A cleaning machine

CN224748003UActive Publication Date: 2026-09-15NINGBO FOTILE KITCHEN WARE CO LTD
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Patent Information

Application Number
CN202421345481.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-13
Publication Date
2026-09-15
Estimated Expiration
2034-06-13

AI Technical Summary

Technical Problem

[0004]但是上述方案中,电解水模块外置,其作为一个独立于洗碗机本体的部件存在,占用空间大

Benefits of technology

[0045] Compared with the prior art, the advantages of this utility model are: by embedding the electrolyzed water preparation component in the installation space of the machine body, and using electrolyzed water to replace dishwashing powder, the electrolyzed water preparation function is integrated into the cleaning machine, which occupies little space.

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Abstract

The utility model discloses a kind of cleaning machines, including the machine body (1) with the cleaning cavity (111), it is characterized by: still including the electrolytic water preparation component (2) of electrolytic water supply to the cleaning cavity (111), the machine body (1) has the installation space (10) for the electrolytic water preparation component accommodation.Compared with prior art, the cleaning machine of the utility model integrates electrolytic water preparation function and occupies small space.
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Description

Technical Field

[0001] This utility model relates to the field of kitchen equipment technology, specifically to a cleaning machine. Background Technology

[0002] With the advancement of technology and the improvement of people's living standards, dishwashers have come into view. However, common dishwashing detergents such as dishwasher powder / tablets are made of a variety of chemical substances such as surfactants, oxidants, and enzymes. They may pose safety hazards if residues remain. In addition, users need to add dishwasher powder / tablets once for each wash, which is frequent and difficult to control the amount used. Solid powder residue is also easy to leave. Furthermore, purchasing and storing dishwasher powder / tablets is inconvenient.

[0003] To address this issue, the Chinese patent application CN202311345395.4, "Method for Controlling Electrolyzed Water in Dishwashers," uses an electrolysis module to electrolyze water to produce highly alkaline electrolyzed water (pH≥11). This water not only has a strong cleaning effect but also antibacterial properties, making it a substitute for dishwashing powder. Furthermore, the main component of alkaline electrolyzed water is water, which does not contain surfactants, oxidants, enzymes, or other chemical substances. It is simpler and safer than conventional dishwashing powder. By directly washing dishes after electrolyzing water, it solves the problems of users frequently adding detergent manually, difficulty in controlling the dosage, easy solid powder residue, and inconvenience in purchasing and storing detergent.

[0004] However, in the above solution, the water electrolysis module is externally mounted, existing as a component independent of the dishwasher body, which occupies a large space. Utility Model Content

[0005] The technical problem to be solved by this utility model is to provide a cleaning machine that integrates an electrolytic water preparation function and occupies little space, in light of the current state of the technology.

[0006] The technical solution adopted by this utility model to solve the above-mentioned technical problems is as follows: a cleaning machine, including a body with a cleaning chamber, characterized in that: it further includes an electrolyzed water preparation component for supplying electrolyzed water to the cleaning chamber, and the body has an installation space for accommodating the electrolyzed water preparation component.

[0007] To achieve the preparation and supply of electrolyzed water, the electrolyzed water preparation assembly includes:

[0008] An electrolytic cell has a cathode chamber and an anode chamber, each with a liquid inlet and a liquid outlet.

[0009] An electrolyte tank for storing electrolyte has an outlet and a return end. The outlet end of the electrolyte tank is connected to the inlet end of the anode chamber, and the outlet end of the anode chamber is connected to the return end of the electrolyte tank. A first delivery pump is installed on the pipeline between the outlet end of the electrolyte tank and the inlet end of the anode chamber.

[0010] An electrolytic water tank for storing electrolyzed water has a first outlet end, a return end, and a second outlet end. The first outlet end of the electrolytic water tank is connected to the inlet end of the cathode chamber, and the outlet end of the cathode chamber is connected to the return end of the electrolytic water tank. A second delivery pump is installed on the pipeline between the first outlet end of the electrolytic water tank and the inlet end of the cathode chamber.

