Inner and outer cavity composite oscillation disinfection cleaning machine
By designing a composite oscillation disinfection cleaning machine in the inner and outer cavity, electrolytic and oscillating water mixing to form a water-gas mixture of active hydroxyl ion gas, synchronous cleaning and sterilization of different types of cleaning items is achieved, and the problems of single functions and large volume of existing cleaning machines are solved.
Patent Information
- Application Number
- CN202421116425.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-17
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-05-17
AI Technical Summary
The existing washing machines, vegetable washing machines and fruit and vegetable machines have problems such as large size, single function, and inability to clean and sterilize synchronously. They lack a lightweight and portable composite function cleaning machine, which can flexibly face different types of cleaning items.
A composite oscillation disinfection cleaning machine for internal and external cavity is designed, and an internal and external water chamber is formed by combining internal oscillation motor, motor case, electrolytic chip set and control circuit. The mixture of electrolytic and oscillation water is used to form a water-gas mixture containing active hydroxyl ion gas, and cleaning and disinfection is achieved through composite oscillation and gas-liquid mixed erosion.
It realizes synchronous cleaning and sterilization of different types of cleaned items, quickly peel off attached dirt and bacteria, is lightweight, portable and flexible, and is suitable for different containers and cleaning items.
Smart Images

Figure CN222955707U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to an inner and outer cavity composite oscillating disinfection and cleaning machine. Specifically, an inner oscillating motor and a motor shell, a light strip, an electrolytic sheet group arranged beside the motor shell, and a connecting control circuit and a control wire are used, which are specially arranged in an outer shell assembly, so that the empty space inside the outer shell assembly except for the built-in components forms an inner water cavity, and the outer shell is provided with an upper and lower hole groove structure that allows water and air of the inner and outer water cavities to enter and exit; an outer water cavity is formed between the outer wall of the outer shell assembly and the inner wall of a cleaning container when in use; after draining water and turning on electricity, the water in the inner water cavity is electrolyzed and mixed with the oscillating water of the inner water cavity to form a disinfecting and sterilizing water-gas mixture containing a large amount of active hydroxyl ion gas Then it is flushed into the outer water cavity through the upper and lower drainage holes. At the same time, the different frequency oscillation water in the outer water cavity driven by the outer shell combination drives the water body of the entire inner and outer water cavities and the cleaned objects to form a strong composite oscillation and gas-liquid mixed flushing, thereby realizing the composite cleaning function of simultaneously oscillating and disinfecting the cleaned and disinfected objects immersed in the outer water cavity through the composite structure of the inner and outer cavities. In addition, the possible attachments on the suspended electrolytic sheets are automatically and continuously removed through the synchronous flow of water and gas in the inner water cavity. It can meet the cleaning requirements of various types of cleaned objects, different containers, and various cleaned objects in environments where washing liquid is allowed and washing liquid is not allowed. It belongs to the technical field of cleaning machines. Background Art
[0002] In the past, all kinds of washing machines of different sizes, represented by impeller or drum washing machines, all had a container with a fixed outer shell that enclosed a cleaning chamber. The clothes to be washed were placed in the cleaning chamber in the inner cavity of the washing machine, and the clothes were repeatedly rubbed by the forward and reverse rotation of the impeller or drum to achieve the purpose of cleaning; vegetable washing machines represented by electrolyzed water and water circulation also had a container with a fixed outer shell. The vegetables to be washed were placed in the cleaning chamber of the vegetable washing machine, and the water was pumped through the electrolytic sheets and flowed to the washed vegetables to achieve the purpose of disinfection and cleaning; portable fruit and vegetable machines represented by electrolyzed water sterilization rely on electrolyzed water to electrolyze active hydroxyl ion gas to achieve disinfection and sterilization, but because the water hardly flows or relies on a small pump or a small impeller to drive the water near the impeller to flow slightly, it is impossible to achieve synchronous cleaning and removal of dirt on the washed items, and the sterilization effect also decreases as the washed items are farther away from the electrolytic sheets, making it difficult for the gas and water to pass through. Such structures include, for example, “a particle transition generator” recorded in Chinese utility model patent No. CN202121661161.7, and “a fruit and vegetable cleaning machine with high cleaning efficiency” recorded in Chinese utility model patent No. CN202322664653.7.
