WO2020125613A1 - 衣物处理设备 - Google Patents

衣物处理设备 Download PDF

Info

Publication number
WO2020125613A1
WO2020125613A1 PCT/CN2019/125903 CN2019125903W WO2020125613A1 WO 2020125613 A1 WO2020125613 A1 WO 2020125613A1 CN 2019125903 W CN2019125903 W CN 2019125903W WO 2020125613 A1 WO2020125613 A1 WO 2020125613A1
Authority
WO
WIPO (PCT)
Prior art keywords
water
laundry treatment
way check
drum
atomization generator
Prior art date
Application number
PCT/CN2019/125903
Other languages
English (en)
French (fr)
Inventor
黄涛
徐永洪
黄本财
Original Assignee
青岛海尔滚筒洗衣机有限公司
海尔智家股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN201811558377.3A external-priority patent/CN111334970B/zh
Priority claimed from CN201811560210.0A external-priority patent/CN111334990A/zh
Priority claimed from CN201811558424.4A external-priority patent/CN111334968B/zh
Application filed by 青岛海尔滚筒洗衣机有限公司, 海尔智家股份有限公司 filed Critical 青岛海尔滚筒洗衣机有限公司
Priority to EP19899655.5A priority Critical patent/EP3901351A4/en
Priority to US17/416,070 priority patent/US20220074106A1/en
Priority to JP2021536012A priority patent/JP2022523899A/ja
Publication of WO2020125613A1 publication Critical patent/WO2020125613A1/zh

Links

Images

Classifications

    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • D06F39/08Liquid supply or discharge arrangements
    • D06F39/088Liquid supply arrangements
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • D06F39/02Devices for adding soap or other washing agents
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • D06F39/08Liquid supply or discharge arrangements
    • D06F39/083Liquid discharge or recirculation arrangements