[0011] The cleaning chamber has a liquid inlet end, and the second liquid outlet end of the electrolytic water tank is connected to the liquid inlet end of the cleaning chamber. An electrolytic water delivery pump is installed on the pipeline between the second liquid outlet end of the electrolytic water tank and the liquid inlet end of the cleaning chamber.

[0012] To reduce the impact of scale on electrolysis, both the electrolyte tank and the electrolytic water tank are equipped with water inlets.

[0013] The electrolytic water preparation assembly also includes:

[0014] The first water softening module is used to soften raw water into soft water; and

[0015] The first valve has an inlet end, a first outlet end, and a second outlet end. The soft water end of the first soft water module is connected to the inlet end of the first valve. The first outlet end of the first valve is connected to the inlet end of the electrolyte tank. The second outlet end of the first valve is connected to the inlet end of the electrolyzed water tank.

[0016] To reduce the impact of scale on cleaning, the cleaning chamber has a water inlet.

[0017] The electrolytic water preparation assembly also includes:

[0018] A second water softening module is used to soften the raw water into soft water, and the soft water end of the second water softening module is connected to the water inlet end of the cleaning chamber; and

[0019] The second valve has an inlet end, a first outlet end, and a second outlet end. The inlet end of the second valve is connected to an external tap water pipeline, the first outlet end of the second valve is connected to the raw water end of the first soft water module, and the second outlet end of the second valve is connected to the raw water end of the second soft water module.

[0020] In order to make convenient use of the existing space of the cleaning machine to place the various components of the electrolytic water preparation assembly, the machine body includes a box, which forms the cleaning chamber inside and has an opening on the front side.

[0021] A door is installed at the opening on the front side of the housing. The periphery of the door has a shoulder protruding from the housing. The area on the left and right sides of the housing directly behind this shoulder is designated as the first mounting cavity.

[0022] A base is supported at the bottom of the box body, and a second mounting cavity is formed between the base and the bottom wall of the box body. The second mounting cavity and the first mounting cavity together form the mounting space.

[0023] The components of the water electrolysis preparation assembly are installed in the first mounting cavity or the second mounting cavity.

[0024] In order to make reasonable arrangements of the components in the water electrolysis preparation assembly, the electrolytic cell, electrolyte tank, first soft water module, first valve, second soft water module and second valve are all located in the second mounting cavity and installed on the bottom wall of the box body;

[0025] The electrolytic water tank is located inside the first mounting cavity and is mounted on the side wall of the tank body.

[0026] To facilitate electrolyte replenishment, the top of the electrolyte tank has an electrolyte dispensing end that extends through the bottom wall of the tank into the cleaning chamber.

[0027] To facilitate waste liquid discharge, a sewage pipe is installed on the base for discharging wastewater from the cleaning chamber. The electrolyte tank has a waste liquid end, which is connected to the sewage pipe. A waste liquid transfer pump is installed on the pipeline between the waste liquid end of the electrolyte tank and the sewage pipe.

[0028] To facilitate exhaust gas discharge, both the electrolyte tank and the electrolytic water tank have exhaust ports on their tops.

[0029] To achieve the preparation and supply of electrolyzed water, the electrolyzed water preparation assembly includes:

[0030] An electrolytic cell has a cathode chamber and an anode chamber, the cathode chamber having an outlet and the anode chamber having an inlet; and

[0031] An electrolyte tank for storing electrolyte has an outlet end connected to the inlet end of the anode chamber. A first delivery pump is installed on the pipeline between the outlet end of the electrolyte tank and the inlet end of the anode chamber.

[0032] The cleaning chamber has a liquid inlet, the liquid outlet of the cathode chamber is connected to the liquid inlet of the cleaning chamber, and an electrolytic water delivery pump is installed on the pipeline between the liquid outlet of the cathode chamber and the liquid inlet of the cleaning chamber.

[0033] To reduce the impact of scale on cleaning and electrolysis, the cleaning chamber, cathode chamber and electrolyte tank are all equipped with water inlets.

