Efficient waterproof sealing structure of bubble machine
By adopting multiple waterproof sealing structures in key parts of the bubble machine, the problem of insufficient waterproofing of existing bubble machines is solved, and higher waterproof sealing and longer equipment life are achieved.
Patent Information
- Application Number
- CN202421607903.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-09
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-07-09
AI Technical Summary
The existing bubble machines have shortcomings in waterproofing, which can easily lead to water immersion and short circuit damage, affecting the normal use of the equipment.
Multiple waterproof sealing structures are adopted, including filling sealant between the main body of the bubbler, control board and charging interface, and sealing key parts through sealing rings to ensure effective isolation of water flow and current.
It significantly improves the waterproof sealing of the bubble machine, prevents water flow from entering the power supply components and control board, avoids short circuit damage, and extends the service life of the equipment.
Smart Images

Figure CN222853755U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of washing products, in particular to a high-efficiency waterproof sealing structure of a bubble machine. Background Art
[0002] At present, the shower gel on the market is mostly used by manually pressing the shower gel nozzle. The shower gel nozzle is squeezed by external force to pump the shower gel in the bottle out. However, the pumped shower gel needs to be manually rubbed on the skin repeatedly to generate foam through the action of air. In order to increase the foaming speed and foaming amount, it is often necessary to use a bath ball to achieve rapid foaming. In order to achieve rapid foaming, a bubble machine that can quickly foam during bathing has been developed. However, the waterproofness of this bubble machine needs to be in place to prevent short circuit caused by immersion in water. Therefore, it is urgent to develop an efficient waterproof sealing structure for the bubble machine. Utility Model Content
[0003] The utility model aims to provide a high-efficiency waterproof sealing structure of a bubble machine, which has the effects of multiple waterproofing and effectively improving the waterproof sealing performance.
[0004] The above technical objectives of the utility model are achieved through the following technical solutions: a highly efficient waterproof sealing structure of a bubble machine, comprising a bubble machine main body with a bubble chamber, a driving mechanism and a control panel arranged in the bubble chamber, the bubble machine main body is provided with a water inlet and a bubble outlet connected to the bubble chamber, the driving mechanism comprises a water flow driving component and a power supply component, the control panel is provided with a charging interface for charging the power supply component, the charging interface and the bubble machine main body, the control panel and the bubble machine main body are sealed with sealant; the bubble machine main body is sealed with a temperature sensing probe for detecting water temperature.
[0005] By adopting the above technical scheme, the water flow driving component drives water to flow from the water inlet into the bubble chamber for bubbling and be discharged from the bubble outlet. The power supply component can be powered through the charging interface. At the same time, the temperature sensing probe is used to detect the water temperature in the bubble chamber and realize temperature feedback. In addition, during production, sealant is poured between the charging interface, the control board and the bubble machine body to seal the joints between the control board, the charging interface and the bubble machine, which can effectively prevent the control board from being damaged by a short circuit. At the same time, the temperature sensing probe is sealed on the bubble machine body to prevent water from flowing to the power supply component through the joint between the temperature sensing probe and the bubble machine body, thereby effectively avoiding a short circuit in the power supply component, thereby improving the overall waterproof sealing of the utility model, and having the effect of multiple waterproofing and effectively improving the waterproof sealing.
[0006] The utility model is further configured as follows: the foaming machine body is provided with a temperature display screen electrically connected to the 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 in the foaming chamber, and the temperature sensing probe and the avoidance hole are sealed by a first sealing ring.
[0007] By adopting the above technical solution, the temperature sensing probe detects the water temperature in the bubble chamber and displays it on the temperature display screen in real time, so that the user can clearly observe the change of water temperature in real time.
[0008] The utility model is further configured as follows: the water flow drive assembly includes a motor mounting sleeve, a drive motor arranged in the motor mounting sleeve, and an impeller arranged on the output shaft of the drive motor; a second sealing ring is provided on the sealing sleeve on the output shaft of the drive motor, and the second sealing ring is sealed between the motor mounting sleeve and the drive motor.
