Full-automatic bathing and foaming machine
By integrating a spiral stirring fan blade and a foam pump body, the fully automatic pet bath foamer achieves efficient foaming, solving the problem of low automation in existing pet foamers and improving the convenience and efficiency of pet bathing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-29
- Publication Date
- 2026-04-07
AI Technical Summary
Existing pet foamers have low levels of automation and simple foaming structures, failing to meet consumers' needs for time-saving and labor-saving solutions.
A fully automatic shower foam generator was designed, equipped with a spiral stirring fan blade, a foam pump body and a foaming box. It automatically draws in water, mixes it and stirs it to produce foam. It integrates a stirring structure, a foaming device structure, a battery and a control motherboard to achieve efficient foaming.
It enables the rapid and efficient generation of rich foam, saving shower time and improving ease of use and user experience.
Smart Images

Figure CN224084402U_ABST
Abstract
Description
[Technical Field]
[0001] This utility model relates to the field of pet supplies technology, and in particular to the field of automatic foaming machines used for bathing pets. [Background Technology]
[0002] As people's living standards continue to improve, many families have the habit of raising pet cats and dogs. Cats and dogs, in particular, have become the first choice for many families, and are loved and cherished by all kinds of families.
[0003] A foaming machine is used during bathing. It involves diluting shampoo with water and then using a machine to generate and expel a large amount of foam, making it convenient for bathing pets. Existing patents, such as CN202421516501.0, disclose an electric pet foaming machine, which includes a main body (1) and a cover (2) attached to it. The main body (1) has a foaming chamber (11) on its inner side. The cover (2) is connected to a foaming component, which includes a stirring part (3) and a motor (4). The stirring part (3) extends towards the foaming chamber (11), and the motor (4) is connected to the stirring part (3) in a driving connection. However, the foaming structure in this case is merely a stirring blade; it lacks a dedicated foaming box / foamer for efficient foam generation and dispensing. It also lacks an automatic water-filling and dispensing structure. Relatively speaking, its automation level is low, only slightly better than manual foaming, with limited optimization and automation. It cannot meet the needs of consumers for time-saving, labor-saving, and convenient use. [Summary of the Invention]
[0004] This invention addresses the above problems by proposing a highly efficient, fully automatic shower foam generator that integrates a spiral stirring fan, a foam pump, and a foaming box into one unit. It automatically draws in water, mixes it, stirs it, and then foams and delivers it through the foaming box, producing rich foam in a short time, which is convenient and fast.
[0005] The fully automatic shower foaming machine of this utility model includes a water storage box, a foaming component, a shell and a top cover of the foaming component, wherein the foaming component is disposed inside the shell and the top cover and mounted on the water storage box. The foaming component is characterized by comprising a stirring structure, a foamer structure, a battery and a control mainboard. The foaming component is assembled as a whole into an internal support. The stirring structure is disposed below the internal support, and the foamer structure, battery and control mainboard are disposed within the internal support. The foamer structure includes a foam pump and a foaming box. The outlet of the foam pump is connected to the foaming box to pump and stir a water-emulsion mixture for foaming. The foaming box has a foam extrusion port, which extends to the outside of the shell through a hole in the shell.
[0006] The foam box includes a front cover, a rear cover, and built-in foam. The front cover has a foam extrusion port, and the rear cover has a water inlet. Built-in foam is sandwiched in the middle of the box formed by the front and rear covers.
[0007] The stirring structure includes a stirring motor and stirring blades. The stirring blades are located at the bottom of the internal support. After assembly, the stirring blades extend into the center / near the bottom of the water storage box. The stirring motor is directly connected to the stirring blades.
[0008] The foam pump includes a pump body and an elongated suction pipe, the suction end of which extends into the water storage box near the stirring blades.
[0009] The pump body is also provided with a pump outlet, which is connected to the water inlet on the back cover of the foaming box via a pipe.
[0010] The battery inside the foaming component provides power to the stirring structure and the foamer structure, while the control motherboard receives external input signals to control the start and stop of the stirring structure and the foamer.
[0011] The outer shell of the foaming component is also equipped with control buttons and gear control components. The control buttons and gear control components are directly connected to the input signals of the control motherboard, which controls the stirring structure and the foaming structure.
[0012] The housing includes a front cover and a rear cover, which are fastened together to form the housing. The front cover has a hole corresponding to the foam extrusion port, while the rear cover has a mounting hole and a control button and gear control component embedded therein.