[0003] However, the existing washing machines, vegetable washers, and fruit and vegetable washers have the following problems: the washing machines and vegetable washers are large in size, have many components, and are costly, and require a special installation and storage space; large machines are wasteful in washing small items or are not suitable for washing together; small machines often have insufficient washing capacity and basically have only a single washing function; and fruit and vegetable washers can only sterilize and remove pesticide residues. There is a lack of an integrated washing machine on the market that is both lightweight and portable and can simultaneously sterilize and remove pesticide residues while washing; the washing machine is not restricted by the shape and size of the container; the washing machine is small in size, easy to carry and place, and can flexibly handle different types of items such as washing clothes, washing vegetables, washing fruits, washing meat, and washing shoes, which previously required different types of washing machines to complete; and the washing machine that requires simultaneous cleaning and sterilization can also be used.
[0004] Therefore, existing cleaning machine technology still needs to be improved and developed. Utility Model Content
[0005] The purpose of the present utility model is to overcome the deficiencies existing in the prior art and provide an internal and external cavity composite oscillation disinfection and cleaning machine. The internal oscillation motor, the motor housing, the light strip, the electrolytic sheet group arranged beside the motor housing, the connection control circuit, and the control wires are arranged inside the upper and lower housing combinations. The internal oscillation motor is enclosed and sealed by the motor housing and then fixed on the lower bottom shell. The electrolytic sheet group is installed and fixed on the positive and negative electrolytic sheet grooves of the lower bottom shell in a suspended vertical manner on the left and right sides, so that the empty space inside the housing combination except for the built-in components forms an internal water cavity. The upper and lower hole groove structures for the water and gas to enter and exit the internal and external water cavities are arranged on the housing. An external water cavity is formed between the outer wall of the housing combination and the inner wall of the cleaning container during use. After draining water and energizing, the water in the internal water cavity is electrolyzed and mixed with the oscillating water in the internal water cavity to form a disinfection and sterilization water and gas mixture containing a large amount of active hydroxyl ion gas, which is then flushed into the external water cavity through the upper and lower drainage air holes. At the same time, the water body of the entire internal and external water cavities is driven by the oscillating water with different frequencies driven by the housing combination to form a strong composite oscillation and gas-liquid mixing scour with the object to be cleaned, so as to realize the composite cleaning function of simultaneously oscillating and disinfecting the objects to be cleaned and disinfected immersed in the external water cavity by using the internal and external cavity composite structure. Because the shapes, capacities, and reflection distances of the internal and external water cavities are different, the internal oscillation motor actually drives the water in the internal and external double water cavities to generate oscillations with different frequencies. The high-frequency oscillating water in the external water cavity and the mixed water containing active hydroxyl ion gas flushed out from the internal water cavity are mixed to form a high-frequency water and gas mixture. The high-frequency water and gas mixture with continuously changing frequencies after the superposition of two high-frequency waters oscillates continuously around the object to be cleaned in the entire external water cavity. The high-frequency oscillation impact of the gas-containing water flow and the bursting and escaping of the sterilizing bubbles contained on the surface of the object enable the entire internal and external surfaces of the object to be cleaned to be continuously impacted, so as to realize the rapid peeling of the attached dirt, bacteria, and agricultural residues and the sterilization and removal of agricultural residues. Thus, the composite cleaning purpose of cleaning, disinfecting, and sterilizing and removing agricultural residues is synchronously achieved with a very simplified composite combination structure, and it can also flexibly face the use scenarios of different containers and different types of objects to be cleaned and achieve lightness and portability.
[0006] In order to prevent the sundries washed out from blocking between the positive and negative electrolytic sheets arranged vertically up and down, with large electrolytic planes facing each other and small spacing in parallel, affecting the electrolysis effect, the multiple positive and negative electrolytic sheets arranged vertically face to face in the internal water cavity are designed as a suspended vertical structure with gaps between the upper and lower end faces and the upper and lower inner walls of the housing. Each sheet is fixed only by the positive and negative electrolytic sheet grooves on the lower shell at the left and right lower side faces, and the upper and lower hole groove structures for the water and gas to enter and exit the internal and external water cavities are arranged near the suspended upper and lower gaps of each group of electrolytic sheets, so as to realize the synchronous automatic flushing and vibration loosening functions of the sundries on the surface of the electrolytic sheets during the working process by the electrolytic gas and the high-speed gas-containing water flow exchanged between the internal and external water cavities, thus realizing the function of avoiding manual disassembly and flushing.