Definitions

  • the invention belongs to the technical field of laundry treatment, and specifically provides a laundry treatment device.
  • Clothes processing equipment is equipment that can wash, dry, sterilize, and/or deodorize clothes. With the continuous improvement of production levels and the continuous growth of user needs, users have higher and higher demands on clothes processing equipment.
  • the technical solution 1 of the present invention provides a laundry treatment apparatus including a laundry treatment barrel, a water supply valve, a delivery device, a water containing member, an atomization generator and a one-way check mechanism
  • the delivery device includes a water delivery channel
  • the water supply valve is connected to the water inlet of the water delivery channel
  • the water outlet of the water delivery channel is connected to the atomizing generator through the water containing member
  • the outlet of the atomizing generator is set toward the inner cavity of the laundry treatment cylinder
  • the one-way check mechanism Separately connected to the water delivery channel and the water containing member, the one-way check mechanism is set 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.
  • the delivery device further includes a laundry treatment agent delivery cavity, and the laundry treatment agent delivery cavity is disposed below the water delivery channel.
  • the water supply valve is provided outside the dropping device.
  • the installation position of the one-way check mechanism and the installation position of the outlet of the atomization generator are at different height positions.
  • the installation position of the one-way check mechanism is higher than the installation position of the outlet of the atomization generator.
  • the outlet of the atomization generator is arranged obliquely.
  • the one-way check mechanism includes a one-way check valve, a first pipeline, and a second pipeline.
  • the one-way check valve is connected to the water delivery channel through the first pipeline.
  • the check valve is connected to the water containing member through the second pipeline.
  • the laundry treatment apparatus is a drum washing machine
  • the laundry treatment drum is a drum of the drum washing machine.
  • the drum washing machine further includes a window pad connected to the drum, and the atomization generator is disposed on the window pad.
  • the atomization generator is provided on the outer cylinder of the drum.
  • the one-way check mechanism by connecting the one-way check mechanism to the water delivery channel and the water containing member, when the water supply valve is opened, the water delivery channel and the water containing The component performs the water injection operation, and then when the water supply valve is closed, the one-way check mechanism communicates with the atmosphere to cause the water in the water delivery channel and the water containing component to be ejected from the atomization generator, and the atomization effect of the atomization generator The water is converted into small particles of atomized water droplets to achieve the care of the atomized air of the clothes.
  • the clothes before the water washing, the clothes can be wetted by atomizing the water droplets, so that the stains on the surface of the clothes are removed first, to avoid the stains on the surface of the clothes from entering the lining of the clothes, so that they can pass through in the subsequent washing process Less time, water volume, washing liquid and mechanical action can clean the clothes, improve the washing effect on the clothes, and make the clothes processing equipment more energy-saving.
  • this atomized air washing method can treat clothes of special materials such as cashmere and wool, which not only makes the surface of the clothes of the material more smooth and smooth, but also quickly removes stains on the clothes, and does not It will damage the fiber structure of the clothes, improve the applicability of clothes of the clothes processing equipment, and thus enhance the user experience.
  • a laundry treatment device including a laundry treatment barrel, a water supply valve, a delivery device, a water-containing member and an atomization generator
  • the delivery device includes a water delivery channel
  • the water supply valve passes water
  • the channel is connected to the water inlet end of the water containing member
  • the water outlet end of the water containing member is connected to the atomizing generator through the first pipeline
  • the water outlet end of the water containing member is also connected to the laundry treatment cylinder through the second pipeline, and atomization occurs
  • the outlet of the device is arranged toward the inner cavity of the laundry treatment barrel, and the water conveyance channel and/or water containing member is provided with a one-way check structure, which is arranged to be isolated from the atmosphere when the water supply valve is opened and closed when the water supply valve is closed When connected with the atmosphere.
  • a shower head is provided on the laundry treatment drum, and the second pipe is connected to the shower head.
  • the shower port of the shower head is disposed toward the inner cavity of the laundry treatment drum.
  • the one-way check structure is disposed near the water inlet end of the water conveying channel.
  • the installation position of the one-way check structure and the installation position of the outlet of the atomization generator are at different height positions.
  • the installation position of the one-way check structure is higher than the installation position of the outlet of the atomization generator.
  • the one-way check structure is a one-way check valve.
  • the laundry treatment apparatus is a drum washing machine
  • the laundry treatment drum is a drum of the drum washing machine.
  • the drum washing machine further includes a window pad connected to the drum, and the atomization generator is disposed on the window pad.
  • the atomization generator is provided on the outer cylinder of the drum.
  • a one-way check structure on the water conveying channel and/or water containing member, when the water supply valve is opened, the water conveying channel and The water-holding member performs a water injection operation, and then when the water supply valve is closed, the one-way check structure communicates with the atmosphere to cause the water in the water-holding member to be ejected from the atomizing generator, and under the atomizing effect of the atomizing generator
  • the water is converted into small particles of atomized water droplets to achieve the care of the atomized air of the clothes.
  • other water injection methods such as spraying can be provided by connecting the second pipe to the clothes treatment cylinder.
  • the clothes before washing with water, the clothes can be wetted by atomizing water droplets, so that the stains on the surface of the clothes are removed first, to prevent the stains on the surface of the clothes from entering the lining of the clothes.
  • the second pipeline injects water into the laundry treatment cylinder, so that in the subsequent washing process, the laundry can be cleaned with less time, water volume, washing liquid and mechanical action, improving the washing effect of the laundry, and making the laundry treatment equipment more energy-saving .
  • this atomized air washing method can treat clothes of special materials such as cashmere and wool, which not only makes the surface of the clothes of the material more smooth and smooth, but also quickly removes stains on the clothes, and does not It will damage the fiber structure of the clothes, improve the applicability of clothes of the clothes processing equipment, and thus enhance the user experience.
  • the second pipeline is connected to the shower head provided on the laundry treatment cylinder, so that the laundry treatment device of the present invention has at least two washing modes of atomized air washing and spray washing, so that the user can according to his own needs Choose the corresponding washing method flexibly to meet various needs of users and enhance user experience.
  • a laundry treatment device including a laundry treatment barrel, a water supply valve, a delivery device, a water-containing member and an atomization generator
  • the delivery device includes a water delivery channel, a water supply valve and a water delivery device
  • the water inlet end of the channel is connected, and the water outlet end of the water channel is connected to the atomizing generator through the water containing member, the outlet of the atomizing generator is set toward the inner cavity of the laundry treatment cylinder, and the water channel and/or the water containing member are set
  • There is a one-way check structure which is set 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.
  • the one-way check structure is disposed near the water inlet end of the water conveying channel.
  • the water supply valve is provided outside the dropping device.
  • the installation position of the one-way check structure and the installation position of the outlet of the atomization generator are at different height positions.
  • the installation position of the one-way check structure is higher than the installation position of the outlet of the atomization generator.
  • the outlet of the atomization generator is arranged obliquely.
  • the one-way check structure is a one-way check valve.
  • the laundry treatment apparatus is a drum washing machine
  • the laundry treatment drum is a drum of the drum washing machine.
  • the drum washing machine further includes a window pad connected to the drum, and the atomization generator is disposed on the window pad.
  • the atomization generator is provided on the outer cylinder of the drum.
  • a one-way check structure on the water conveying channel and/or water containing member, when the water supply valve is opened, the water conveying channel and The water-holding member performs a water injection operation, and then when the water supply valve is closed, the one-way check structure communicates with the atmosphere to cause the water in the water-holding member to be ejected from the atomizing generator, and under the atomizing effect of the atomizing generator The water is converted into small particles of atomized water droplets to achieve the care of the atomized air of the clothes.
  • the clothes before the water washing, the clothes can be wetted by atomizing the water droplets, so that the stains on the surface of the clothes are removed first, to avoid the stains on the surface of the clothes from entering the lining of the clothes, so that they can pass through in the subsequent washing process Less time, water volume, washing liquid and mechanical action can clean the clothes, improve the washing effect on the clothes, and make the clothes processing equipment more energy-saving.
  • this atomized air washing method can treat clothes of special materials such as cashmere and wool, which not only makes the surface of the clothes of the material more smooth and smooth, but also quickly removes stains on the clothes, and does not It will damage the fiber structure of the clothes, improve the applicability of clothes of the clothes processing equipment, and thus enhance the user experience.
  • Technical solution 4 of the present invention provides a laundry treatment device including a laundry treatment barrel, a water supply valve, a delivery device, and an atomization generator.
  • the delivery device includes a water delivery channel, a water supply valve, and a water intake channel
  • the water outlet of the water delivery channel is connected to the atomization generator through the first pipeline, and the water outlet of the water delivery channel is also connected to the second pipeline.
  • the outlet of the second pipeline is set toward the inner cavity of the laundry treatment cylinder.
  • the outlet of the atomization generator is arranged toward the inner cavity of the laundry treatment drum, and the second pipeline is arranged to be able to communicate with the atmosphere.
  • the second pipeline includes a pipeline body and a one-way check structure provided on the pipeline body, the one-way check structure is configured to be isolated from the atmosphere when the water supply valve is opened and to When the water supply valve is closed, it communicates with the atmosphere.
  • the installation position of the one-way check structure and the installation position of the outlet of the atomization generator are at different height positions.
  • the installation position of the one-way check structure is higher than the installation position of the outlet of the atomization generator.
  • the one-way check structure is a one-way check valve.
  • the outlet of the atomization generator is arranged obliquely.
  • the delivery device further includes a laundry treatment agent delivery cavity, and the laundry treatment agent delivery cavity is disposed below the water delivery channel.
  • the laundry treatment apparatus is a drum washing machine
  • the laundry treatment drum is a drum of the drum washing machine.
  • the drum washing machine further includes a window pad connected to the drum, and the atomization generator is disposed on the window pad.
  • the atomization generator is provided on the outer cylinder of the drum.
  • the clothes before the water washing, the clothes can be wetted by atomizing the water droplets, so that the stains on the surface of the clothes are removed first, to avoid the stains on the surface of the clothes from entering the lining of the clothes, so that they can pass through in the subsequent washing process Less time, water volume, washing liquid and mechanical action can clean the clothes, improve the washing effect on the clothes, and make the clothes processing equipment more energy-saving.
  • this atomized air washing method can treat clothes of special materials such as cashmere and wool, which not only makes the surface of the clothes of the material more smooth and smooth, but also quickly removes stains on the clothes, and does not It will damage the fiber structure of the clothes, improve the applicability of clothes of the clothes processing equipment, and thus enhance the user experience.
  • the one-way check structure is isolated from the atmosphere when the water supply valve is opened, so that normal water inlet operation is performed, and when the water supply valve is closed, the one-way check structure communicates with the atmosphere, making the transmission A part of the water in the water channel and all the water in the first pipeline can be sprayed from the atomization generator to realize the atomized air washing of the clothes.
  • FIG. 1 is a partial structural schematic diagram of a laundry treatment device of technical solution 1 of the present invention
  • FIG. 2 is a partial structural schematic diagram of a drum washing machine of technical solution 1 of the present invention
  • FIG. 3 is a partial structural schematic diagram of the laundry treatment device of technical solution 2 of the present invention.
  • FIG. 4 is a partial structural schematic diagram of a drum washing machine of technical solution 2 of the present invention.
  • FIG. 5 is a partial structural schematic diagram of the laundry treatment device of technical solution 3 of the present invention.
  • FIG. 6 is a partial structural schematic diagram of a drum washing machine of technical solution 3 of the present invention.
  • the terms “middle”, “upper”, “lower”, “inner”, “outer”, etc. indicate the direction or positional relationship is based on the direction or The positional relationship is only for the 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 construed as limiting the present invention.
  • the terms “first” and “second” are used for descriptive purposes only, and cannot be understood as indicating or implying relative importance.
  • connection can also be a detachable connection or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected, or it can be indirectly connected through an intermediate medium, or it can be the communication between the two components.
  • connection can also be a detachable connection or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected, or it can be indirectly connected through an intermediate medium, or it can be the communication between the two components.
  • the present invention provides a laundry treatment equipment aimed at improving the effectiveness of laundry treatment equipment with a washing function.
  • the washing effect of the clothes, and the application scope of the clothes are improved to meet the use requirements of the users, thereby improving the user experience.
  • the laundry treatment apparatus of the present invention includes a laundry treatment barrel, a water supply valve 1, a delivery device 2, a water containing member, an atomization generator 3, and a one-way check mechanism.
  • the delivery device 2 includes a water delivery channel 21,
  • the water supply valve 1 is connected to the water inlet end of the water delivery channel 21, and the water outlet end of the water delivery channel 21 is connected to the atomization generator 3 through a water-holding member, and the outlet of the atomization generator 3 is set toward the inner cavity of the clothes treatment cylinder, single
  • the one-way check mechanism is respectively connected to the water delivery channel 21 and the water containing member.
  • the one-way check mechanism is configured to be isolated from the atmosphere when the water supply valve 1 is opened and to communicate with the atmosphere when the water supply valve 1 is closed.
  • the water-holding member may be a water tank, a water tank, or a water-holding tank on the laundry treatment device.
  • the atomization generator 3 can be an ultrasonic atomization generator or a compression atomization generator.
