A water system for a cleaning device
By integrating cleaning and disinfection modules into the cleaning device and combining multiple cleaning methods, the problems of large footprint and cumbersome operation of traditional cleaning devices are solved, achieving fully automatic and efficient cleaning and disinfection, saving resources and energy.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 刘三松
- Filing Date
- 2025-05-14
- Publication Date
- 2026-05-26
AI Technical Summary
Traditional cleaning equipment requires multiple compartments to complete cleaning, rinsing, and disinfection processes separately, which increases the equipment footprint and the complexity of transferring items, affecting work efficiency and ease of operation.
Design a water system for a cleaning device that integrates a cleaning module and a disinfection module in a single compartment. The cleaning module performs cleaning, and the disinfection module performs disinfection. Combining multiple cleaning methods such as spraying, water return, heating, magnetization, electrolysis, ultrasound, steam, and ozone, fully automatic cleaning and disinfection can be achieved.
The cleaning and disinfection process can be completed in a single compartment, simplifying the operation process, improving efficiency, avoiding contamination during the transfer of goods, saving resources and energy, and improving the cleaning and disinfection effect.
Smart Images

Figure CN224272394U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of kitchen equipment technology, specifically a water system for a cleaning device. Background Technology
[0002] Traditional cleaning equipment designs often require multiple compartments to complete cleaning, rinsing, and disinfection processes separately. This compartmentalized design not only increases the equipment's footprint but also makes the transfer of items between different processes cumbersome, affecting work efficiency and ease of operation.
[0003] This utility model was proposed in response to the shortcomings of the existing technology. Utility Model Content
[0004] The existing cleaning device designs mentioned above often require multiple compartments to complete cleaning, rinsing, and disinfection processes separately. This compartmentalized design not only increases the equipment's footprint but also makes the transfer of items between different processes cumbersome, affecting work efficiency and ease of operation.
[0005] The technical solution adopted by this utility model to solve its technical problem is:
[0006] A water system for a cleaning device includes: a compartment, wherein a cleaning chamber is provided in the compartment, and a cleaning module capable of cleaning items in the cleaning chamber and a disinfection module capable of disinfecting items in the cleaning chamber are provided on the compartment.
[0007] The water system of the cleaning device described above includes a cleaning module comprising a water source connection module and a spray module connected thereto. The water source connection module can be connected to an external water source and can provide water to the spray module. The spray module is located on the chamber, and its output end is located inside the cleaning chamber, enabling it to spray water to clean the items inside the cleaning chamber.
[0008] As described above, the water system of a cleaning device includes a cleaning module that further comprises a water return mechanism and a water supply mechanism. A water outlet pipe is provided between the water return mechanism and the water supply mechanism. The water return mechanism can recover water from the cleaning chamber and guide the recovered water to the water supply mechanism through the water outlet pipe. A first water supply pipe is provided between the water supply mechanism and the chamber, and a second water supply pipe is provided between the water supply mechanism and the spray module. The water supply mechanism can guide the recovered water to the chamber through the first water supply pipe, and / or, the water supply mechanism can guide the recovered water to the spray module through the second water supply pipe.
[0009] In the water system of the cleaning device described above, a heating module capable of heating the water inside is installed on the water outlet pipe.
[0010] In the water system of the cleaning device described above, a magnetization module is provided between the water return mechanism and the water outlet pipe, and the magnetization module can magnetize the water output by the water return mechanism.
[0011] In the water system of the cleaning device described above, an electrolysis module is also provided on the chamber, which can react with the water in the cleaning chamber to produce electrolyzed water.
[0012] The water system of the cleaning device described above includes an ultrasonic module located at the bottom of the cleaning chamber.
[0013] The water system of the cleaning device described above includes a disinfection module that is connected to a water source module and a chamber, respectively. The steam disinfection module can atomize water into steam and then guide the steam into the cleaning chamber.
[0014] As described above, the water system of a cleaning device includes a steam sterilization module comprising a steam storage tank and a steam generator connected in sequence. The steam generator is connected to a chamber, and the steam storage tank is connected to a water source connection module. A return pipe is also provided between the steam storage tank and the chamber, allowing residual water in the steam storage tank to return to the chamber through the return pipe.
