WO2019223570A1 - Dispositif de traitement de vêtements et son procédé de commande - Google Patents

Dispositif de traitement de vêtements et son procédé de commande Download PDF

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Publication number
WO2019223570A1
WO2019223570A1 PCT/CN2019/086788 CN2019086788W WO2019223570A1 WO 2019223570 A1 WO2019223570 A1 WO 2019223570A1 CN 2019086788 W CN2019086788 W CN 2019086788W WO 2019223570 A1 WO2019223570 A1 WO 2019223570A1
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WIPO (PCT)
Prior art keywords
water
atomized water
atomized
water storage
storage cavity
Prior art date
Application number
PCT/CN2019/086788
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English (en)
Chinese (zh)
Inventor
赵志强
许升
吕佩师
Original Assignee
青岛海尔滚筒洗衣机有限公司
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 CN201810509323.1A external-priority patent/CN110528242B/zh
Priority claimed from CN201810509306.8A external-priority patent/CN110528238A/zh
Priority claimed from CN201810510140.1A external-priority patent/CN110528237B/zh
Priority claimed from CN201810509322.7A external-priority patent/CN110528241B/zh
Application filed by 青岛海尔滚筒洗衣机有限公司 filed Critical 青岛海尔滚筒洗衣机有限公司
Priority to JP2020565850A priority Critical patent/JP7371311B2/ja
Publication of WO2019223570A1 publication Critical patent/WO2019223570A1/fr

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    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F58/00Domestic laundry dryers
    • D06F58/20General details of domestic laundry dryers 

Definitions

  • the present invention relates to the technical field of laundry washing, drying, and care processing, and in particular, to a clothing processing device and a control method thereof.
  • the raw materials of clothing are fibers, and the fibers are composed of linear macromolecules.
  • the linear macromolecules are freely arranged, especially the loosely arranged amorphous region. Water molecules will enter the micro-gap of this region, causing the fibers to expand and stretch, and the clothing After washing and drying, the fibers remain crimped.
  • hydrophilic fibers the original shape disappears after washing, the durability and effect of ironing and setting are worse, such as cotton, wool, silk, viscose fibers; hydrophobic fibers, the original shape after washing
  • the stability is better, and the durability and effect of ironing and setting are better, such as chemical fiber (polyester, acrylic, etc.).
  • the invention mainly solves the problem of wrinkles of the clothes washed by the existing washing machine or the clothes dried by the dryer, and realizes the structure of the clothes without wrinkles, so as to improve the user experience.
  • an object of the present invention is to provide a clothes treating device. Specifically, the following technical solutions are adopted:
  • a clothing processing device includes:
  • the processing drum assembly the laundry to be processed is contained in the processing drum assembly;
  • Atomization module comprising an atomized water storage device and an atomization generating device
  • the atomized water storage device has an atomized water storage cavity for storing atomized water and an atomized water output end connected with the treatment barrel component
  • the energy output end of the atomization generating device acts on the atomized water in the atomized water storage cavity to transform it into water mist and enters the treatment barrel assembly through the atomized water output end to perform the atomization treatment of the clothes.
  • the atomization generating device is an ultrasonic atomization generator, and the ultrasonic atomization generator includes an ultrasonic vibration end; an outer wall of the atomized water storage cavity of the atomization water storage device is provided with an ultrasonic vibration end installed therein; At the installation port, the ultrasonic vibration end is in contact with the atomizing water in the atomized water storage cavity, and the high-frequency resonance of the ultrasonic vibration end breaks up the liquid water molecular structure to generate water mist.
  • the ultrasonic vibrating end includes an atomizing vibrating piece and a vibrating piece holder on which the atomizing vibrating piece is installed, the vibrating piece holder is sealed and installed on the installation port of the atomized water storage device, and the atomized vibrating piece The inside of the installation opening is arranged in contact with the atomizing water in the atomizing water storage cavity.
  • the atomized water storage device further has an air inlet end and an atomized water inlet end for entering water for atomization, and the air inlet end is located above the highest water storage level of the atomized water storage cavity.
  • drying air duct connected to the processing cylinder assembly, and the air inlet end is in communication with the drying air duct;
  • a fan for driving the flow of the drying air is provided in the drying air duct, and the connection between the air inlet end and the drying air duct is located at a downstream position of the fan;
  • the drying air duct is further provided with a heating pipe for heating the drying air, and the connection between the air inlet end and the drying air duct is located between the heating pipe and the fan.
  • the atomized water output end of the atomized water storage device is communicated with the barrel component through a drying air duct;
  • the drying air duct has a drying air outlet end which is in communication with the barrel component and is used to pass hot drying air into the barrel component, and the atomized water output end of the atomized water storage device
  • the connection point with the drying air duct is located between the heating pipe and the drying air outlet.
  • the laundry processing device is a washer-dryer
  • the washer-dryer includes a water inlet valve and a detergent box
  • the water inlet valve has an atomized water inlet which communicates with the atomized water inlet end of the atomized water storage device.
  • a control terminal and a detergent box water inlet control terminal connected with the detergent box;
  • the clothes treatment device is a clothes dryer.
  • the clothes dryer includes a water inlet valve.
  • the output end of the water inlet valve is connected to the atomized water inlet end of the atomized water storage device, and the water inlet end of the water inlet valve is externally connected to a water source.
  • the laundry processing device is a washing machine.
  • the washing machine includes a water inlet valve and a detergent box.
  • the water inlet valve has an atomized water inlet control end in communication with an atomized water inlet end of the atomized water storage device and a detergent. Water inlet control terminal of the detergent box connected to the box;
  • the washing machine includes an outer cylinder and an inner cylinder disposed in the outer cylinder.
