressure at one end of the bubble outlet 1c, and guide the water flow from the water inlet 1b to flow into the bubble chamber 1a and finally be discharged from the bubble outlet 1c; a bubble sponge 10 with an internal porous channel structure is provided in the bubble chamber 1a corresponding to the filling port 1d, and a liquid storage space 1e for storing shower gel is formed between the bubble sponge 10 and the upper shell 101, and the filling port 1d is connected to the bubble chamber 1a through the porous channel of the bubble sponge 10, and the bubble sponge 10 is used to mix air, shower gel and water and generate bubbles under the guidance of the water flow driving component 3; the bubble machine body 1 is also provided with a floating member 13 for generating buoyancy; in this embodiment, floating aids 16 are symmetrically provided on both sides of the bubble machine body 1, and the floating aids 16 on both sides are used to maintain balance and improve the stability of the bubble machine body 1 floating in water.

[0040] like Figure 3 , Figure 6 and Figure 8As shown, the foaming machine body 1 is provided with a support frame 15 corresponding to the foaming sponge 10, and the support frame 15 is provided with a plurality of hollow holes 15a, and the support frame 15 is used to support and place the foaming sponge 10, and the hollow holes 15a can allow the shower gel and water in the foaming sponge 10 to pass through; the foaming machine body 1 is detachably provided with a plugging member 11 at the filling port 1d, and when the plugging member 11 is blocked on the filling port 1d, an air flow gap is left between the plugging member 11 and the side wall of the filling port 1d for air to enter, and the operator can open the filling port 1d by pulling out the plugging member 11, and then fill the shower gel into the foaming chamber 1a through the filling port 1d for foaming, and when the shower gel is filled, the plugging member is closed. The plugging member 11 is sealed on the filling port 1d. At the same time, when the plugging member 11 is sealed on the filling port 1d, air can still enter and penetrate into the porous channel of the foaming sponge 10 through the airflow gap; the plugging member 11 is provided with an anti-detachment rubber ring 111 for cooperating with the filling port 1d to prevent detachment. When the shower gel is filled, the plugging member 11 is sealed on the filling port 1d. The friction force of the anti-detachment rubber ring 111 can be used to achieve effective anti-detachment of the plugging member 11 at the filling port 1d; the floating member 13 in this embodiment is set as foam cotton, and the foam cotton is fixed in the foaming machine body 1. The foam cotton has a smaller density than water and has a larger buoyancy, which can realize the floating of the foaming machine body 1 as a whole on the water surface.

[0041] like Figure 1-5 and Figure 7As shown, the foaming machine body 1 is provided with a power supply component 4 and a control board 2 corresponding to the water flow driving component 3, and the control board 2 is provided with a charging interface 21 for charging the power supply component 4. The charging interface 21 and the foaming machine body 1, and the control board 2 and the foaming machine body 1 are sealed by a sealant 12. During production, the sealant 12 is poured between the charging interface 21, the control board 2 and the foaming machine body 1 to seal the joints between the control board 2, the charging interface 21 and the foaming machine, which can effectively prevent the control board 2 from being damaged by a short circuit; the foaming machine The main body 1 is provided with a temperature display screen 22 and a temperature probe 23. The power supply component 4 is provided with an avoidance hole 41a corresponding to the temperature probe 23. The temperature probe 23 extends out of the power supply component 4 through the avoidance hole 41a and detects the water temperature in the bubbling chamber 1a or the bathtub. The temperature probe 23 and the avoidance hole 41a are sealed by a first sealing ring 44. The first sealing ring 44 allows water to flow into the power supply component 4 through the gap between the avoidance hole 41a and the temperature probe 23, effectively avoiding a short circuit in the power supply component 4. The present invention utilizes a sealant 1 2 and the first sealing ring 44, effectively improve the overall waterproof sealing of the present invention, and have the effect of multiple waterproof and effectively improving the waterproof sealing; the foaming machine body 1 is provided with a plurality of guide plates 14 at the position of the foam outlet 1c, and gaps for the discharge of bubbles are formed between adjacent guide plates 14. The guide plates 14 can effectively prevent children's fingers from being inserted into the foaming chamber 1a and being injured by the water flow driving component 3. In addition, the gaps between the guide plates 14 can have a guiding effect on the bubbles on one side of the foam outlet 1c, so that the bubbles can be discharged from the adjacent guide plates 14. The air is blown out in the same straight line direction in the gap between the two parts; the control board 2 is electrically connected with a switch button 24; the foaming machine body 1 is provided with an elastic pressing portion 1021 corresponding to the switch button 24; the elastic pressing portion 1021 in this embodiment is configured as an elastic silicone sealant provided on the lower shell 102; the switch button 24 is configured as a touch switch; the elastic pressing portion 1021 is pressed to deform it and act on the switch button 24; the start and stop of the foaming machine is controlled through the control board 2; the sealing elastic silicone sealant is utilized to improve the overall waterproof sealing performance of the foaming machine body 1.

