Clothing treatment equipment
By designing multi-functional water-filling components, combining spray components and atomization generator, multiple washing methods of clothing processing equipment are realized, solving the problem of single functions of existing equipment, and improving the washing effect and user experience.
Patent Information
- Application Number
- CN201811567338.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2018-12-19
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2038-12-19
AI Technical Summary
The water-receiving components of existing clothing treatment equipment have a single function, which is difficult to meet the various needs of users, affecting the user experience.
Design a clothing treatment device, including a box, a water storage assembly, a spray assembly and an atomizer. The water storage assembly connects the water tank, spray assembly and atomization generator through multiple conveying pipelines, realizing two washing methods: atomized air washing and spray washing.
The equipment can flexibly choose two methods of atomized air washing or spray washing according to user needs, which improves the washing effect and user experience, and improves the energy saving and hygiene and safety of the equipment by saving water and washing liquid.
Smart Images

Figure CN111334965B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of clothing treatment, and particularly provides a clothing treatment device. Background Art
[0002] With the progress of science and technology, the automation level of human life is getting higher and higher, and daily housework is gradually replaced by machines. As a commonly used household appliance in daily life, clothing treatment devices bring great convenience to people's lives. Clothing treatment devices are classified according to the washing method, and can be roughly divided into pulsator washing machines and drum washing machines. Taking the drum washing machine as an example, generally, clothes are washed by water washing, and mechanical rotation is accompanied during the water washing process, so that the stains on the clothes are washed clean. However, the limitation of this washing method is that if a large amount of water is injected into the washing drum at the beginning, the stains on the surface of the clothes will directly enter the lining of the clothes in the state where the washing liquid is not completely dissolved, so that more time, water volume, washing liquid and mechanical action are required in the subsequent washing process to clean the clothes, resulting in poor washing effect.
[0003] In order to solve the above problems, a drum washing machine is provided with an atomization generator and a water tank for supplying water to the atomization generator. Under the atomization action of the atomization generator, water is converted into small particle atomized water droplets to realize atomized air treatment of clothes, improve the washing effect of clothes, and enhance the user experience. However, the function of the water tank of the above drum washing machine is single, and it can only meet the demand for supplying water to the atomization generator, and it is difficult to meet other use demands of users, which greatly affects the user experience.
[0004] Therefore, there is a need in the art for a new clothing treatment device to solve the above problems. Summary of the Invention
[0005] In order to solve the above problems in the prior art, that is, to solve the problem that the water-containing component of the existing clothing treatment device has a single function and is difficult to meet various needs of users, the present invention provides a clothing treatment device, which includes a box body and a water-containing component, a spraying component and an atomization generator arranged in the box body; the water-containing component includes a water tank and a plurality of conveying pipelines, the water tank is connected to the atomization generator through one conveying pipeline, and the atomization generator is used for atomizing and cleaning clothes; the water tank is connected to the spraying component through the remaining conveying pipelines, and the spraying component is used for spraying and cleaning clothes.
[0006] In the preferred technical solution of the above-mentioned clothing treatment device, the water tank includes a first water-containing member and a second water-containing member that are interconnected, and the multiple conveying pipelines include a first conveying pipeline, a second conveying pipeline, and a third conveying pipeline; wherein, the outlet of the first water-containing member is connected to the spraying assembly through the first conveying pipeline, the first outlet of the second water-containing member is connected to the atomizing generator through the second conveying pipeline, and the second outlet of the second water-containing member is connected to the spraying assembly through the third conveying pipeline.
[0007] In the preferred technical solution of the above-mentioned clothing treatment device, the clothing treatment device further includes an outer cylinder disposed in the box body and an inner cylinder rotatably accommodated in the outer cylinder. A clothing input port is provided on the box body, and a window gasket is disposed between the clothing input port and the outer cylinder; the spraying assembly includes a first spray head disposed on the window gasket, and the outlet of the first water-containing member is connected to the first spray head through the first conveying pipeline, and the first spray head is used for spraying water into the inner cylinder.
