Laundry cleaning apparatus

By using additive boxes in the clothing cleaning equipment to form liquid and gas channels, combining temporary storage chambers and pumps, optimizing the pipeline layout, the problem of large space occupied by the equipment and inconvenient maintenance is solved, and a compact and convenient assembly effect is achieved.

CN223255701UActive Publication Date: 2025-08-22PANASONIC APPLIANCES (CHINA) CO LTD +1
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Patent Information

Application Number
CN202422582979.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-25
Publication Date
2025-08-22
Estimated Expiration
2034-10-25

AI Technical Summary

Technical Problem

The internal pipes of existing clothing cleaning equipment take up a large space, which is inconvenient to assembly and maintenance.

Method used

The additive box is used to form a liquid channel and a gas channel, extending along the front and rear direction of the clothing cleaning equipment, combining the temporary storage chamber and the pump, optimizing the pipeline layout, and using the additive box body and the washing plate to form a channel to separate the liquid and gas transportation, simplifying the structure and facilitating maintenance.

Benefits of technology

It has achieved optimization of space utilization, compact structure, convenient assembly and maintenance, and improved the manufacturing efficiency and cost-effectiveness of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides clothes cleaning equipment which comprises at least one additive box used for containing additives and provided with a liquid channel and a gas channel, an additive box liquid inlet and an additive box liquid outlet are formed in the two ends of the liquid channel respectively, and the additive box liquid inlet is communicated with the gas channel. An additive box gas inlet and an additive box gas outlet are formed in the two ends of the gas channel respectively, the liquid channel and the gas channel integrally extend in the front-back direction of the clothes cleaning equipment, and the temporary storage cavity is used for temporarily storing and / or diluting an additive. The temporary storage cavity is provided with a temporary storage cavity liquid outlet and a temporary storage cavity exhaust port, the temporary storage cavity is arranged on the rear side of the additive box, the temporary storage cavity liquid outlet is connected with the additive box liquid inlet, and the temporary storage cavity exhaust port is connected with the additive box air inlet.
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Description

Technical Field

[0001] The present application belongs to the technical field of clothing cleaning, and in particular relates to a clothing cleaning device. Background Art

[0002] In the prior art, there are many pipelines inside the clothing cleaning device, and some pipelines are arranged obliquely or bent, which takes up a large space, is not conducive to space layout, and is inconvenient to assemble and maintain. Utility Model Content

[0003] The present application aims to propose a clothing cleaning device to optimize the internal layout of the clothing cleaning device.

[0004] The embodiments of the present application provide a clothes cleaning device, comprising:

[0005] At least one additive box, the additive box is used to hold additives, the additive box is provided with a liquid channel and a gas channel, the two ends of the liquid channel are respectively provided with an additive box liquid inlet and an additive box liquid outlet, the two ends of the gas channel are respectively provided with an additive box air inlet and an additive box air outlet, the liquid channel and the gas channel as a whole extend along the front-to-back direction of the clothing cleaning device,

[0006] A temporary storage chamber is used for temporarily storing and / or diluting additives. The temporary storage chamber is provided with a temporary storage chamber liquid outlet and a temporary storage chamber exhaust port. The temporary storage chamber is arranged on the rear side of the additive box, the temporary storage chamber liquid outlet is connected to the additive box liquid inlet, and the temporary storage chamber exhaust port is connected to the additive box air inlet.

[0007] By using the additive box to form the liquid channel and the gas channel, the liquid outlet and the gas exhaust port of the temporary storage chamber located on the rear side of the clothing cleaning device can be transferred to the front side of the clothing cleaning device without the need for independent pipelines, which facilitates the arrangement of pipelines, can make full use of space, and makes the structure compact.

[0008] In at least one possible embodiment, the additive box includes an additive box body and a wash plate, the additive box body is used to hold the additive, and the additive box body and the wash plate are connected together to enclose the liquid channel and the gas channel.

[0009] The channel is enclosed by the additive box body and the washing plate, which is easy to manufacture and has low cost.

[0010] In at least one possible embodiment, the additive box liquid outlet and / or the additive box gas outlet is located on the additive box body or the wash plate.

[0011] The liquid outlet and the air outlet of the additive box are arranged on the additive box body or the washing plate, which is easy to form.