[0034] The electrolytic water preparation assembly also includes:

[0035] The third water softening module is used to soften raw water into soft water. The raw water end of this third water softening module is connected to an external tap water pipeline.

[0036] The third valve has an inlet end, a first outlet end, a second outlet end, and a third outlet end. The soft water end of the third soft water module is connected to the inlet end of the third valve. The first outlet end of the third valve is connected to the inlet end of the cleaning chamber. The second outlet end of the third valve is connected to the inlet end of the cathode chamber. The third outlet end of the third valve is connected to the inlet end of the electrolyte tank.

[0037] In order to make convenient use of the existing space of the cleaning machine to place the various components of the electrolytic water preparation assembly, the machine body includes a box, which forms the cleaning chamber inside and has an opening on the front side.

[0038] A door is installed at the opening on the front side of the housing. The periphery of the door has a shoulder protruding from the housing. The area on the left and right sides of the housing directly behind this shoulder is designated as the first mounting cavity.

[0039] A base is supported at the bottom of the box body, and a second mounting cavity is formed between the base and the bottom wall of the box body. The second mounting cavity and the first mounting cavity together form the mounting space.

[0040] The components of the water electrolysis preparation assembly are installed in the first mounting cavity or the second mounting cavity.

[0041] In order to arrange the components in the water electrolysis preparation assembly in a reasonable manner, the electrolytic cell, electrolyte tank, third soft water module and third valve are all located in the second mounting cavity and installed on the bottom wall of the box.

[0042] To facilitate electrolyte replenishment, the top of the electrolyte tank has an electrolyte dispensing end that extends through the bottom wall of the tank into the cleaning chamber.

[0043] To facilitate wastewater discharge, a sewage pipe is installed on the base for discharging wastewater from the cleaning chamber. The anode chamber has a wastewater end, which is connected to the sewage pipe. A wastewater transfer pump is installed on the pipeline between the wastewater end of the anode chamber and the sewage pipe.

[0044] To facilitate exhaust gas discharge, both the cathode chamber and the anode chamber have exhaust ends at their tops.

[0045] Compared with the prior art, the advantages of this utility model are: by embedding the electrolyzed water preparation component in the installation space of the machine body, and using electrolyzed water to replace dishwashing powder, the electrolyzed water preparation function is integrated into the cleaning machine, which occupies little space. Attached Figure Description

[0046] Figure 1 This is a three-dimensional structural schematic diagram of Embodiment 1 of the cleaning machine of this utility model;

[0047] Figure 2 for Figure 1 A schematic diagram of the three-dimensional structure from another direction;

[0048] Figure 3 for Figure 1 A schematic diagram of the three-dimensional structure after omitting the door body;

[0049] Figure 4 This is a logic diagram of Embodiment 1 of the cleaning machine of this utility model;

[0050] Figure 5 This is a logic diagram of Embodiment 2 of the cleaning machine of this utility model. Detailed Implementation

[0051] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments.

[0052] In the specification and claims of this utility model, terms indicating direction, such as "front," "rear," "upper," "lower," "left," "right," "side," "top," and "bottom," are used to describe various exemplary structural parts and elements of this utility model. However, the use of these terms is merely for the purpose of explanation and is based on the exemplary orientations shown in the accompanying drawings. Since the embodiments disclosed in this utility model can be arranged in different orientations, these terms indicating direction are for illustrative purposes only and should not be regarded as limitations. For example, "upper" and "lower" are not necessarily limited to directions opposite to or consistent with the direction of gravity.

[0053] Example 1:

[0054] like Figures 1 to 4 The image shows a first preferred embodiment of the cleaning machine of this utility model. The cleaning machine includes an organic body 1 and an electrolytic water preparation component 2.

[0055] The main body 1 includes a box 11, a door 12, and a base 13.

[0056] Specifically, the interior of the housing 11 has a cleaning chamber 111 and an opening on the front side. The cleaning chamber 111 has a water inlet and a liquid inlet.

