Bubble spraying device
By introducing an ozone generator and a venturi tube into the foaming device, the cleaning solution and ozone are mixed, solving the problem of the single function of existing devices and providing a variety of cleaning and disinfection functions, suitable for people's bathing and pet cleaning.
Patent Information
- Application Number
- CN202422766650.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-13
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-11-13
AI Technical Summary
Existing foaming devices have limited functionality and cannot meet the diverse needs of people for bathing and cleaning their pets.
A foaming device was designed, comprising an inlet pipe, an outlet pipe, a peristaltic pump, a foaming air pump, an ozone generator, an air-water mixer, and an ozone-water mixer. The device achieves the mixing of cleaning liquid and ozone through a flow channel switcher and a venturi tube, providing a wide range of cleaning and disinfection functions.
It achieves efficient cleaning and disinfection for pets, is suitable for both human bathing and pet cleaning, and has a wide range of functions, making it suitable for both human bathing and pet cleaning.
Smart Images

Figure CN223556243U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a cleaning equipment field, concretely relates to a bubble spraying device. BACKGROUND
[0002] At present, the bubble spraying device mainly includes a foaming gas pump and a water pipeline, tap water is input to the water inlet end of the water pipeline, a cleaning liquid (shower gel or shampoo water, etc.) is injected into the water pipeline by hand or a pump body, the cleaning liquid is premixed with the water flow, then compressed air is input into the water pipeline by the foaming gas pump, the compressed air is injected into the water flow, the air is mixed with the water flow containing the cleaning liquid to form a large amount of foam, and the foam is sprayed out through the water outlet end of the water pipeline. Some pets can spray the foam generated by the bubble spraying device on the hair of the pets when taking a bath, which helps to improve the cleaning effect, but the existing bubble spraying device has single function, and the function is insufficient when applied to the occasions of bathing or cleaning pets, so it is necessary to improve. SUMMARY
[0003] The utility model aims at overcoming the insufficient of prior art, provide a bubble spraying device, its function is relatively rich.
[0004] The utility model discloses a bubble spraying device, including water inlet pipe, water outlet pipe, first peristaltic pump, foaming gas pump, ozone generator, air water mixer and ozone water mixer, the water inlet pipe is connected the water outlet pipe through first flow channel and second flow channel, the output of first peristaltic pump is connected first flow channel, the output of foaming gas pump is connected first flow channel through air water mixer, foaming gas pump is arranged after first peristaltic pump along first flow channel, the output of ozone generator is connected second flow channel through ozone water mixer, the water inlet pipe is connected the first end of first flow channel and the first end of second flow channel through flow channel switcher.
[0005] The utility model discloses a bubble spraying device, including water inlet pipe, water outlet pipe, first peristaltic pump, foaming gas pump, ozone generator, air water mixer and ozone water mixer, the water inlet pipe is connected the water outlet pipe through first flow channel and second flow channel, the output of first peristaltic pump is connected first flow channel, the output of foaming gas pump is connected first flow channel through air water mixer, foaming gas pump is arranged after first peristaltic pump along first flow channel, the output of ozone generator is connected second flow channel through ozone water mixer, the water inlet pipe is connected the first end of first flow channel and the first end of second flow channel through flow channel switcher.
[0006] Preferably, a water pump is arranged on the first flow channel between the air water mixer and the first peristaltic pump.
[0007] Preferably, the bubble spraying device further comprises a water outlet four-way pipe and a straight pipe, the water outlet four-way pipe is connected to the output end of the air water mixer, the output end of the Venturi tube, one end of the straight pipe and the upper end of the water outlet pipe, and the other end of the straight pipe is connected to the input end of the Venturi tube through a shunt three-way pipe and the flow channel switcher.
[0008] Preferably, the flow channel switcher comprises a water inlet tee joint, a first electromagnetic valve and a second electromagnetic valve, the first end of the first flow channel is connected to the water inlet tee joint through the first electromagnetic valve, the first end of the second flow channel is connected to the water inlet tee joint through the second electromagnetic valve, and the upper end of the water inlet pipe is connected to the water inlet tee joint.