  • the one-way check mechanism may adopt a combination structure of a one-way check valve 7 and a pipeline, wherein the one-way check valve 7 may use the one-way check valve 7 in the patent number 201721853840.8, which is The principle of the valve 7 belongs to the prior art, and will not be elaborated here.
  • other combination structures of one-way check structures and pipelines can also be used.
  • the one-way check structure includes a cylinder
  • the spring allows the moving block to move between the top limit position, the middle position and the bottom limit position. When the spring is in a natural state, the spring keeps the moving block at the bottom limit position. At this time, the air inlet and the outlet are connected, and the water inlet and the outlet are separated by the moving block, so as to realize the one-way check structure and the atmosphere.
  • the one-way check mechanism can also be a combination structure of blockage and pipeline. Specifically, the water conveying channel 21 and the water-holding member are connected by a connecting pipe, and an opening is provided at the highest point of the connecting pipe. A blockage is provided.
  • the opening When the water supply valve 1 enters the water, the opening is closed by the blockage. When the water supply valve 1 is closed, the blockage is removed and the opening is communicated with the atmosphere, so that the water in the water delivery channel 21 and the water containing member is atomized The outlet of the generator 3 is ejected.
  • Those skilled in the art can flexibly set the specific structure of the one-way check mechanism in practical applications, as long as the one-way check mechanism can achieve isolation from the atmosphere when the water supply valve 1 is opened and communication with the atmosphere when the water supply valve 1 is closed. can.
  • the present invention adopts a one-way check mechanism to enable the atomizing generator 3 to smoothly generate atomized water droplets, because when the water supply valve 1 is always open, it is difficult for the atomizing generator 3 to be affected by the water pressure Atomized water droplets are formed, so the water supply channel 1 and the water containing member can be stored by opening the water supply valve 1, and then the water supply valve 1 is closed. At this time, the water supply channel 21 and the water containing member are made by the principle of atmospheric communication The water in the spray from the atomization generator 3 is sprayed onto the clothing in the form of atomized water droplets, thereby ensuring that the atomization generator 3 can perform atomized air washing on the clothing.
  • the laundry treatment device of the present invention may be a drum washing machine, a pulsator washing machine, an integrated washing and drying machine, and a laundry care machine.
  • a drum washing machine a pulsator washing machine
  • an integrated washing and drying machine a laundry care machine.
  • Those skilled in the art can flexibly set the application object of the technical solution of the present invention. The adjustment and change of this kind of application objects do not deviate from the principle of the present invention, and should be limited to the protection scope of the present invention.
  • the technical solution of the present invention is further described below in conjunction with a drum washing machine.
  • the drum washing machine of the present invention includes a cabinet, a drum 4 provided in the cabinet, a window pad 5 connected between the outer cylinder of the drum 4 and the cabinet, and an atomization generator 3 is preferably arranged on the window pad 5 and the outlet of the atomizing generator 3 is arranged obliquely towards the inner cavity of the drum 4 (of course, it can be other setting directions), or alternatively, the atomizing generator 3 can also be arranged on the drum On the outer cylinder of 4, it is only necessary to spray atomized water droplets onto the laundry in the inner cylinder of the drum 4 to perform atomized air washing.
  • the drum washing machine further includes a delivery device 2 disposed on the box body.
  • the delivery device 2 includes a laundry treatment agent delivery cavity and a water box provided on top of the laundry treatment agent delivery cavity.
  • a water delivery channel 21 is formed in the water box.
  • the inlet end of the channel 21 is connected to the water supply valve 1 provided outside the delivery device 2.
  • the outlet end of the water delivery channel 21 is connected to the water tank 6 through a pipe, and the water tank 6 is connected to the atomizer generator 3 through a pipe, and the water tank 6 has storage water Function
  • the one-way check valve 7 is provided outside the water delivery channel 21 and the water tank 6, and the one-way check valve 7 is connected to the water delivery channel 21 through the first pipeline 8, the one-way check valve 7 also passes through
  • the second pipeline 9 is connected to the water tank 6 (this part of the structure is not shown in FIG. 2).
  • the installation position of the one-way check valve 7 and the installation position of the outlet of the atomization generator 3 are at different height positions, that is, when the one-way check valve 7 is in conduction with the atmosphere, the one-way check valve can be made 7 and the outlet of the atomization generator 3 form a certain liquid level difference, so that the water stored in the water delivery channel 21 and the water tank 6 is more easily sprayed onto the laundry in the form of atomized water droplets through the atomization generator 3.
  • the installation position of the dispensing device 2 is generally higher than the installation position of the drum 4, so it is more preferable to set the installation position of the one-way check valve 7 higher than the outlet of the atomization generator 3 Installation position, so as to make full use of the original structure of the drum washing machine.
  • the laundry treatment apparatus of the present invention includes a laundry treatment barrel, a water supply valve 1, a delivery device 2, a water containing member, and an atomization generator 3.
  • the delivery device 2 includes a water delivery channel 21, and the water supply valve 1 passes water
  • the channel 21 is connected to the water inlet end of the water containing member, and the water outlet end of the water containing member is connected to the atomization generator 3 through the first pipeline 9, and the water outlet end of the water containing member is also connected to the laundry treatment cylinder through the second pipeline 10 ,
  • the outlet of the atomization generator 3 is arranged toward the inner cavity of the laundry treatment drum, and the water delivery channel 21 and/or the water containing member is provided with a one-way check structure.
  • the one-way check structure is set when the water supply valve 1 is opened. Atmospheric isolation and communication with the atmosphere when the water supply valve 1 is closed.
  • the water-holding member may be a water tank, a water tank, or a water-holding tank on the laundry treatment device. Those skilled in the art can flexibly set the specific structure of the water-holding member in practical applications, as long as the water-holding member It can store and hold water.
  • the atomization generator 3 can be an ultrasonic atomization generator or a compression atomization generator.
  • the one-way check structure can use a one-way check valve 8, for example, the one-way check valve 8 in patent number 201721853840.8, the principle of the one-way check valve 8 belongs to the prior art, which is different here To repeat, of course, in the present invention, other one-way check structures can also be used.
  • the one-way check structure includes a cylinder, a moving block disposed in the cylinder, and connected between the cylinder and the moving block Spring, the moving block divides the inner chamber of the barrel into two parts, the top of the barrel is provided with an air inlet, the bottom of the barrel is provided with a water inlet, and the middle of the barrel is provided with an outlet, the spring allows the moving block to be on top Move between the limit position, the middle position and the bottom limit position. When the spring is in a natural state, the spring keeps the moving block at the bottom limit position. At this time, the air inlet and the outlet are connected, and the water inlet and the outlet are separated by the moving block, thereby achieving a single
  • the reverse check structure communicates with the atmosphere.
  • the one-way check structure allows water to pass through and is isolated from the atmosphere. It should be noted that the above top and bottom are relative to the cylinder, and the installation direction and specific installation position of the specific one-way check structure do not constitute a limitation. Or alternatively, the one-way check structure may also be a blocking structure.
  • an opening is provided at the highest point of the water delivery channel 21 and/or the water-holding member, and a blocking is provided on the opening, when the water supply valve 1 enters the water
  • the opening is closed by clogging, and when the water supply valve 1 is closed, the clogging is removed and the opening is communicated with the atmosphere, so that the water in the water containing member is ejected from the outlet of the atomization generator 3.
  • Those skilled in the art can flexibly set the specific structure of the one-way check structure in practical applications, as long as the one-way check structure can achieve isolation from the atmosphere when the water supply valve 1 is opened and communication with the atmosphere when the water supply valve 1 is closed. can.
  • the one-way check structure can be provided only on the water conveying channel 21, in this structure, if the one-way check structure is in communication with the atmosphere, the water in the water conveying channel 21 and the water containing member will occur through atomization
  • the device 3 flows into the interior of the laundry treatment tub.
  • a one-way check structure can also be provided on the water conveying channel 21 and the water containing member respectively, so that the water conveying channel 21 and the water containing member when the one-way check structure communicates with the atmosphere The water will flow into the laundry treatment tub through the atomization generator 3, or a unidirectional check structure may be provided only on the water containing member.
  • the unidirectional check structure communicates with the atmosphere
  • At least the water in the water-containing member can flow into the laundry treatment tub through the atomization generator 3, and those skilled in the art can flexibly set the installation position and distribution of the one-way check structure in practical applications, as long as at least the capacity is guaranteed
  • the water in the water member can flow into the interior of the laundry treatment tub through the atomization generator 3, and the atomized air of the laundry can be washed.
  • the first pipeline 9 and the second pipeline 10 may be connected to the water delivery channel 21 through the same outlet end of the water delivery channel 21, and may also be connected to the water delivery through different outlet ends of the water delivery channel 21 respectively.
  • This structural change does not deviate from the technical solution of the present invention, and should be limited to the protection scope of the present invention.
  • the present invention adopts a one-way check structure to enable the atomization generator 3 to smoothly generate atomized water droplets, because when the water supply valve 1 is always open, it is difficult for the atomization generator 3 to be affected by the water pressure Atomized water droplets are formed, so water can be stored in the water delivery channel 21 and the water-holding member by opening the water supply valve 1, and then the water supply valve 1 is closed (the second pipeline 10 is selectively closed at this time).
  • the principle of atmospheric communication allows at least a part of the water in the water-containing member to be sprayed onto the clothing in the form of atomized water droplets from the atomization generator 3, so as to ensure that the atomization generator 3 can perform atomized air washing on the clothing.
  • a large amount of water is injected into the laundry treatment cylinder.
  • the atomization generator 3 is turned off, the water supply valve 1 is always opened, and the second pipeline 10 is ensured to be in a connected state, so that continuous water injection into the laundry treatment cylinder can be achieved.
  • the pipeline 10 may be directly connected to the water injection port or the spray structure on the laundry treatment tub.
  • the laundry treatment device of the present invention may be a drum washing machine, a pulsator washing machine, an integrated washing and drying machine, and a laundry care machine.
  • a drum washing machine a pulsator washing machine
  • an integrated washing and drying machine a laundry care machine.
  • Those skilled in the art can flexibly set the application object of the technical solution of the present invention. The adjustment and change of this kind of application objects do not deviate from the principle of the present invention, and should be limited to the protection scope of the present invention.
  • the technical solution of the present invention is further described below in conjunction with a drum washing machine.
  • the drum washing machine of the present invention includes a cabinet, a drum 4 provided in the cabinet, a window pad 5 connected between the outer cylinder of the drum 4 and the cabinet, and the atomization generator 3 is preferably Is provided on the window mat 5 and the outlet of the atomizer generator 3 is arranged obliquely toward the inner cavity of the drum 4 (of course, it can be other installation directions), or alternatively, the atomizer generator 3 can also be arranged on the drum 4 As long as the outer cylinder can spray atomized water droplets on the laundry in the inner cylinder of the drum 4 to perform atomized air washing.
  • a spray head 7 is provided on the drum 4 or the window pad 5, and the outlet of the spray head 7 is also arranged toward the inner cavity of the drum 4.
  • the spray head 7 is mainly used to spray water into the drum 4 and the second pipe
  • a control valve can be selectively installed on the circuit 10, and the control valve can control the on-off of the second pipeline 10.
  • the drum washing machine further includes a delivery device 2 disposed on the box body.
  • the delivery device 2 includes a laundry treatment agent delivery cavity and a water box provided on top of the laundry treatment agent delivery cavity.
  • a water delivery channel 21 is formed in the water box. The inlet end of the channel 21 is connected to the water supply valve 1 provided outside the delivery device 2.
  • the outlet end of the water channel 21 is connected to the water tank 6 through a pipe, and the water tank 6 is connected to the atomizer generator 3 through the first pipeline 9 6 is connected to the sprinkler head 7 through the second pipeline 10, the water tank 6 has a function of storing water, and the one-way check valve 8 is provided on the water delivery channel 21, for example, the one-way check valve 8 can be brought close to the water delivery channel
  • the inlet end of 21 is set.
  • the one-way check valve 8 can also be provided at other positions of the water channel 21, and those skilled in the art can flexibly set the one-way check valve 8 in the water channel
  • the installation position on 21, such adjustment and change of the installation position of the one-way check valve 8 does not constitute a limitation on the present invention, and should be limited within the scope of protection of the present invention.
  • the installation position of the one-way check valve 8 and the installation position of the outlet of the atomization generator 3 are at different height positions, that is, when the one-way check valve 8 is in conduction with the atmosphere, the one-way check valve can be made 8 and the outlet of the atomization generator 3 form a certain liquid level difference, so that the water stored in the water delivery channel 21 and the water tank 6 is more easily sprayed onto the laundry through the atomization generator 3 in the form of atomized water droplets.
  • the installation position of the dispensing device 2 is generally higher than the installation position of the drum 4, so it is more preferable to set the installation position of the one-way check valve 8 higher than the outlet of the atomization generator 3 Installation position, so as to make full use of the original structure of the drum washing machine.
  • the laundry treatment apparatus of the present invention includes a laundry treatment barrel, a water supply valve 1, a delivery device 2, a water containing member and an atomization generator 3,
  • the delivery device 2 includes a water delivery channel 21, a water supply valve 1 and a water delivery device
  • the water inlet end of the channel 21 is connected, and the water outlet end of the water channel 21 is connected to the atomizing generator 3 through a water containing member, and the outlet of the atomizing generator 3 is disposed toward the inner cavity of the laundry treatment cylinder.
  • the water channel 21 and/or The water containing member is provided with a one-way check structure, which is configured to be isolated from the atmosphere when the water supply valve 1 is opened and to communicate with the atmosphere when the water supply valve 1 is closed.
  • the water-holding member may be a water tank, a water tank, or a water-holding tank on the laundry treatment device.
  • the atomization generator 3 can be an ultrasonic atomization generator or a compression atomization generator.