[0012] In at least one possible embodiment, in the left-right direction of the laundry cleaning device, the washing plate is located on one side of the additive box body.

[0013] In at least one possible embodiment, the liquid channel and the gas channel are separated, and for the portions of the liquid channel and the gas channel extending in the front-to-back direction, the gas channel is located above the liquid channel in the up-down direction of the laundry cleaning device.

[0014] The liquid channel and the gas channel are separated so that the liquid and the gas are transported separately. Even if the liquid channel leaks, the liquid will not leak into the gas channel.

[0015] In at least one possible embodiment, the clothing cleaning device further includes a pump, configured to pump the additive in the additive box into the temporary storage chamber, wherein the pump is located at a rear side of the temporary storage chamber.

[0016] This makes the pump easier to service.

[0017] In at least one possible embodiment, the additive box includes a plurality of additive containing parts, each of which is connected to a valve for controlling the opening and closing of the additive containing part and the temporary storage chamber, and the valve is located at the rear side of the temporary storage chamber.

[0018] This allows for easier maintenance of the valve.

[0019] In at least one possible embodiment, the clothing cleaning device further includes a ventilation box assembly, the ventilation box assembly including a venturi tube, the venturi tube including a water inlet, a water outlet and a detergent inlet, the detergent inlet being arranged at the contraction throat of the venturi tube, and the detergent inlet being connected to the temporary storage chamber through the detergent inlet pipe and the liquid channel.

[0020] The detergent in the temporary storage chamber can be sucked into the venturi tube by the negative pressure formed by the venturi tube and mixed with water for dilution, thereby realizing the absorption and dilution of the detergent using a simple structure.

[0021] In at least one possible embodiment, the clothes cleaning device further includes a water bucket and a ventilation box assembly, wherein the water bucket is capable of containing water for clothes cleaning, and the ventilation box assembly is disposed above the water bucket and forms a containing space.

[0022] The accommodating space and the air outlet of the additive box are communicated through a temporary storage cavity air pressure pipe, and the vent box assembly and the liquid outlet of the additive box are communicated through an additive inlet pipe.

[0023] In at least one possible embodiment, the temporary storage chamber air pressure pipe extends as a whole along the up and down directions of the clothing cleaning device, the additive inlet pipe extends as a whole along the up and down directions of the clothing cleaning device, and the temporary storage chamber air pressure pipe and the additive inlet pipe are located on the front side of the clothing cleaning device in the front and back directions.

[0024] The space at the rear side of the entire clothing cleaning device is small. Placing the temporary storage chamber air pressure pipe and the detergent inlet pipe extending in the up and down directions of the clothing cleaning device at the front side of the clothing cleaning device can optimize the space layout and make assembly and maintenance easier. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 A schematic diagram showing a portion of the internal structure of a laundry cleaning device according to an embodiment of the present application.

[0026] Figure 2 A schematic diagram showing a portion of the internal structure of a laundry cleaning device according to an embodiment of the present application from another angle is shown.

[0027] Figure 3 A schematic diagram of the internal structure of a partial structure of an additive delivery system according to an embodiment of the present application is shown.

[0028] Figure 4 A schematic diagram of the internal structure of a partial structure of an additive delivery system according to an embodiment of the present application is shown.

[0029] Figure 5 A cross-sectional view showing a partial structure of an additive dosing system according to an embodiment of the present application.

[0030] Figure 6 Another cross-sectional view showing a partial structure of the additive dosing system according to an embodiment of the present application.

[0031] Figure 7 A schematic diagram of the internal structure of the temporary storage chamber of a clothes cleaning device according to an embodiment of the present application is shown.

[0032] Figure 8 A schematic structural diagram of an additive box body of a clothes cleaning device according to an embodiment of the present application is shown.

[0033] Figure 9 A schematic structural diagram of an additive box of a clothes cleaning device according to an embodiment of the present application is shown.

[0034] Figure 10 A schematic diagram showing the connection relationship of a clothing cleaning device according to an embodiment of the present application is shown.

[0035] Figure 11A schematic structural diagram of a venturi tube of a clothes cleaning device according to an embodiment of the present application is shown.

[0036] Figure 12 A cross-sectional view of a venturi tube of a laundry cleaning device according to an embodiment of the present application is shown.