[0015] The water system of the cleaning device described above includes an ozone module disposed on the chamber and communicating with the cleaning chamber.
[0016] The beneficial effects of this utility model are:
[0017] This utility model discloses a water system for a cleaning device. By simultaneously installing a cleaning module and a disinfection module in the chamber, the cleaning module cleans the items in the cleaning chamber, and the disinfection module disinfects the cleaned items in the cleaning chamber. This design enables the cleaning and disinfection process to be completed in a single chamber, thereby simplifying the operation process, improving the efficiency of cleaning and disinfection, and preventing the items from being contaminated during transfer.
[0018] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the water system of this utility model;
[0020] Figure 2 One of the structural schematic diagrams of the fully automatic cleaning device used in the water system of this utility model;
[0021] Figure 3 The second schematic diagram of the fully automatic cleaning device used in the water system of this utility model;
[0022] Figure 4 The third schematic diagram of the fully automatic cleaning device used in the water system of this utility model;
[0023] Figure 5 The fourth schematic diagram of the fully automatic cleaning device used in the water system of this utility model;
[0024] Figure 6 Fifth schematic diagram of the structure of the fully automatic cleaning device used in the water system of this utility model;
[0025] Figure 7 for Figure 6 An enlarged view of the marked part A;
[0026] Figure 8 This is a schematic diagram of the magnetization module of this utility model assembled on the return water pump. Detailed Implementation
[0027] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings.
[0028] like Figures 1 to 8 As shown, the water system of a cleaning device in this embodiment includes: a chamber 1, a cleaning cavity is provided in the chamber 1, a cleaning module capable of cleaning items in the cleaning cavity and a disinfection module capable of disinfecting items in the cleaning cavity are provided on the chamber 1.
[0029] Specifically, by simultaneously installing a cleaning module and a disinfection module in compartment 1, the cleaning module cleans the items in the cleaning chamber, and the disinfection module disinfects the cleaned items in the cleaning chamber. This design enables the cleaning and disinfection process to be completed in a single compartment, thereby simplifying the operation process, improving the efficiency of cleaning and disinfection, and preventing items from being contaminated during transfer.
[0030] Preferably, the water system in this embodiment is applied to a fully automatic cleaning device. The chamber 1 is provided with an opening communicating with the cleaning chamber and a door 12 that can close the opening. Specifically, by simultaneously setting a cleaning module and a disinfection module on the chamber 1, during the cleaning process, it is only necessary to open the door 12, put the items into the cleaning chamber, and close the door 12. The working status and working parameters of the cleaning module and the disinfection module are controlled by the control module. The cleaning module cleans the items (such as fruits and vegetables, bowls and chopsticks, baby bottles, etc.) in the cleaning chamber, and the disinfection module disinfects the cleaned items in the cleaning chamber. With this design, the cleaning and disinfection process of items can be completed in a single chamber without human intervention, simplifying the operation process, realizing fully automatic cleaning, improving the efficiency of cleaning and disinfection, and avoiding the contamination of items during the transfer process.
[0031] like Figures 1 to 8 As shown, the cleaning module in this embodiment includes a water source connection module 2 and a spray module 3 connected thereto. The water source connection module 2 can be connected to an external water source and can provide water to the spray module 3. The spray module 3 is located on the chamber 1, and its output end is located inside the cleaning chamber, which can spray water to clean the items inside the cleaning chamber.
[0032] Specifically, the cleaning device is connected to an external water source through the water source connection module 2. Through this connection, the cleaning device can obtain a continuous water supply to meet the needs of the cleaning process.
[0033] The spray module 3, which is connected to the water source connection module 2, is located above the chamber 1. Its output end is directly aimed at the inside of the cleaning chamber. The design of the spray module 3 enables it to spray water evenly onto the items in the cleaning chamber with appropriate pressure and distribution, thereby achieving comprehensive cleaning of the items. The spray module can adjust the spray intensity, mode and time according to different cleaning programs to achieve the best cleaning effect.