  • the water in the water-holding member can be converted into atomized water droplets when the one-way check structure communicates with the atmosphere to perform atomized air washing on the clothes.
  • the one-way check structure can use a one-way check valve 7, for example, the one-way check valve 7 in patent number 201721853840.8, the principle of the one-way check valve 7 belongs to the prior art, which is different here To repeat, of course, in the present invention, other one-way check structures can also be used.
  • the one-way check structure includes a cylinder, a moving block disposed in the cylinder, and connected between the cylinder and the moving block Spring, the moving block divides the inner chamber of the barrel into two parts, the top of the barrel is provided with an air inlet, the bottom of the barrel is provided with a water inlet, and the middle of the barrel is provided with an outlet, the spring allows the moving block to be on top Move between the limit position, the middle position and the bottom limit position. When the spring is in a natural state, the spring keeps the moving block at the bottom limit position. At this time, the air inlet and the outlet are connected, and the water inlet and the outlet are separated by the moving block, thereby achieving a single
  • the reverse check structure communicates with the atmosphere.
  • the one-way check structure allows water to pass through and is isolated from the atmosphere. It should be noted that the above top and bottom are relative to the cylinder, and the installation direction and specific installation position of the specific one-way check structure do not constitute a limitation. Or alternatively, the one-way check structure may also be a blocking structure.
  • an opening is provided at the highest point of the water delivery channel 21 and/or the water-holding member, and a blocking is provided on the opening, when the water supply valve 1 enters the water
  • the opening is closed by clogging, and when the water supply valve 1 is closed, the clogging is removed and the opening is communicated with the atmosphere, so that the water in the water containing member is ejected from the outlet of the atomization generator 3.
  • Those skilled in the art can flexibly set the specific structure of the one-way check structure in practical applications, as long as the one-way check structure can achieve isolation from the atmosphere when the water supply valve 1 is opened and communication with the atmosphere when the water supply valve 1 is closed. can.
  • the one-way check structure can be provided only on the water conveying channel 21, in this structure, if the one-way check structure is in communication with the atmosphere, the water in the water conveying channel 21 and the water containing member will occur through atomization
  • the device 3 flows into the interior of the laundry treatment tub.
  • a one-way check structure can also be provided on the water conveying channel 21 and the water containing member respectively, so that the water conveying channel 21 and the water containing member when the one-way check structure communicates with the atmosphere The water will flow into the laundry treatment tub through the atomization generator 3, or a unidirectional check structure may be provided only on the water containing member.
  • the unidirectional check structure communicates with the atmosphere
  • At least the water in the water-containing member can flow into the laundry treatment tub through the atomization generator 3, and those skilled in the art can flexibly set the installation position and distribution of the one-way check structure in practical applications, as long as at least the capacity is guaranteed
  • the water in the water member can flow into the interior of the laundry treatment tub through the atomization generator 3, and the atomized air of the laundry can be washed.
  • the present invention adopts a one-way check structure to enable the atomization generator 3 to smoothly generate atomized water droplets, because when the water supply valve 1 is always open, it is difficult for the atomization generator 3 to be affected by the water pressure Atomized water droplets are formed, so the water supply channel 21 and the water containing member can be stored by opening the water supply valve 1, and then the water supply valve 1 is closed.
  • the principle of atmospheric communication at least makes the water in the water containing member from The atomization generator 3 sprays onto the clothes in the form of atomized water droplets, thereby ensuring that the atomization generator 3 can perform atomizing air washing on the clothes.
  • the laundry treatment device of the present invention may be a drum washing machine, a pulsator washing machine, an integrated washing and drying machine, and a laundry care machine.
  • a drum washing machine a pulsator washing machine
  • an integrated washing and drying machine a laundry care machine.
  • Those skilled in the art can flexibly set the application object of the technical solution of the present invention. The adjustment and change of this kind of application objects do not deviate from the principle of the present invention, and should be limited to the protection scope of the present invention.
  • the technical solution of the present invention is further described below in conjunction with a drum washing machine.
  • the drum washing machine of the present invention includes a cabinet, a drum 4 provided in the cabinet, a window pad 5 connected between the outer cylinder of the drum 4 and the cabinet, and the atomization generator 3 is preferably Is provided on the window mat 5 and the outlet of the atomizer generator 3 is arranged obliquely toward the inner cavity of the drum 4 (of course, it can be other installation directions), or alternatively, the atomizer generator 3 can also be arranged on the drum 4 As long as the outer cylinder can spray atomized water droplets on the laundry in the inner cylinder of the drum 4 to perform atomized air washing.
  • the drum washing machine further includes a delivery device 2 disposed on the box body.
  • the delivery device 2 includes a laundry treatment agent delivery cavity and a water box provided on top of the laundry treatment agent delivery cavity.
  • a water delivery channel 21 is formed in the water box.
  • the inlet end of the channel 21 is connected to the water supply valve 1 provided outside the delivery device 2.
  • the outlet end of the water delivery channel 21 is connected to the water tank 6 through a pipe, and the water tank 6 is connected to the atomizer generator 3 through the pipe.
  • the water tank 6 has storage water Function
  • the one-way check valve 7 is provided on the water delivery channel 21, for example, the one-way check valve 7 can be installed near the water inlet of the water delivery channel 21, of course, the one-way check valve 7 can also be provided At other positions of the water delivery channel 21, those skilled in the art can flexibly set the installation position of the one-way check valve 7 on the water delivery channel 21 in practical applications.
  • the change does not constitute a limitation to the present invention, and should be limited to the protection scope of the present invention.
  • the installation position of the one-way check valve 7 and the installation position of the outlet of the atomization generator 3 are at different height positions, that is, when the one-way check valve 7 is in conduction with the atmosphere, the one-way check valve can be made 7 and the outlet of the atomization generator 3 form a certain liquid level difference, so that the water stored in the water delivery channel 21 and the water tank 6 is more easily sprayed onto the laundry in the form of atomized water droplets through the atomization generator 3.
  • the installation position of the dispensing device 2 is generally higher than the installation position of the drum 4, so it is more preferable to set the installation position of the one-way check valve 7 higher than the outlet of the atomization generator 3 Installation position, so as to make full use of the original structure of the drum washing machine.
  • the laundry treatment apparatus of the present invention includes a laundry treatment drum, a water supply valve 1, a delivery device 2 and an atomization generator 3, the delivery device 2 includes a water delivery channel 21, a water supply valve 1 and a water delivery channel 21
  • the delivery device 2 includes a water delivery channel 21, a water supply valve 1 and a water delivery channel 21
  • the water end is connected, and the outlet end of the water delivery channel 21 is connected to the atomizer generator 3 through the first pipeline 4, the outlet end of the water delivery channel 21 is also connected to the second pipeline 5, and the outlet of the second pipeline 5 faces the clothes
  • the inner cavity of the treatment drum is provided, the outlet of the atomization generator 3 is disposed toward the inner cavity of the laundry treatment drum, and the second pipe 5 is arranged to be able to communicate with the atmosphere.
  • the second pipeline 5 can be directly connected to the laundry treatment barrel, and the outlet of the second pipeline 5 can also be arranged above the laundry treatment barrel, and those skilled in the art can flexibly set the second pipeline 5 in practical applications
  • the arrangement and connection mode of the device may be as long as the water can be injected into the laundry treatment tub through the second pipeline 5.
  • the technical solution of the present invention can also be applied to a laundry treatment apparatus having a multi-tub structure, such as a two-tub washing machine, which includes a first tub and a second tub, wherein the outlet of the atomizer generator 3 faces the first tub
  • a multi-tub structure such as a two-tub washing machine, which includes a first tub and a second tub, wherein the outlet of the atomizer generator 3 faces the first tub
  • the inner cavity is set, and the outlet of the second pipeline 5 is set toward the inner cavity of the second cylinder, so that the same water supply valve 1 can be used to inject water into the first cylinder and the second cylinder.
  • It is atomized water injection may also include other water injection structures), and the second cylinder realizes direct water injection (including spray water injection, etc.).
  • the atomization generator 3 can be an ultrasonic atomization generator or a compression atomization generator.
  • the water in the water delivery channel 21 and the first pipeline 4 can be converted into atomized water droplets when the second pipeline 5 communicates with the atmosphere to perform atomized air washing on the clothes.
  • the second pipe 5 of the present invention may be always in communication with the atmosphere, for example, the outlet of the second pipe 5 is provided above the laundry treatment tub, and the outlet of the second pipe 5 faces the laundry treatment tub
  • the second pipeline 5 can also be a structure that can selectively communicate with the atmosphere. The technical solution of the present invention will be further described in combination with this structure.
  • the second pipeline 5 includes a pipeline body and a one-way check structure provided on the pipeline body, the one-way check structure is configured to be isolated from the atmosphere when the water supply valve 1 is opened and when the water supply valve 1 is closed The atmosphere is connected.
  • the one-way check structure can use a one-way check valve, such as the one-way check valve in the patent number 201721853840.8, the principle of the one-way check valve belongs to the prior art, and will not be repeated here.
  • other one-way check structures can also be used.
  • the one-way check structure includes a cylinder, a moving block provided in the cylinder, and a spring connected between the cylinder and the moving block.
  • the moving block divides the inner chamber of the barrel into two parts.
  • the top of the barrel is provided with an air inlet
  • the bottom of the barrel is provided with a water inlet
  • the middle of the barrel is provided with an outlet.
  • the spring allows the moving block to be at the top extreme position. Move between the middle position and the bottom limit position. When the spring is in a natural state, the spring keeps the moving block at the bottom limit position. At this time, the air inlet and the outlet are connected, and the water inlet and the outlet are separated by the moving block, thereby achieving one-way check
  • the structure is connected with the atmosphere.
  • the stop structure allows water to pass and is isolated from the atmosphere. It should be noted that the above top and bottom are relative to the cylinder, and the installation direction and specific installation position of the specific one-way check structure do not constitute a limitation. Or alternatively, the one-way check structure may also be a clogging structure.
  • an opening is provided at the highest point of the second pipeline 5
  • a plug is provided on the opening, and the opening is opened by the plug when the water supply valve 1 enters the water Closed, when the water supply valve 1 is closed, the blockage is removed and the opening is communicated with the atmosphere, so that the water in the water delivery channel 21 and the first pipeline 4 is ejected from the outlet of the atomization generator 3.
  • Those skilled in the art can flexibly set the specific structure of the one-way check structure in practical applications, as long as the one-way check structure can achieve isolation from the atmosphere when the water supply valve 1 is opened and communication with the atmosphere when the water supply valve 1 is closed. can.
  • the water supply valve 1 when the water supply valve 1 is closed, a part of the water in the water delivery channel 21 enters the first pipeline 4, and the other part of the water enters the second pipeline 5.
  • the first pipeline 4 and the second pipeline 5 may be connected to the water channel 21 through the same outlet of the water channel 21, or may be connected to the water channel 21 through different outlets of the water channel 21 respectively.
  • the present invention adopts a one-way check structure to enable the atomization generator to smoothly produce atomized water droplets, because when the water supply valve is always open, it is difficult for the atomization generator to form atomization under the action of water pressure Water droplets, so the water supply channel can be stored by opening the water supply valve, and then the water supply valve is closed. At this time, through the principle of atmospheric communication, the water in the water supply channel and the first pipeline is removed from the atomizer generator Atomized water droplets are sprayed onto the clothes to ensure that the atomizer can wash the clothes with atomized air.
  • the laundry treatment device of the present invention may be a drum washing machine, a pulsator washing machine, an integrated washing and drying machine, and a laundry care machine.
  • a drum washing machine a pulsator washing machine
  • an integrated washing and drying machine a laundry care machine.
  • Those skilled in the art can flexibly set the application object of the technical solution of the present invention. The adjustment and change of this kind of application objects do not deviate from the principle of the present invention, and should be limited to the protection scope of the present invention.
  • the technical solution of the present invention is further described below in conjunction with a drum washing machine.
  • the drum washing machine of the present invention includes a cabinet, a drum provided in the cabinet, a window pad connected between the outer cylinder of the drum and the cabinet, the atomizer generator is preferably provided on the window pad and the atomizer generator
  • the outlet of the drum is arranged obliquely towards the inner cavity of the drum (of course, it can be other installation directions), or the atomizer can also be arranged on the outer drum of the drum, as long as it can spray mist on the laundry in the inner drum of the drum Atomize the water by atomizing the water droplets.
  • the drum washing machine also includes a delivery device provided on the box body, the delivery device includes a laundry treatment agent delivery cavity and a water box provided on the top of the laundry treatment agent delivery cavity, a water delivery channel (ie, laundry treatment agent delivery) is formed in the water box
  • the cavity is set under the water delivery channel)
  • the water inlet of the water delivery channel is connected to the water supply valve provided outside the delivery device
  • the water outlet of the water delivery channel is connected to the atomization generator through the first pipeline
  • the water outlet is also directly connected to the outer cylinder of the drum through a second pipeline
  • a one-way check valve is provided on the second pipeline, wherein the water outlet of the water delivery channel can be directly connected to the atomization generator through the first pipeline
  • the installation position of the one-way check valve and the outlet position of the atomization generator are at different height positions, that is, when the one-way check valve is in communication with the atmosphere, the one-way check valve and the atomization can be made A certain liquid level difference is formed at the outlet of the generator, so that the water stored in the water delivery channel and the first pipeline is more easily sprayed on the laundry in the form of atomized water droplets through the atomizer.
  • the installation position of the delivery device is generally higher than the installation position of the drum, therefore, it is more preferable to set the installation position of the one-way check valve higher than the installation position of the outlet of the atomization generator, Therefore, the original structure of the drum washing machine is fully utilized.