[0007] To achieve such a purpose, the structure of the internal and external cavity composite oscillation disinfection and cleaning machine adopts the following technical solution:
[0008] An internal and external cavity composite oscillation disinfection and cleaning machine. The outer shape of the cleaning machine housing can be designed into different shapes according to the needs of industrial design. However, the housing is composed of an injection-molded basic structure with upper and lower half-shells. After the lower half-shell and the upper half-shell are installed and combined, they enclose all components of the cleaning machine except for the control wires. A single internal oscillation motor is assembled in a sealed motor housing and is only connected to the circuit through 2 sealed power supply connection wires to form a motor housing assembly. The lower half-shell is manufactured with an installation structure for the motor housing assembly, and the motor housing assembly is installed at the corresponding position on the lower half-shell through fasteners; the installation structures for the electrolytic sheet group, connection control circuit, and control wires are arranged on the lower half-shell at peripheral positions that do not interfere with each other's installation structures. The light strip can be installed on the lower half-shell or on the motor housing. The installation structure of each electrolytic sheet group is 2 positive and negative electrolytic sheet grooves directly injection-molded on the lower half-shell and fixed at the left and right positions where the electrolytic sheets are vertically arranged. Each groove has many isolation blocks that can respectively hold the positive and negative electrodes of the electrolytic sheets. The 2 grooves are respectively responsible for inserting the positive and negative electrolytic sheets downward through the isolation blocks according to the designed gap, with the positive connection end on one side of the groove and the negative connection end on the other side of the groove. The positive and negative connection ends are each in one groove, and the electrolytic sheets are inserted and installed with only the left and right side surfaces fixed. At the same time, each groove is respectively designed to connect all the positive or negative electrolytic sheets on this side through wires and can be coated with glue to seal the wires and evenly fix the electrolytic sheets at intervals. The bottoms of the positive and negative electrolytic sheets are stuck at half the height of the groove, with a height difference from the bottom where the groove meets the lower half-shell. Multiple through holes or grooves communicating with the outside of the lower half-shell are opened at the bottom of the connection between the groove and the lower half-shell at positions where the installation of the electrolytic sheets does not interfere. There is also a structure on the lower half-shell for the control wires to enter and be connected and fixed to the circuit. All heavier items are arranged on the lower half-shell, and the inner water cavity volume is mainly arranged on the upper half-shell, so that the lower half-shell is heavier and the upper half-shell is lighter, thus achieving that the upper half-shell faces upward after falling into the water. The upper half-shell is mainly fixed to the lower half-shell to form a fixed enclosure for all components of the cleaning machine except for the exposed part of the control wires, forming a complete contour-shaped housing assembly. The upper half-shell has multiple small hole combinations for water and air to enter and exit near the upper part of the electrolytic sheet group and maintains a gap that does not affect the flow of water and air with the top of the electrolytic sheet.
[0009] This patent can also be designed as a fully enclosed structure without control wires, and the improvement of wireless operation is achieved by adding a sealed battery box with a battery and a switch in the lower half-shell. Description of the Drawings
[0010] The present utility model has the following drawings:
[0011] Figure 1 It is a three-dimensional external view of the present utility model
[0012] Figure 2 is Figure 1 A top view schematic diagram after removing the upper half-shell 2
[0013] Figure 3 is Figure 1 Schematic diagram of the vertical sectional structure of the internal oscillation motor 15 along the axis
[0014] Figure 4 is Figure 1 Schematic diagram of the article 23 to be cleaned placed in the cleaning container 22
[0015] In the figure: 1 - cleaning machine combination, 2 - upper half shell, 3 - lower half shell, 4 - control wire, 5 - motor housing combination, 6 - wire - attached light strip, 7 - positive electrolytic sheet, 8 - negative electrolytic sheet, 9 - positive electrolytic sheet groove, 10 - negative electrolytic sheet groove, 11 - water - gas inlet / outlet of the lower half shell, 12 - water - gas inlet / outlet of the upper half shell, 13 - positive connection wire, 14 - negative connection wire, 15 - internal oscillation motor, 16 - motor housing base, 17 - motor housing cover, 18 - motor positive wire, 19 - motor negative wire, 20 - internal water cavity, 21 - external water cavity, 22 - cleaning container, 23 - article to be cleaned, 24 - fastening screw. Specific implementation mode