[0034] Preferably, the spray assembly 3 in this embodiment includes a rotating spray arm 31, and the water source connection assembly 2 includes a water source connection plug 21 and a first water source delivery pump 22. The water source connection plug 21 is connected to a water source through a pipe, and the first water source delivery pump 22 is connected to the rotating spray arm 31 through a pipe. The first water source delivery pump 22 draws water from the water source and then pumps it to the rotating spray arm 31. Under the influence of the water, the rotating spray arm 31 rotates and sprays water in the cleaning chamber to clean the items in the cleaning chamber.
[0035] In other embodiments, the rotating spray arm can also be driven to rotate by a drive device to achieve rotating spraying of water, and a suitable method can be selected according to actual needs.
[0036] Furthermore, the water sprayed by the rotating spray arm can accumulate a certain amount of water in the cleaning chamber, which can submerge the items and / or make the items float on the water surface. At this time, the water sprayed by the rotating spray arm can also agitate the water in the cleaning chamber, thereby further improving the cleaning effect of the cleaning device.
[0037] like Figures 1 to 8 As shown, the cleaning module in this embodiment also includes a water return mechanism 4 and a water supply mechanism 5. A water outlet pipe 41 is provided between the water return mechanism 4 and the water supply mechanism 5. The water return mechanism 4 can recover the water in the cleaning chamber and guide the recovered water to the water supply mechanism 5 through the water outlet pipe 41. A first water supply pipe 51 is provided between the water supply mechanism 5 and the chamber 1. A second water supply pipe 52 is provided between the water supply mechanism 5 and the spray module 3. The water supply mechanism 5 can guide the recovered water to the chamber 1 through the first water supply pipe 51, and / or, the water supply mechanism 5 can guide the recovered water to the spray module 3 through the second water supply pipe 52.
[0038] Specifically, the water return mechanism 4 is responsible for recycling the water used in the cleaning chamber. The water return mechanism 4 collects this water through the water outlet pipe 41 for reprocessing. Then, the water supply mechanism 5 receives the recycled water from the water return mechanism 4 and reintroduces the treated water into the cleaning system through the first water supply pipe 51 and / or the second water supply pipe 52.
[0039] Specifically, when the water volume in the cleaning chamber reaches a certain level, the water source connection module 2 (i.e., the first water source delivery pump mentioned above) stops working. At this time, the water supply mechanism 5 guides the recovered water to the chamber 1 through the first water supply pipe 51. The water sprayed out by the first water supply pipe 51 can further agitate the water in the cleaning chamber, improve the agitation effect, and further improve the rinsing effect of the water on the items, thereby improving the cleaning effect of the cleaning device.
[0040] Furthermore, the water supply unit 5 can also guide the recovered water to the spray module 3 through the second water supply pipe 52, which indicates that the recovered water can be reused for direct spraying and cleaning of items, thereby reducing water consumption and improving water utilization.
[0041] In other embodiments, the water supply mechanism 5 can deliver water to the cleaning chamber through the first water supply pipe 51 to agitate the water, or it can deliver water to the spray module 3 through the second water supply pipe 52 for direct spraying and cleaning of items. The first water supply pipe 51 and the second water supply pipe 52 can be set in one of them or both at the same time. Users can choose the appropriate process according to their actual needs.
[0042] Preferably, in this embodiment, the return water mechanism 4 and the supply water mechanism 5 are pump bodies, which have the advantages of simple structure and convenient operation.
[0043] like Figures 1 to 5 As shown, the water return mechanism 4 in this embodiment includes a water return housing 45 and a water return pump 44. The water return housing 45 is located on the outer side of the bottom of the chamber 1. The top of the water return housing 45 has a water inlet opening. The plane of the water inlet opening is lower than the plane of the bottom of the chamber 1, or the plane of the water inlet opening is flush with the plane of the bottom of the chamber 1. With this design, even if the water level in the washing chamber 11 is low, it can be ensured that the water in the washing chamber flows into the water return housing 4 for recycling, thus ensuring the water recycling effect.