[0008] In the preferred technical solution of the above-mentioned clothing treatment device, the clothing treatment device further includes a door body pivotally connected to the box body, and a visual window is provided on the door body; the spraying assembly further includes a second spray head disposed on the window gasket, and the second outlet of the second water-containing member is connected to the second spray head through the third conveying pipeline, and the second spray head is used for spraying water onto the visual window.
[0009] In the preferred technical solution of the above-mentioned clothing treatment device, the clothing treatment device further includes a water supply valve, a water conveyance channel, and a one-way check mechanism disposed in the box body; the water supply valve is connected to the water inlet end of the water conveyance channel, the water outlet end of the water conveyance channel is connected to the atomizing generator through the first water-containing member and the second water-containing member, and the one-way check mechanism is respectively connected to the water conveyance channel and the first water-containing member, and the one-way check mechanism is configured to be isolated from the atmosphere when the water supply valve is opened and to communicate with the atmosphere when the water supply valve is closed.
[0010] In the preferred technical solution of the above-mentioned clothing treatment device, the one-way check mechanism is a one-way check valve.
[0011] In the preferred technical solution of the above-mentioned clothing treatment device, a water diversion barrier rib is provided in the first water-containing member. The water diversion barrier rib divides the internal space of the first water-containing member into a first chamber and a second chamber. The inlet of the first water-containing member is provided in the first chamber, and the outlet of the first water-containing member is provided in the second chamber; the water diversion barrier rib is configured such that when starting to fill water into the water tank, the water flowing through the first chamber all flows into the second water-containing member; when the second water-containing member is filled with water, the water flowing through the first chamber overflows the water diversion barrier rib and flows into the second chamber and flows to the first spray head through the first conveying pipeline.
[0012] In the preferred technical solution of the above-mentioned clothing treatment device, the height of the bottom of the first water-containing member is higher than the height of the bottom of the second water-containing member.
[0013] In the preferred technical solution of the above-mentioned laundry treatment device, the water tank further includes a siphon member, which is connected to the second spray head through a third delivery pipeline, and the siphon member is used to suck out the water in the second water-containing member in a siphon manner.
[0014] In the preferred technical solution of the above-mentioned laundry treatment device, the water-containing assembly further includes a cover body arranged above the water tank; the siphon member includes a siphon cap arranged on the cover body and a siphon tube arranged in the second water-containing member, and the siphon tube is communicated with the second outlet of the second water-containing member. When the cover body is closed with the water tank, the siphon cap can be sleeved on the siphon tube, and a siphon channel is formed between the siphon cap and the siphon tube, and the water in the second water-containing member can flow to the second spray head through the siphon channel and the third delivery pipeline.
[0015] Those skilled in the art can understand that in the preferred technical solution of the present invention, the drum washing machine includes a box body and a water-containing assembly, a spray assembly and an atomizing generator arranged in the box body. Compared with the existing technical solution in which the water tank supplies water to the atomizing generator, the water-containing assembly of the present invention includes a water tank and a plurality of delivery pipelines. The water tank is connected to the atomizing generator through one delivery pipeline, and the water tank is connected to the spray assembly through the remaining delivery pipelines, which can not only supply water to the atomizing generator, but also supply water to the spray assembly, enabling the drum washing machine to have two laundry washing methods, namely atomizing air washing and spray washing, so that the user can flexibly select the corresponding washing method according to his own needs, meet the various needs of the user, and improve the user experience.
[0016] Furthermore, the drum washing machine includes a water supply valve, a water delivery channel and a one-way check mechanism arranged in the box body. By connecting the one-way check mechanism to the water delivery channel, the first water-containing member and the second water-containing member, when the water supply valve is opened, the water delivery channel, the first water-containing member and the second water-containing member can be filled with water, and then when the water supply valve is closed, the one-way check mechanism is communicated with the atmosphere so that the water in the water delivery channel, the first water-containing member and the second water-containing member is sprayed out from the atomizing generator, and under the atomizing action of the atomizing generator, the water is converted into small particle atomized water droplets to realize the atomizing air care treatment of the laundry. By adopting this atomizing air washing method, laundry made of special materials such as cashmere and wool can be treated. It can not only make the surface of the laundry made of this material smoother and softer, but also quickly remove the stains on the laundry, and will not damage the fiber structure of the laundry, improve the laundry applicable range of the drum washing machine, and further improve the user experience.