[0037] Description of Reference Numerals

[0038] 100 Vent Box Assembly

[0039] 200 buckets

[0040] 300 Temporary storage chamber 301 Temporary storage chamber liquid outlet 302 Temporary storage chamber exhaust port

[0041] 400 Additive Box

[0042] 401 liquid channel 4011 additive box liquid inlet 4012 additive box liquid outlet

[0043] 402 gas channel 4021 additive box air inlet 4022 additive box air outlet

[0044] 403 Additive box body 404 Washing plate

[0045] L1 main channel L2 branch channel

[0046] 11 bucket air pressure pipe 12 temporary storage chamber air pressure pipe 15 additive inlet pipe

[0047] 3 Venturi tube 31 liquid outlet 32 ​​water inlet 33 additive inlet

[0048] 5 Diverter valve 51 First water outlet channel 52 Second water outlet channel 521 Second one-way valve 53 Water inlet channel

[0049] 6 pumps

[0050] 7 First additive valve

[0051] 8 Second additive valve

[0052] 9 Third additive valve

[0053] X is the front-back direction, Y is the left-right direction, and Z is the up-down direction. DETAILED DESCRIPTION

[0054] In order to more clearly illustrate the above-mentioned purposes, features and advantages of the present application, this section describes in detail the specific embodiments of the present application in conjunction with the accompanying drawings. In addition to the various embodiments described in this section, the present application can also be implemented in other different ways. Without violating the spirit of the present application, those skilled in the art can make corresponding improvements, deformations and substitutions. Therefore, the present application is not limited to the specific embodiments disclosed in this section. The scope of protection of this application shall be based on the claims.

[0055] like Figures 1 to 12 As shown, an embodiment of the present application provides a clothes cleaning device, which includes a ventilation box assembly 100, a water bucket 200 and an additive delivery system. The water bucket 200 can hold water for cleaning clothes. The ventilation box assembly 100 is formed with a receiving space P, which can hold liquid (e.g., additives and water). The additive box 400 can store one or more additives. The temporary storage chamber 300 and the additive box 400 can be arranged below the water bucket 200, and the ventilation box assembly 100 can be arranged above the water bucket 200.

[0056] The clothes cleaning device may be, for example, a drum washing machine, and a front side of the drum washing machine in the front-to-rear direction X may have a clothes loading port.

[0057] The additive delivery system includes a temporary storage chamber 300 , an additive box 400 , a flow diversion mechanism, a pump 6 , a main flow channel L1 and a branch flow channel L2 .

[0058] The additive cartridge 400 is used to hold additives, and the temporary storage chamber 300 is used to temporarily store and / or dilute additives. The temporary storage chamber 300 is directly or indirectly connected to a first water inlet valve FV1 to allow water to flow into the temporary storage chamber 300 to dilute the additives. The additive cartridge 400 and the temporary storage chamber assembly 300 are connected via an additive valve, which controls the flow between the additive cartridge 400 and the temporary storage chamber assembly 300.

[0059] like Figure 7 and Figure 9 As shown, the temporary storage chamber 300 is provided with a temporary storage chamber liquid outlet 301 and a temporary storage chamber exhaust port 302. The additive box 400 is provided with a liquid channel 401 and a gas channel 402.

[0060] The liquid channel 401 is provided with an additive box liquid inlet 4011 and an additive box liquid outlet 4012 at both ends, and the gas channel 402 is provided with an additive box air inlet 4021 and an additive box air outlet 4022 at both ends. The liquid channel 401 and the gas channel 402 extend along the front-to-back direction X of the laundry cleaning device as a whole.

[0061] The temporary storage chamber liquid outlet 301 is connected to the additive cartridge liquid inlet 4011, and the temporary storage chamber exhaust port 302 is connected to the additive cartridge air inlet 4021. One end of the gas channel 402 (i.e., the additive cartridge air inlet 4021) can be connected to the temporary storage chamber exhaust port 302, and the other end of the gas channel 402 (i.e., the additive cartridge air outlet 4022) can be connected to the accommodating space P of the vent box assembly 100 via the temporary storage chamber air pressure tube 12.