[0044] Preferably, the inlet end 441 of the return water pump 44 is connected to the return water housing 45, and the outlet end 442 of the return water pump 44 is connected to the outlet pipe 41. The return water pump 44 can quickly transport the water in the return water housing 45 to the outlet pipe 41.
[0045] Preferably, the water supply mechanism 5 is a reversing valve, and there are two first water supply pipes 51, which are respectively located on both sides of the chamber 1. By supplying water to the cleaning chamber from both sides of the chamber 1, the effect of agitating the water is further improved.
[0046] In some embodiments, the output ends of the two first water supply pipes 51 are set at the same height; preferably, in other embodiments, the output ends of the two first water supply pipes 51 are at different heights. With this design, the water in the cleaning chamber is submerged at the output end of the lower first water supply pipe 51, while the water output from the output end of the higher first water supply pipe 51 can still efficiently agitate the water in the cleaning chamber, ensuring the agitation effect. A suitable design can be selected according to actual needs.
[0047] like Figures 1 to 8 As shown, the water outlet pipe 41 in this embodiment is equipped with a heating module 42 that can heat the water inside.
[0048] This design allows the recycled water to be heated, and then the heated water is guided back into the cleaning chamber through the first water supply pipe 51 and / or the second water supply pipe 52. Heating the water can improve cleaning efficiency because warm water is more effective at removing grease and certain types of dirt. When the heated water is sprayed or recycled, it can better decompose and remove stains from items.
[0049] By using recycled water and heating it, the demand for fresh water resources is reduced, and the thermal energy potential of recycled water is utilized, thereby reducing overall energy consumption. This practice not only saves water resources but also optimizes energy use, embodying the concepts of environmental protection and sustainable development.
[0050] Furthermore, heating can be used as part of water quality management; appropriate temperatures can reduce the number of bacteria and microorganisms in the water, thereby improving the safety and cleanliness of recycled water.
[0051] like Figures 1 to 8 As shown, a magnetization module 43 is provided between the water return mechanism 4 and the water outlet pipe 41 in this embodiment. The magnetization module 43 can magnetize the water output by the water return mechanism 4. Preferably, the magnetization module 43 is located on the outside of the water outlet 442.
[0052] Specifically, magnetizing the recycled water can alter its physical properties, making the water molecules more ordered. This change helps improve the water's solubility and permeability, thereby enhancing the cleaning effect and allowing the water to more effectively combine with and remove dirt.
[0053] Furthermore, magnetizing water can reduce the deposition of minerals such as calcium and magnesium in the water, thereby effectively preventing the formation of scale. This is of great significance for maintaining the long-term operating efficiency of cleaning equipment and reducing maintenance costs.
[0054] Magnetization can improve the cleaning efficiency of water without using or with reduced use of chemical additives, thereby reducing the use of chemicals and environmental pollution.
[0055] Furthermore, the use of magnetized water can reduce wear and corrosion inside pipes and equipment because the deposition of minerals in magnetized water is reduced, thereby extending the service life of the equipment.
[0056] Preferably, the magnetization module 43 can be a magnet or electromagnet located at the output end of the water return mechanism 4 (i.e., on the water outlet 432), and a suitable magnetization module 43 can be selected according to actual needs.
[0057] like Figures 1 to 8 As shown, in this embodiment, the chamber 1 is also equipped with an electrolysis module 11, which can react with the water in the cleaning chamber to produce electrolyzed water.
[0058] Preferably, in this embodiment, the electrolysis module 11 converts ordinary water into electrolyzed water through an electrolysis reaction. During electrolysis, water molecules (H2O) decompose into hydroxide ions (OH-) and hydrogen ions (H+) under the action of electric current. This results in electrolyzed water having strong oxidizing and reducing properties, effectively removing organic and inorganic dirt. Electrolyzed water also has strong bactericidal and disinfecting capabilities, rapidly destroying the cell structure of bacteria, viruses, and other microorganisms. Furthermore, the strong oxidizing properties of electrolyzed water help decompose grease and organic pollutants, improving the cleaning effect.