[0057] The door 12 is installed at the opening on the front side of the box 11. The periphery of the door 12 has a shoulder 121 protruding from the box 11. The area on the left and right sides of the box 11 located directly behind the shoulder 121 is referred to as the first mounting cavity 112.

[0058] The base 13 is supported on the bottom of the box 11. The base 13 and the bottom wall of the box 11 form a second mounting cavity 131. The second mounting cavity 131 and the first mounting cavity 112 together form the mounting space 10. A sewage pipe 132 for discharging sewage from the cleaning cavity 111 is installed on the base 13.

[0059] The electrolyzed water preparation assembly 2 is housed within the aforementioned installation space 10 and is used to supply electrolyzed water to the cleaning chamber 111. In this embodiment, the electrolyzed water preparation assembly 2 includes an electrolytic cell 21, an electrolyte tank 22, an electrolyzed water tank 23, a first soft water module 24, a first valve 25, a second soft water module 26, and a second valve 27. The electrolytic cell 21, electrolyte tank 22, first soft water module 24, first valve 25, second soft water module 26, and second valve 27 are all located within the second installation chamber 131 and are mounted on the bottom wall of the housing 11. The electrolyzed water tank 23 is located within the first installation chamber 112 and is mounted on the right side wall of the housing 11.

[0060] Specifically, the electrolytic cell 21 has a cathode chamber 211 and an anode chamber 212 inside. Both the cathode chamber 211 and the anode chamber 212 have a liquid inlet and a liquid outlet. The specific structure of the electrolytic cell can be found in the applicant's earlier Chinese patent application with patent number CN202321915040.X, entitled "An Electrolytic Cell", which will not be repeated here.

[0061] The electrolyte tank 22 is used to store electrolyte and has an inlet, an outlet, a return, and a waste liquid end. The outlet of the electrolyte tank 22 is connected to the inlet of the anode chamber 212, and the outlet of the anode chamber 212 is connected to the return of the electrolyte tank 22. A first transfer pump 221 is installed on the pipeline between the outlet of the electrolyte tank 22 and the inlet of the anode chamber 212. The waste liquid end of the electrolyte tank 22 is connected to the sewage pipe 132, and a waste liquid transfer pump 222 is installed on the pipeline between the waste liquid end of the electrolyte tank 22 and the sewage pipe 132. In addition, the top of the electrolyte tank 22 has an electrolyte dispensing end 220, which extends through the bottom wall of the tank body 11 into the cleaning chamber 111.

[0062] The electrolytic water tank 23 is used to store electrolyzed water and has an inlet end, a first outlet end, a return end, and a second outlet end. The first outlet end of the electrolytic water tank 23 is connected to the inlet end of the cathode chamber 211, and the outlet end of the cathode chamber 211 is connected to the return end of the electrolytic water tank 23. A second delivery pump 231 is installed on the pipeline between the first outlet end of the electrolytic water tank 23 and the inlet end of the cathode chamber 211. The second outlet end of the electrolytic water tank 23 is connected to the inlet end of the cleaning chamber 111, and an electrolyzed water delivery pump 232 is installed on the pipeline between the second outlet end of the electrolytic water tank 23 and the inlet end of the cleaning chamber 111.

[0063] The first water softening module 24 is used to soften raw water into soft water;

[0064] The first valve 25 has an inlet end, a first outlet end, and a second outlet end; the soft water end of the first soft water module 24 is connected to the inlet end of the first valve 25, the first outlet end of the first valve 25 is connected to the inlet end of the electrolyte tank 22, and the second outlet end of the first valve 25 is connected to the inlet end of the electrolyzed water tank 23.

[0065] The second water softening module 26 is used to soften the raw water into soft water; the soft water end of the second water softening module 26 is connected to the water inlet end of the cleaning chamber 111.

[0066] The second valve 27 has an inlet end, a first outlet end, and a second outlet end; the inlet end of the second valve 27 is connected to an external tap water pipeline, the first outlet end of the second valve 27 is connected to the raw water end of the first soft water module 24, and the second outlet end of the second valve 27 is connected to the raw water end of the second soft water module 26.