[0017] Furthermore, a water diversion barrier rib is provided inside the first water storage member. When starting to fill the water tank with water, the water diversion barrier rib causes all the water flowing through the first chamber to flow into the second water storage member. The water flowing into the second water storage member is sprayed out through the atomization generator, and under the atomization effect of the atomization generator, the water is converted into small particle atomized water droplets. The atomized water droplets can first wet the clothes, so that the stains on the clothes surface are removed first, avoiding the stains on the clothes surface from entering the lining of the clothes. When the second water storage member is filled with water, the water flowing through the first chamber overflows the water diversion barrier rib and flows into the second chamber and then flows to the first spray head through the first delivery pipeline, and water is sprayed into the inner cylinder through the first spray head. Thus, during the subsequent washing process, the clothes can be cleaned with less time, water volume, washing liquid and mechanical action, improving the washing effect on the clothes and making the drum washing machine more energy-efficient.
[0018] Furthermore, the water tank further includes a siphon member. The siphon member is connected to the second spray head through the third delivery pipeline. When the second water storage member is filled with water, the siphon member can suck out all the water in the second water storage member in a siphon manner, thus emptying all the water in the second water storage member, avoiding water remaining in the second water storage member, thereby preventing the second water storage member from mildewing, deteriorating and breeding bacteria, and improving the sanitary safety of the drum washing machine. Description of the Drawings
[0019] The following describes the laundry treatment device of the present invention with reference to the drawings in combination with a drum washing machine. In the drawings:
[0020] Figure 1 is a partial structural schematic diagram of the drum washing machine of the present invention;
[0021] Figure 2 is an exploded view of the water storage assembly of the present invention.
[0022] Wherein, 1. Outer cylinder; 2. Window gasket; 3. Water storage assembly; 31. Water tank; 311. First water storage member; 3111. Water diversion barrier rib; 3112. Positioning column; 312. Second water storage member; 313. Siphon member; 3131. Siphon cap; 3132. Siphon pipe; 32. First delivery pipeline; 33. Second delivery pipeline; 34. Third delivery pipeline; 35. Cover body; 351. Positioning hole; 4. Spray assembly; 41. First spray head; 42. Second spray head; 5. Atomization generator; 6. Water delivery channel; 7. One-way check mechanism. Detailed Embodiments
[0023] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. Those skilled in the art should understand that these embodiments are only used to explain the technical principle of the present invention and are not intended to limit the protection scope of the present invention. For example, although the present application is described in connection with a drum washing machine, the technical solution of the present invention is not limited thereto. This water-containing component can obviously also be applied to other laundry treatment devices such as a pulsator washing machine, a shoe washing machine, a washing and drying integrated machine, etc. Such a change does not deviate from the principle and scope of the present invention.
[0024] It should be noted that in the description of the present invention, the terms indicating directions or positional relationships such as "inner", "bottom", etc. are based on the directions or positional relationships shown in the drawings. This is only for convenience of description and does not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation to the present invention. In addition, the terms "first", "second", "third" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0025] In addition, it should also be noted that in the description of the present invention, unless otherwise clearly specified and defined, the terms "installed", "connected", "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those skilled in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.
[0026] Based on the problems in the prior art mentioned in the background art, the water tank of the present invention is connected to the atomization generator through a delivery pipeline, and the water tank is connected to the spray assembly through the remaining delivery pipelines. It can supply water to both the atomization generator and the spray assembly, enabling the drum washing machine to have two laundry washing methods: atomized air washing and spray washing. This allows users to flexibly select the corresponding washing method according to their own needs, meeting the various needs of users and enhancing the user experience.