Landscapes

  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Detail Structures Of Washing Machines And Dryers (AREA)
  • Accessory Of Washing/Drying Machine, Commercial Washing/Drying Machine, Other Washing/Drying Machine (AREA)

Abstract

一种衣物处理设备,该衣物处理设备包括衣物处理筒、供水阀(1)、投放装置(2)、容水构件、雾化发生器(3)和单向逆止机构,投放装置(2)包括输水通道(21),供水阀(1)与输水通道(21)的进水端连接,输水通道(21)的出水端通过容水构件与雾化发生器(3)连接,雾化发生器(3)的出口朝向衣物处理筒的内腔设置,单向逆止机构分别与输水通道(21)和容水构件相连,单向逆止机构设置为在供水阀(1)开启时与大气隔离以及在供水阀(1)关闭时与大气连通。该衣物处理设备能够提高具有洗涤功能的衣物处理设备对衣物的洗涤效果,并且提高衣物的适用范围,满足用户的使用需求,进而提升用户体验。

Description

衣物处理设备 技术领域
本发明属于衣物处理技术领域,具体提供一种衣物处理设备。
背景技术
衣物处理设备是能够对衣物进行洗涤、烘干、杀菌和/或除臭等的设备,随着生产水平的不断提高和用户需求的不断增长,用户对于衣物处理设备的要求也越来越高。
现有技术中,以洗衣机为例,一般是通过水洗的方式对衣物进行洗涤,在水洗的过程中伴随着机械式转动,使得衣物上的污渍被洗涤干净,然而,这种洗涤方式的局限性在于:如果开始就向洗涤筒内注入大量的水,衣物表面上污渍在洗涤液未完全溶解的状态下就会直接进入到衣物的衬里,从而在后续的洗涤过程中需要更多的时间、水量、洗涤液和机械作用才能够将衣物清洗干净,导致洗涤效果不佳,而现有的衣物处理设备往往都是在洗衣机上加上其他功能,例如加入烘干功能而变成洗干一体机等,这种改进并没有对洗衣机的洗涤效果有明显的改进,而且目前的洗衣机对于特殊材质的衣物仍然无法达到深层次的处理,例如羊绒、羊毛等材质的衣物,其采用传统的水洗极易损坏衣物的纤维结构,这对洗衣机的衣物适用范围造成了非常大的局限性。
因此,本领域需要一种新的衣物处理设备来解决上述问题。
发明内容
为了解决现有技术中的上述问题,即为了解决现有的具有洗涤功能的衣物处理设备的洗涤效果不佳以及衣物适用范围非常局限的问题。
本发明的技术方案1提供了一种衣物处理设备,该衣物处理设备包括衣物处理筒、供水阀、投放装置、容水构件、雾化发生器和单向逆止机构,投放装置包括输水通道,供水阀与输水通道的进水端连接, 输水通道的出水端通过容水构件与雾化发生器连接,雾化发生器的出口朝向衣物处理筒的内腔设置,单向逆止机构分别与输水通道和容水构件相连,单向逆止机构设置为在供水阀开启时与大气隔离以及在供水阀关闭时与大气连通。
在上述衣物处理设备的优选技术方案中,投放装置还包括衣物处理剂投放腔,衣物处理剂投放腔设置在输水通道的下方。
在上述衣物处理设备的优选技术方案中,供水阀设置在投放装置的外侧。
在上述衣物处理设备的优选技术方案中,单向逆止机构的设置位置与雾化发生器的出口的设置位置处于不同的高度位置。
在上述衣物处理设备的优选技术方案中,单向逆止机构的设置位置高于雾化发生器的出口的设置位置。
在上述衣物处理设备的优选技术方案中,雾化发生器的出口呈斜向设置。
在上述衣物处理设备的优选技术方案中,单向逆止机构包括单向逆止阀、第一管路和第二管路,单向逆止阀通过第一管路与输水通道连接,单向逆止阀通过第二管路与容水构件连接。
在上述衣物处理设备的优选技术方案中,衣物处理设备为滚筒洗衣机,衣物处理筒为滚筒洗衣机的滚筒。
在上述衣物处理设备的优选技术方案中,滚筒洗衣机还包括与滚筒相连的窗垫,雾化发生器设置在窗垫上。
在上述衣物处理设备的优选技术方案中,雾化发生器设置在滚筒的外筒上。
本领域技术人员能够理解的是,在本发明的优选技术方案中,通过将单向逆止机构与输水通道和容水构件相连,使得在供水阀打开时,可以对输水通道和容水构件进行注水操作,然后在供水阀关闭时,单向逆止机构与大气连通以使输水通道和容水构件内的水从雾化发生器喷出,并且在雾化发生器的雾化作用下使水转化为小颗粒的雾化水滴,以实现对衣物的雾化空气呵护处理。具体而言,在进行水洗之前,可以通过雾化水滴先润湿衣物,使得衣物表面上的污渍先被去除掉,避免衣物表面的污渍进入到衣物的衬里,从而在后续的洗涤过程中能够通过较 少的时间、水量、洗涤液和机械作用就能够将衣物清洗干净,提高对衣物的洗涤效果,并且使衣物处理设备更加节能。此外,采用这种雾化空气洗的方式,能够对诸如羊绒、羊毛等特殊材质的衣物进行处理,不仅能够使该材质的衣物表面更加平整柔顺,还能够快速地去除衣物上的污渍,并且不会损坏衣物的纤维结构,提高衣物处理设备的衣物适用范围,进而提升用户体验。
进一步地,通过将单向逆止机构的设置位置与雾化发生器的出口的设置位置处于不同的高度位置,即形成一定的液位差,从而便于输水通道和容水构件内的水顺利地从雾化发生器的出口喷出,进而更加便于进行衣物的雾化空气洗,提升用户体验。
本发明的技术方案2提供了一种衣物处理设备,该衣物处理设备包括衣物处理筒、供水阀、投放装置、容水构件和雾化发生器,投放装置包括输水通道,供水阀通过输水通道与容水构件的进水端连接,容水构件的出水端通过第一管路与雾化发生器连接,容水构件的出水端还通过第二管路与衣物处理筒连接,雾化发生器的出口朝向衣物处理筒的内腔设置,输水通道和/或容水构件上设置有单向逆止结构,单向逆止结构设置为在供水阀开启时与大气隔离以及在供水阀关闭时与大气连通。
在上述衣物处理设备的优选技术方案中,衣物处理筒上设置有喷淋头,第二管路与喷淋头连接。
在上述衣物处理设备的优选技术方案中,喷淋头的喷淋口朝向衣物处理筒的内腔设置。
在上述衣物处理设备的优选技术方案中,单向逆止结构靠近输水通道的进水端设置。
在上述衣物处理设备的优选技术方案中,单向逆止结构的设置位置与雾化发生器的出口的设置位置处于不同的高度位置。
在上述衣物处理设备的优选技术方案中,单向逆止结构的设置位置高于雾化发生器的出口的设置位置。
在上述衣物处理设备的优选技术方案中,单向逆止结构为单向逆止阀。
在上述衣物处理设备的优选技术方案中,衣物处理设备为滚筒洗衣机,衣物处理筒为滚筒洗衣机的滚筒。
在上述衣物处理设备的优选技术方案中,滚筒洗衣机还包括与滚筒相连的窗垫,雾化发生器设置在窗垫上。
在上述衣物处理设备的优选技术方案中,雾化发生器设置在滚筒的外筒上。
本领域技术人员能够理解的是,在本发明的优选技术方案中,通过在输水通道和/或容水构件上设置单向逆止结构,使得在供水阀打开时,可以对输水通道和容水构件进行注水操作,然后在供水阀关闭时,单向逆止结构与大气连通以使容水构件内的水从雾化发生器喷出,并且在雾化发生器的雾化作用下使水转化为小颗粒的雾化水滴,以实现对衣物的雾化空气呵护处理,此外,通过第二管路与衣物处理筒连接可以提供其他注水方式,例如喷淋。具体而言,在进行水洗之前,可以通过雾化水滴先润湿衣物,使得衣物表面上的污渍先被去除掉,避免衣物表面的污渍进入到衣物的衬里,在雾化空气洗之后,通过第二管路向衣物处理筒注水,从而在后续的洗涤过程中能够通过较少的时间、水量、洗涤液和机械作用就能够将衣物清洗干净,提高对衣物的洗涤效果,并且使衣物处理设备更加节能。此外,采用这种雾化空气洗的方式,能够对诸如羊绒、羊毛等特殊材质的衣物进行处理,不仅能够使该材质的衣物表面更加平整柔顺,还能够快速地去除衣物上的污渍,并且不会损坏衣物的纤维结构,提高衣物处理设备的衣物适用范围,进而提升用户体验。
进一步地,第二管路与设置在衣物处理筒上的喷淋头相连,使得本发明的衣物处理设备至少具备雾化空气洗和喷淋洗两种衣物洗涤方式,使得用户能够根据自身的需求灵活地选择对应的洗涤方式,满足用户的多种需求,提升用户体验。
进一步地,通过将单向逆止结构的设置位置与雾化发生器的出口的设置位置处于不同的高度位置,即形成一定的液位差,从而便于容水构件内的水顺利地从雾化发生器的出口喷出,进而更加便于进行衣物的雾化空气洗,提升用户体验。
本发明的技术方案3提供了一种衣物处理设备,该衣物处理设备包括衣物处理筒、供水阀、投放装置、容水构件和雾化发生器,投放装置包括输水通道,供水阀与输水通道的进水端连接,输水通道的出水端通过容水构件与雾化发生器连接,雾化发生器的出口朝向衣物处理筒的内腔设置,输水通道和/或容水构件上设置有单向逆止结构,单向逆止结构设置为在供水阀开启时与大气隔离以及在供水阀关闭时与大气连通。
在上述衣物处理设备的优选技术方案中,单向逆止结构靠近输水通道的进水端设置。
在上述衣物处理设备的优选技术方案中,供水阀设置在投放装置的外侧。
在上述衣物处理设备的优选技术方案中,单向逆止结构的设置位置与雾化发生器的出口的设置位置处于不同的高度位置。
在上述衣物处理设备的优选技术方案中,单向逆止结构的设置位置高于雾化发生器的出口的设置位置。
在上述衣物处理设备的优选技术方案中,雾化发生器的出口呈斜向设置。
在上述衣物处理设备的优选技术方案中,单向逆止结构为单向逆止阀。
在上述衣物处理设备的优选技术方案中,衣物处理设备为滚筒洗衣机,衣物处理筒为滚筒洗衣机的滚筒。
在上述衣物处理设备的优选技术方案中,滚筒洗衣机还包括与滚筒相连的窗垫,雾化发生器设置在窗垫上。
在上述衣物处理设备的优选技术方案中,雾化发生器设置在滚筒的外筒上。
本领域技术人员能够理解的是,在本发明的优选技术方案中,通过在输水通道和/或容水构件上设置单向逆止结构,使得在供水阀打开时,可以对输水通道和容水构件进行注水操作,然后在供水阀关闭时,单向逆止结构与大气连通以使容水构件内的水从雾化发生器喷出,并且在雾化发生器的雾化作用下使水转化为小颗粒的雾化水滴,以实现对衣物的雾化空气呵护处理。具体而言,在进行水洗之前,可以通过雾 化水滴先润湿衣物,使得衣物表面上的污渍先被去除掉,避免衣物表面的污渍进入到衣物的衬里,从而在后续的洗涤过程中能够通过较少的时间、水量、洗涤液和机械作用就能够将衣物清洗干净,提高对衣物的洗涤效果,并且使衣物处理设备更加节能。此外,采用这种雾化空气洗的方式,能够对诸如羊绒、羊毛等特殊材质的衣物进行处理,不仅能够使该材质的衣物表面更加平整柔顺,还能够快速地去除衣物上的污渍,并且不会损坏衣物的纤维结构,提高衣物处理设备的衣物适用范围,进而提升用户体验。
进一步地,通过将单向逆止结构的设置位置与雾化发生器的出口的设置位置处于不同的高度位置,即形成一定的液位差,从而便于容水构件内的水顺利地从雾化发生器的出口喷出,进而更加便于进行衣物的雾化空气洗,提升用户体验。
本发明的技术方案4提供了一种衣物处理设备,该衣物处理设备包括衣物处理筒、供水阀、投放装置和雾化发生器,投放装置包括输水通道,供水阀与输水通道的进水端连接,输水通道的出水端通过第一管路与雾化发生器连接,输水通道的出水端还与第二管路连接,第二管路的出口朝向衣物处理筒的内腔设置,雾化发生器的出口朝向衣物处理筒的内腔设置,第二管路设置为能够与大气连通。
在上述衣物处理设备的优选技术方案中,第二管路包括管路本体和设置在管路本体上的单向逆止结构,单向逆止结构设置为在供水阀开启时与大气隔离以及在供水阀关闭时与大气连通。
在上述衣物处理设备的优选技术方案中,单向逆止结构的设置位置与雾化发生器的出口的设置位置处于不同的高度位置。
在上述衣物处理设备的优选技术方案中,单向逆止结构的设置位置高于雾化发生器的出口的设置位置。
在上述衣物处理设备的优选技术方案中,单向逆止结构为单向逆止阀。
在上述衣物处理设备的优选技术方案中,雾化发生器的出口呈斜向设置。
在上述衣物处理设备的优选技术方案中,投放装置还包括衣物处理剂投放腔,衣物处理剂投放腔设置在输水通道的下方。
在上述衣物处理设备的优选技术方案中,衣物处理设备为滚筒洗衣机,衣物处理筒为滚筒洗衣机的滚筒。
在上述衣物处理设备的优选技术方案中,滚筒洗衣机还包括与滚筒相连的窗垫,雾化发生器设置在窗垫上。
在上述衣物处理设备的优选技术方案中,雾化发生器设置在滚筒的外筒上。
本领域技术人员能够理解的是,在本发明的优选技术方案中,在供水阀打开时,可以对输水通道内进行注水操作,然后在供水阀关闭时,由于第二管路能够与大气连通使得输水通道内的一部分水和第一管路中的全部水能够从雾化发生器喷出,并且在雾化发生器的雾化作用下使水转化为小颗粒的雾化水滴,以实现对衣物的雾化空气呵护处理。具体而言,在进行水洗之前,可以通过雾化水滴先润湿衣物,使得衣物表面上的污渍先被去除掉,避免衣物表面的污渍进入到衣物的衬里,从而在后续的洗涤过程中能够通过较少的时间、水量、洗涤液和机械作用就能够将衣物清洗干净,提高对衣物的洗涤效果,并且使衣物处理设备更加节能。此外,采用这种雾化空气洗的方式,能够对诸如羊绒、羊毛等特殊材质的衣物进行处理,不仅能够使该材质的衣物表面更加平整柔顺,还能够快速地去除衣物上的污渍,并且不会损坏衣物的纤维结构,提高衣物处理设备的衣物适用范围,进而提升用户体验。