[0013] The fully automatic bath foam generator involved in this utility model is a device that integrates stirring blades for uniform mixing, a foam pump to pump the mixed liquid through a foaming box, and the pump body to deliver the liquid into the foaming box to efficiently form a large amount of foam for pet bathing. It saves bathing time and improves efficiency. It is small and lightweight, easy for one person to operate, has high foaming efficiency and is convenient and practical, bringing great convenience to users and improving the user experience. [Attached Image Description]
[0014] Figure 1 This is a schematic diagram of the overall structure of the fully automatic shower foaming machine involved in this utility model;
[0015] Figure 2 This is a schematic diagram of the base of the pet slow feeder involved in this utility model;
[0016] Figure 3This is a schematic diagram of the disassembled structure of the pet slow feeder involved in this utility model;
[0017] Figure 4 This is a diagram illustrating the use of the slow feeder for pets involved in this utility model;
[0018] Among them: 10. Water storage box;
[0019] 20. Foamed components;
[0020] 21. Stirring structure; 211. Stirring motor; 212. Stirring blades;
[0021] 22. Foamer structure;
[0022] 221. Foam pump; 2211. Pump body; 2212. Long-hole suction pipe; 2213. Pump outlet; 2214. Pipeline;
[0023] 222. Foam box; 2221. Front cover of foam box; 2222. Back cover of foam box; 2223. Internal foam;
[0024] 223. Foam extrusion outlet; 224. Water inlet;
[0025] 23. Battery;
[0026] 24. Control motherboard;
[0027] 30. Outer shell;
[0028] 31. Front cover; 32. Rear cover; 33. Hole; 34. Mounting hole; 35. Control button;
[0029] 40. Top cover;
[0030] 50. Internal support structure.
Detailed Implementation Methods
[0031] The present invention will now be described in detail with reference to the accompanying drawings and embodiments. Examples of the embodiments are shown in the drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.
[0032] In the description of this utility model, it should be understood that the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0033] Please refer to the attached document. Figure 1 To be continued Figure 4 The diagram shows the overall and disassembled structure of a fully automatic shower foaming machine, including a water storage box 10, a foaming component 20, a housing 30 for the foaming component, and a top cover 40. The foaming component 20 is located inside the housing 30 and the top cover 40 and is mounted on the water storage box 10. Overall, the water storage box 10 is used to hold water and the shower gel mixed into it, while the foaming component 20 is mounted on the water storage box 10. It draws water and emulsion mixture from the water storage box 10, initially stirs the water and emulsion mixture, and then foams it in large quantities through the foaming component 20 and squeezes it out for use.
[0034] The foaming component 20 includes a stirring structure 21, a foamer structure 22, a battery 23, and a control motherboard 24. The foaming component 20 needs to mix water and emulsion electrically, stir evenly, draw it into the foamer structure, and quickly generate a large amount of foam. The battery 23 is used to supply the energy required for foaming, and the control motherboard 24 is the control center that receives signals and controls the machine's start and stop.
[0035] The foaming component 20 is assembled into an internal support 50. The internal support 50 is used to support the internal components, making it easy to fix the internal components in the outer shell and keep them stable without shaking. A stirring structure 21 is set below the internal support 50. The internal support 50 contains a foamer structure 22, a battery 23, and a control main board 24. The foamer structure 22 includes a foam pump 221 and a foaming box 222. The outlet of the foam pump 221 is connected to the foaming box 222 to pump and stir the water-emulsion mixture for foaming. The foaming box 222 has a foam extrusion port 223, which extends to the outside of the outer shell 30 through a hole 33 on the outer shell 30.
[0036] The foam box 222 includes a front cover 2221, a rear cover 2222, and built-in foam 2223. The front cover 2221 is provided with a foam extrusion port 223, and the corresponding rear cover 2222 is provided with a water inlet 224. The built-in foam 2223 is sandwiched in the middle of the box formed by the front cover 2221 and the rear cover 2222.
[0037] The water-emulsion mixture pumped out by foam pump 221 is sent into foam box 222 through water inlet 224. After high pressure extrusion through built-in foam cotton 2223, a large amount of foam is generated at high speed and in large quantity, and finally extruded through foam extrusion port 223.
[0038] The stirring structure 21 includes a stirring motor 211 and stirring blades 212. The stirring blades 212 are located at the bottom of the internal support 50. After assembly, the stirring blades 212 extend into the center / near the bottom of the water storage box 10. The stirring motor 211 directly drives the stirring blades 212. The stirring structure 21 is a component for stirring and mixing the water and shower gel mixture evenly. The stirring motor 211 drives the stirring blades 212 to rotate and stir.