[0042] like Figure 3 and Figure 8-9As shown, the water flow drive assembly 3 includes a motor mounting sleeve 31, a drive motor 32 arranged in the motor mounting sleeve 31, and an impeller 33 arranged on the output shaft of the drive motor 32. The sealing sleeve on the output shaft of the drive motor 32 is provided with a second sealing ring 34. The second sealing ring 34 in this embodiment is configured as waterproof silicone, and the second sealing ring 34 is sealed between the motor mounting sleeve 31 and the drive motor 32. The second sealing ring 34 can block the hole gap between the output shaft of the drive motor 32 and the motor mounting sleeve 31 to prevent water from passing through the corresponding drive motor on the motor mounting sleeve 31. The hole gap reserved for the output shaft of the motor 32 enters the motor mounting sleeve 31 and causes the motor to short-circuit; the power supply component 4 includes a battery mounting sleeve 41, a battery pack 42 arranged in the battery mounting sleeve 41, and the avoidance hole 41a is opened on the side wall of the battery mounting sleeve 41. The motor mounting sleeve 31 is plugged into the battery mounting sleeve 41, and a third sealing ring 310 is provided between the motor mounting sleeve 31 and the battery mounting sleeve 41. The third sealing ring 310 can prevent water from entering from the joint between the battery mounting sleeve 41 and the motor mounting sleeve 31, thereby improving the waterproof sealing of the drive mechanism of the present invention.

[0043] like Figure 3 , Figure 8 and Fig.10As shown, the motor mounting sleeve 31 includes a plug-in portion 311, and the battery mounting sleeve 41 includes a plug-in matching portion 411. The plug-in portion 311 is plugged and matched with the plug-in matching portion 411, so that one end of the motor mounting sleeve 31 can be plugged into the end of the battery mounting sleeve 41, so that the power supply component 4 and the water flow driving component 3 form a whole, which is conducive to the installation stability of the two on the foaming machine body 1; the side wall of the plug-in portion 311 is provided with a buckle 3111, and the plug-in matching portion 411 corresponds to the buckle 3111 opening A card slot 411a is provided. When the plug-in portion 311 is plugged and matched with the plug-in matching portion 411, the buckle 3111 is engaged with the corresponding card slot 411a. The engagement effect of the buckle 3111 and the card slot 411a can prevent the motor mounting sleeve 31 from falling off when the battery mounting sleeve 41 is connected. A battery placement rack 43 is provided between the battery pack 42 and the battery mounting sleeve 41. The battery placement rack 43 is provided with a receiving groove 43a for placing the battery pack 42. The battery placement rack 43 is also provided with a The heat dissipation holes 43b connected to the accommodating grooves 43a, the addition of the battery placement rack 43 can play a positioning role for the battery pack 42, and prevent the battery pack 42 from shaking in the battery mounting sleeve 41. In addition, the heat dissipation holes 43b can release the heat generated by the battery pack 42, and prevent the battery pack 42 from overheating due to long-term operation of the present invention. In addition, the battery placement rack 43 is provided with a plurality of clamping parts 432, and the control board 2 is clamped and fixed on the battery placement rack 43 through the clamping parts 432; the battery placement rack 43 is integrally provided with a positioning part 431, and the positioning part 431 is provided with a plurality of stop ribs 4311. When the motor mounting sleeve 31 is fixedly connected to the battery mounting sleeve 41, the positioning part 431 is matched with the drive motor 32 through the stop ribs 4311. When the motor mounting sleeve 31 is fixedly connected to the battery mounting sleeve 41, the stop ribs 4311 of the positioning part 431 can be used to tighten the end of the drive motor 32 away from the impeller 33, thereby improving the shockproof performance of the drive motor 32 when working.