[0009] Preferably, the first flow channel is provided with a flow regulating valve.
[0010] Preferably, the bubble spraying device further comprises a second peristaltic pump, and the second peristaltic pump is arranged in parallel with the first peristaltic pump.
[0011] Compared with the prior art, the bubble spraying device has the beneficial effects that: the water inlet pipe is connected to the water outlet pipe through the first flow channel and the second flow channel, the output end of the first peristaltic pump is connected to the first flow channel, the output end of the foaming gas pump is connected to the first flow channel through the air mixing device, the foaming gas pump is arranged along the first flow channel and located behind the first peristaltic pump, the output end of the ozone generator is connected to the second flow channel through the ozone mixing device, and the water inlet pipe is connected to the first end of the first flow channel and the first end of the second flow channel through the flow channel switcher; the ozone mixing device is a Venturi tube, the Venturi tube is provided with a negative pressure pipe, and the negative pressure pipe is connected to the output end of the ozone generator, so that the bubble spraying device has relatively rich functions and is suitable for people to bathe or clean pets. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 FIG. 1 is a front perspective view of the bubble spraying device of the utility model.
[0013] Figure 2 FIG. 2 is a back perspective view of the bubble spraying device of the utility model with the shell removed.
[0014] Figure 3 FIG. 3 is a schematic view of the bubble spraying device of the utility model connected to a bottle of cleaning liquid.
[0015] Label explanation: shell 1; first flow channel 100; second flow channel 200; water inlet pipe 2; water inlet tee joint 201; water outlet pipe 3; water outlet tee joint 301; first liquid suction pipe 4; second liquid suction pipe 5; first peristaltic pump 6; second peristaltic pump 7; water pump 8; foaming gas pump 9; ozone generator 10; flow regulating valve 11; first electromagnetic valve 12; second electromagnetic valve 13; first liquid mixing tee joint 14; second liquid mixing tee joint 15; foaming tee joint 16; Venturi tube 17; shunt tee joint 18; straight pipe 19; first bottle of cleaning liquid 991; second bottle of cleaning liquid 992. DETAILED DESCRIPTION
[0016] The utility model will be further described below in combination with the drawings.
[0017] The bubble spraying device of the utility model, likeFigure 1 and Figure 2 As shown in the figure, it comprises a water inlet pipe 2, a water outlet pipe 3, a first peristaltic pump 6, a foaming gas pump 9, an ozone generator 10, an air water mixer and an ozone water mixer, the water inlet pipe 2 is connected to the water outlet pipe 3 through a first flow channel 100 and a second flow channel 200, in other words, from the water inlet pipe 2 to the water outlet pipe 3 comprises two flow channels, the output end of the first peristaltic pump 6 is connected to the first flow channel 100, specifically, the output end of the first peristaltic pump 6 is connected to the first flow channel 100 through a first mixed liquid tee joint 14, the output end of the foaming gas pump 9 is connected to the first flow channel 100 through the air water mixer, the foaming gas pump 9 is arranged after the first peristaltic pump 6 along the first flow channel 100, in other words, the water flow of the first flow channel 100 reaches the first mixed liquid tee joint 14 first and then reaches the air water mixer, as shown in the figure, Figure 1 As shown in the figure, the air water mixer can be a foaming tee joint 16, the foaming tee joint 16 can adopt a Y-shaped tee joint, the output end of the ozone generator 10 is connected to the second flow channel 200 through the ozone water mixer, the ozone generator 10 belongs to the prior art, for example, please refer to the “ozone generator assembly” with the Chinese utility model patent publication number CN211004562U and the “ozone generator” with the Chinese utility model patent publication number CN202465272U, the water inlet pipe 2 is connected to the first end of the first flow channel 100 and the first end of the second flow channel 200 through a flow channel switch, in other words, the flow channel switch is used for switching the water flow of the water inlet pipe 2 to be output to the first end of the first flow channel 100 or the first end of the second flow channel 200. As shown in the figure, Figure 1 and Figure 2 As shown in the figure, the input end of the first peristaltic pump 6 is connected to a first liquid suction pipe 4, as shown in the figure, Figure 3 The first liquid suction pipe 4 can be inserted into the first bottled cleaning liquid 991, the lower end of the water inlet pipe 2 is connected to a tap water pipe, and the water outlet pipe 3 can be connected to a foaming hose.