[0009] By adopting the above technical solution, the second sealing ring can seal the hole gap between the output shaft of the drive motor and the motor mounting sleeve, preventing water from flowing into the motor mounting sleeve through the hole gap reserved on the motor mounting sleeve corresponding to the output shaft of the drive motor, causing the motor to short-circuit.
[0010] The utility model is further configured as follows: the power supply assembly includes a battery mounting sleeve and a battery pack arranged in the battery mounting sleeve, the avoidance hole is opened on the side wall of the battery mounting sleeve, the motor mounting sleeve is plugged into the battery mounting sleeve, and a third sealing ring is provided between the motor mounting sleeve and the battery mounting sleeve.
[0011] By adopting the above technical solution, the third sealing ring can prevent water from penetrating from the joint between the battery mounting sleeve and the motor mounting sleeve, thereby improving the waterproof sealing performance of the drive mechanism of the utility model.
[0012] The utility model is further configured as follows: the motor mounting sleeve includes a plug-in portion, the battery mounting sleeve includes a plug-in mating portion, and the plug-in portion is plug-fitted with the plug-in mating portion.
[0013] By adopting the above technical solution, one end of the motor mounting sleeve can be plugged into the end of the battery mounting sleeve, so that the power supply component and the water flow drive component form a whole, which is beneficial to the installation stability of the two on the foaming machine body.
[0014] The utility model is further configured as follows: a buckle is provided on a side wall of the plug-in portion, and a slot is provided on the plug-in mating portion corresponding to the buckle. When the plug-in portion is plug-fitted with the plug-in mating portion, the buckle is engaged with the corresponding slot.
[0015] By adopting the above technical solution, the snap-fitting effect of the buckle and the slot is utilized to achieve quick installation between the motor mounting sleeve and the battery mounting sleeve, and at the same time, the motor mounting sleeve and the battery mounting sleeve can be prevented from falling off when connected.
[0016] The utility model is further configured as follows: a battery placement rack is provided in the battery installation sleeve, the battery placement rack is provided with a receiving groove for the battery pack to be placed, and the battery placement rack is also provided with a heat dissipation hole connected to the receiving groove.
[0017] By adopting the above technical solution, the addition of a battery placement rack can position the battery pack and prevent the battery pack from shaking in the battery mounting sleeve. In addition, the heat dissipation holes can release the heat generated by the battery pack and prevent the battery pack from overheating due to long-term operation of the utility model.
[0018] The utility model is further configured as follows: the battery placement rack is integrally provided with a positioning portion, the positioning portion is provided with a plurality of stop ribs, and when the motor mounting sleeve is fixedly connected to the battery mounting sleeve, the positioning portion cooperates with the drive motor stop through the stop ribs.
[0019] By adopting the above technical solution, when the motor mounting sleeve is fixedly connected to the battery mounting sleeve, the stop rib of the positioning portion can be used to tighten the end of the drive motor away from the impeller, thereby improving the shockproof performance of the drive motor when it is working.
[0020] The utility model is further configured as follows: the foaming machine body is provided with a filling port, the filling port is detachably provided with a blocking piece, and the sealing piece is provided with an anti-detachment rubber ring that cooperates with the filling port to prevent detachment.
[0021] By adopting the above technical solution, the operator can open the filling port by pulling out the sealing piece, and then add shower gel to the foaming chamber through the filling port for foaming. When the shower gel is filled, the sealing piece is sealed on the filling port, and the friction force of the anti-detachment rubber ring is used to effectively prevent the sealing piece from detaching at the filling port.
[0022] The utility model is further configured as follows: the foaming machine body comprises an upper shell and a lower shell, the upper shell is provided with an embedding portion around its periphery, the lower shell is provided with an embedding groove corresponding to the embedding portion, and when the upper shell is buckled with the lower shell, the embedding portion is embedded in the corresponding embedding groove.
[0023] By adopting the above technical solution, the embedding effect of the embedding part and the embedding groove is utilized to improve the buckling sealing between the upper shell and the lower shell.
[0024] The utility model is further configured as follows: the foaming machine body is provided with a switch button electrically connected to the control panel, and the lower shell is provided with an elastic pressing portion corresponding to the switch button.