[0067] In addition, both the electrolyte tank 22 and the electrolytic water tank 23 have exhaust ports on their tops. The exhaust gas discharged from the electrolyte tank 22 is discharged to the outside of the cleaning machine through the bottom of the cleaning machine, and the exhaust gas discharged from the electrolytic water tank 23 is discharged to the outside of the cleaning machine through the cleaning machine's exhaust fan / pipeline, etc.

[0068] The working principle of this embodiment is as follows: Tap water enters the cleaning chamber 111 through the second soft water module 26, and enters the electrolyte tank 22 and the electrolyzed water tank 23 through the first soft water module 24. After continuous circulation electrolysis or static + circulation electrolysis, strongly alkaline electrolyzed water is prepared. After a certain period of time, the electrolyzed water in the electrolyzed water tank 23 is used in the cleaning chamber 11 or diluted with another water to make strongly alkaline electrolyzed water with the required pH for washing dishes. High-concentration electrolyte is periodically introduced into the electrolyte tank 22. The electrolyte entering the anode chamber 212 participates in the anode reaction through continuous circulation electrolysis or static + circulation electrolysis. After a certain period of time, the wastewater is discharged, and then electrolyte is replenished to continue electrolysis.

[0069] Example 2:

[0070] like Figure 5 The image shown is a second preferred embodiment of the cleaning machine of this utility model. The difference from Embodiment 1 is that:

[0071] In this embodiment, the water electrolysis preparation component 2 includes an electrolysis cell 21, an electrolyte tank 22, a third water softening module 28, and a third valve 29. The electrolysis cell 21, the electrolyte tank 22, the third water softening module 28, and the third valve 29 are all located in the second mounting cavity 131 and are installed on the bottom wall of the housing 11.

[0072] Specifically, the electrolytic cell 21 has a cathode chamber 211 and an anode chamber 212. The cathode chamber 211 has a water inlet and a liquid outlet, and the anode chamber 212 has a liquid inlet and a waste liquid outlet. The liquid outlet of the cathode chamber 211 is connected to the liquid inlet of the cleaning chamber 111, and an electrolytic water transfer pump 232 is installed on the pipeline between the liquid outlet of the cathode chamber 211 and the liquid inlet of the cleaning chamber 111. The waste liquid outlet of the anode chamber 212 is connected to a sewage pipe 132, and a waste liquid transfer pump 222 is installed on the pipeline between the waste liquid outlet of the anode chamber 212 and the sewage pipe 132. The specific structure of the electrolytic cell can be found in the applicant's earlier patent application, Chinese Patent Application No. CN202321915040.X, entitled "An Electrolytic Cell", which will not be described in detail here.

[0073] The electrolyte tank 22 is used to store electrolyte and has an inlet and an outlet. The outlet of the electrolyte tank 22 is connected to the inlet of the anode chamber 212. A first delivery pump 221 is installed on the pipeline between the outlet of the electrolyte tank 22 and the inlet of the anode chamber 212.

[0074] The third water softening module 28 is used to soften raw water into soft water; the raw water end of the third water softening module 28 is connected to an external tap water pipeline.

[0075] The third valve 29 has an inlet end, a first outlet end, a second outlet end, and a third outlet end. The soft water end of the third soft water module 28 is connected to the inlet end of the third valve 29. The first outlet end of the third valve 29 is connected to the inlet end of the cleaning chamber 111. The second outlet end of the third valve 29 is connected to the inlet end of the cathode chamber 211. The third outlet end of the third valve 29 is connected to the inlet end of the electrolyte tank 22.

[0076] In addition, both the top of the cathode chamber 211 and the anode chamber 212 have exhaust ends, and the exhaust gas is discharged to the outside of the cleaning machine through exhaust ports / cleaning machine exhaust fans / pipes, etc.