[0018] The working principle of the foaming device of the utility model is briefly described as follows: as shown in the figure, Figures 1 to 3As shown, tap water is input to the water inlet pipe 2, when the flow channel switch connects the first end of the first flow channel 100, the tap water flowing through the water inlet pipe 2 enters the first end of the first flow channel 100 through the flow channel switch, and the water flow flows along the first flow channel 100, during which, the water flow of the first flow channel 100 flows through the first mixed liquid tee joint 14, the first peristaltic pump 6 draws the first cleaning liquid in the first bottled cleaning liquid 991 through the first liquid suction pipe 4, the first cleaning liquid is output to the first mixed liquid tee joint 14 through the output end of the first peristaltic pump 6, so that the first cleaning liquid is injected into the first flow channel 100, and then the first cleaning liquid is mixed into the water flow of the first flow channel 100, and then the output end of the foaming gas pump 9 outputs compressed air, the compressed air is injected into the first flow channel 100 through the air-water mixer (Y-shaped tee joint), and the compressed air is mixed with the water flow mixed with the first cleaning liquid, and then the fluid containing a large amount of foam is output through the water outlet pipe 3. When the flow channel switch connects the first end of the second flow channel 200, the tap water flowing through the water inlet pipe 2 enters the first end of the second flow channel 200 through the flow channel switch, and the water flow flows along the second flow channel 200, during which, the first peristaltic pump 6 and the foaming gas pump 9 do not work, the ozone generator 10 works to generate ozone, and the ozone is input into the second flow channel 200 through the ozone-water mixer, so that the ozone is mixed into the water flow of the second flow channel 200, and then the water flow mixed with the ozone is discharged through the water outlet pipe 3. The output end of the ozone generator 10 can be provided with a one-way valve; for example, a manual pump or an ozone gas pump can be used to output the ozone generated by the ozone generator 10 through a positive pressure mode, so that the ozone is mixed into the water flow; in some embodiments, the ozone-water mixer is a Venturi tube 17, the Venturi tube 17 is provided with a negative pressure suction pipe, the negative pressure suction pipe is connected to the output end of the ozone generator 10, in other words, the Venturi tube 17 is arranged on the second flow channel 200, the water flow of the second flow channel 200 is input to the input end of the Venturi tube 17, and when the water flow flows through the Venturi tube 17, the negative pressure suction pipe generates negative pressure, the negative pressure suction pipe sucks the ozone output from the output end of the ozone generator 10, so that the ozone is mixed into the output end of the Venturi tube 17, and then the water flow flows out to the water outlet pipe 3 through the output end of the Venturi tube 17, since the working principle of the Venturi tube 17 belongs to the prior art, details are not described here. When the pet cleaning device of the utility model is used to clean the pet, the first flow channel 100 can be switched first, and the water containing cleaning foam is sprayed on the hair of the pet, and after the pet is cleaned, the second flow channel 200 is switched, so that clean water (containing ozone) is used to flush the cleaning liquid on the hair of the pet, so that the pet can be cleaned completely, the cleaning liquid is prevented from remaining on the pet, and the ozone is beneficial to disinfection and deodorization of the pet, which is beneficial to the health of the pet; of course, the ozone generator 10 can be closed, and only clean water is used to flush the pet. When the pet cleaning device of the utility model is used for bathing, the pet cleaning device can also be used to spray and clean the body and hair first, and then clean water is used for disinfection and flushing.From the above, the bubble spraying device has the functions of bubble spraying and disinfection and cleaning, and is suitable for people bathing and cleaning pets.