[0062] The pump 6 is used to pump the additive in the additive box 400 into the temporary storage chamber 300 . The pump 6 can be located at the rear side of the temporary storage chamber 300 , which makes the pump 6 easy to maintain.

[0063] By using the additive box 400 to form the liquid channel 401 and the gas channel 402, the temporary storage chamber liquid outlet 301 and the temporary storage chamber exhaust port 302 located on the rear side of the clothing cleaning device can be transferred to the front of the clothing cleaning device without the need for independent pipelines, which facilitates the arrangement of (other) pipelines, can fully utilize the space, and makes the structure compact.

[0064] like Figure 9 As shown, the additive box 400 includes an additive box body 403 and a washing plate 404. The additive box body 403 is used to hold additives. The additive box body 403 and the washing plate 404 are connected together to form a liquid channel 401 and a gas channel 402. In the left-right direction Y of the laundry cleaning device, the washing plate 404 can be located on one side of the additive box body 403. The liquid channel 401 and the gas channel 402 enclosed by the additive box body 403 and the washing plate 404 can facilitate manufacturing and reduce costs.

[0065] The liquid channel 401 and the gas channel 402 are separated. For the portions of the liquid channel 401 and the gas channel 402 extending along the front-to-back direction X, the gas channel 402 can be located above the liquid channel 401 in the up-down direction Z of the laundry cleaning device. The separation of the liquid channel 401 and the gas channel 402 allows the liquid and gas to be transported separately. Even if a leak occurs in the liquid channel 401, the liquid will not leak into the gas channel 402.

[0066] The additive box liquid outlet 4012 and / or the additive box air outlet 4022 can be located in the additive box body 403 or the wash plate 404. Providing the additive box liquid outlet 4012 or the additive box air outlet 4022 in the additive box body or the wash plate 404 facilitates the formation.

[0067] The diversion mechanism includes an inlet channel 53, a first outlet channel 51, and a second outlet channel 52. The first outlet channel 51 and the second outlet channel 52 are both connected to the inlet channel 53. The first outlet channel 51 is connected to the main channel L1, which is connected to the temporary storage chamber 300. The main channel L1 is connected to at least one additive storage portion of the additive box 400 described later. The second outlet channel 52 is connected to the branch channel L2, which is connected to the temporary storage chamber 300 without passing through the additive box 400. Figure 4 In FIG, a solid arrow indicates the main flow channel L1 , and a dotted arrow indicates the main flow channel L2 .

[0068] When the inlet flow rate is large, the diverter valve 5 can divert a portion of the inlet water through the branch channel L2 and temporarily store it in the temporary storage chamber 300 to prevent overflow when the inlet flow rate is large.

[0069] Optionally, the diverter mechanism may be a diverter valve 5, which includes an inlet channel 53, a first outlet channel 51, and a second outlet channel 52. Furthermore, the diverter mechanism (diverter valve 5) is configured so that the flow rate of the first outlet channel 51 is greater than the flow rate of the second outlet channel 52.

[0070] Reference Figure 5 and Figure 10 Specifically, the first water outlet channel 51 may be provided with a first one-way valve, which can prevent fluid from flowing from the first water outlet channel 51 to the water inlet channel 53. The second water outlet channel 52 may be provided with a second one-way valve 521, which can prevent fluid from flowing from the second water outlet channel 52 to the water inlet channel 53. The opening resistance of the first one-way valve is smaller than the opening resistance of the second one-way valve 521. When water flows into the water inlet channel 53, the first and second one-way valves 521 can be opened under the action of water pressure. The opening degree of the first one-way valve is greater than that of the second one-way valve 521, so that the flow rate of the first water outlet channel 51 is greater than the flow rate of the second water outlet channel 52.

[0071] In another possible embodiment, the first water outlet channel 51 may not be provided with a one-way valve, and the second water outlet channel 52 may be provided with a second one-way valve 521. The second one-way valve 521 can prevent fluid from flowing from the second water outlet channel 52 to the water inlet channel 53. When water enters the water inlet channel 53, the water can flow directly to the first water outlet channel 51. Under the action of water pressure, the second one-way valve 521 can be opened to flow to the second water outlet channel 52, so that the flow rate of the first water outlet channel 51 is greater than the flow rate of the second water outlet channel 52.