[0027] See Figure 1 and Figure 2 , Figure 1 are partial structural schematic diagrams of the drum washing machine of the present invention; Figure 2 is an exploded view of the water-containing component of the present invention. The drum washing machine of the present invention includes a box body and a door body. The door body is pivotally connected to the box body, and a viewing window is provided on the door body to facilitate the user to observe the cleaning situation of the clothes in the inner drum. As Figure 1As shown in the figure, the drum washing machine further includes an outer tub 1, an inner tub, a window gasket 2, a water storage assembly 3, a spraying assembly 4, and an atomizing generator 5. The outer tub 1 is disposed within the cabinet. The inner tub is rotatably accommodated within the outer tub 1. There is a laundry loading opening on the cabinet, and the window gasket 2 is disposed between the laundry loading opening and the outer tub 1. The water storage assembly 3 is disposed within the cabinet and is used to supply water to the spraying assembly 4 and the atomizing generator 5. The spraying assembly 4 and the atomizing generator 5 are disposed on the window gasket 2. The spraying assembly 4 is used to spray and wash the laundry, and the atomizing generator 5 is used to atomize and wash the laundry. Of course, the actual installation positions of the water storage assembly 3, the spraying assembly 4, and the atomizing generator 5 are not limited to the installation positions exemplified above. Those skilled in the art can flexibly set the actual installation positions of the water storage assembly 3, the spraying assembly 4, and the atomizing generator 5 in actual applications, as long as the drum washing machine has two laundry washing methods, namely atomized air washing and spraying washing, through the mutual cooperation of the water storage assembly 3, the spraying assembly 4, and the atomizing generator 5.
[0028] Preferably, the atomizing generator 5 can be an ultrasonic atomizing generator 5 or a compressed atomizing generator 5. Those skilled in the art can flexibly set the specific structure of the atomizing generator 5 in actual applications, as long as the atomizing generator 5 can convert the water in the water storage assembly 3 into atomized water droplets to perform atomized air washing on the laundry.
[0029] In a preferred embodiment, as Figure 1 and Figure 2 shown, the water storage assembly 3 includes a water tank 31, a first delivery pipeline 32, a second delivery pipeline 33, and a third delivery pipeline 34. The outlet of the water tank 31 is connected to the spraying assembly 4 through the first delivery pipeline 32 and the third delivery pipeline 34 to facilitate water supply to the spraying assembly 4. The outlet of the water tank 31 is connected to the atomizing generator 5 through the second delivery pipeline 33 to facilitate water supply to the atomizing generator 5. Those skilled in the art can understand that the actual installation positions and quantities of the delivery pipelines are not limited to the installation positions and quantities exemplified above. Those skilled in the art can flexibly set the actual installation positions and quantities of the delivery pipelines in actual applications, as long as the delivery pipelines can supply water to both the atomizing generator 5 and the spraying assembly 4.
[0030] Preferably, as Figure 2 shown, the spraying assembly 4 includes a first spray head 41 and a second spray head 42. Both the first spray head 41 and the second spray head 42 are disposed on the window gasket 2. The first spray head 41 is used to spray water into the inner tub to perform spraying and washing on the laundry. The second spray head 42 is used to spray water on the viewing window to wash away the washing water splashed onto the viewing window, so that the user can clearly observe the cleaning situation of the laundry in the inner tub.
[0031] Preferably, as Figure 2As shown, the water tank 31 includes a first water-containing member 311 and a second water-containing member 312. The first water-containing member 311 and the second water-containing member 312 are in communication with each other. The outlet of the first water-containing member 311 is connected to the first spray head 41 through a first delivery pipeline 32 to facilitate the delivery of the water in the first water-containing member 311 to the first spray head 41. The first outlet of the second water-containing member 312 is connected to the atomizing generator 5 through a second delivery pipeline 33 to facilitate the delivery of the water in the second water-containing member 312 to the atomizing generator 5. The second outlet of the second water-containing member 312 is connected to the second spray head 42 through a third delivery pipeline 34 to facilitate the delivery of the water in the second water-containing member 312 to the second spray head 42.