进一步地,通过设置单向逆止结构,使得在供水阀打开时单向逆止结构与大气隔离,从而进行正常的进水操作,当供水阀关闭时单向逆止结构与大气连通,使得输水通道内的一部分水和第一管路中的全部水能够从雾化发生器喷出,实现衣物的雾化空气洗。
进一步地,通过将单向逆止结构的设置位置与雾化发生器的出口的设置位置处于不同的高度位置,即形成一定的液位差,从而便于连接机构内的水顺利地从雾化发生器的出口喷出,进而更加便于进行衣物的雾化空气洗,提升用户体验。
附图说明
图1是本发明技术方案1的衣物处理设备的局部结构原理图;
图2是本发明技术方案1的滚筒洗衣机的局部结构示意图;
图3是本发明技术方案2的衣物处理设备的局部结构原理图;
图4是本发明技术方案2的滚筒洗衣机的局部结构示意图;
图5是本发明技术方案3的衣物处理设备的局部结构原理图;
图6是本发明技术方案3的滚筒洗衣机的局部结构示意图;
图7是本发明技术方案4的衣物处理设备的局部结构原理图。
具体实施方式
下面参照附图来描述本发明的优选实施方式。本领域技术人员应当理解的是,这些实施方式仅仅用于解释本发明的技术原理,并非旨在限制本发明的保护范围。
需要说明的是,在本发明的描述中,术语“中”、“上”、“下”、“内”、“外”等指示的方向或位置关系的术语是基于附图所示的方向或位置关系,这仅仅是为了便于描述,而不是指示或暗示所述装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性。
此外,还需要说明的是,在本发明的描述中,除非另有明确的规定和限定,术语“设置”、“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域技术人员而言,可根据具体情况理解上述术语在本发明中的具体含义。
基于背景技术指出的现有的具有洗涤功能的衣物处理设备的洗涤效果不佳以及衣物适用范围非常局限的问题,本发明提供了一种衣物处理设备,旨在提高具有洗涤功能的衣物处理设备对衣物的洗涤效果,并且提高衣物的适用范围,满足用户的使用需求,进而提升用户体验。
技术方案1
如图1所示,本发明的衣物处理设备包括衣物处理筒、供水阀1、投放装置2、容水构件、雾化发生器3和单向逆止机构,投放装置2包括输水通道21,供水阀1与输水通道21的进水端连接,输水通道21的出水端通过容水构件与雾化发生器3连接,雾化发生器3的出口朝向衣物处理筒的内腔设置,单向逆止机构分别与输水通道21和容水构件相连,单向逆止机构设置为在供水阀1开启时与大气隔离以及在供水阀1关闭时与大气连通。其中,容水构件可以为水箱,还可以为水盒,又可以为衣物处理设备上的容水槽,本领域技术人员可以在实际应用中灵活地设置容水构件的具体结构,只要通过容水构件能够对水进行储存和容纳即可。雾化发生器3可以采用超声波雾化发生器,还可以为压缩雾化发生器,本领域技术人员可以在实际应用中灵活地设置雾化发生器3的具体结构,只要通过雾化发生器3能够将输水通道21和容水构件中的水在单向逆止机构与大气连通时转化为雾化水滴以对衣物进行雾化空气洗即可。此外,单向逆止机构可以采用单向逆止阀7和管路的组合结构,其中,单向逆止阀7可以采用专利号为201721853840.8中的单向逆止阀7,该单向逆止阀7的原理属于现有技术,在此就不一一赘述,当然,在本发明中,还可以采用其他的单向逆止结构和管路的组合结构,例如,单向逆止结构包括筒体、设置在筒体中的移动块以及连接于筒体和移动块之间的弹簧,移动块将筒体的内部腔室隔成两个部分,筒体的顶部设置有空气进口,筒体的底部设置有进水口,筒体的中部设置有出口,弹簧允许移动块在顶部极限位置、中间位置和底部极限位置之间移动,在弹簧处于自然状态下,弹簧使移动块保持在底部极限位置,此时空气进口与出口连通,进水口与出口被移动块隔离,从而实现单向逆止结构与大气连通,在水从进水口流入时,水压克服弹簧的作用力使移动块移动至顶部极限位置,使得进水口与出口连通,空气进口与出口被移动块隔离,从而实现单向逆止结构使水通过且与大气隔离,需要说明的是,上述的顶部和底部是相对于筒体而言的,具体的单向逆止结构的设置方向不构成限制。又或者,单向逆止机构还可以为堵塞和管路的组合结构,具体地,输水通道21与容水构件通过连接管连接,在连接管的最高点处设置开孔,在开孔上设置堵塞,在供水阀1进水时通过堵塞将开孔封闭, 在供水阀1关闭时将堵塞去除而将开孔与大气连通,从而实现输水通道21和容水构件中的水从雾化发生器3的出口中喷出。本领域技术人员可以在实际应用中灵活地设置单向逆止机构的具体结构,只要能够通过单向逆止机构实现在供水阀1开启时与大气隔离以及在供水阀1关闭时与大气连通即可。
需要说明的是,本发明采用单向逆止机构能够使雾化发生器3顺利产生雾化水滴,这是由于在供水阀1始终打开时,在水压的作用下雾化发生器3很难形成雾化水滴,因此可以通过供水阀1开启来对输水通道21和容水构件内进行蓄水,然后将供水阀1关闭,此时通过大气连通的原理使得输水通道21和容水构件中的水从雾化发生器3中以雾化水滴的形式喷到衣物上,从而保证雾化发生器3能够对衣物进行雾化空气洗。
此外,还需要说明的是,本发明的衣物处理设备可以为滚筒洗衣机、波轮洗衣机、洗干一体机和衣物护理机等,本领域技术人员可以灵活地设置本发明技术方案的应用对象,这种应用对象的调整和改变并不偏离本发明的原理,均应限定在本发明的保护范围之内。下面结合滚筒洗衣机来进一步阐述本发明的技术方案。
具体地,如图1和2所示,本发明的滚筒洗衣机包括箱体、设置在箱体中的滚筒4、连接于滚筒4的外筒和箱体之间的窗垫5,雾化发生器3优选地设置在窗垫5上且雾化发生器3的出口朝向滚筒4的内腔呈斜向设置(当然还可以是其他设置方向),又或者,雾化发生器3还可以设置在滚筒4的外筒上,只要能够向处于滚筒4的内筒中的衣物喷射雾化水滴来进行雾化空气洗即可。此外,滚筒洗衣机还包括设置在箱体上的投放装置2,投放装置2包括衣物处理剂投放腔以及设置在衣物处理剂投放腔顶部的水盒,水盒内形成有输水通道21,输水通道21的进水端与设置在投放装置2外侧的供水阀1连接,输水通道21的出水端通过管道与水箱6连接,水箱6通过管道与雾化发生器3连接,水箱6具有存储水的功能,单向逆止阀7设置在输水通道21以及水箱6的外部,并且单向逆止阀7通过第一管路8与输水通道21连接,单向逆止阀7还通过第二管路9与水箱6连接(图2中未示出这部分结构)。
优选地,单向逆止阀7的设置位置与雾化发生器3的出口的设置位置处于不同的高度位置,即在单向逆止阀7与大气导通时,可以使单向逆止阀7和雾化发生器3的出口形成一定的液位差,从而使得蓄存在输水通道21和水箱6中的水更容易通过雾化发生器3以雾化水滴的形式喷到衣物上。由于在滚筒洗衣机中,投放装置2的设置位置一般高于滚筒4的设置位置,因此,更为优选的是,将单向逆止阀7的设置位置设置得高于雾化发生器3的出口的设置位置,从而充分地利用滚筒洗衣机的原有结构。
技术方案2
如图3所示,本发明的衣物处理设备包括衣物处理筒、供水阀1、投放装置2、容水构件和雾化发生器3,投放装置2包括输水通道21,供水阀1通过输水通道21与容水构件的进水端连接,容水构件的出水端通过第一管路9与雾化发生器3连接,容水构件的出水端还通过第二管路10与衣物处理筒连接,雾化发生器3的出口朝向衣物处理筒的内腔设置,输水通道21和/或容水构件上设置有单向逆止结构,单向逆止结构设置为在供水阀1开启时与大气隔离以及在供水阀1关闭时与大气连通。其中,容水构件可以为水箱,还可以为水盒,又可以为衣物处理设备上的容水槽,本领域技术人员可以在实际应用中灵活地设置容水构件的具体结构,只要通过容水构件能够对水进行储存和容纳即可。雾化发生器3可以采用超声波雾化发生器,还可以为压缩雾化发生器,本领域技术人员可以在实际应用中灵活地设置雾化发生器3的具体结构,只要通过雾化发生器3能够将容水构件中的水在单向逆止结构与大气连通时转化为雾化水滴以对衣物进行雾化空气洗即可。此外,单向逆止结构可以采用单向逆止阀8,例如采用专利号为201721853840.8中的单向逆止阀8,该单向逆止阀8的原理属于现有技术,在此就不一一赘述,当然,在本发明中,还可以采用其他的单向逆止结构,例如,单向逆止结构包括筒体、设置在筒体中的移动块以及连接于筒体和移动块之间的弹簧,移动块将筒体的内部腔室隔成两个部分,筒体的顶部设置有空气进口,筒体的底部设置有进水口,筒体的中部设置有出口,弹簧允许移动块在顶部极限位置、中间位置和底部极限位置之间移动,在弹簧处于自然状态下,弹簧使移动块保持在底部极限位置,此时空气进口与出口连通, 进水口与出口被移动块隔离,从而实现单向逆止结构与大气连通,在水从进水口流入时,水压克服弹簧的作用力使移动块移动至顶部极限位置,使得进水口与出口连通,空气进口与出口被移动块隔离,从而实现单向逆止结构使水通过且与大气隔离,需要说明的是,上述的顶部和底部是相对于筒体而言的,具体的单向逆止结构的设置方向和具体设置位置不构成限制。又或者,单向逆止结构还可以为堵塞结构,具体地,在输水通道21和/或容水构件的最高点处设置开孔,在开孔上设置堵塞,在供水阀1进水时通过堵塞将开孔封闭,在供水阀1关闭时将堵塞去除而将开孔与大气连通,从而实现容水构件中的水从雾化发生器3的出口中喷出。本领域技术人员可以在实际应用中灵活地设置单向逆止结构的具体结构,只要能够通过单向逆止结构实现在供水阀1开启时与大气隔离以及在供水阀1关闭时与大气连通即可。再者,可以仅在输水通道21上设置单向逆止结构,在这种结构下,如果单向逆止结构与大气连通,输水通道21和容水构件中的水都会通过雾化发生器3流入到衣物处理筒内部,当然还可以在输水通道21和容水构件上分别设置单向逆止结构,使得在单向逆止结构与大气连通时输水通道21和容水构件中的水都会通过雾化发生器3流入到衣物处理筒内部,又或者,可以仅在容水构件上设置单向逆止结构,在这种情况下,当单向逆止结构与大气连通时,至少能够使容水构件中的水通过雾化发生器3流入到衣物处理筒内部,本领域技术人员可以在实际应用中灵活地设置单向逆止结构的设置位置和分布方式,只要至少保证容水构件中的水能够通过雾化发生器3流入到衣物处理筒内部,实现衣物的雾化空气洗即可。在本发明中,第一管路9和第二管路10可以通过输水通道21的同一个出水端与输水通道21连接,还可以分别通过输水通道21的的不同出水端与输水通道21连接,这种结构的改变并不偏离本发明的技术方案,均应限定在本发明的保护范围之内。
需要说明的是,本发明采用单向逆止结构能够使雾化发生器3顺利产生雾化水滴,这是由于在供水阀1始终打开时,在水压的作用下雾化发生器3很难形成雾化水滴,因此可以通过供水阀1开启来对输水通道21和容水构件内进行蓄水,然后将供水阀1关闭(此时第二管路10选择性地关闭),此时通过大气连通的原理至少使得容水构件中的一部 分水从雾化发生器3中以雾化水滴的形式喷到衣物上,从而保证雾化发生器3能够对衣物进行雾化空气洗,如果需要对衣物处理筒进行大量注水,此时将雾化发生器3关闭,使供水阀1一直打开,并且保证第二管路10处于连通状态,从而即可实现向衣物处理筒中持续注水,其中,第二管路10可以直接与衣物处理筒上的注水口或者喷淋结构相连。
此外,还需要说明的是,本发明的衣物处理设备可以为滚筒洗衣机、波轮洗衣机、洗干一体机和衣物护理机等,本领域技术人员可以灵活地设置本发明技术方案的应用对象,这种应用对象的调整和改变并不偏离本发明的原理,均应限定在本发明的保护范围之内。下面结合滚筒洗衣机来进一步阐述本发明的技术方案。
具体地,如图4所示,本发明的滚筒洗衣机包括箱体、设置在箱体中的滚筒4、连接于滚筒4的外筒和箱体之间的窗垫5,雾化发生器3优选地设置在窗垫5上且雾化发生器3的出口朝向滚筒4的内腔呈斜向设置(当然还可以是其他设置方向),又或者,雾化发生器3还可以设置在滚筒4的外筒上,只要能够向处于滚筒4的内筒中的衣物喷射雾化水滴来进行雾化空气洗即可。在滚筒4上或者窗垫5上设置有喷淋头7,喷淋头7的出口也朝向滚筒4的内腔设置,喷淋头7主要用于向滚筒4中进行喷淋注水,第二管路10上可以选择性地安装控制阀,控制阀能够控制第二管路10的通断。此外,滚筒洗衣机还包括设置在箱体上的投放装置2,投放装置2包括衣物处理剂投放腔以及设置在衣物处理剂投放腔顶部的水盒,水盒内形成有输水通道21,输水通道21的进水端与设置在投放装置2外侧的供水阀1连接,输水通道21的出水端通过管道与水箱6连接,水箱6通过第一管路9与雾化发生器3连接,水箱6通过第二管路10与喷淋头7连接,水箱6具有存储水的功能,单向逆止阀8设置在输水通道21上,例如,可以将单向逆止阀8靠近输水通道21的进水端设置,当然,还可以将单向逆止阀8设置在输水通道21的其他位置,本领域技术人员可以在实际应用中灵活地设置单向逆止阀8在输水通道21上的设置位置,这种单向逆止阀8设置位置的调整和改变不构成对本发明的限制,均应限定在本发明的保护范围之内。