[0072] Optionally, the first water outlet channel 51 may be located below the water inlet channel 53 , and the second water outlet channel 52 may be located above the water inlet channel 53 , so that under the action of gravity, the flow rate of the first water outlet channel 51 may be greater than the flow rate of the second water outlet channel 52 .

[0073] like Figure 10 As shown, in the water flow direction, the diverter valve 5 can be located on the upstream side of the additive box 400. By adjusting the flow distribution of the two water outlet channels (i.e., the first water outlet channel 51 and the second water outlet channel 52) of the diverter valve 5, the flow rate of the water for flushing the additive (i.e., the water in the main channel L1) and the flow rate of the water diverted by the branch channel L2 can be controlled.

[0074] It is understood that in other possible embodiments, the diversion mechanism may be a tee pipe, which may include a water inlet channel, a first water outlet channel, and a second water outlet channel. The cross-sectional area of ​​the first water outlet channel is larger than the cross-sectional area of ​​the second water outlet channel, and the water flow rates of the first water outlet channel and the second water outlet channel are controlled by the cross-sectional areas of the channels, such that the flow rate of the first water outlet channel is greater than the flow rate of the second water outlet channel.

[0075] like Figures 3 to 5 As shown, the temporary storage chamber 300 includes an S-shaped channel, which is connected to the branch channel L2. The downstream end of the S-shaped channel and the downstream end of the main channel L1 intersect near the temporary storage chamber liquid outlet 301 of the temporary storage chamber 300. The S-shaped channel can prevent the liquid (additive) in the main channel L1 from flowing back or flowing to other locations through the branch channel L2.

[0076] like Figure 4 As shown, pump 6 includes a pump inlet 61 and a pump outlet 62. Within temporary storage chamber 300, the bottom surface between pump outlet 62 and temporary storage chamber liquid outlet 301 includes an inclined surface, with temporary storage chamber liquid outlet 301 located at the lower end of the inclined surface. This allows additives to be smoothly flushed to and out of temporary storage chamber liquid outlet 301, preventing additives from remaining in the temporary storage chamber and maintaining a clean and hygienic environment.

[0077] The additive cartridge 400 may include multiple additive receptacles, each connected to the storage chamber assembly 300 via an additive valve. The additive valve is used to control the flow path between the additive receptacle and the temporary storage chamber assembly 300. Each additive receptacle may be connected to an additive valve. The additive valve is located at the rear of the temporary storage chamber 300, making the valves easily accessible for maintenance. Each additive receptacle may be used to hold a specific additive. For example, multiple additive receptacles may each hold detergent, softener, conditioner, etc.

[0078] Furthermore, the multiple additive receptacles include at least a first additive cartridge and a second additive cartridge, and the additive valves include a first additive valve 7 and a second additive valve 8. The first additive cartridge can be connected to the first additive valve 7, which can be a one-way valve and connected to the first water outlet channel 51. The second additive cartridge can be connected to the second additive valve 8, which can be a three-way valve.

[0079] There is no need to set up a three-way valve for each additive container. The one-way valve has a simpler structure and lower cost than the three-way valve. When the second additive box 8 is cut off, the pump 6 can be used to form a negative pressure to open the one-way valve and suck out the additive in the first additive box.

[0080] In this embodiment, the plurality of additive containing parts further include a third additive cartridge 9, and the additive valve further includes a third additive valve 9. The third additive valve 9 is a three-way valve, and the second additive valve 8 and the third additive valve 9 are connected together.

[0081] The one-way valve has a simpler structure and lower cost than the three-way valve. When the second additive box 8 and the third additive box 9 are disconnected, the pump 6 can be used to form a negative pressure to open the one-way valve and suck out the additive in the first additive box.

[0082] The vent box assembly 100 connects the accommodating space P to the outside atmosphere via an exhaust port. One end of a water tub air pressure pipe 11 connects to the upper portion of the accommodating space P, while the other end of the water tub air pressure pipe 11 connects to the water tub 200 of the laundry cleaning apparatus. Thus, the water tub air pressure pipe 11 allows the water tub 200 to communicate with the atmosphere through the vent box assembly 100.