[0025] 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.
[0026] In summary, the utility model has the following beneficial effects:
[0027] A water flow driving component, a power supply component and a control panel are arranged in a foaming chamber of the foaming machine. The water flow driving component includes a motor mounting sleeve, a driving motor and an impeller. A second sealing ring is arranged between the output shaft of the driving motor and the motor mounting sleeve to waterproofly seal the driving motor. The power supply component includes a battery mounting sleeve and a battery pack. The plug-in portion of the motor mounting sleeve is inserted into the plug-in matching portion of the battery mounting sleeve, and a third sealing ring is arranged outside the plug-in portion. The third sealing ring is used to achieve waterproof sealing between the plug-in portion and the plug-in matching portion, and the corresponding buckle and card slot are used to achieve card connection. The control panel is electrically connected to a temperature sensing probe. A first sealing ring is arranged between the temperature sensing probe and the avoidance hole of the battery mounting sleeve for waterproof sealing. The control panel is provided with a charging interface. The charging interface and the foaming machine body, and the control panel and the foaming machine body are sealed and matched by sealant, which has multiple waterproof effects and effectively improves the waterproof sealing performance. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 It is a longitudinal sectional view of the utility model.
[0029] Figure 2 This utility model Figure 1 A partial enlarged view of area A.
[0030] Figure 3 This utility model Figure 1 A partial enlarged view of area B.
[0031] Figure 4 This utility model Figure 1 A partial enlarged view of the middle C area.
[0032] Figure 5 This utility model Figure 1 A partial enlarged view of the D area in the middle.
[0033] Figure 6 It is an exploded view of the utility model.
[0034] Figure 7 It is an exploded view of the water flow drive component of the utility model.
[0035] Figure 8 It is an exploded view of the power supply component of the utility model.
[0036] In the figure: 1. Bubble machine body; 1a. Bubble chamber; 1b. Water inlet; 1c. Bubble outlet; 1d. Filling port; 101. Upper shell; 1011. Embedding part; 102. Lower shell; 102a. Embedding groove; 1021. Elastic pressing part; 11. Sealing piece; 111. Anti-stripping rubber ring; 12. Sealant; 2. Control panel; 21. Charging port; 22. Temperature display screen; 23. Temperature sensor; 24. Switch button; 3. Water flow drive assembly; 31. Motor installation Sleeve; 310, third sealing ring; 311, plug-in part; 3111, buckle; 32, drive motor; 33, impeller; 34, second sealing ring; 4, power supply assembly; 41, battery installation 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
[0037] The utility model is further described below in conjunction with the accompanying drawings.
[0038] A highly efficient waterproof sealing structure for a bubble machine, such as Figure 1-4 As shown, the foaming machine body 1 includes a foaming chamber 1a, a driving mechanism and a control panel 2 arranged in the foaming chamber 1a, the foaming machine body 1 includes a water inlet 1b and a foaming outlet 1c connected to the foaming chamber 1a, the driving mechanism includes a water flow driving component 3 and a power supply component 4, the control panel 2 includes 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 a sealant 12; the foaming machine 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, and the temperature probe 23 extends out of the power supply component 4 through the avoidance hole 41a The water temperature in the foaming chamber 1a is detected, and the temperature sensing probe 23 is sealed with the avoidance hole 41a by the first sealing ring 44; the foaming machine body 1 is provided with a filling port 1d for pouring shower gel, and a sealing member 11 is detachably provided on the filling port 1d, and an anti-detachment rubber ring 111 is provided on the sealing member 11 for preventing the filling port 1d from detaching. The operator can open the filling port 1d by pulling out the sealing member 11, and then fill the shower gel into the foaming chamber 1a through the filling port 1d for foaming. When the shower gel is filled, the sealing member 11 is sealed on the filling port 1d, and the friction force of the anti-detachment rubber ring 111 is used to realize the effective anti-detachment of the sealing member 11 at the filling port 1d.