[0019] Further, as shown in Figure 1 the first flow channel 100 is provided with a water pump 8, and the water pump 8 is arranged along the first flow channel 100 between the air-water mixer and the first peristaltic pump 6, in other words, the cleaning liquid is mixed into the water flow, and then enters the input end of the water pump 8, the water flow flows through the water pump 8, and the water flow is then output to the air-water mixer through the output end of the water pump 8. Because the viscosity of the water flow mixed with the cleaning liquid increases, the flow resistance increases, and by arranging the water pump 8, the flow of the water flow in the first flow channel 100 can be increased, so that the bubble spraying device can be prevented from being blocked, and the water outlet pipe 3 can be used to spray bubbles at a high flow rate.
[0020] Further, as shown in Figure 1 and Figure 2 the bubble spraying device further comprises a water outlet four-way pipe 301 and a straight pipe 19, the water outlet four-way pipe 301 is connected to the output end of the air-water mixer, the output end of the Venturi tube 17, one end of the straight pipe 19 and the upper end of the water outlet pipe 3, respectively, and the other end of the straight pipe 19 is connected to the input end of the Venturi tube 17 through the flow channel switcher of the flow dividing three-way pipe 18. In detail, one end of the main pipeline of the second flow channel 200 is connected to the flow channel switcher, and the other end of the main pipeline of the second flow channel 200 is connected to the first interface of the flow dividing three-way pipe 18. The flow dividing three-way pipe 18 can be a T-shaped three-way pipe, and the main pipeline of the second flow channel 200 is linearly connected to the other end of the straight pipe 19, that is, the second interface of the flow dividing three-way pipe 18 is connected to the other end of the straight pipe 19, so that the third interface of the flow dividing three-way pipe 18 is connected to the input end of the Venturi tube 17. Because the Venturi tube 17 has a relatively large resistance to the water flow, by the above arrangement, a part of the water flow flowing through the second flow channel 200 passes through the Venturi tube 17, and the other part of the water flow flowing through the second flow channel 200 bypasses the Venturi tube 17 and directly connects to the water outlet pipe 3 through the straight pipe 19, so that the water flow is sufficient when the clean water washes the pet. By arranging the water outlet four-way pipe 301 to combine the first flow channel 100 and the second flow channel 200 into the water outlet pipe 3, the structure is relatively simple and easy to manufacture.
[0021] Further, as shown in Figure 1 and Figure 2As shown in the figure, the flow channel switcher comprises a water inlet tee 201, a first electromagnetic valve 12 and a second electromagnetic valve 13, the first end of the first flow channel 100 is connected to the water inlet tee 201 through the first electromagnetic valve 12, the first end of the second flow channel 200 is connected to the water inlet tee 201 through the second electromagnetic valve 13, and the upper end of the water inlet pipe 2 is connected to the water inlet tee 201; thus, when the first electromagnetic valve 12 is closed and the second electromagnetic valve 13 is opened, the water flow input into the water inlet pipe 2 can only flow to the first end of the second flow channel 200 through the second electromagnetic valve 13, and then the water flow flows through the second flow channel 200; when the first electromagnetic valve 12 is opened and the second electromagnetic valve 13 is closed, the water flow input into the water inlet pipe 2 can only flow to the first end of the first flow channel 100 through the first electromagnetic valve 12, and then the water flow flows through the first flow channel 100, the structure of the above flow channel switcher is simple, and the cost is low.
[0022] Further, as shown in the figure, Figure 1 the first flow channel 100 is provided with a flow regulating valve 11, the flow regulating valve 11 is provided with an adjusting hand wheel, the spray bubble device further comprises a shell 1, the adjusting hand wheel is arranged on the outer side of the shell 1, the flow regulating valve 11 is arranged between the first electromagnetic valve 12 and the first peristaltic pump 6 along the first flow channel 100, and the flow regulating valve 11 can regulate the spray bubble flow of the water outlet pipe 3.