  • the atomized water output end of the atomized water storage device is in communication with the external cylinder.
  • the air inlet end of the atomized water storage device is connected to the atomized storage device. Atomizing fan blowing in the water cavity.
  • the atomized water storage device includes a housing having an opening cavity and a cover body covering the opening of the housing, and the cover body and the housing are collectively enclosed to form the atomized water storage cavity;
  • the atomized water inlet end is an atomized water inlet port provided on the cover
  • the atomized water output end is an atomized water output port provided on a side wall of the casing
  • the air inlet end To provide an air inlet on the side wall of the casing, the atomized water output port and the air inlet are both located above the highest water level in the atomized water storage cavity.
  • the atomized water output port and The air inlets are relatively arranged;
  • the mounting port is provided on the bottom wall of the casing.
  • the bottom wall of the casing is provided in a transition from high to low, and the mounting port is provided at the lowest position of the bottom wall of the casing.
  • the atomization generating device includes a compressed gas output end that is passed into the atomized water storage cavity and an atomization sheet disposed in the atomized water storage cavity, and the compressed gas output end of the atomization generation device outputs compressed gas.
  • the compressed gas drives the atomized water in the atomized water storage cavity to hit the atomized sheet at a high speed to form a water mist, and the water mist enters the processing cylinder assembly through the atomized water output end for the atomization of the clothes.
  • the atomization generating device includes a gas compression device.
  • the compressed gas output end of the atomization generating device is a compressed gas nozzle.
  • the compressed gas nozzle extends into the atomized water storage chamber, and the atomized sheet is provided. It is set in the atomized water storage cavity and directly opposite the compressed gas nozzle; the compressed gas generated by the gas compression device is sprayed into the atomized water storage cavity through the compressed gas nozzle, and the compressed gas drives the atomized water in the atomized water storage cavity to hit the mist at high speed Water mist formed on the tablet.
  • the compressed gas nozzle is a Venturi nozzle
  • the Venturi nozzle is installed on the side wall of the atomized water storage cavity and is higher than the highest water level of the atomized water
  • a suction pipe is arranged in the atomized water storage cavity , One end of the suction pipe penetrates into the atomized water in the atomized water storage cavity, and the other end extends to the minimum narrowed section of the venturi nozzle
  • the atomized sheet is arranged in the atomized water storage cavity and directly faces the venturi
  • the outlet of the nozzle is set; the compressed gas generated by the body compression device is sprayed into the atomizing water storage chamber through the venturi nozzle, and the minimum narrowing stroke of the venturi nozzle is negatively sucked out the atomizing water through the suction pipe, and the mist after the suction
  • the compressed water impacts the water mist on the atomizing sheet at high speed under the action of compressed gas.
  • the gas compression device is a compressor, the air inlet of the compressor is connected to the external environment of the clothes processing device through a pipeline, and the outlet of the compressor is connected to a compressed gas nozzle;
  • the gas compression device is a fan
  • the gas nozzle is connected to an air inlet pipe connected to the external environment of the clothes treatment device
  • the fan is disposed in the air inlet pipe.
  • drying air duct connected with the processing cylinder component:
  • the gas compression device is a compressor, an air inlet of the compressor is connected to a drying air duct through a pipeline, and an outlet of the compressor is connected to a compressed gas nozzle;
  • the gas compression device is a fan
  • the gas nozzle communicates with the drying air duct through an air intake pipe
  • the fan is disposed in the air intake pipe.
  • the atomized water output end of the atomized water storage device is communicated with the barrel component through a drying air duct;
  • the drying air duct has a drying air outlet end which is in communication with the barrel component and is used to pass hot drying air into the barrel component, and the atomized water output end of the atomized water storage device
  • the connection point with the drying air duct is located between the heating pipe and the drying air outlet.
  • the laundry processing device is a washer-dryer, and the washer-dryer includes a water inlet valve and a detergent box;
  • the atomized water storage device further has an atomized water inlet end for the atomized water to enter,
  • the water valve has an atomized water inlet control end in communication with the atomized water inlet end of the atomized water storage device and a detergent box water inlet control end in communication with the detergent box;
  • the clothes treatment device is a clothes dryer.
  • the clothes dryer includes a water inlet valve.
  • the output end of the water inlet valve is connected to the atomized water inlet end of the atomized water storage device, and the water inlet end of the water inlet valve is externally connected to a water source.
  • the laundry processing device is a washing machine, and the washing machine includes a water inlet valve and a detergent box;
  • the atomized water storage device further has an atomized water inlet end for the atomized water to enter, and the water inlet valve has a The atomized water inlet control end connected with the atomized water inlet end of the water storage device and the detergent box water inlet control end connected with the detergent box;
  • the washing machine includes an outer drum and an inner drum disposed in the outer drum, and the atomized water output end of the atomized water storage device is in communication with the outer drum.
  • the atomizing sheet is a baffle, and the compressed gas sprayed from the venturi nozzle impacts the atomizing water and hits the baffle with a high-speed spray of water mist.
  • the atomized water storage cavity is provided with an atomized sheet immersed in the atomized water, and the atomized sheet is provided with a plurality of sieve openings;
  • the energy output end of the atomization generating device acts on the atomizing sheet, and the atomizing sheet vibrates to break the surface tension of the atomizing water in contact with its surface to generate water mist, and enters the processing drum assembly through the atomizing water output end to perform clothing mist.
  • the energy output end of the atomization generating device acts on the atomizing water to drive it to move quickly to the atomizing sheet to generate water mist, and enters the treatment cylinder assembly through the atomizing water output end to perform the clothing atomization treatment.