[0083] One end of the temporary storage chamber air pressure tube 12 can be connected to the upper portion of the accommodating space P, and the other end of the temporary storage chamber air pressure tube 12 is connected to the temporary storage chamber 300 via the gas channel 402. Thus, the temporary storage chamber 300 can be connected to the atmosphere through the vent box assembly 100 via the temporary storage chamber air pressure tube 12.

[0084] After water enters the accommodating space P of the ventilation box assembly 100 (for example, water carried by foam), water can be prevented or reduced from entering the water bucket air pressure pipe 11 and the temporary storage chamber air pressure pipe 12, thereby affecting the ventilation effect of the water bucket 200 and the temporary storage chamber 300.

[0085] like Figure 11 and Figure 12 As shown, the vent box assembly 100 includes a venturi tube 3, which includes a water inlet 32, a liquid outlet 31, and an additive inlet 33. The additive inlet 33 is located at the constricted throat of the venturi tube 3 and can be connected to the temporary storage chamber 300 via the additive inlet pipe 15 and the liquid channel 402. The liquid outlet 31 is connected to the water bucket 200 via a water inlet pipe 34, which can communicate with the front and upper sides of the water bucket 200. The water inlet 32 ​​can be connected to a second water inlet valve FV2. When the second water inlet valve FV2 is open, the faucet can supply water to the venturi tube 3.

[0086] When water flows from the water inlet 32 ​​to the liquid outlet 31, negative pressure will be formed at the contraction throat of the venturi tube 3. The additives in the temporary storage chamber 300 can be sucked into the venturi tube 3 by the negative pressure formed by the venturi tube 3 and mixed and diluted with water, and supplied to the water bucket 200 through the water inlet pipe 34. The present application uses a simple structure to achieve the absorption and dilution of additives.

[0087] In the vertical direction Z, the venturi tube 3 can be located above the pump 6. By providing two extraction mechanisms, the pump 6 and the venturi tube 3, to deliver the additive to the water bucket 200, the pressure on the extraction mechanism can be reduced compared to using only one extraction mechanism, thereby increasing the extraction mechanism's service life and reducing the risk of water leakage. The pump 6 only performs the task of extracting the additive and does not need to supply water. A pump 6 with higher precision and lower pressure can be used, thereby improving the accuracy of additive delivery.

[0088] The water inlet pipe 34 allows additives and water to be delivered from the drum opening on the front side of the laundry cleaning device to the upper surface of the laundry, achieving a good washing effect. Water flows from the liquid outlet 31 of the venturi tube 3 through the water inlet pipe 34 into the water bucket 200, achieving a high-pressure water spray effect, which is beneficial for foaming and a good spraying effect.

[0089] In the front-to-back direction X of the laundry cleaning device, the additive inlet 33 (connected to the additive inlet pipe 15) can be located at the front side of the vent box assembly 100. This can shorten the length of the additive inlet pipe 15 located at the front side of the laundry cleaning device and occupy less space.

[0090] It should be understood that at least some aspects or features of the above-mentioned embodiments, examples or examples may be appropriately combined.

[0091] It is understood that in this application, when the number of parts or components is not specifically limited, the number may be one or more, and the term "plurality" herein refers to two or more. Where the number of parts or components is shown in the drawings and / or described in the specification as a specific number, such as two, three, or four, the specific number is generally illustrative and not restrictive, and may be understood as a plurality, i.e., two or more. However, this does not mean that this application excludes the case of one.

[0092] In this application, unless otherwise clearly stated or limited, terms such as "install", "assemble", "connect", "connect", "couple", "link", "abut", "connect", "interconnect", "communicate", "conduct", "fix", "fasten", etc. should be understood in a broad sense, for example, they can be direct or indirect. For example, with respect to connection, it can be a fixed connection, a detachable connection, or an integrated connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements, unless otherwise clearly stated or limited. For example, with respect to connectivity / conduction, it can be direct connectivity / conduction or indirect connectivity / conduction through an intermediate medium. For ordinary technicians in this field, the specific meanings of the above terms in this application can be understood according to the specific circumstances.

[0093] In the present application, unless otherwise clearly stated or limited, a component provided on / installed on / located on / accommodated on / placed in, within, inside, etc. another component may be any of the following two situations: a part or most of the one component is located in the other component; and the one component is completely accommodated in the other component.