[0077] The working principle of this embodiment is as follows: Tap water enters the cleaning chamber 111, cathode chamber 211 and electrolyte tank 22 through the third soft water module 28. The tap water entering the cathode chamber 211 is electrolyzed by overcurrent or static electrolysis to prepare strongly alkaline electrolyzed water for use in the cleaning chamber 11, or it is diluted with another water to make strongly alkaline electrolyzed water with the required pH for washing dishes. High-concentration electrolyte is periodically introduced into the electrolyte tank 22. The electrolyte entering the anode chamber 212 participates in the anode reaction by overcurrent or static electrolysis, and then the wastewater is discharged. After a certain period of time, electrolyte is replenished.

Claims

1. A cleaning machine, comprising a body (1) having a cleaning chamber (111), characterized in that: It also includes an electrolyzed water preparation assembly (2) that supplies electrolyzed water to the cleaning chamber (111), and the body (1) has an installation space (10) for accommodating the electrolyzed water preparation assembly; The body (1) includes The housing (11) has the cleaning chamber (111) formed inside and has an opening on the front side; A door (12) is installed at the opening on the front side of the housing (11). The periphery of the door (12) has a shoulder (121) protruding from the housing (11). The area on the left and right sides of the housing (11) directly behind the shoulder (121) is designated as the first mounting cavity (112). A base (13) is supported at the bottom of the housing (11). A second mounting cavity (131) is formed between the base (13) and the bottom wall of the housing (11). The second mounting cavity (131) and the first mounting cavity (112) together form the mounting space (10). The components of the electrolyzed water preparation assembly (2) are installed in the first mounting cavity (112) or the second mounting cavity (131).

2. The cleaning machine according to claim 1, characterized in that: The electrolytic water preparation component (2) includes: The electrolytic cell (21) has a cathode chamber (211) and an anode chamber (212) inside, both of which have an inlet and an outlet. An electrolyte tank (22) for storing electrolyte has an outlet end and a return end. The outlet end of the electrolyte tank (22) is connected to the inlet end of the anode chamber (212), and the outlet end of the anode chamber (212) is connected to the return end of the electrolyte tank (22). A first delivery pump (221) is installed on the pipeline between the outlet end of the electrolyte tank (22) and the inlet end of the anode chamber (212). as well as An electrolytic water tank (23) is used to store electrolyzed water and has a first outlet end, a return end, and a second outlet end. The first outlet end of the electrolytic water tank (23) is connected to the inlet end of the cathode chamber (211), and the outlet end of the cathode chamber (211) is connected to the return end of the electrolytic water tank (23). A second delivery pump (231) is installed on the pipeline between the first outlet end of the electrolytic water tank (23) and the inlet end of the cathode chamber (211). The cleaning chamber (111) has an inlet end, and the second outlet end of the electrolytic water tank (23) is connected to the inlet end of the cleaning chamber (111). An electrolytic water delivery pump (232) is installed on the pipeline between the second outlet end of the electrolytic water tank (23) and the inlet end of the cleaning chamber (111).

3. The cleaning machine according to claim 2, characterized in that: Both the electrolyte tank (22) and the water electrolysis tank (23) have water inlets; The electrolytic water preparation assembly (2) also includes: The first water softening module (24) is used to soften raw water into soft water; and The first valve (25) has an inlet end, a first outlet end and a second outlet end. The soft water end of the first soft water module (24) is connected to the inlet end of the first valve (25). The first outlet end of the first valve (25) is connected to the inlet end of the electrolyte tank (22). The second outlet end of the first valve (25) is connected to the inlet end of the electrolyzed water tank (23).

4. The cleaning machine according to claim 3, characterized in that: The cleaning chamber (111) has a water inlet end; The electrolytic water preparation assembly (2) also includes: The second water softening module (26) is used to soften the raw water into soft water. The soft water end of the second water softening module (26) is connected to the water inlet end of the cleaning chamber (111). as well as The second valve (27) has an inlet end, a first outlet end and a second outlet end. The inlet end of the second valve (27) is connected to an external tap water pipeline. The first outlet end of the second valve (27) is connected to the raw water end of the first soft water module (24). The second outlet end of the second valve (27) is connected to the raw water end of the second soft water module (26).