  • the atomizing sheet is a pressure vibration element
  • the atomizing generating device is a booster pump, and an output end of the booster pump passes into the atomizing water storage chamber;
  • the booster pump works to increase the pressure in the atomized water storage chamber, and the pressure vibration element vibrates at a high frequency under the effect of pressure, and the atomized water in contact with its surface is dispersed to form a water mist.
  • the output end of the booster pump and the atomized water output end are disposed on two opposite side walls of the atomized water storage cavity, and the atomized sheet includes one or more, which are disposed on the booster pump. Between the output end and the atomized water output end.
  • the atomization generating device is an electrostatic atomization module, and the positive and negative electrodes of the electrostatic atomization module penetrate deep into the atomization water in the atomization water storage cavity;
  • the high-speed movement of electrons between the positive and negative electrodes of the electrostatically atomizing module drives the atomized water in the atomized water storage cavity to rapidly move toward the atomizing sheet to generate water mist.
  • the electrostatically atomizing module includes a positive electrode plate and a negative electrode plate which are oppositely disposed in the atomizing water storage cavity, and the positive electrode plate and the negative electrode plate are both immersed in the atomizing water;
  • the atomizing sheet includes One or more between the positive electrode plate and the negative electrode plate;
  • the atomized water output end is disposed on a side wall of the atomized water storage cavity near the positive electrode plate.
  • the atomized water storage device further has an air inlet end and an atomized water inlet end for entering water for atomization, and the air inlet end is located above the highest water storage level of the atomized water storage cavity.
  • drying and drying air duct communicating with the processing cylinder component, and the air inlet end is in communication with the drying air duct;
  • a fan for driving the flow of the drying air is provided in the drying air duct, and the connection between the air inlet end and the drying air duct is located at a downstream position of the fan;
  • the drying air duct is further provided with a heating pipe for heating the drying air, and the connection between the air inlet end and the drying air duct is located between the heating pipe and the fan;
  • the atomized water output end of the atomized water storage device is communicated with the barrel component through a drying air duct;
  • the drying air duct has a drying air outlet end which is in communication with the barrel component and is used to pass hot drying air into the barrel component, and the atomized water output end of the atomized water storage device
  • the connection point with the drying air duct is located between the heating pipe and the drying air outlet.
  • the atomized water storage device includes a housing having an opening cavity and a cover body covering the opening of the housing, and the cover body and the housing are collectively enclosed to form the atomized water storage cavity;
  • the atomizing sheet is installed on the inner wall of the cover and extends toward the bottom wall of the shell. The atomizing sheet is immersed in the atomizing water.
  • the atomized water inlet end is an atomized water inlet port provided on the cover
  • the atomized water output end is an atomized water output port provided on a side wall of the casing
  • the air inlet end To provide an air inlet on the side wall of the casing, the atomized water output port and the air inlet are both located above the highest water level in the atomized water storage cavity.
  • the atomized water output port and The air inlets are oppositely arranged.
  • an atomizing sheet mounting seat is fixed on the inner wall of the cover body, and the atomizing sheet is detachably mounted on the atomizing sheet mounting seat.
  • a water blocking member which is arranged in the atomized water storage cavity for blocking water from entering the atomized water output end.
  • the atomized water output end is an atomized water output port provided on a side wall of the atomized water storage cavity
  • the water blocking member has a blocking surface that can cover the atomized water output port to block water.
  • at least one side of the blocking surface is spaced from the inner wall of the atomized water storage cavity so that water mist can enter the atomized water output port.
  • the water blocking member is a water blocking plate, and a lower end of the water blocking plate is inclinedly arranged in the atomized water storage cavity toward the atomized water output port, and at least one side of the water blocking plate is in contact with the atomized water storage cavity.
  • the inner wall is arranged at intervals, and the side of the water blocking plate facing the atomized water is a blocking surface; the water mist generated in the atomized water storage cavity enters the atomized water from the space between the water blocking plate and the inner wall of the atomized water storage cavity.
  • the non-atomized water carried in the water mist is blocked by the blocking surface of the water blocking plate and slides down along the blocking surface.
  • the atomized water output port is disposed on a side wall of the atomized water storage cavity, the lower end of the water blocking plate is connected below the atomized water output port, and the upper end of the water blocking plate faces away from the atomization.
  • the water outlet extends obliquely upward, and the upper end of the baffle plate is spaced from the top wall of the atomized water storage cavity;
  • the upper end of the water blocking plate is connected to the top wall of the atomized water storage cavity, the lower end of the water blocking plate extends obliquely downward near the atomized water output port, and the lower end of the water blocking plate and the atomized water output port
  • the sidewalls of the lower atomized water storage cavity are arranged at intervals.
  • the water blocking member is a water blocking cover, which covers the atomized water output port, and the edge of the water blocking cover is at least partially spaced from the inner wall of the atomized water storage cavity on the periphery of the atomized water output port.
  • the outer surface of the water cover is a blocking surface; the water mist generated in the atomized water storage cavity enters the atomized water output port from the space between the water cover and the inner wall of the atomized water storage cavity. The atomized water is blocked by the blocking surface of the water shield and slides down the blocking surface.
  • the water shield has an open inner chamber, and the open end of the water shield covers the atomized water output port, and at least a partial edge of the open end is spaced from the inner wall of the atomized water storage chamber on the outer periphery of the atomized water output port.
  • the water retaining cover is a conical cover or a circular truncated cover.
  • the water blocking member is a water collection tank baffle with a water collection tank, one end of the water collection tank baffle is disposed on the side wall fog of the atomized water storage cavity below the atomized water output port, and the other end faces the fog
  • the water storage cavity extends inside, and a water outlet is set on the bottom wall of the water collecting tank.