[0032] To enable the atomizing generator 5 to smoothly generate atomized water droplets, as Figure 1 shown and referring to Figure 2 , the drum washing machine further includes a water supply valve (not shown in the figure), a water delivery channel 6, and a one-way check mechanism 7 provided in the cabinet. The water supply valve is connected to the water inlet end of the water delivery channel 6. The water outlet end of the water delivery channel 6 is connected to the inlet of the first water-containing member 311. The first water-containing member 311 and the second water-containing member 312 are in communication with each other. The second water-containing member 312 is connected to the atomizing generator 5. The one-way check mechanism 7 is respectively connected to the water delivery channel 6 and the first water-containing member 311. The one-way check mechanism 7 is configured to be isolated from the atmosphere when the water supply valve is opened and communicate with the atmosphere when the water supply valve is closed. Specifically, when the water supply valve is always open, it is difficult for the atomizing generator 5 to form atomized water droplets under the action of water pressure. Therefore, the water supply valve can be opened to perform a water storage operation in the water delivery channel 6, the first water-containing member 311, and the second water-containing member 312. Then the water supply valve is closed. At this time, due to the principle of atmospheric communication, the water in the water delivery channel 6, the first water-containing member 311, and the second water-containing member 312 is sprayed onto the clothes in the form of atomized water droplets from the atomizing generator 5, so as to ensure that the atomizing generator 5 can perform atomized air washing on the clothes. If a large amount of water needs to be injected into the inner tub, at this time, the atomizing generator 5 is turned off, the water supply valve is kept open, and it is ensured that the first delivery pipeline 32 is in a connected state, so that continuous water injection into the inner tub can be achieved.
[0033] Preferably, the one-way check mechanism 7 is a one-way check valve. Of course, the one-way check mechanism 7 is not limited to the above-listed structure, and other combinations of one-way check valves and pipelines can also be used. For example, the one-way check valve is connected to the water delivery channel 6 through a first connection pipeline, and the one-way check valve is connected to the inlet of the first water-containing member 311 through a second connection pipeline. A combination structure of a plug and a pipeline can also be used. No matter what structure is adopted, as long as it can be achieved through the one-way check mechanism 7 to be isolated from the atmosphere when the water supply valve is opened and communicate with the atmosphere when the water supply valve is closed.
[0034] Preferably, the installation position of the one-way check valve and the installation position of the outlet of the atomization generator 5 are at different height positions, that is, when the one-way check valve is in communication with the atmosphere, a certain liquid level difference can be formed between the one-way check valve and the outlet of the atomization generator 5, so that the water stored in the water delivery channel 6 and the water tank 31 can more easily be sprayed onto the clothes in the form of atomized water droplets through the atomization generator 5.
[0035] Furthermore, in a drum washing machine, the installation position of the water delivery channel 6 is generally higher than the installation position of the outer tub 1. Therefore, the installation position of the one-way check valve is set higher than the installation position of the outlet of the atomization generator 5, so as to make full use of the original structure of the drum washing machine.
[0036] In order to fill the second water-containing member 312 first during water injection, as Figure 2 shown, a water diversion barrier rib 3111 is provided in the first water-containing member 311. The water diversion barrier rib 3111 divides the internal space of the first water-containing member 311 into a first chamber and a second chamber. The inlet of the first water-containing member 311 is arranged in the first chamber, and the outlet of the first water-containing member 311 is arranged in the second chamber. When starting to inject water into the water tank 31, the water diversion barrier rib 3111 causes all the water flowing through the first chamber to flow into the second water-containing member 312. The water flowing into the second water-containing member 312 is sprayed out through the atomization generator 5, and under the atomization action of the atomization generator 5, the water is converted into small-particle atomized water droplets. The atomized water droplets can wet the clothes first, so that the stains on the clothes surface are removed first, and the stains on the clothes surface are prevented from entering the lining of the clothes; when the second water-containing member 312 is filled with water, the water flowing through the first chamber overflows the water diversion barrier rib 3111 and flows into the second chamber and is sent to the first spray head 41 through the first water delivery pipeline 32, and water is sprayed into the inner tub through the first spray head 41, so that the clothes can be cleaned more cleanly with less time, water volume, washing liquid and mechanical action during the subsequent washing process, improving the washing effect on the clothes and making the drum washing machine more energy-efficient.