[0016] The following describes the specific implementation scheme of the present utility model with reference to the attached drawings: As shown in the attached Figure 1 to the attached Figure 4 figure, an internal - external cavity composite oscillation disinfection and cleaning machine includes components and combinations such as a cleaning machine combination 1, an upper half shell 2, a lower half shell 3, a control wire 4, a motor housing combination 5, a wire - attached light strip 6, a positive electrolytic sheet 7, a negative electrolytic sheet 8, a positive electrolytic sheet groove 9, a negative electrolytic sheet groove 10, a water - gas inlet / outlet of the lower half shell 11, a water - gas inlet / outlet of the upper half shell 12, a positive connection wire 13, a negative connection wire 14, an internal oscillation motor 15, a motor housing base 16, a motor housing cover 17, a motor positive wire 18, a motor negative wire 19, and a fastening screw 24; After the internal oscillation motor 15 with the motor positive wire 18 and the motor negative wire 19 is enclosed and sealed - welded by the motor housing base 16 and the motor housing cover 17 and the sealing and fixing of the outlet holes of the internal oscillation motor 15, the motor positive wire 18, and the motor negative wire 19 on the motor housing cover 17 are realized, the wire - attached light strip 6 is pasted on the motor housing cover 17 and then combined into the motor housing combination 5, and then the motor housing combination 5 is installed on the lower half shell 3 by the fastening screw 24. There is also a control wire 4 with a pre - injection - molded installation buckle structure and pre - installed on the lower half shell 3;
[0017] There are also two groups of positive electrode electrolyte sheet grooves 9 and negative electrode electrolyte sheet grooves 10 directly injection-molded on the lower half shell 3 beside the installation position of the motor housing assembly 5 for installing all the electrolyte sheets. The two groups of grooves are respectively responsible for connecting the positive electrode electrolyte sheet 7 or the negative electrode electrolyte sheet 8 through the integrated isolation blocks on the grooves at the designed gap. The connection end of the positive electrode electrolyte sheet 7 is in the positive electrode electrolyte sheet groove 9, and the connection end of the negative electrode electrolyte sheet 8 is in the negative electrode electrolyte sheet groove 10. The positive and negative connection ends are respectively in the corresponding positive and negative electrode electrolyte sheet grooves, so that the electrolyte sheets are inserted downward into the positive and negative electrode electrolyte sheet grooves for installation and only the left and right side surfaces are fixed by the electrolyte sheet grooves. At the same time, each positive and negative electrode electrolyte sheet groove is designed to connect all the positive electrode electrolyte sheets 7 on this side through the positive electrode connecting wire 13 and all the negative electrode electrolyte sheets 8 through the negative electrode connecting wire 14, and can be sealed with glue. The wires are evenly spaced and parallel to fix the left and right bottom edges of all the electrolyte sheets. The bottoms of all the positive and negative electrode electrolyte sheets are stuck at the half-height position of the electrolyte sheet groove, and there is a height difference from the lowest end where the groove meets the lower half shell. At the bottom of the connection between all the electrolyte sheet grooves and the lower half shell 3, at a position where there is no interference with the installation of the electrolyte sheets, there are multiple lower half shell water and gas inlets and outlets 11 communicating with the outside of the lower half shell 3. There is also a structure on the lower half shell 3 for the control wire 4 to enter and be connected and fixed to the circuit. All the internal components are arranged on the lower half shell 3, and the volume of the internal water cavity 20 is mainly arranged in the position of the upper half shell 2, so as to achieve that the lower half shell 3 is heavier and the upper half shell 2 is lighter. Thus, after falling into the water, the upper half shell 2 faces upward. The upper half shell 2 is mainly installed and fixed with the lower half shell 3 to form a fixed package for all the components of the cleaning machine except the exposed part of the control wire 4, forming a complete contour shape of the cleaning machine assembly 1. The upper half shell 2 has multiple upper half shell water and gas inlets and outlets 12 for water and gas to enter and exit near the top of all the positive electrode electrolyte sheets 7 or negative electrode electrolyte sheets 8, and there is a gap that does not affect the flow of water and gas between the inlets and outlets and the top of the electrolyte sheets.