  • the water collecting tank baffle is formed by partially bending a flat plate-like structure, and the bent portion forms a water collecting tank;
  • one end of the water collecting tank baffle is connected below the atomized water outlet, and the other end extends horizontally, and the extended end of the water collecting tank baffle extends upward obliquely toward the top wall of the atomized water storage cavity, and is connected with the fog
  • the top wall of the water storage cavity is arranged at intervals; the water collecting tank is a U-shaped groove formed by partially bending the water collecting tank baffle.
  • the atomized water storage device further has an air inlet end and an atomized water inlet end for the atomized water to enter, and the air inlet end is located above the highest water storage level of the atomized water storage cavity;
  • the atomized water storage device includes a housing having an opening chamber and a cover body covering the opening of the housing, and the cover body and the housing are jointly enclosed to form the atomized water storage cavity;
  • the atomized water inlet end is an atomized water inlet port provided on the cover
  • the atomized water output end is an atomized water output port provided on a side wall of the casing
  • the air inlet end To provide an air inlet on the side wall of the casing, the atomized water output port and the air inlet are both located above the highest water level in the atomized water storage cavity.
  • the atomized water output port and The air inlets are oppositely arranged.
  • a second inventive object of the present invention is to provide a method for controlling a clothes treating device. Specifically, the following technical solution is adopted:
  • a method for controlling a laundry processing device wherein the laundry processing device controls the operation of an atomizing module during a drying process, a steam washing process, or an air washing process, and the water mist generated by the atomizing module enters
  • the atomizing treatment of laundry is performed in the processing drum assembly.
  • the clothing treatment device of the present invention generates water mist through the atomization module, and passes the water mist into the treatment cylinder assembly to perform the atomization treatment of the clothing. After the atomization treatment, the clothing has no wrinkles, no odor, and no odor, which greatly improves the user's Use experience.
  • a water blocking member is provided in the atomized water storage cavity, and the water blocking member can block the non-atomized water from entering and outputting the atomized water output end, thereby ensuring the atomization treatment effect of the clothes.
  • FIG. 1 is a schematic diagram of a clothes treating apparatus according to a first embodiment of the present invention
  • FIG 2 is a top view of a clothes treating apparatus according to a first embodiment of the present invention (removing the upper surface);
  • FIG 3 is a top view of a clothes treating apparatus according to a first embodiment of the present invention (removing the upper surface);
  • FIG. 4 is a schematic structural diagram of an atomized water storage device according to a first embodiment of the present invention.
  • FIG. 5 is a schematic structural diagram of an atomized water storage device according to a second embodiment of the present invention.
  • FIG. 6 is a schematic structural diagram of a three-atomization water storage device according to an embodiment of the present invention.
  • FIG. 7 is a schematic structural diagram 1 of an atomized water storage device according to a fourth embodiment of the present invention.
  • FIG. 8 is a second schematic structural diagram of an atomized water storage device according to the fourth embodiment of the present invention.
  • FIG. 9 is a third structural schematic diagram of an atomized water storage device according to the fourth embodiment of the present invention.
  • a clothing processing apparatus of this embodiment includes:
  • the processing drum assembly the laundry to be processed is contained in the processing drum assembly;
  • the atomization module 200 includes an atomization water storage device 201 and an atomization generating device.
  • the atomization water storage device 201 has an atomization water storage cavity 2011 for storing atomization water and a mist communication with a treatment barrel assembly. Atomized water output terminal 2016.
  • the energy output terminal of the atomization generating device 201 acts on the atomized water in the atomized water storage chamber 2011 to transform it into water mist and enters the processing cylinder assembly through the atomized water output terminal 2016. Perform clothing atomization.
  • the clothing processing device of this embodiment generates water mist through the atomization module 200, and passes the water mist into the processing drum assembly to perform the clothing atomization treatment. After the atomization treatment, the clothes have no wrinkles, no odor, and have greatly improved. User experience.
  • the atomization generating device 201 in this embodiment may adopt various methods.
  • the atomization generating device 201 may act on water to generate water mist by using ultrasonic, mechanical vibration, static electricity, high voltage, and the like.
  • the atomization generating device described in this embodiment is an ultrasonic atomization generator, and the ultrasonic atomization generator includes an ultrasonic vibration end; and the atomized water storage device 201 atomizes and stores water.
  • the outer wall of the cavity is provided with an installation opening 2015 for installing an ultrasonic vibration end.
  • the ultrasonic vibration end is in contact with the atomizing water in the atomized water storage cavity, and the high-frequency resonance of the ultrasonic vibration end breaks up the liquid water molecular structure to generate water mist.
  • the ultrasonic vibrating end described in this embodiment includes an atomizing vibrating piece 205 and a vibrating piece holder 206 on which the atomizing vibrating piece 205 is installed.
  • the vibrating piece holder 206 is sealed and installed at the installation opening 2015 of the atomized water storage device
  • the atomizing vibrating piece 205 is disposed in the installation port 2015 and is in contact with the atomizing water in the atomizing water storage cavity.
  • the vibrating piece holder 206 of this embodiment is a tubular structure, and the tubular structure is sealedly connected to the mounting port 2015.
  • a sealing ring 207 is provided between the tubular structure and the mounting port.
  • the ultrasonic atomization generator uses electronic high-frequency oscillation (the oscillation frequency is 1.7MHz or 2.4MHz, which exceeds the human hearing range, and the electronic oscillation has no harm to humans and animals).
  • the molecular structure of liquid water breaks up to produce a naturally flowing water mist.
  • the water is atomized into 1-100 micron ultrafine particles, which are uniform, without heating or adding any chemical reagents. Compared with the heating atomization method, the energy saving is 90%.