[0059] Specifically, electrolyzed water cleaning is an environmentally friendly cleaning method because it does not require the use of chemical cleaning agents. Electrolyzed water naturally decomposes into water and oxygen after cleaning, causing no pollution to the environment. Furthermore, since it does not use chemicals, electrolyzed water cleaning is safer for both operators and the items being cleaned. Moreover, because it reduces the use of chemical cleaning agents, it lowers cleaning costs. In addition, the strong cleaning power of electrolyzed water means that cleaning time and water consumption can be reduced, further conserving resources.
[0060] In this embodiment, the electrolysis module 11 can be used in conjunction with the magnetization module 43. Specifically, the electrolysis module 11 first electrolyzes the water in the cleaning chamber into electrolyzed water, and then the electrolyzed water flows back to the outlet pipe 41 through the return water mechanism 4. The magnetization module 43 magnetizes the electrolyzed water to form magnetized electrolyzed water, so that the water has both disinfection and cleaning functions. Moreover, with this design, the water can be continuously magnetized and electrolyzed during the circulation process, making the concentration of magnetized electrolyzed water increasingly concentrated without reducing the cleaning and disinfection effect. Furthermore, it can further improve the magnetization effect of the magnetization module 43, thereby further improving the cleaning effect.
[0061] Preferably, in this embodiment, the magnetization module 43 is disposed on the output end of the water return mechanism 4 and / or on the water outlet pipe 41.
[0062] Preferably, in this embodiment, the electrolysis component 11 is disposed in the cleaning chamber and / or in the water return mechanism 4.
[0063] Specifically, in this embodiment, the electrolysis component 11 is located in the water return mechanism 4 or the cleaning chamber, and the magnetization module 43 is located at the output end of the water return mechanism 4 or on the water outlet pipe 41. The electrolysis component 11 first electrolyzes the water in the cleaning chamber or the water return mechanism 4 into electrolyzed water, and then the electrolyzed water flows back to the water outlet pipe 41 through the water return mechanism 4. The magnetization module 43 magnetizes the electrolyzed water to form magnetized electrolyzed water, so that the water has both disinfection and cleaning functions. Moreover, with this design, the water can be continuously magnetized and electrolyzed during the circulation process, so that the concentration of the magnetized electrolyzed water becomes more and more concentrated, without reducing the cleaning and disinfection effect, and can further improve the magnetization effect of the magnetization module 43, further improving the cleaning effect.
[0064] In other embodiments, the magnetization module 43 may be located in the chamber or the water return mechanism 4, while the electrolysis component 11 may be located at the output end of the water return mechanism 4 or on the water outlet pipe 41. The appropriate assembly position of the module can be selected according to the actual design.
[0065] In other embodiments, the cleaning device has only an electrolysis module 11 or a magnetization module 43, and cleans objects by electrolyzing water or magnetizing water. The appropriate cleaning method can be selected according to actual needs.
[0066] like Figures 1 to 8 As shown, the cleaning module of this embodiment includes an ultrasonic module 8 located at the bottom of the cleaning chamber. The ultrasonic module 8 generates high-frequency sound waves to produce tiny bubbles in the liquid. These bubbles form and burst rapidly (called cavitation), thereby generating a powerful cleaning force that can remove dirt and microorganisms from the surface of items and hard-to-reach crevices.
[0067] Ultrasonic cleaning can break down the cell walls of microorganisms, making them easier to be completely killed by subsequent disinfection processes (such as ozone disinfection).
[0068] Ultrasonic cleaning is fast and environmentally friendly, consumes relatively little energy, and does not require the use of chemical cleaning agents.
[0069] This design allows the cleaning device to have a variety of different cleaning methods, and the appropriate cleaning method can be selected according to actual needs.
[0070] like Figures 1 to 8 As shown, the disinfection module in this embodiment includes a steam disinfection module 6 that is connected to the water source connection module 2 and the chamber 1 respectively. The steam disinfection module 6 can atomize water into steam and then guide the steam into the cleaning chamber.