[0039] like Figure 1 and Figure 6-8As shown, the water flow drive component 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 set as waterproof silicone, and the second sealing ring 34 is sealingly arranged 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 entering the motor mounting sleeve 31 through the hole gap reserved for the output shaft of the drive motor 32 on the motor mounting sleeve 31, causing a short circuit of the motor; the power supply component 4 includes a battery mounting sleeve 41, a battery pack 42 arranged in the battery mounting sleeve 41, the avoidance hole 41a is opened on the side wall of the battery mounting sleeve 41, the motor mounting sleeve 31 is plugged with 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 flows in through the joint between the battery mounting sleeve 41 and the motor mounting sleeve 31, which can improve the waterproof sealing performance of the driving mechanism of the utility model; 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 and the plug-in matching portion 411 are plugged and matched, 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 convenient for the installation of the two on the foaming machine body 1. Stability: A buckle 3111 is provided on the side wall of the plug-in portion 311, and a slot 411a is provided on the plug-in mating portion 411 corresponding to the buckle 3111. When the plug-in portion 311 is plugged with the plug-in mating portion 411, the buckle 3111 is engaged with the corresponding slot 411a. The engagement between the buckle 3111 and the slot 411a is utilized to realize quick installation between the motor mounting sleeve 31 and the battery mounting sleeve 41, and at the same time, the motor mounting sleeve 31 and the battery mounting sleeve 41 can be prevented from falling off when connected.
[0040] like Figure 6-8As shown, a battery mounting sleeve 41 is provided with a battery placement rack 43, and 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 heat dissipation hole 43b connected to the receiving groove 43a. The addition of the battery placement rack 43 can position the battery pack 42 to prevent the battery pack 42 from shaking in the battery mounting sleeve 41. In addition, the heat dissipation hole 43b can release the heat generated by the battery pack 42 to prevent the battery pack 42 from overheating due to long-term operation of the utility model; the battery placement rack 43 is integrally provided with a positioning portion 431 The positioning portion 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 portion 431 cooperates 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 portion 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; in addition, the battery placement rack 43 is provided with a plurality of clamping portions 432, and the control board 2 is clamped and fixed to the battery placement rack 43 through the clamping portions 432.
[0041] like Figure 1-2 and Figure 5-6 As shown, the foaming machine body 1 includes an upper shell 101 and a lower shell 102, an embedding portion 1011 is provided around the upper shell 101, and an embedding groove 102a is provided on the lower shell 102 corresponding to the embedding portion 1011. When the upper shell 101 and the lower shell 102 are buckled together, the embedding portion 1011 is embedded in the corresponding embedding groove 102a, and the embedding effect of the embedding portion 1011 and the embedding groove 102a is utilized to improve the buckling sealing between the upper shell 101 and the lower shell 102; the foaming machine body 1 is provided with a switch button 24 electrically connected to the control board 2, and the lower shell 102 is provided with an elastic pressing portion 1021 corresponding to the switch button 24. In this embodiment, the pressing elastic pressing portion 1021 is set as elastic silicone. Pressing the elastic pressing portion 1021 causes it to deform and act on the switch button 24, and the start and stop of the bubble machine are controlled through the control board 2. In this embodiment, the switch button 24 is set as a touch switch.
[0042] The basic working principle of the utility model is: the water flow driving component 3 drives the water flow from the water inlet 1b to flow into the bubble chamber 1a for bubbling and is discharged from the bubble outlet 1c. The power supply component 4 can be powered by the charging interface 21. At the same time, the temperature sensing probe 23 is used to detect the water temperature in the bubble chamber 1a and display it in real time on the temperature display screen 22, so that the user can clearly observe the change of water temperature. In addition, during production, the sealant 12 is poured between the charging interface 21, the control board 2 and the bubble machine body 1 to seal the joints between the control board 2, the charging interface 21 and the bubble machine, which can effectively prevent the control board 2 from being damaged by a short circuit. At the same time, the first sealing ring 44 can effectively allow water to flow into the power supply component 4 through the gap between the avoidance hole 41a and the temperature sensing probe 23, effectively avoiding the power supply component 4 from being short-circuited. The utility model utilizes the multiple waterproof effects of the sealant 12 and the first sealing ring 44 to effectively improve the overall waterproof sealing of the utility model, and has the effect of multiple waterproofing and effectively improving the waterproof sealing.