  • a large amount of negative ions will be released during the atomization process, which will cause an electrostatic reaction with the smoke and dust floating in the air, causing it to precipitate, and it can also effectively remove formaldehyde. , Carbon monoxide, bacteria and other harmful substances, make clothing care experience better.
  • the atomized water storage device 201 further has an air inlet end 2013 and an atomized water inlet end 2017 for atomizing water entering, and the air inlet end 2013 is located in the atomizing water storage cavity. Above the highest water storage level.
  • the atomized water inlet end 2017 of this embodiment realizes the introduction of external water sources into the atomized water storage cavity 2011 of the atomized water storage device 201, and the air inlet side 2013 realizes the introduction of airflow to the atomized water storage device 201 of the atomized water storage device 201 In the water chamber 2011, the airflow impacts the water mist and better carries the water mist from the atomized water output end 2016 into the processing cylinder assembly.
  • the airflow source of the air intake end 2013 of this embodiment may be provided by a fan alone. As shown in FIG. 3, the air intake end 2013 of this embodiment is connected to a separately provided atomizing fan 900, and the atomizing fan 900 is connected to the main of the clothes treating device.
  • the control board is electrically connected, and the opening and closing of the atomizing fan 900 is controlled by the main control board.
  • the airflow source of the air intake end 2013 of this embodiment may also be obtained according to the working mode of the laundry processing apparatus.
  • the laundry processing apparatus when the laundry processing apparatus of this embodiment has a drying function, the laundry processing apparatus includes The drying air duct 602 is connected to the processing cylinder component, and the air intake end 2013 is connected to the drying air duct 602.
  • the drying wind in the drying air duct is directly used as a wind source for driving the water mist.
  • the structure is simple, the overall cost is low, and it has broad market value.
  • a fan 605 for driving the flow of the drying air is provided in the drying air duct 602, and the connection between the air inlet end 2013 and the drying air duct 602 is located downstream of the fan 605; thus, the fan 605 can drive the drying wind into the atomized water storage device 201.
  • the drying air duct 602 is further provided with a heating pipe 601 for heating the drying air.
  • the connection between the air inlet end 2013 and the drying air duct 602 is located between the heating pipe 601 and the fan 605. between.
  • the fan 605 in this embodiment includes a motor 604 and a fan blade 603, and the motor 604 is energized.
  • the fan blade 603 rotates at a high speed and can exhaust gas to the air duct where the heating pipe 601 is installed, and attract the gas flow at the bottom of the outer cylinder To the fan blade 603. Continue the above process to achieve continuous high-temperature gas inside the outer cylinder and dry clothes.
  • the atomized water output end 2016 of the atomized water storage device 201 is communicated with the cylinder component through a drying air duct 602.
  • the drying air duct 602 has a drying air outlet end which is in communication with the cylinder component and is used to pass hot drying air into the cylinder component.
  • the atomized water of the atomized water storage device 201 The connection between the output end 2016 and the drying air duct is located between the heating pipe 601 and the drying air outlet.
  • the laundry processing device is a washer-dryer.
  • the washer-dryer includes a water inlet valve 800 and a detergent box 500.
  • the water inlet valve 800 has an atomization connection with the atomization water storage device 201.
  • the water inlet terminal 2017 is connected to the atomized water inlet control terminal and the detergent box water inlet control terminal that is connected to the detergent box 500.
  • This embodiment is based on the improvement of the water inlet valve 800 of the washer-dryer, and realizes the dual-channel water inlet control of the detergent box 500 and the atomized water storage device 201. The structure is simpler and the integrated control is easier.
  • the clothes treating device is a clothes dryer
  • the clothes dryer includes a water inlet valve
  • the output end of the water inlet valve is connected to the atomized water inlet end of the atomized water storage device, and the water inlet valve
  • the water inlet is connected to a water source.
  • the water inlet control of the atomized water storage device is implemented by adding a water inlet valve to the clothes dryer. The atomization process is added during the drying process, so that the dried clothes are wrinkle-free, more flat, and the user experience is improved.
  • the laundry processing device is a washing machine.
  • the washing machine includes a water inlet valve and a detergent box.
  • the water inlet valve has atomized water inlet which is in communication with the atomized water inlet end of the atomized water storage device.
  • a control terminal and a detergent box water inlet control terminal connected with the detergent box;
  • the washing machine includes an outer cylinder and an inner cylinder disposed in the outer cylinder.
  • the atomized water output end of the atomized water storage device is in communication with the external cylinder.
  • the air inlet end of the atomized water storage device is connected to the atomized storage device. Atomizing fan blowing in the water cavity.
  • the atomized water storage device 201 includes a casing 2014 having an opening chamber and a cover 2012 covering the opening of the casing 2014, and the cover 2012 and the casing 2014 Together, they form the atomized water storage cavity 2011.
  • the atomized water inlet end 2017 is an atomized water inlet provided on the cover
  • the atomized water output end 2016 is an atomized water outlet provided on a side wall of the casing 2014.
  • the air inlet end 2013 is an air inlet provided on the side wall of the casing 2014.
  • the atomized water output port and the air inlet are both located above the highest water level in the atomized water storage cavity 2011.
  • the The atomized water output port is opposite to the air inlet, so that the water mist can be better discharged from the atomized water output port under the action of the air flow.
  • the mounting opening 2015 is provided on the bottom wall of the housing 2014.
  • the bottom wall of the housing 2014 is in a high-to-low transition setting, and the mounting opening 2015 is provided at the lowest position of the bottom wall of the housing. .
  • the ultrasonic atomizing generator of this embodiment is connected to a power board of a washing machine through a power line.