5. The cleaning machine according to claim 4, characterized in that: The electrolytic cell (21), electrolyte tank (22), first soft water module (24), first valve (25), second soft water module (26) and second valve (27) are all located in the second mounting cavity (131) and installed on the bottom wall of the box body (11); The electrolytic water tank (23) is located inside the first mounting cavity (112) and is mounted on the side wall of the tank body (11).

6. The cleaning machine according to claim 5, characterized in that: The top of the electrolyte tank (22) has an electrolyte dispensing end (220), which extends through the bottom wall of the tank body (11) into the cleaning chamber (111).

7. The cleaning machine according to claim 2, characterized in that: The base (13) is equipped with a sewage pipe (132) for discharging sewage from the cleaning chamber (111). The electrolyte tank (22) has a waste liquid end, which is connected to the sewage pipe (132). A waste liquid transfer pump (222) is installed on the pipeline between the waste liquid end of the electrolyte tank (22) and the sewage pipe (132).

8. The cleaning machine according to any one of claims 2 to 7, characterized in that: Both the electrolyte tank (22) and the water electrolysis tank (23) have exhaust ports on their tops.

9. The cleaning machine according to claim 1, characterized in that: The electrolytic water preparation component (2) includes: An electrolytic cell (21) has a cathode chamber (211) and an anode chamber (212) inside. The cathode chamber (211) has a liquid outlet, and the anode chamber (212) has a liquid inlet. An electrolyte tank (22) for storing electrolyte has an outlet end connected to the inlet end of the anode chamber (212). A first delivery pump (221) is installed on the pipeline between the outlet end of the electrolyte tank (22) and the inlet end of the anode chamber (212). The cleaning chamber (111) has a liquid inlet end, the liquid outlet end of the cathode chamber (211) is connected to the liquid inlet end of the cleaning chamber (111), and an electrolytic water delivery pump (232) is installed on the pipeline between the liquid outlet end of the cathode chamber (211) and the liquid inlet end of the cleaning chamber (111).

10. The cleaning machine according to claim 9, characterized in that: The cleaning chamber (111), cathode chamber (211), and electrolyte tank (22) all have water inlets; The electrolytic water preparation assembly (2) also includes: A third water softening module (28) is used to soften raw water into soft water. The raw water end of the third water softening module (28) is connected to an external tap water pipeline; and The third valve (29) has an inlet end, a first outlet end, a second outlet end and a third outlet end. The soft water end of the third soft water module (28) is connected to the inlet end of the third valve (29). The first outlet end of the third valve (29) is connected to the inlet end of the cleaning chamber (111). The second outlet end of the third valve (29) is connected to the inlet end of the cathode chamber (211). The third outlet end of the third valve (29) is connected to the inlet end of the electrolyte tank (22).

11. The cleaning machine according to claim 10, characterized in that: The electrolytic cell (21), electrolyte tank (22), third soft water module (28) and third valve (29) are all located in the second mounting cavity (131) and installed on the bottom wall of the box body (11).

12. The cleaning machine according to claim 11, characterized in that: The top of the electrolyte tank (22) has an electrolyte dispensing end (220), which extends through the bottom wall of the tank body (11) into the cleaning chamber (111).

13. The cleaning machine according to claim 9, characterized in that: The base (13) is equipped with a sewage pipe (132) for discharging sewage from the cleaning chamber (111). The anode chamber (212) has a waste liquid end, which is connected to the sewage pipe (132). A waste liquid transfer pump (222) is installed on the pipeline between the waste liquid end of the anode chamber (212) and the sewage pipe (132).

14. The cleaning machine according to any one of claims 9 to 13, characterized in that: Both the cathode chamber (211) and the anode chamber (212) have exhaust ends at their tops.

Citation Information

Patent Citations

  • Dishwasher electrolyzed water control method

    CN117414087A

  • Electrolytic bath

    CN220703350U