[0043] 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 highly efficient waterproof sealing structure of a bubble machine, comprising a bubble machine body (1) with a bubble chamber (1a), a driving mechanism and a control panel (2) arranged in the bubble chamber (1a), the bubble machine body (1) having a water inlet (1b) and a bubble outlet (1c) connected to the bubble chamber (1a), characterized in that: The driving mechanism comprises a water flow driving component (3) and a power supply component (4); 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); and the foaming machine body (1) is sealed with a temperature sensing probe (23) for detecting water temperature.
2. The high-efficiency waterproof sealing structure of a bubble machine according to claim 1, characterized in that: The foaming machine body (1) is provided with a temperature display screen (22) electrically connected to the temperature sensing probe (23); the power supply component (4) is provided with a avoidance hole (41a) corresponding to the temperature sensing probe (23); the temperature sensing probe (23) extends out of the power supply component (4) through the avoidance hole (41a) and detects the water temperature; and the temperature sensing probe (23) and the avoidance hole (41a) are sealed by a first sealing ring (44).
3. The high-efficiency waterproof sealing structure of a bubble machine according to claim 1, characterized in that: The water flow drive assembly (3) comprises a motor mounting sleeve (31), a drive motor (32) arranged in the motor mounting sleeve (31), and an impeller (33) arranged on an output shaft of the drive motor (32); a second sealing ring (34) is provided on the sealing sleeve on the output shaft of the drive motor (32), and the second sealing ring (34) is sealingly arranged between the motor mounting sleeve (31) and the drive motor (32).
4. The high-efficiency waterproof sealing structure of a bubble machine according to claim 3, characterized in that: The power supply assembly (4) comprises a battery mounting sleeve (41) and a battery pack (42) arranged in the battery mounting sleeve (41); the motor mounting sleeve (31) is plugged into and matched with 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).
5. The high-efficiency waterproof sealing structure of a bubble machine according to claim 4, characterized in that: The motor mounting sleeve (31) comprises a plug-in portion (311), and the battery mounting sleeve (41) comprises a plug-in mating portion (411), and the plug-in portion (311) is plug-fitted with the plug-in mating portion (411).
6. The high-efficiency waterproof sealing structure of a bubble machine according to claim 5, characterized in that: The side wall of the plug-in portion (311) is provided with a buckle (3111), and the plug-in mating portion (411) is provided with a slot (411a) corresponding to the buckle (3111); when the plug-in portion (311) is plug-fitted with the plug-in mating portion (411), the buckle (3111) is snap-fitted with the corresponding slot (411a).
7. The high-efficiency waterproof sealing structure of a bubble machine according to claim 4, characterized in that: A battery placement rack (43) is arranged inside the battery installation sleeve (41), the battery placement rack (43) is provided with a receiving groove (43a) for the battery pack (42) to be placed, and the battery placement rack (43) is also provided with a heat dissipation hole (43b) connected to the receiving groove (43a).
8. The high-efficiency waterproof sealing structure of a bubble machine according to claim 7, characterized in that: The battery placement rack (43) is integrally provided with a positioning portion (431), and the positioning portion (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 portion (431) is engaged with the drive motor (32) through the stop ribs (4311).
9. The high-efficiency waterproof sealing structure of a bubble machine according to claim 1, characterized in that: The foaming machine body (1) is provided with a filling port (1d), the filling port (1d) is detachably provided with a sealing member (11), and the sealing member (11) is provided with an anti-detachment rubber ring (111) outside the sealing member (11) and cooperates with the filling port (1d) to prevent detachment.
10. The high-efficiency waterproof sealing structure of a bubble machine according to claim 1, characterized in that: The foaming machine body (1) comprises an upper shell (101) and a lower shell (102); an embedding portion (1011) is provided on the periphery of the upper shell (101); and an embedding groove (102a) is provided on the lower shell (102) corresponding to the embedding portion (1011); when the upper shell (101) and the lower shell (102) are buckled together, the embedding portion (1011) is embedded in the corresponding embedding groove (102a).