[0018] When the cleaning machine combination 1 is in use, after the cleaning machine combination 1 and the item to be cleaned 23 are placed in the cleaning container 22 and water is added to submerge the item to be cleaned 23, an outer water chamber 21 is formed between the outer shell of the cleaning machine combination 1 and the inner wall of the cleaning container 22. By controlling the power cord 4 to turn on the cleaning machine combination 1, the cleaning work begins. All the positive electrolysis plates 7 and negative electrolysis plates 8 electrolyze the water in the inner water chamber 20 to discharge a large amount of gas containing active hydroxyl ions. The motor housing assembly 5 with the inner oscillation motor 15 in the single oscillation generator first drives the water in the inner water chamber 20 to oscillate and mix with the gas containing active hydroxyl ions to form a high-frequency water-gas mixture, which rushes into the outer water chamber 21 through the lower half shell water-gas inlet and outlet 11 and the upper half shell water-gas inlet and outlet 12; the water in the outer water chamber 21 is driven by the motor housing assembly 5 with the inner oscillation motor 15 fixed on the lower half shell 3 to drive the cleaning machine combination 1 and then drive the water in the outer water chamber 21 to generate high-frequency oscillation; because the shapes, water capacities, and reflection distances of the inner water chamber 20 and the outer water chamber 21 are different, the inner oscillation motor 15 actually drives the water in the double water chambers of the inner water chamber 20 and the outer water chamber 21 to oscillate at different frequencies. The high-frequency oscillating water in the outer water chamber 21 and the water mixed with the gas containing active hydroxyl ions flushed out from the inner water chamber 20 are mixed to form a high-frequency water-gas mixture, generating a high-frequency water-gas mixture with continuously changing frequencies after the superposition of two high frequencies, which continuously oscillates around the item to be cleaned 23 in the entire outer water chamber 21. The high-frequency oscillation impact of the gas-containing water flow and the bursting and escaping of the contained sterilizing bubbles on the surface of the item to be cleaned 23 cause the entire inner and outer surfaces of the item to be cleaned 23 to be continuously impacted, thereby realizing the rapid peeling of the attached dirt, bacteria, and pesticide residues and the sterilization and removal of pesticide residues. Thus, a very simplified and low-cost composite combination structure synchronously achieves the composite cleaning purpose of cleaning, disinfection, sterilization, and removal of pesticide residues, and can also flexibly face the usage scenarios of different containers and different types of items to be cleaned, achieving the advantages of being lightweight, portable, and low-cost. When the double water chambers of the inner water chamber 20 and the outer water chamber 21 are specially arranged near the lower half shell water-gas inlet and outlet 11 and the upper half shell water-gas inlet and outlet 12 at the suspended upper and lower gaps of each group of electrolysis plates, during the inflow and outflow of the gas-containing water flow, it can also realize the synchronous automatic flushing and vibration loosening functions of the debris on the surfaces of all the positive electrolysis plates 7 and negative electrolysis plates 8 during the working process, thereby realizing the cleaning without manual opening of the cover, greatly reducing the daily usage requirements of the cleaning machine combination 1.
[0019] The above are only the preferred embodiments of the present invention. Therefore, any equivalent changes or modifications made according to the structures, features, and principles described in the scope of the present invention application, such as canceling the control wire 4 and adding a built-in battery and a switch, increasing or decreasing the electrolysis plate group, and adjusting and changing the layout positions of the various components relative to each other, are all included in the scope of the present invention application.
Claims
1. An internal and external cavity composite oscillating disinfection and cleaning machine, characterized by: The inner oscillation motor and the motor shell, the light strip, the electrolytic sheet group arranged beside the motor shell, the connecting control circuit and the control wire are arranged in the upper and lower shell combinations. The inner oscillation motor is enclosed and sealed by the motor shell and fixed on the lower bottom shell. The electrolytic sheet group is installed and fixed on the positive and negative electrolytic sheet slots of the lower bottom shell in a suspended vertical manner on the left and right sides, so that the empty space inside the shell combination except the built-in components forms an inner water cavity. The shell is arranged with an upper and lower hole groove structure that allows water and air to enter and exit the inner and outer water cavities; through the outer wall of the shell combination and the inner wall of the cleaning container, An outer water chamber is formed when in use; after the water is discharged and the power is turned on, the water in the inner water chamber is electrolyzed and mixed with the inner water chamber oscillating water to form a disinfecting and sterilizing water-gas mixture containing a large amount of active hydroxyl ion gas, which is then flushed into the outer water chamber through the upper and lower drainage holes. At the same time, the outer water chamber is driven by the outer shell combination to oscillate the water in the entire inner and outer water chambers and the objects to be cleaned to form a strong composite oscillation and gas-liquid mixed flushing, thereby realizing the composite cleaning function of combining oscillation and disinfection of the cleaned and disinfected objects immersed in the outer water chamber using the composite structure of the inner and outer chambers.
2. According to claim 1, the internal and external cavity composite oscillating disinfection and cleaning machine is characterized in that: The multiple positive and negative electrolyte sheets arranged vertically face to face in the water cavity are designed as a suspended vertical structure with gaps between the upper and lower end faces and the upper and lower inner walls of the shell. Only the left and right lower sides of each sheet are fixed by the positive and negative electrode electrolyte sheet slots on the lower shell, and the upper and lower hole groove structures for the entry and exit of water and gas in the inner and outer water cavities are arranged near the suspended upper and lower gaps of each group of electrolyte sheets, so that the electrolytic gas in work and the high-speed gas-containing water flow exchanged between the inner and outer water cavities can realize the synchronous automatic flushing and vibration loosening function of the debris on the surface of the electrolyte sheet during the working process, thereby realizing the flushing without manual cover removal.
Citation Information
Patent Citations
Particle transition generator
CN215587336U
Fruit and vegetable cleaning machine with high cleaning efficiency
CN220777337U