[0023] Further, as shown in the figure, Figure 1 and Figure 2 the spray bubble device further comprises a second peristaltic pump 7, the second peristaltic pump 7 is arranged in parallel with the first peristaltic pump 6, specifically, the input end of the second peristaltic pump 7 is connected with the second liquid suction pipe 5, and the output end of the second peristaltic pump 7 is connected to the first flow channel 100 through a second liquid mixing tee 15; thus, when the second peristaltic pump 7 works and the first peristaltic pump 6 does not work, as shown in the figure, Figure 3 the second peristaltic pump 7 draws the second cleaning liquid in the second bottled cleaning liquid 992 through the second liquid suction pipe 5, and the second cleaning liquid is injected into the first flow channel 100 through the output end of the second peristaltic pump 7; similarly, when the second peristaltic pump 7 stops working and the first peristaltic pump 6 works, only the first cleaning liquid in the first bottled cleaning liquid 991 is drawn into the first flow channel 100; through the above arrangement, the spray bubble device can flexibly switch the types of cleaning liquids.
Claims
1. A bubble jet apparatus characterized by comprising: The device comprises a water inlet pipe (2), a water outlet pipe (3), a first peristaltic pump (6), a foaming gas pump (9), an ozone generator (10), an air-water mixer and an ozone-water mixer, the water inlet pipe (2) is connected to the water outlet pipe (3) through a first flow channel (100) and a second flow channel (200), the output end of the first peristaltic pump (6) is connected to the first flow channel (100), the output end of the foaming gas pump (9) is connected to the first flow channel (100) through the air-water mixer, the foaming gas pump (9) is arranged behind the first peristaltic pump (6) along the first flow channel (100), the output end of the ozone generator (10) is connected to the second flow channel (200) through the ozone-water mixer, the water inlet pipe (2) is connected to the first end of the first flow channel (100) and the first end of the second flow channel (200) through a flow channel switcher; the ozone-water mixer is a Venturi tube (17), the Venturi tube (17) is provided with a negative pressure pipe, and the negative pressure pipe is connected to the output end of the ozone generator (10).
2. The bubble jet apparatus according to claim 1, wherein: A water pump (8) is arranged on the first flow channel (100) between the air-water mixer and the first peristaltic pump (6).
3. The bubble jet apparatus according to claim 2, wherein: The device further comprises a water outlet four-way pipe (301) and a straight-through pipe (19), the water outlet four-way pipe (301) is connected to the output end of the air-water mixer, the output end of the Venturi tube (17), one end of the straight-through pipe (19) and the upper end of the water outlet pipe (3), respectively, and the other end of the straight-through pipe (19) is connected to the flow channel switcher through a shunt three-way pipe (18) and the input end of the Venturi tube (17).
4. The bubble jet apparatus according to claim 3, wherein: The flow channel switcher comprises a water inlet three-way pipe (201), a first electromagnetic valve (12) and a second electromagnetic valve (13), the first end of the first flow channel (100) is connected to the water inlet three-way pipe (201) through the first electromagnetic valve (12), the first end of the second flow channel (200) is connected to the water inlet three-way pipe (201) through the second electromagnetic valve (13), and the upper end of the water inlet pipe (2) is connected to the water inlet three-way pipe (201).
5. The bubble jet apparatus of claim 1 wherein: A flow regulating valve (11) is arranged on the first flow channel (100).
6. The bubble jet apparatus of claim 1 wherein: The device further comprises a second peristaltic pump (7), which is arranged in parallel with the first peristaltic pump (6).
Citation Information
Patent Citations
Ozone generator
CN202465272U
Ozone generator assembly
CN211004562U
Cited By
Pet washing, drying and napping all-in-one machine
CN122139673A