[0094] While the present application has been described in detail using the above-described embodiments, it will be apparent to those skilled in the art that the present application is not limited to the embodiments described in this specification. The present application can be modified and implemented as modified embodiments without departing from the subject matter and scope of the present application as defined by the claims. Therefore, the descriptions in this specification are for illustrative purposes only and do not have any limiting meaning with respect to the present application.

Claims

1. A clothes cleaning device, characterized in that: include: At least one additive box (400), the additive box (400) is used to hold additives, the additive box (400) is provided with a liquid channel (401) and a gas channel (402), the two ends of the liquid channel (401) are respectively provided with an additive box liquid inlet (4011) and an additive box liquid outlet (4012), the two ends of the gas channel (402) are respectively provided with an additive box air inlet (4021) and an additive box air outlet (4022), the liquid channel (401) and the gas channel (402) extend as a whole along the front-to-back direction (X) of the clothing cleaning device, A temporary storage chamber (300) is used for temporarily storing and / or diluting additives. The temporary storage chamber (300) is provided with a temporary storage chamber liquid outlet (301) and a temporary storage chamber exhaust port (302). The temporary storage chamber (300) is arranged on the rear side of the additive box (400), the temporary storage chamber liquid outlet (301) is connected to the additive box liquid inlet (4011), and the temporary storage chamber exhaust port (302) is connected to the additive box air inlet (4021).

2. The clothes cleaning device according to claim 1, characterized in that The additive box (400) includes an additive box body (403) and a washing plate (404), wherein the additive box body (403) is used to hold additives, and the additive box body (403) and the washing plate (404) are connected together to form the liquid channel (401) and the gas channel (402).

3. The clothes cleaning device according to claim 2, characterized in that The additive box liquid outlet (4012) and / or the additive box air outlet (4022) are located on the additive box body (403) or the washing plate (404).

4. The clothes cleaning device according to claim 2, characterized in that In the left-right direction of the clothes cleaning device, the washing plate (404) is located on one side of the additive box body (403).

5. The clothes cleaning device according to claim 1, characterized in that The liquid channel (401) and the gas channel (402) are separated, and for the parts of the liquid channel (401) and the gas channel (402) extending along the front-to-back direction (X), in the up-down direction (Z) of the clothing cleaning device, the gas channel (402) is located above the liquid channel (401).

6. The clothes cleaning device according to claim 1, characterized in that The invention also comprises a pump (6), wherein the pump (6) is used to pump the additive in the additive box (400) into the temporary storage chamber (300), and the pump (6) is located at the rear side of the temporary storage chamber (300).

7. The clothes cleaning device according to claim 1, characterized in that The additive box (400) includes a plurality of additive containing parts, each of which is connected to an additive valve, and the additive valve is used to control the opening and closing of the additive containing part and the temporary storage chamber (300). The additive valve is located at the rear side of the temporary storage chamber (300).

8. The clothes cleaning device according to claim 1, characterized in that The invention also includes a ventilation box assembly (100), wherein the ventilation box assembly (100) includes a venturi tube (3), wherein the venturi tube (3) includes a water inlet (32), a water outlet (31) and a detergent inlet (33), wherein the detergent inlet (33) is arranged at the contraction throat of the venturi tube (3), and the detergent inlet (33) is connected to the temporary storage chamber (300) through the detergent inlet pipe (15) and the liquid channel (401).

9. The clothes cleaning device according to claim 1, characterized in that It also includes a water bucket (200) and a ventilation box assembly (100), wherein the water bucket (200) can contain water for cleaning clothes, and the ventilation box assembly (100) is arranged above the water bucket (200) and forms a containing space. The accommodating space and the additive box air outlet (4022) are communicated via a temporary storage chamber air pressure tube (12), and the vent box assembly (100) and the additive box liquid outlet (4012) are communicated via an additive inlet tube (15).

10. The clothes cleaning device according to claim 9, characterized in that The temporary storage chamber air pressure pipe (12) extends as a whole along the up-down direction of the clothing cleaning device, and the additive inlet pipe (15) extends as a whole along the up-down direction of the clothing cleaning device. The temporary storage chamber air pressure pipe (12) and the additive inlet pipe (15) are located at the front side of the clothing cleaning device in the front-to-back direction (X).