  • the control panel can control the start and stop of the ultrasonic atomization generator.
  • a liquid level sensor may be further provided inside the atomized water storage cavity 2011 of the atomized water storage device 201 to prevent damage to the ultrasonic atomization generator caused by excessive overflow or low water level.
  • the atomizing water storage device 201 has a water overflow port, and the ultrasonic atomizing generator has its own minimum starting water level detection.
  • Two water level control probes are fastened to the inner wall of the atomized water storage chamber 2011 of the atomized water storage device 201, and are arranged at a certain distance and then vertically extend the atomized water storage device 201. At a certain height outside, only the two probes can be started in water, so as to control the minimum water level of the atomized solution.
  • the power and working circuit of the ultrasonic atomizer are separately installed in an engineering plastic case.
  • the output current will supply power to the ultrasonic vibration terminal through the wire.
  • the ultrasonic atomizer has an automatic protection function when the water is cut off. When the water level is lower than the water level switch or the water level probe, the ultrasonic atomizer will automatically stop working.
  • this embodiment further uses a washing machine with a drying function as an example for further description:
  • the washing machine of this embodiment has a casing 100, which is composed of an upper panel, a side panel bottom plate, and the like.
  • the bottom plate of the casing 100 is firmly connected with a foot 400 to support the entire washing machine.
  • An outer cylinder is suspended inside the casing 100, and an inner cylinder is disposed inside.
  • the outer cylinder has an upper suspension part, which is hung on a side panel of the washing machine or a reinforcing beam through a suspension spring.
  • the outer cylinder is connected to and supported by the bottom plate by a lower connecting portion through a damper.
  • the casing 100 has at least one atomizing module 200 therein.
  • the front panel has at least two covers that can be opened. They are the cover of the washing box and the cover of the atomizing module. Open the cover of the washing box to put detergent, softener, bleach, etc. into the washing box; open the cover of the atomizing module, and consumers can add perfume, fluffing agents and other clothing care to the atomizing water storage device 201 Supplies.
  • the water mist can be used to enhance the aroma and fluffy of the steam-treated clothes after heating, and the effect is better.
  • the washing box 500 and the atomizing module 200 are placed at two corners of the washing machine, respectively, and the idle space between the outer cylinder and the casing is fully utilized.
  • the water inlet valve 800 controls at least one water inlet valve to enter the detergent box 500 through the water inlet pipe 501 of the washing box. At least one water inlet valve controls the water inlet through the atomizing water inlet pipe 203 to enter the atomizing water storage device 201.
  • the drying air duct is connected to a front upper part of the outer cylinder or the window mat through a hose, and a rear end is connected to a rear bottom of the outer cylinder through a hose, thereby realizing the entire hot air circulation of the outer cylinder.
  • a heating tube is provided in the drying air duct.
  • a fan which is arranged in the air duct.
  • This embodiment also provides a method for controlling a laundry processing device.
  • the laundry processing device controls the operation of the atomizing module during the drying process, the steam washing process, or the air washing process, and the atomizing module generates water mist. Enter into the processing drum assembly to perform laundry atomization. In this way, after the user selects a washing program on the touch panel, the drying, steam washing, and air washing programs are selected. In the process, the atomizing module works. The water mist treats the clothes to remove odors and no wrinkles.
  • a clothes treating apparatus As shown in FIG. 1, FIG. 2, FIG. 3, and FIG. 5, a clothes treating apparatus according to this embodiment of the present embodiment includes:
  • the processing drum assembly the laundry to be processed is contained in the processing drum assembly;
  • the atomization module 200 includes an atomization water storage device 201 and an atomization generating device.
  • the atomization water storage device 201 has an atomization water storage cavity 2011 for storing atomization water and a mist communication with a treatment barrel assembly.
  • the atomized water output terminal 2016, the atomization generating device includes a compressed gas output terminal 2051 that is passed into the atomized water storage cavity 2011 and an atomization sheet 2052 provided in the atomized water storage cavity 2011.
  • the compressed gas output terminal 2051 outputs compressed gas.
  • the compressed gas drives the atomized water in the atomized water storage cavity to hit the atomizing sheet 2052 at high speed to form a water mist.
  • the water mist enters the processing cylinder assembly through the atomized water output terminal 2016 for clothing. Atomization treatment.
  • the clothing processing device of this embodiment generates water mist through the atomization module 200, and passes the water mist into the processing drum assembly to perform the clothing atomization treatment. After the atomization treatment, the clothes have no wrinkles, no odor, and have greatly improved. User experience.
  • the atomization generating device in this embodiment includes a gas compression device.
  • the compressed gas output end 2051 of the atomization generating device is a compressed gas nozzle, and the compressed gas nozzle extends into the atomized water storage chamber.
  • the atomizing sheet 2052 is disposed in the atomized water storage cavity and is directly opposite the compressed gas nozzle; the compressed gas generated by the gas compression device is sprayed into the atomized water storage cavity through the compressed gas nozzle, and the compressed gas drives the mist in the atomized water storage cavity Water spray hits the atomizing sheet 2052 at high speed to form water mist.
  • the compressed gas nozzle is a Venturi nozzle
  • the Venturi nozzle is installed on the side wall of the atomizing water storage cavity 2011 and is higher than the highest water level of the atomizing water; the mist A water suction pipe 2053 is provided in the water storage chamber 2011.