优选地,单向逆止阀8的设置位置与雾化发生器3的出口的设置位置处于不同的高度位置,即在单向逆止阀8与大气导通时,可以 使单向逆止阀8和雾化发生器3的出口形成一定的液位差,从而使得蓄存在输水通道21和水箱6中的水更容易通过雾化发生器3以雾化水滴的形式喷到衣物上。由于在滚筒洗衣机中,投放装置2的设置位置一般高于滚筒4的设置位置,因此,更为优选的是,将单向逆止阀8的设置位置设置得高于雾化发生器3的出口的设置位置,从而充分地利用滚筒洗衣机的原有结构。
技术方案3
如图5所示,本发明的衣物处理设备包括衣物处理筒、供水阀1、投放装置2、容水构件和雾化发生器3,投放装置2包括输水通道21,供水阀1与输水通道21的进水端连接,输水通道21的出水端通过容水构件与雾化发生器3连接,雾化发生器3的出口朝向衣物处理筒的内腔设置,输水通道21和/或容水构件上设置有单向逆止结构,单向逆止结构设置为在供水阀1开启时与大气隔离以及在供水阀1关闭时与大气连通。其中,容水构件可以为水箱,还可以为水盒,又可以为衣物处理设备上的容水槽,本领域技术人员可以在实际应用中灵活地设置容水构件的具体结构,只要通过容水构件能够对水进行储存和容纳即可。雾化发生器3可以采用超声波雾化发生器,还可以为压缩雾化发生器,本领域技术人员可以在实际应用中灵活地设置雾化发生器3的具体结构,只要通过雾化发生器3能够将容水构件中的水在单向逆止结构与大气连通时转化为雾化水滴以对衣物进行雾化空气洗即可。此外,单向逆止结构可以采用单向逆止阀7,例如采用专利号为201721853840.8中的单向逆止阀7,该单向逆止阀7的原理属于现有技术,在此就不一一赘述,当然,在本发明中,还可以采用其他的单向逆止结构,例如,单向逆止结构包括筒体、设置在筒体中的移动块以及连接于筒体和移动块之间的弹簧,移动块将筒体的内部腔室隔成两个部分,筒体的顶部设置有空气进口,筒体的底部设置有进水口,筒体的中部设置有出口,弹簧允许移动块在顶部极限位置、中间位置和底部极限位置之间移动,在弹簧处于自然状态下,弹簧使移动块保持在底部极限位置,此时空气进口与出口连通,进水口与出口被移动块隔离,从而实现单向逆止结构与大气连通,在水从进水口流入时,水压克服弹簧的作用力使移动块移动至顶部极限位置,使得进水口与出口连通,空气进口与出口被移动块隔离,从而实现单向 逆止结构使水通过且与大气隔离,需要说明的是,上述的顶部和底部是相对于筒体而言的,具体的单向逆止结构的设置方向和具体设置位置不构成限制。又或者,单向逆止结构还可以为堵塞结构,具体地,在输水通道21和/或容水构件的最高点处设置开孔,在开孔上设置堵塞,在供水阀1进水时通过堵塞将开孔封闭,在供水阀1关闭时将堵塞去除而将开孔与大气连通,从而实现容水构件中的水从雾化发生器3的出口中喷出。本领域技术人员可以在实际应用中灵活地设置单向逆止结构的具体结构,只要能够通过单向逆止结构实现在供水阀1开启时与大气隔离以及在供水阀1关闭时与大气连通即可。再者,可以仅在输水通道21上设置单向逆止结构,在这种结构下,如果单向逆止结构与大气连通,输水通道21和容水构件中的水都会通过雾化发生器3流入到衣物处理筒内部,当然还可以在输水通道21和容水构件上分别设置单向逆止结构,使得在单向逆止结构与大气连通时输水通道21和容水构件中的水都会通过雾化发生器3流入到衣物处理筒内部,又或者,可以仅在容水构件上设置单向逆止结构,在这种情况下,当单向逆止结构与大气连通时,至少能够使容水构件中的水通过雾化发生器3流入到衣物处理筒内部,本领域技术人员可以在实际应用中灵活地设置单向逆止结构的设置位置和分布方式,只要至少保证容水构件中的水能够通过雾化发生器3流入到衣物处理筒内部,实现衣物的雾化空气洗即可。
需要说明的是,本发明采用单向逆止结构能够使雾化发生器3顺利产生雾化水滴,这是由于在供水阀1始终打开时,在水压的作用下雾化发生器3很难形成雾化水滴,因此可以通过供水阀1开启来对输水通道21和容水构件内进行蓄水,然后将供水阀1关闭,此时通过大气连通的原理至少使得容水构件中的水从雾化发生器3中以雾化水滴的形式喷到衣物上,从而保证雾化发生器3能够对衣物进行雾化空气洗。
此外,还需要说明的是,本发明的衣物处理设备可以为滚筒洗衣机、波轮洗衣机、洗干一体机和衣物护理机等,本领域技术人员可以灵活地设置本发明技术方案的应用对象,这种应用对象的调整和改变并不偏离本发明的原理,均应限定在本发明的保护范围之内。下面结合滚筒洗衣机来进一步阐述本发明的技术方案。
具体地,如图6所示,本发明的滚筒洗衣机包括箱体、设置在箱体中的滚筒4、连接于滚筒4的外筒和箱体之间的窗垫5,雾化发生器3优选地设置在窗垫5上且雾化发生器3的出口朝向滚筒4的内腔呈斜向设置(当然还可以是其他设置方向),又或者,雾化发生器3还可以设置在滚筒4的外筒上,只要能够向处于滚筒4的内筒中的衣物喷射雾化水滴来进行雾化空气洗即可。此外,滚筒洗衣机还包括设置在箱体上的投放装置2,投放装置2包括衣物处理剂投放腔以及设置在衣物处理剂投放腔顶部的水盒,水盒内形成有输水通道21,输水通道21的进水端与设置在投放装置2外侧的供水阀1连接,输水通道21的出水端通过管道与水箱6连接,水箱6通过管道与雾化发生器3连接,水箱6具有存储水的功能,单向逆止阀7设置在输水通道21上,例如,可以将单向逆止阀7靠近输水通道21的进水端设置,当然,还可以将单向逆止阀7设置在输水通道21的其他位置,本领域技术人员可以在实际应用中灵活地设置单向逆止阀7在输水通道21上的设置位置,这种单向逆止阀7设置位置的调整和改变不构成对本发明的限制,均应限定在本发明的保护范围之内。
优选地,单向逆止阀7的设置位置与雾化发生器3的出口的设置位置处于不同的高度位置,即在单向逆止阀7与大气导通时,可以使单向逆止阀7和雾化发生器3的出口形成一定的液位差,从而使得蓄存在输水通道21和水箱6中的水更容易通过雾化发生器3以雾化水滴的形式喷到衣物上。由于在滚筒洗衣机中,投放装置2的设置位置一般高于滚筒4的设置位置,因此,更为优选的是,将单向逆止阀7的设置位置设置得高于雾化发生器3的出口的设置位置,从而充分地利用滚筒洗衣机的原有结构。
技术方案4
如图7所示,本发明的衣物处理设备包括衣物处理筒、供水阀1、投放装置2和雾化发生器3,投放装置2包括输水通道21,供水阀1与输水通道21的进水端连接,输水通道21的出水端通过第一管路4与雾化发生器3连接,输水通道21的出水端还与第二管路5连接,第二管路5的出口朝向衣物处理筒的内腔设置,雾化发生器3的出口朝向衣物处理筒的内腔设置,第二管路5设置为能够与大气连通。其中,第二管 路5可以直接与衣物处理筒相连,还可以使第二管路5的出口设置在衣物处理筒的上方,本领域技术人员可以在实际应用中灵活地设置第二管路5的布置和连接方式,只要通过第二管路5能够向衣物处理筒中进行注水操作即可。此外,本发明的技术方案还可以应用于具有多筒结构的衣物处理设备中,例如双筒洗衣机,其包括第一筒和第二筒,其中,雾化发生器3的出口朝向第一筒的内腔设置,第二管路5的出口朝向第二筒的内腔设置,使得通过同一个供水阀1能够实现向第一筒和第二筒内进行注水操作,其中,第一筒内实现的是雾化注水(还可以包括其他注水结构),第二筒实现的是直接注水(包括喷淋注水等),本领域技术人员可以在实际应用中灵活地设置本发明的应用场景,只要能够至少实现衣物的雾化空气洗即可。雾化发生器3可以采用超声波雾化发生器,还可以为压缩雾化发生器,本领域技术人员可以在实际应用中灵活地设置雾化发生器3的具体结构,只要通过雾化发生器3能够将输水通道21和第一管路4中的水在第二管路5与大气连通时转化为雾化水滴以对衣物进行雾化空气洗即可。需要说明的是,本发明的第二管路5可以是始终与大气连通的结构,例如第二管路5的出口设置在衣物处理筒的上方,并且第二管路5的出口朝向衣物处理筒的内腔设置,当然,第二管路5还可以是能够选择性地与大气连通的结构,下面就结合这种结构进一步阐述本发明的技术方案。
优选地,第二管路5包括管路本体和设置在管路本体上的单向逆止结构,单向逆止结构设置为在供水阀1开启时与大气隔离以及在供水阀1关闭时与大气连通。其中,单向逆止结构可以采用单向逆止阀,例如采用专利号为201721853840.8中的单向逆止阀,该单向逆止阀的原理属于现有技术,在此就不一一赘述,当然,在本发明中,还可以采用其他的单向逆止结构,例如,单向逆止结构包括筒体、设置在筒体中的移动块以及连接于筒体和移动块之间的弹簧,移动块将筒体的内部腔室隔成两个部分,筒体的顶部设置有空气进口,筒体的底部设置有进水口,筒体的中部设置有出口,弹簧允许移动块在顶部极限位置、中间位置和底部极限位置之间移动,在弹簧处于自然状态下,弹簧使移动块保持在底部极限位置,此时空气进口与出口连通,进水口与出口被移动块隔离,从而实现单向逆止结构与大气连通,在水从进水口流入时,水压克服弹 簧的作用力使移动块移动至顶部极限位置,使得进水口与出口连通,空气进口与出口被移动块隔离,从而实现单向逆止结构使水通过且与大气隔离,需要说明的是,上述的顶部和底部是相对于筒体而言的,具体的单向逆止结构的设置方向和具体设置位置不构成限制。又或者,单向逆止结构还可以为堵塞结构,具体地,在第二管路5的最高点处设置开孔,在开孔上设置堵塞,在供水阀1进水时通过堵塞将开孔封闭,在供水阀1关闭时将堵塞去除而将开孔与大气连通,从而实现输水通道21和第一管路4中的水从雾化发生器3的出口中喷出。本领域技术人员可以在实际应用中灵活地设置单向逆止结构的具体结构,只要能够通过单向逆止结构实现在供水阀1开启时与大气隔离以及在供水阀1关闭时与大气连通即可。在本发明中,在上述供水阀1关闭时,输水通道21中的一部分水进入第一管路4,另一部分水进入到第二管路5。第一管路4和第二管路5可以通过输水通道21的同一个出水端与输水通道21连接,还可以分别通过输水通道21的的不同出水端与输水通道21连接,这种结构的改变并不偏离本发明的技术方案,均应限定在本发明的保护范围之内。
需要说明的是,本发明采用单向逆止结构能够使雾化发生器顺利产生雾化水滴,这是由于在供水阀始终打开时,在水压的作用下雾化发生器很难形成雾化水滴,因此可以通过供水阀开启来对输水通道内进行蓄水,然后将供水阀关闭,此时通过大气连通的原理使得输水通道和第一管路中的水从雾化发生器中以雾化水滴的形式喷到衣物上,从而保证雾化发生器能够对衣物进行雾化空气洗。
此外,还需要说明的是,本发明的衣物处理设备可以为滚筒洗衣机、波轮洗衣机、洗干一体机和衣物护理机等,本领域技术人员可以灵活地设置本发明技术方案的应用对象,这种应用对象的调整和改变并不偏离本发明的原理,均应限定在本发明的保护范围之内。下面结合滚筒洗衣机来进一步阐述本发明的技术方案。
具体地,本发明的滚筒洗衣机包括箱体、设置在箱体中的滚筒、连接于滚筒的外筒和箱体之间的窗垫,雾化发生器优选地设置在窗垫上且雾化发生器的出口朝向滚筒的内腔呈斜向设置(当然还可以是其他设置方向),又或者,雾化发生器还可以设置在滚筒的外筒上,只要能够向处于滚筒的内筒中的衣物喷射雾化水滴来进行雾化空气洗即可。 此外,滚筒洗衣机还包括设置在箱体上的投放装置,投放装置包括衣物处理剂投放腔以及设置在衣物处理剂投放腔顶部的水盒,水盒内形成有输水通道(即衣物处理剂投放腔设置在输水通道的下方),输水通道的进水端与设置在投放装置外侧的供水阀连接,输水通道的出水端通过第一管路与雾化发生器连接,输水通道的出水端还通过第二管路直接与滚筒的外筒连接,第二管路上设置有单向逆止阀,其中,可以直接通过第一管路将输水通道的出水端与雾化发生器连接,还可以在输水通道与雾化发生器之间设置水箱,即输水通道的出水端先通过一个管道与水箱连接,水箱再通过另一个管道与雾化发生器连接,水箱具有存储水的功能。
优选地,单向逆止阀的设置位置与雾化发生器的出口的设置位置处于不同的高度位置,即在单向逆止阀与大气导通时,可以使单向逆止阀和雾化发生器的出口形成一定的液位差,从而使得蓄存在输水通道和第一管路中的水更容易通过雾化发生器以雾化水滴的形式喷到衣物上。由于在滚筒洗衣机中,投放装置的设置位置一般高于滚筒的设置位置,因此,更为优选的是,将单向逆止阀的设置位置设置得高于雾化发生器的出口的设置位置,从而充分地利用滚筒洗衣机的原有结构。
至此,已经结合附图所示的优选实施方式描述了本发明的技术方案,但是,本领域技术人员容易理解的是,本发明的保护范围显然不局限于这些具体实施方式。在不偏离本发明的原理的前提下,本领域技术人员可以对相关技术特征作出等同的更改或替换,这些更改或替换之后的技术方案都将落入本发明的保护范围之内。