[0037] Preferably, the water diversion barrier rib 3111 is arranged along the direction from the inlet of the first water-containing member 311 to the inlet of the second water-containing member 312.
[0038] Preferably, the height of the bottom of the first water-containing member 311 is higher than the height of the bottom of the second water-containing member 312, so that a large amount of water can be injected into the second water-containing member 312, and enough water can be provided for the atomization generator 5 to meet the requirements of clothes atomization washing.
[0039] Preferably, the height of the bottom of the first chamber is the same as that of the bottom of the second chamber. When the liquid level in the second water-containing member 312 reaches the bottom of the first chamber or the second chamber, the water flowing through the first chamber can overflow the water-dividing barrier rib 3111 and flow into the second chamber, so that enough water can be injected into the second water-containing member 312.
[0040] To drain all the water in the second water-containing member 312, as Figure 2 shown, the water tank 31 further includes a siphon member 313. The siphon member 313 is connected to the second spray head 42 through a third delivery pipe 34. The siphon member 313 is used to suck out all the water in the second water-containing member 312 in a siphon manner, avoiding water remaining in the second water-containing member 312, thereby preventing the second water-containing member 312 from mildewing, deteriorating, and breeding bacteria, and improving the sanitary safety of the drum washing machine.
[0041] Preferably, as Figure 2 shown, the water-containing assembly 3 further includes a cover 35 provided above the water tank 31; the siphon member 313 includes a siphon cap 3131 and a siphon pipe 3132. The siphon cap 3131 is provided on the cover 35, and the siphon pipe 3132 is provided in the second water-containing member 312. The siphon pipe 3132 is communicated with the second outlet of the second water-containing member 312. When the cover 35 is closed with the water tank 31, the siphon cap 3131 can be sleeved on the siphon pipe 3132, and a siphon channel is formed between the siphon cap 3131 and the siphon pipe 3132. When the second water-containing member 312 is filled with water or reaches the siphon liquid level, the water in the second water-containing member 312 can be sucked out through the siphon channel. The sucked water flows through the third delivery pipe 34 to the second spray head 42 and is sprayed onto the viewing window through the second spray head 42.
[0042] Preferably, the height of the siphon cap 3131 is slightly less than the height of the second water-containing member 312, so that there is a gap between the bottom of the siphon cap 3131 and the bottom of the second water-containing member 312, enabling the water in the second water-containing member 312 to be siphoned into the siphon channel through this gap.
[0043] Preferably, the height of the siphon pipe 3132 is slightly less than the height of the second water-containing member 312, and when the siphon cap 3131 can be sleeved on the siphon pipe 3132, there is a gap between the top of the siphon pipe 3132 and the top of the siphon cap 3131, enabling the water siphoned into the siphon channel to flow into the siphon pipe 3132 through this gap, and flow into the third delivery pipe 34 through the outlet of the first water-containing member 311, and be delivered to the second spray head 42 through the third delivery pipe 34.
[0044] Preferably, as Figure 2As shown, a positioning post 3112 is provided inside the first water-containing member 311, and a positioning hole 351 is provided on the cover body 35. When the cover body 35 is connected to the water tank 31, the positioning post 3112 passes through the positioning hole 351 to position the cover body 35, preventing the cover body 35 from falling off the water tank 31.
[0045] Of course, the structure of the siphon member 313 is not limited to the structure exemplified above. Those skilled in the art can flexibly set the structure of the siphon member 313 in actual applications, as long as the water in the second water-containing member 312 can be completely sucked out in a siphon manner through the siphon member 313.
[0046] So far, the technical solution of the present invention has been described in conjunction with the preferred embodiments shown in the drawings. However, it is easy for those skilled in the art to understand that the protection scope of the present invention is obviously not limited to these specific embodiments. Without departing from the principle of the present invention, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will all fall within the protection scope of the present invention.