[0071] The steam disinfection module 6 uses specific technology to convert water into fine steam particles. This steam has the characteristics of high temperature and high humidity, which can quickly penetrate into every corner of the cleaning chamber to achieve comprehensive disinfection. The high-temperature steam can effectively kill bacteria, viruses, fungi and other microorganisms. Its disinfection effect far exceeds that of traditional water washing or chemical disinfection methods. The temperature of the steam is usually above 100°C, which is enough to destroy the cell structure of microorganisms and achieve the purpose of rapid disinfection.
[0072] Steam sterilization is an environmentally friendly method because it does not require the use of chemical disinfectants. The steam cools naturally into water after sterilization, leaving no harmful residues, making it more environmentally friendly and human health-friendly.
[0073] Steam sterilization typically requires only a small amount of water. Due to the high efficiency of steam, water consumption can be significantly reduced. In addition, because steam sterilization is fast, it can reduce sterilization time and energy consumption, thus achieving resource conservation.
[0074] Preferably, the steam sterilization module 6 in this embodiment includes a steam water storage tank 62 and a steam generator 63 connected in sequence. The steam generator 63 is connected to the chamber 1, and the steam water storage tank 62 is connected to the water source connection module 2. A return pipe 61 is also provided between the steam water storage tank 62 and the chamber 1, so that the residual water in the steam water storage tank 62 can return to the chamber 1 through the return pipe 61.
[0075] Specifically, the steam generator is connected to the cleaning chamber, and the water source connection module 2 also includes a second water source delivery pump 23. The second water source delivery pump 23 is connected to the steam storage tank through a pipeline. The second water source delivery pump 23 draws water from the water source and pumps it to the steam storage tank. The steam storage tank then guides the water to the steam generator. The steam generator then evaporates the water into steam and guides the steam into the cleaning chamber to achieve disinfection.
[0076] Specifically, through the return pipe 61, the excess water in the steam storage tank 62 can return to the chamber 1, so that the excess water in the steam storage tank 62 will not remain in the steam storage tank 62, avoiding the water from staying in the steam storage tank 62 for too long, which may cause bacteria or odors. Moreover, the excess water can be returned to the chamber in a timely manner, which helps to ensure the effective use of water resources and reduce waste.
[0077] Preferably, in this embodiment, a return pump 64 is provided on the return pipe 61. The return pump 64 can effectively push the excess water in the steam storage tank 62 back to the chamber 1 along the return pipe 61, ensuring that the excess water in the steam storage tank 62 can be returned to the chamber in a timely manner.
[0078] like Figures 1 to 8As shown, the disinfection module in this embodiment includes an ozone module 7 disposed on the chamber 1 and communicating with the cleaning chamber.
[0079] Specifically, ozone is a strong oxidant that can effectively kill bacteria, viruses and other microorganisms. By introducing ozone into the cleaning chamber, the thoroughness and efficiency of disinfection can be further improved, ensuring that the items being cleaned meet higher hygiene standards. Preferably, the ozone is specifically designed for disinfecting items such as bowls and chopsticks, and it also has the function of deodorizing. It can be used to deodorize items such as bowls and chopsticks, and it can also be used to deodorize and / or disinfect storage rooms that do not contain items.
[0080] Ozone has broad-spectrum bactericidal capabilities and can effectively disinfect various types of microorganisms, including those resistant to traditional disinfection methods.
[0081] During the disinfection process, ozone decomposes into oxygen, leaving no chemical residues and producing no harmful byproducts. Moreover, the decomposition of ozone into oxygen is harmless to the environment, which is especially important for items that require high hygiene standards, such as food processing equipment and medical devices.
[0082] Ozone disinfection reacts rapidly, completing the disinfection process in a short time and improving work efficiency.
[0083] This design allows the cleaning device to simultaneously perform ozone disinfection and steam disinfection, allowing users to choose the appropriate disinfection method based on their actual needs.