  • One end of the water suction pipe 2053 penetrates into the atomized water in the water storage chamber 2011, and the other end extends to the minimum narrowed section of the venturi nozzle; the said atomization sheet 2052 It is set in the atomized water storage cavity and directly opposite the outlet of the venturi nozzle; the compressed gas generated by the body compression device is sprayed into the atomized water storage cavity through the venturi nozzle, and the minimum narrowing stroke of the venturi nozzle is negative pressure The atomized water is sucked out through a water suction pipe, and the sucked atomized water impacts the water mist on the atomizing sheet at a high speed under the action of compressed gas.
  • the gas compression device is a compressor, an air inlet of the compressor is connected to the external environment of the clothes processing device through a pipeline, and an outlet of the compressor is connected to a compressed gas nozzle;
  • the gas compression device is a fan
  • the gas nozzle is connected to an air inlet pipe connected to the external environment of the clothes treatment device
  • the fan is disposed in the air inlet pipe.
  • a drying air duct connected to the processing cylinder component is included:
  • the gas compression device is a compressor, an air inlet of the compressor is connected to a drying air duct through a pipeline, and an outlet of the compressor is connected to a compressed gas nozzle;
  • the gas compression device is a fan
  • the gas nozzle communicates with the drying air duct through an air intake pipe
  • the fan is disposed in the air intake pipe.
  • the atomizing sheet is a baffle
  • the compressed gas sprayed from the venturi nozzle impacts the atomizing water with high-speed impact on the baffle and splashes the stroke water spray.
  • the atomized water storage device 201 includes a casing 2014 having an opening chamber and a cover 2012 covering the opening of the casing 2014, and the cover 2012 and the casing 2014 Together, they form the atomized water storage cavity 2011.
  • the atomized water inlet 2017 is an atomized water inlet provided on the cover
  • the atomized water output 2016 is an atomized water outlet provided on the side wall of the casing 2014.
  • a mounting port for assembling the compressed gas output end 2051 is opened on the side wall of the body 2014.
  • the atomized water output port and the installation port are both located above the highest water level in the atomized water storage cavity 2011.
  • the mist The water outlet for the water is opposite to the compressed air output 2051. In this way, the water mist can be better discharged from the water outlet for the water under the action of the air flow.
  • the bottom wall of the casing 2014 is in a transition from high to low.
  • a clothes treating device in this embodiment includes:
  • the processing drum assembly the laundry to be processed is contained in the processing drum assembly;
  • the atomization module 200 includes an atomization water storage device 201 and an atomization generating device.
  • the atomization water storage device 201 has an atomization water storage cavity 2011 for storing atomization water and a mist communication with a treatment barrel assembly.
  • Atomized water output terminal 2016, the atomized water storage cavity 2011 is provided with an atomized sheet 206 immersed in the atomized water, and the atomized sheet 206 is provided with a plurality of sieve openings;
  • the energy output end of the atomization generating device acts on the atomizing sheet 206, and the atomizing sheet 206 vibrates to break the surface tension of the atomizing water in contact with its surface to generate water mist and enters the processing cylinder assembly through the atomizing water output end. Carry out the atomization of clothes;
  • the energy output end of the atomization generating device acts on the atomizing water to drive it to move rapidly to the atomizing sheet 206 to generate water mist, and enters the treatment cylinder assembly through the atomizing water output end to perform the clothing atomization treatment.
  • the clothing processing device of this embodiment generates water mist through the atomization module 200, and passes the water mist into the processing drum assembly to perform the clothing atomization treatment. After the atomization treatment, the clothes have no wrinkles, no odor, and have greatly improved. User experience.
  • the atomizing sheet 206 in this embodiment is a pressure vibration element
  • the atomization generating device is a booster pump, and an output end of the booster pump passes into the atomizing water storage cavity;
  • the booster pump works to increase the pressure in the atomized water storage chamber, and the pressure vibration element vibrates at a high frequency under the effect of pressure, and the atomized water in contact with its surface is dispersed to form a water mist.
  • the output end of the booster pump and the atomized water output end of this embodiment are disposed on two opposite side walls of the atomized water storage cavity, and the atomized sheet 206 includes one or more, and is disposed on Between the output of the booster pump and the atomized water output 2016.
  • the atomization generating device described in this embodiment is an electrostatic atomization module, and the positive and negative electrodes of the electrostatic atomization module penetrate deep into the atomization water in the atomization water storage cavity;
  • the high-speed movement of electrons between the positive and negative electrodes of the electrostatically atomizing module drives the atomized water in the atomized water storage cavity to rapidly move toward the atomizing sheet to generate water mist.
  • the electrostatically atomizing module includes a positive electrode plate and a negative electrode plate which are disposed in the atomizing water storage cavity, and the positive electrode plate and the negative electrode plate are both immersed in the atomizing water;
  • the wafer includes one or more wafers disposed between the positive electrode plate and the negative electrode plate;
  • the atomized water output end 2016 is disposed on a side wall of the atomized water storage cavity near the positive electrode plate.
  • the atomized water storage device 201 includes a casing 2014 having an opening chamber and a cover 2012 covering the opening of the casing 2014, and the cover 2012 and the casing 2014 Together, they form the atomized water storage cavity 2011.
  • the atomizing sheet 206 is installed on the inner wall of the cover 2012 and extends toward the bottom wall of the casing 2014, and the atomizing sheet 206 is immersed in the atomizing water.
  • the atomized water inlet end 2017 is an atomized water inlet provided on the cover
  • the atomized water output end 2016 is an atomized water outlet provided on a side wall of the casing 2014.
  • the air inlet end 2013 is an air inlet provided on the side wall of the casing 2014.
  • the atomized water output port and the air inlet are both located above the highest water level in the atomized water storage cavity 2011.
  • the The atomized water output port is opposite to the air inlet, so that the water mist can be better discharged from the atomized water output port under the action of the air flow.