Claims
1. A laundry treatment device, characterized in that, The clothing treatment device includes a box body, and a water containing component, a spraying component and an atomizing generator arranged in the box body; The water containing component includes a water tank and a plurality of conveying pipelines. The water tank is connected to the atomizing generator through one of the conveying pipelines, and the atomizing generator is used for atomizing and cleaning clothes; the water tank is connected to the spraying component through the remaining conveying pipelines, and the spraying component is used for spraying and cleaning clothes; Specifically, the water tank includes a first water containing member and a second water containing member that communicate with each other. The plurality of conveying pipelines include a first conveying pipeline, a second conveying pipeline and a third conveying pipeline. The outlet of the first water containing member is connected to the spraying component through the first conveying pipeline. The first outlet of the second water containing member is connected to the atomizing generator through the second conveying pipeline. The second outlet of the second water containing member is connected to the spraying component through the third conveying pipeline; Wherein, the spraying component includes a first spray head and a second spray head. The outlet of the first water containing member is connected to the first spray head through the first conveying pipeline, and the first spray head is used for spraying water into the inner cylinder of the clothing treatment device; the second outlet of the second water containing member is connected to the second spray head through the third conveying pipeline, and the second spray head is used for spraying water onto the viewing window of the clothing treatment device; Wherein, the water tank further includes a siphon member, and the siphon member is connected to the second spray head through the third conveying pipeline, and the siphon member is used for sucking out the water in the second water containing member in a siphon manner; The clothing treatment device further includes a water supply valve, a water conveying channel and a one-way check mechanism arranged in the box body; The water supply valve is connected to the water inlet end of the water conveying channel. The water outlet end of the water conveying channel is connected to the atomizing generator through the first water containing member and the second water containing member. The one-way check mechanism is respectively connected to the water conveying channel and the first water containing member, and the one-way check mechanism is configured to be isolated from the atmosphere when the water supply valve is opened and communicate with the atmosphere when the water supply valve is closed.
2. The laundry treating apparatus according to claim 1, wherein The clothing treatment device further includes an outer cylinder arranged in the box body. The inner cylinder is rotatably accommodated in the outer cylinder. A clothing input port is arranged on the box body, and a window gasket is arranged between the clothing input port and the outer cylinder; The first spray head is arranged on the window gasket.
3. The laundry treatment device according to claim 2, wherein The clothing treatment device further includes a door body pivotally connected to the box body, and the viewing window is arranged on the door body; The second spray head is arranged on the window gasket.
4. The laundry treating apparatus according to claim 1, wherein The one-way check mechanism is a one-way check valve.
5. The laundry treating apparatus according to claim 1 or 2, characterized in that, A water dividing barrier rib is arranged in the first water containing member. The water dividing barrier rib divides the internal space of the first water containing member into a first chamber and a second chamber. The inlet of the first water containing member is arranged in the first chamber, and the outlet of the first water containing member is arranged in the second chamber; The water separation and blocking ribs are arranged such that when water starts to be injected into the water tank, all the water flowing through the first chamber flows into the second water-containing member; when the second water-containing member is filled with water, the water flowing through the first chamber overflows the water separation and blocking ribs and flows into the second chamber and then flows to the first spray head through the first delivery pipeline.
6. The laundry treating apparatus according to claim 5, wherein, The height of the bottom of the first water-containing member is higher than the height of the bottom of the second water-containing member.
7. The laundry treating apparatus according to claim 6, wherein The water-containing assembly further includes a cover body arranged above the water tank; The siphon member includes a siphon cap arranged on the cover body and a siphon pipe arranged in the second water-containing member. The siphon pipe is communicated with the second outlet of the second water-containing member. When the cover body is closed with the water tank, the siphon cap can be sleeved on the siphon pipe, and a siphon channel is formed between the siphon cap and the siphon pipe. The water in the second water-containing member can flow to the second spray head through the siphon channel and the third delivery pipeline.
Citation Information
Patent Citations
Washing machine having a device for producing water drops and method for operating said washing machine
CN104781462A
Drum washing machine
CN105088622A
Washing-machine water storage tank and washing machine
CN107164920A
Detergent putting structure and washing machine
CN108729141A
Air pressure water-storage type atomization device
CN202893572U