[0084] like Figures 1 to 8 As shown, the water system in this embodiment also includes a drainage mechanism 9 connected to the chamber. The drainage mechanism 9 is designed to quickly drain the water in the cleaning chamber, which helps to reduce residual water after cleaning and improve cleaning efficiency.
[0085] By promptly draining water, the drainage mechanism 9 can prevent water accumulation in the cleaning chamber, thus avoiding secondary pollution or equipment damage caused by water accumulation.
[0086] Furthermore, the drainage mechanism 9 may be designed with different drainage modes to adapt to different cleaning stages, such as discharging waste liquid after the cleaning agent is used, or discharging rinsing water during the rinsing stage.
[0087] Preferably, the cleaning device can be a dishwasher, fruit and vegetable washing machine, medical tool washing machine, or other similar equipment.
[0088] The above descriptions provide various implementation methods in conjunction with specific content, and do not imply that the specific implementation of this application is limited to these descriptions. Any methods or structures that are similar to or identical to those of this application, or any technical deductions or substitutions made based on the concept of this application, should be considered within the scope of protection of this application.
Claims
1. A water system for a cleaning device, characterized in that, include: The compartment (1) is provided with a cleaning chamber, and the compartment (1) is provided with a cleaning module that can clean the items in the cleaning chamber and a disinfection module that can disinfect the items in the cleaning chamber.
2. The water system of the cleaning device according to claim 1, characterized in that, The cleaning module includes a water source connection module (2) and a spray module (3) connected thereto. The water source connection module (2) can be connected to an external water source and can provide water to the spray module (3). The spray module (3) is located on the chamber (1) and its output end is located inside the cleaning chamber, and can spray water to clean the items inside the cleaning chamber.
3. The water system of the cleaning device according to claim 2, characterized in that, The cleaning module also includes a water return mechanism (4) and a water supply mechanism (5). A water outlet pipe (41) is provided between the water return mechanism (4) and the water supply mechanism (5). The water return mechanism (4) can recover the water in the cleaning chamber and guide the recovered water to the water supply mechanism (5) through the water outlet pipe (41). A first water supply pipe (51) is provided between the water supply mechanism (5) and the chamber (1). A second water supply pipe (52) is provided between the water supply mechanism (5) and the spray module (3). The water supply mechanism (5) can guide the recovered water to the chamber (1) through the first water supply pipe (51), and / or, the water supply mechanism (5) can guide the recovered water to the spray module (3) through the second water supply pipe (52).
4. The water system of the cleaning device according to claim 3, characterized in that, The water outlet pipe (41) is equipped with a heating module (42) that can heat the water inside.
5. The water system of a cleaning device according to any one of claims 3 or 4, characterized in that, A magnetization module (43) is provided between the water return mechanism (4) and the water outlet pipe (41), and the magnetization module (43) can magnetize the water output by the water return mechanism (4).
6. The water system of the cleaning device according to claim 5, characterized in that, An electrolysis module (11) is also provided on the chamber (1), which can react with the water in the cleaning chamber to produce electrolyzed water.
7. The water system of a cleaning apparatus according to any one of claims 1 to 4, characterized in that, The cleaning module includes an ultrasonic module (8) located at the bottom of the cleaning chamber.
8. The water system of a cleaning device according to claim 2, characterized in that, The disinfection module includes a steam disinfection module (6) that is connected to the water source connection module (2) and the chamber (1) respectively. The steam disinfection module (6) can atomize the water into steam and then guide the steam into the cleaning chamber.
9. The water system of a cleaning device according to claim 8, characterized in that, The steam sterilization module (6) includes a steam storage tank (62) and a steam generator (63) connected in sequence. The steam generator (63) is connected to the chamber (1), and the steam storage tank (62) is connected to the water source connection module (2). A return pipe (61) is also provided between the steam storage tank (62) and the chamber (1). The residual water in the steam storage tank (62) can return to the chamber (1) through the return pipe (61).
10. The water system of a cleaning apparatus according to any one of claims 1 or 8, characterized in that, The disinfection module includes an ozone module (7) installed on the chamber (1) and communicating with the cleaning chamber.