[0039] The foam pump 221 includes a pump body 2211 and an elongated suction pipe 2212. The suction end of the elongated suction pipe 2212 extends into the water storage box 10 near the stirring blades 212. A program can be set in the control mainboard 24 to delay the foam pump 221's suction process by 2-5 seconds after the stirring process starts. This allows the stirring blades 212 to stir for a certain period, ensuring even mixing before suction and foaming, resulting in more uniform foam and a larger foam volume. The elongated suction pipe 2212 draws in the stirred water-emulsion mixture near the stirring blades 212 and then sends it into the foam pump 221.
[0040] The pump body 2211 is also provided with a pump outlet 2213, which is connected to the water inlet 224 on the rear cover of the foam box 222 via a pipe 2214.
[0041] The battery inside the foaming component 20 provides power to the stirring structure 21 and the foamer structure 22, while the control motherboard 24 receives external input signals and controls the start and stop of the stirring structure and the foamer.
[0042] The outer shell 30 of the foaming component 20 is also provided with a control button 35 and a gear control component (not shown). The control button 35 and the gear control component are directly connected to the input signal of the control motherboard 24, and the control motherboard 24 controls the stirring structure 21 and the foaming structure 22.
[0043] The outer casing 30 includes a front cover 31 and a rear cover 32, which are fastened together to form the outer casing. The front cover 31 has a hole 33 corresponding to the foam extrusion port, while the rear cover 32 has a mounting hole 34 and a control button 35 and a gear control component embedded therein.
[0044] The fully automatic bath foam generator involved in this utility model is a device that integrates stirring blades for uniform mixing, a foam pump to pump the mixed liquid through a foaming box, and the pump body to deliver the liquid into the foaming box to efficiently form a large amount of foam for pet bathing. It saves bathing time and improves efficiency. It is small and lightweight, easy for one person to operate, has high foaming efficiency and is convenient and practical, bringing great convenience to users and improving the user experience.
[0045] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Although the present utility model has been disclosed above with reference to a preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can make some changes or modifications to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present utility model. Any simple modifications, equivalent changes, and modifications made to the above embodiments based on the present utility model without departing from the scope of the present utility model shall fall within the scope of the present utility model.
Claims
1. A fully automatic shower foam generator, comprising a water storage box, a foaming component, a housing and a top cover for the foaming component, wherein the foaming component is disposed within the housing and the top cover and mounted on the water storage box, characterized in that, The foaming component includes a stirring structure, a foamer structure, a battery, and a control mainboard. The foaming component is assembled into an internal support. The stirring structure is located below the internal support, while the foamer structure, battery, and control mainboard are located within the internal support. The foamer structure includes a foam pump and a foaming box. The outlet of the foam pump is connected to the foaming box to pump and stir the water-emulsion mixture for foaming. The foaming box has a foam extrusion port, which extends to the outside of the outer shell through a hole in the outer shell.
2. The fully automatic bath foam generator according to claim 1, characterized in that, The foam box includes a front cover, a rear cover, and built-in foam. The front cover has a foam extrusion port, and the rear cover has a water inlet. Built-in foam is sandwiched in the middle of the box formed by the front and rear covers.
3. The fully automatic bath foam generator according to claim 2, characterized in that, The stirring structure includes a stirring motor and stirring blades. The stirring blades are located at the bottom of the internal support. After assembly, the stirring blades extend into the center / near the bottom of the water storage box. The stirring motor is directly connected to the stirring blades.
4. The fully automatic bath foam generator according to claim 3, characterized in that, The foam pump includes a pump body and an elongated suction pipe, the suction end of which extends into the water storage box near the stirring blades.
5. The fully automatic bath foam generator according to claim 4, characterized in that, The pump body is also provided with a pump outlet, which is connected to the water inlet on the back cover of the foaming box via a pipe.
6. The fully automatic bath foam generator according to claim 1, characterized in that, The battery inside the foaming component provides power to the stirring structure and the foamer structure, while the control motherboard receives external input signals to control the start and stop of the stirring structure and the foamer.
7. The fully automatic bath foam generator according to claim 6, characterized in that, The outer shell of the foaming component is also equipped with control buttons and gear control components. The control buttons and gear control components are directly connected to the input signals of the control motherboard, which controls the stirring structure and the foaming structure.
8. The fully automatic bath foam generator according to claim 7, characterized in that, The housing includes a front cover and a rear cover, which are fastened together to form the housing. The front cover has a hole corresponding to the foam extrusion port, while the rear cover has a mounting hole and a control button and gear control component embedded therein.
Citation Information
Patent Citations
Electric pet bubbler
CN222777250U