[0044] The basic working principle of the utility model is as follows: before use, shower gel is first injected into the foaming sponge 10 through the filling port 1d, and then the foaming machine body 1 filled with shower gel is placed in a bathtub or a bathtub filled with water. The foaming machine body 1 floats on the water surface by the buoyancy provided by the floating member 13, so that the filling port 1d is exposed on the water surface. When the foaming machine body 1 floats on the water surface, water flows into the foaming chamber 1a through the water inlet 1b at the bottom of the foaming machine body 1, and the foaming sponge 10 absorbs water so that the shower gel and water are evenly mixed to form a mixed liquid. At this time, the water flow driving component 3 is used to act on one end of the foaming chamber 1a close to the foaming port 1c to form a negative pressure, driving the air to be sucked from the filling into the porous channel of the foaming sponge 10 and mix with the mixed liquid. The combined liquids are contacted and mixed, and bubbles are finally generated at the outlet end of the porous channel. Meanwhile, since the foaming sponge 10 has a porous channel structure, a large number of dense bubbles are generated at the bottom of the foaming sponge 10. Finally, under the guidance of the water flow driving component 3, the large number of bubbles generated at the bottom of the foaming sponge 10 are discharged from the bubble outlet 1c along with the water flow under the guidance of the water flow driving component 3. In this way, by utilizing the automatic foaming method of the present invention, children do not need to squeeze the shower gel on their skin and rub it when bathing, and a large number of dense bath bubbles can be generated on the water surface, thereby improving the efficiency of bathing and increasing the fun of bathing. The method has the effects of automatically foaming to improve the efficiency of bathing and continuously foaming for a long time to improve the fun of bathing.

[0045] The above description is only a preferred embodiment of the present utility model, so all equivalent changes or modifications made according to the structure, features and principles described in the scope of the present utility model patent application are included in the scope of the present utility model patent application.

Claims

1. A bubble machine, comprising a bubble machine body (1) having a bubble chamber (1a), characterized in that: The foaming machine body (1) is provided with a water flow driving component (3), the foaming machine body (1) is provided with a water inlet (1b) connected to the foaming chamber (1a), a foaming outlet (1c) and a filling port (1d) for filling a foaming agent, the water flow driving component (3) is used to generate negative pressure at one end of the foaming outlet (1c), and guide the water flow to flow from the water inlet (1b) into the foaming chamber (1a) and finally be discharged from the foaming outlet (1c); A foaming device is provided in the foaming chamber (1a) corresponding to the filling port (1d), and the foaming device is used to mix air, foaming agent and water and generate bubbles under the guidance of the water flow driving component (3).

2. A bubble machine according to claim 1, characterized in that: The foaming device comprises a foaming sponge (10) with a porous channel inside, and the filling port (1d) is connected to the foaming chamber (1a) through the porous channel of the foaming sponge (10).

3. A bubble machine according to claim 2, characterized in that: The foaming machine body (1) is provided with a support frame (15) corresponding to the foaming sponge (10), and the support frame (15) is provided with a plurality of hollow holes (15a).

4. A bubble machine according to claim 1, characterized in that: The foaming machine body (1) is detachably provided with a blocking piece (11) at the position of the filling port (1d); when the blocking piece (11) is blocked on the filling port (1d), an air flow gap is left between the blocking piece (11) and the side wall of the filling port (1d) for air to enter.

5. A bubble machine according to claim 4, characterized in that: The blocking member (11) is provided with an anti-slip rubber ring (111) for anti-slip cooperation with the filling port (1d).

6. A bubble machine according to claim 1, characterized in that: The foaming machine body (1) is provided with a plurality of guide plates (14) at the position of the foam outlet (1c), and gaps for the bubbles to be discharged are formed between adjacent guide plates (14).

7. A bubble machine according to claim 1, characterized in that: The foaming machine body (1) is provided with a power supply component (4) and a control panel (2) corresponding to the water flow driving component (3); the control panel (2) is provided with a charging interface (21) for charging the power supply component (4); the charging interface (21) and the foaming machine body (1), and the control panel (2) and the foaming machine body (1) are sealed by means of a sealant (12).

8. A bubble machine according to claim 7, characterized in that: The control panel (2) is electrically connected to a switch button (24), and the foaming machine body (1) is provided with an elastic pressing portion (1021) corresponding to the switch button (24).

9. A bubble machine according to claim 7, characterized in that: The foaming machine body (1) is provided with a temperature display screen (22) and a temperature sensing probe (23); the power supply component (4) is provided with a relief hole (41a) corresponding to the temperature sensing probe (23); the temperature sensing probe (23) extends out of the power supply component (4) through the relief hole (41a) and detects the water temperature; and the temperature sensing probe (23) and the relief hole (41a) are sealed by a first sealing ring (44).

10. The bubble machine according to claim 1, characterized in that: Floating aids (16) are symmetrically provided on both sides of the foaming machine body (1).

Citation Information

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