Claims (40)

  1. 一种衣物处理设备,其特征在于,所述衣物处理设备包括衣物处理筒、供水阀、投放装置、容水构件、雾化发生器和单向逆止机构,所述投放装置包括输水通道,所述供水阀与所述输水通道的进水端连接,所述输水通道的出水端通过所述容水构件与所述雾化发生器连接,所述雾化发生器的出口朝向所述衣物处理筒的内腔设置,所述单向逆止机构分别与所述输水通道和所述容水构件相连,所述单向逆止机构设置为在所述供水阀开启时与大气隔离以及在所述供水阀关闭时与大气连通。
  2. 根据权利要求1所述的衣物处理设备,其特征在于,所述投放装置还包括衣物处理剂投放腔,所述衣物处理剂投放腔设置在所述输水通道的下方。
  3. 根据权利要求1所述的衣物处理设备,其特征在于,所述供水阀设置在所述投放装置的外侧。
  4. 根据权利要求1所述的衣物处理设备,其特征在于,所述单向逆止机构的设置位置与所述雾化发生器的出口的设置位置处于不同的高度位置。
  5. 根据权利要求4所述的衣物处理设备,其特征在于,所述单向逆止机构的设置位置高于所述雾化发生器的出口的设置位置。
  6. 根据权利要求1所述的衣物处理设备,其特征在于,所述雾化发生器的出口呈斜向设置。
  7. 根据权利要求1所述的衣物处理设备,其特征在于,所述单向逆止机构包括单向逆止阀、第一管路和第二管路,所述单向逆止阀通过所述第一管路与所述输水通道连接,所述单向逆止阀通过所述第二管路与所述容水构件连接。
  8. 根据权利要求1至7中任一项所述的衣物处理设备,其特征在于,所述衣物处理设备为滚筒洗衣机,所述衣物处理筒为所述滚筒洗衣机的滚筒。
  9. 根据权利要求8所述的衣物处理设备,其特征在于,所述滚筒洗衣机还包括与所述滚筒相连的窗垫,所述雾化发生器设置在所述窗垫上。
  10. 根据权利要求8所述的衣物处理设备,其特征在于,所述雾化发生器设置在所述滚筒的外筒上。
  11. 一种衣物处理设备,其特征在于,所述衣物处理设备包括衣物处理筒、供水阀、投放装置、容水构件和雾化发生器,所述投放装置包括输水通道,所述供水阀通过所述输水通道与所述容水构件的进水端连接,所述容水构件的出水端通过第一管路与所述雾化发生器连接,所述容水构件的出水端还通过第二管路与所述衣物处理筒连接,所述雾化发生器的出口朝向所述衣物处理筒的内腔设置,所述输水通道和/或所述容水构件上设置有单向逆止结构,所述单向逆止结构设置为在所述供水阀开启时与大气隔离以及在所述供水阀关闭时与大气连通。
  12. 根据权利要求11所述的衣物处理设备,其特征在于,所述衣物处理筒上设置有喷淋头,所述第二管路与所述喷淋头连接。
  13. 根据权利要求12所述的衣物处理设备,其特征在于,所述喷淋头的喷淋口朝向所述衣物处理筒的内腔设置。
  14. 根据权利要求11所述的衣物处理设备,其特征在于,所述单向逆止结构靠近所述输水通道的进水端设置。
  15. 根据权利要求11所述的衣物处理设备,其特征在于,所述单向逆止结构的设置位置与所述雾化发生器的出口的设置位置处于不同的高 度位置。
  16. 根据权利要求15所述的衣物处理设备,其特征在于,所述单向逆止结构的设置位置高于所述雾化发生器的出口的设置位置。
  17. 根据权利要求11所述的衣物处理设备,其特征在于,所述单向逆止结构为单向逆止阀。
  18. 根据权利要求11至17中任一项所述的衣物处理设备,其特征在于,所述衣物处理设备为滚筒洗衣机,所述衣物处理筒为所述滚筒洗衣机的滚筒。
  19. 根据权利要求18所述的衣物处理设备,其特征在于,所述滚筒洗衣机还包括与所述滚筒相连的窗垫,所述雾化发生器设置在所述窗垫上。
  20. 根据权利要求18所述的衣物处理设备,其特征在于,所述雾化发生器设置在所述滚筒的外筒上。
  21. 一种衣物处理设备,其特征在于,所述衣物处理设备包括衣物处理筒、供水阀、投放装置、容水构件和雾化发生器,所述投放装置包括输水通道,所述供水阀与所述输水通道的进水端连接,所述输水通道的出水端通过所述容水构件与所述雾化发生器连接,所述雾化发生器的出口朝向所述衣物处理筒的内腔设置,所述输水通道和/或所述容水构件上设置有单向逆止结构,所述单向逆止结构设置为在所述供水阀开启时与大气隔离以及在所述供水阀关闭时与大气连通。
  22. 根据权利要求21所述的衣物处理设备,其特征在于,所述单向逆止结构靠近所述输水通道的进水端设置。
  23. 根据权利要求21所述的衣物处理设备,其特征在于,所述供水 阀设置在所述投放装置的外侧。
  24. 根据权利要求21所述的衣物处理设备,其特征在于,所述单向逆止结构的设置位置与所述雾化发生器的出口的设置位置处于不同的高度位置。
  25. 根据权利要求24所述的衣物处理设备,其特征在于,所述单向逆止结构的设置位置高于所述雾化发生器的出口的设置位置。
  26. 根据权利要求21所述的衣物处理设备,其特征在于,所述雾化发生器的出口呈斜向设置。
  27. 根据权利要求21所述的衣物处理设备,其特征在于,所述单向逆止结构为单向逆止阀。
  28. 根据权利要求21至27中任一项所述的衣物处理设备,其特征在于,所述衣物处理设备为滚筒洗衣机,所述衣物处理筒为所述滚筒洗衣机的滚筒。
  29. 根据权利要求28所述的衣物处理设备,其特征在于,所述滚筒洗衣机还包括与所述滚筒相连的窗垫,所述雾化发生器设置在所述窗垫上。
  30. 根据权利要求28所述的衣物处理设备,其特征在于,所述雾化发生器设置在所述滚筒的外筒上。
  31. 一种衣物处理设备,其特征在于,所述衣物处理设备包括衣物处理筒、供水阀、投放装置和雾化发生器,所述投放装置包括输水通道,所述供水阀与所述输水通道的进水端连接,所述输水通道的出水端通过第一管路与所述雾化发生器连接,所述输水通道的出水端还与第二管路连接,所述第二管路的出口朝向所述衣物处理筒的内腔设置,所述雾化 发生器的出口朝向所述衣物处理筒的内腔设置,所述第二管路设置为能够与大气连通。
  32. 根据权利要求31所述的衣物处理设备,其特征在于,所述第二管路包括管路本体和设置在所述管路本体上的单向逆止结构,所述单向逆止结构设置为在所述供水阀开启时与大气隔离以及在所述供水阀关闭时与大气连通。
  33. 根据权利要求32所述的衣物处理设备,其特征在于,所述单向逆止结构的设置位置与所述雾化发生器的出口的设置位置处于不同的高度位置。
  34. 根据权利要求33所述的衣物处理设备,其特征在于,所述单向逆止结构的设置位置高于所述雾化发生器的出口的设置位置。
  35. 根据权利要求32所述的衣物处理设备,其特征在于,所述单向逆止结构为单向逆止阀。
  36. 根据权利要求31所述的衣物处理设备,其特征在于,所述雾化发生器的出口呈斜向设置。
  37. 根据权利要求31所述的衣物处理设备,其特征在于,所述投放装置还包括衣物处理剂投放腔,所述衣物处理剂投放腔设置在所述输水通道的下方。
  38. 根据权利要求31至37中任一项所述的衣物处理设备,其特征在于,所述衣物处理设备为滚筒洗衣机,所述衣物处理筒为所述滚筒洗衣机的滚筒。
  39. 根据权利要求38所述的衣物处理设备,其特征在于,所述滚筒洗衣机还包括与所述滚筒相连的窗垫,所述雾化发生器设置在所述窗垫 上。
  40. 根据权利要求38所述的衣物处理设备,其特征在于,所述雾化发生器设置在所述滚筒的外筒上。
PCT/CN2019/125903 2018-12-19 2019-12-17 衣物处理设备 WO2020125613A1 (zh)

Priority Applications (3)

Application Number Priority Date Filing Date Title
EP19899655.5A EP3901351A4 (en) 2018-12-19 2019-12-17 LAUNDRY TREATMENT DEVICE
US17/416,070 US20220074106A1 (en) 2018-12-19 2019-12-17 Laundry treatment apparatus
JP2021536012A JP2022523899A (ja) 2018-12-19 2019-12-17 衣類処理設備

Applications Claiming Priority (8)

Application Number Priority Date Filing Date Title
CN201811560210.0 2018-12-19
CN201811558377.3A CN111334970B (zh) 2018-12-19 2018-12-19 衣物处理设备
CN201811558424.4 2018-12-19
CN201811558377.3 2018-12-19
CN201822136400.1 2018-12-19
CN201811560210.0A CN111334990A (zh) 2018-12-19 2018-12-19 衣物处理设备
CN201811558424.4A CN111334968B (zh) 2018-12-19 2018-12-19 衣物处理设备
CN201822136400 2018-12-19

Publications (1)

Publication Number Publication Date
WO2020125613A1 true WO2020125613A1 (zh) 2020-06-25

Family

ID=71102056

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2019/125903 WO2020125613A1 (zh) 2018-12-19 2019-12-17 衣物处理设备

Country Status (4)

Country Link
US (1) US20220074106A1 (zh)
EP (1) EP3901351A4 (zh)
JP (1) JP2022523899A (zh)
WO (1) WO2020125613A1 (zh)

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101660258A (zh) * 2008-08-29 2010-03-03 夏普株式会社 洗衣机、雾状水供给装置及具有该装置的洗衣机、干燥机
JP2012005876A (ja) * 2011-09-09 2012-01-12 Toshiba Corp ドラム式洗濯機
CN106521884A (zh) * 2015-09-15 2017-03-22 青岛海尔滚筒洗衣机有限公司 一种洗衣机及洗衣机的洗涤剂的投放方法
CN108729141A (zh) * 2017-04-17 2018-11-02 青岛海尔滚筒洗衣机有限公司 一种洗涤剂投放结构及洗衣机
CN209703098U (zh) * 2018-12-19 2019-11-29 青岛海尔滚筒洗衣机有限公司 衣物处理设备
CN209703102U (zh) * 2018-12-19 2019-11-29 青岛海尔滚筒洗衣机有限公司 用于衣物处理设备的空气洗装置及衣物处理设备

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4103520A (en) * 1977-03-11 1978-08-01 Ald, Inc. Adaptor for automated laundry system
JP4935744B2 (ja) * 2008-04-10 2012-05-23 パナソニック株式会社 洗濯機
DE102012213934A1 (de) * 2012-08-07 2014-02-13 BSH Bosch und Siemens Hausgeräte GmbH Waschmaschine mit Vorrichtung zur Erzeugung von Wassertropfen sowie Verfahren zu ihrem Betrieb
CN106149308B (zh) * 2015-04-15 2019-06-28 青岛海尔滚筒洗衣机有限公司 防止滚筒洗衣机喷淋管口滴水的装置和滚筒洗衣机

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101660258A (zh) * 2008-08-29 2010-03-03 夏普株式会社 洗衣机、雾状水供给装置及具有该装置的洗衣机、干燥机
JP2012005876A (ja) * 2011-09-09 2012-01-12 Toshiba Corp ドラム式洗濯機
CN106521884A (zh) * 2015-09-15 2017-03-22 青岛海尔滚筒洗衣机有限公司 一种洗衣机及洗衣机的洗涤剂的投放方法
CN108729141A (zh) * 2017-04-17 2018-11-02 青岛海尔滚筒洗衣机有限公司 一种洗涤剂投放结构及洗衣机
CN209703098U (zh) * 2018-12-19 2019-11-29 青岛海尔滚筒洗衣机有限公司 衣物处理设备
CN209703102U (zh) * 2018-12-19 2019-11-29 青岛海尔滚筒洗衣机有限公司 用于衣物处理设备的空气洗装置及衣物处理设备

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See also references of EP3901351A4

Also Published As

Publication number Publication date
EP3901351A1 (en) 2021-10-27
EP3901351A4 (en) 2022-03-23
US20220074106A1 (en) 2022-03-10
JP2022523899A (ja) 2022-04-27

Similar Documents

Publication Publication Date Title
JP2018528036A (ja) 洗濯機の噴射システムおよび洗濯機
CN111334964A (zh) 衣物处理设备
WO2020125613A1 (zh) 衣物处理设备
US11773526B2 (en) Laundry treating apparatus
CN209703098U (zh) 衣物处理设备
CN111334970B (zh) 衣物处理设备
CN111334988B (zh) 衣物处理设备
WO2020125614A1 (zh) 用于衣物处理设备的空气洗装置及衣物处理设备
CN210117535U (zh) 衣物处理设备
CN111334968B (zh) 衣物处理设备
CN111334969B (zh) 衣物处理设备
CN209703096U (zh) 衣物处理设备
CN209703097U (zh) 衣物处理设备
CN209703102U (zh) 用于衣物处理设备的空气洗装置及衣物处理设备
CN111334989B (zh) 衣物处理设备
CN111334980A (zh) 用于衣物处理设备的空气洗装置及衣物处理设备
CN111334990A (zh) 衣物处理设备
CN218910903U (zh) 喷头装置和衣物护理设备
CN111334978A (zh) 衣物处理设备
CN108360209A (zh) 一种空气洗衣机装置
WO2020125611A1 (zh) 用于衣物处理设备的控制方法及衣物处理设备
CN109837704A (zh) 一种防滴水的管头及采用该管头的洗衣机
KR200319231Y1 (ko) 가정용 에어 샤워기
CN111411487A (zh) 用于衣物处理设备的控制方法及衣物处理设备
CN117822292A (zh) 喷头装置和衣物护理设备

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 19899655

Country of ref document: EP

Kind code of ref document: A1

ENP Entry into the national phase

Ref document number: 2021536012

Country of ref document: JP

Kind code of ref document: A

NENP Non-entry into the national phase

Ref country code: DE

ENP Entry into the national phase

Ref document number: 2019899655

Country of ref document: EP

Effective date: 20210719