  • an atomizing sheet mounting seat is fixed on the inner wall of the cover 2012 in this embodiment, and the atomizing sheet 206 is detachably mounted on the atomizing sheet mounting seat.
  • a clothing processing device in this embodiment includes:
  • the processing drum assembly the laundry to be processed is contained in the processing drum assembly;
  • the atomization module 200 includes an atomization water storage device 201 and an atomization generating device.
  • the atomization water storage device 201 has an atomization water storage cavity 2011 for storing atomization water and a mist communication with a treatment barrel assembly.
  • the atomized water output terminal 2016, the atomization generating device is disposed outside the atomized water storage cavity 2011, and the energy output terminal of the atomization generator 2011 acts on the atomized water in the atomized water storage cavity 2011 to transform it into water Mist and enter the treatment cylinder assembly through the atomizing water output terminal 2016 for atomizing the clothes;
  • a water blocking member As well as a water blocking member, it is provided in the atomized water storage cavity 2011 for blocking water from entering the atomized water output end 2016.
  • the clothing processing device of this embodiment generates water mist through the atomization module 200, and passes the water mist into the processing drum assembly to perform the clothing atomization treatment. After the atomization treatment, the clothes have no wrinkles, no odor, and have greatly improved. User experience.
  • a water blocking member is provided in the atomized water storage cavity 2011, and the water blocking member can block the non-atomized water from entering the atomized water output terminal 2016 and discharged, thereby ensuring the atomization treatment effect of the laundry.
  • the atomized water output end 2016 described in this embodiment is an atomized water output port opened on the side wall of the atomized water storage cavity 2011, and the water blocking member has a cover that can cover the atomized water output port.
  • the blocking surface blocks water from entering the atomized water output port, and at least one side of the blocking surface is spaced from the inner wall of the atomized water storage chamber so that water mist can enter the atomized water output port.
  • the water blocking member is a water blocking plate 207, and a lower end of the water blocking plate 207 is inclinedly disposed in the atomized water storage cavity 2011 toward the atomized water output port. At least one side of the water blocking plate 207 is spaced from the inner wall of the atomized water storage cavity 2011, and the side of the water blocking plate 207 facing the atomized water is a blocking surface; the water mist generated in the atomized water storage cavity is formed by The space between the water blocking plate and the inner wall of the atomized water storage cavity enters the atomized water output port, and the unatomized water carried in the water mist is blocked by the blocking surface of the water blocking plate and slides down along the blocking surface.
  • the atomized water output port described in this embodiment is disposed on a side wall of the atomized water storage cavity, the lower end of the water blocking plate 207 is connected below the atomized water output port, and the upper end of the water blocking plate 207 Extending obliquely upward away from the outlet of the atomized water, the upper end of the water blocking plate is spaced from the top wall of the atomized water storage cavity;
  • the upper end of the water blocking plate 207 is connected to the top wall of the atomized water storage cavity 2011, and the lower end of the water blocking plate 207 extends obliquely downward near the atomized water output port, and the lower end of the water blocking plate 207 is connected to the fog
  • the side walls of the atomized water storage cavity below the water outlet are arranged at intervals.
  • the water blocking member is a water blocking cover 208
  • the water blocking cover 208 covers an atomized water output port
  • an edge of the water blocking cover 208 is at least partially connected with the mist.
  • the inner wall of the atomized water storage cavity on the periphery of the water outlet is arranged at intervals, and the outer surface of the water blocking cover 208 is a blocking surface; The interval enters the atomized water output port, and the non-atomized water carried in the water mist is blocked by the blocking surface of the water shield 208 and slides down along the blocking surface.
  • the water shield 208 has an open internal chamber, and the open end of the water shield covers the atomized water output port, and at least a partial edge of the open end and the inner wall of the atomized water storage chamber on the outer periphery of the atomized water output port.
  • the water retaining cover is a conical cover or a circular truncated cover.
  • the water blocking member is a water collecting tank baffle 209 having a water collecting tank 2091, and one end of the water collecting tank baffle 209 is provided at an atomized water output port. On the lower side wall of the atomized water storage cavity, the other end extends into the atomized water storage cavity, and a water outlet 2092 is opened on the bottom wall of the water collection tank.
  • the water collecting tank baffle 209 is formed by partially bending a flat plate-like structure, and the bent portion forms a water collecting tank 2091; preferably, one end of the water collecting tank baffle 209 is connected to the atomizing water output port. The lower end and the other end extend horizontally, and the extended end of the baffle of the water collecting tank extends obliquely upwards toward the top wall of the atomized water storage chamber and is spaced apart from the top wall of the water storage tank; U-shaped groove formed by partial bending.
  • water blocking member of this embodiment is shown on the basis of the accompanying drawings of the embodiment, but it should be understood by those skilled in the art that the water blocking member of this embodiment can be implemented in the same manner as in the second and third embodiments.
  • Example 3 is used in combination.

Landscapes

  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Detail Structures Of Washing Machines And Dryers (AREA)

Abstract

La présente invention concerne un dispositif de traitement de vêtements et sont procédé de commande. Le dispositif de traitement de vêtements comprend : un ensemble cylindre de traitement, dans lequel un vêtement à traiter est placé dans l'ensemble cylindre de traitement ; et un module d'atomisation (200), comprenant un dispositif de stockage d'eau d'atomisation (201) et un dispositif d'atomisation, le dispositif de stockage d'eau d'atomisation (201) ayant une cavité de stockage d'eau d'atomisation (2011) pour stocker de l'eau à atomiser et une extrémité de sortie d'eau atomisée (2016) communiquant avec l'ensemble cylindre de traitement. Le dispositif d'atomisation est placé à l'extérieur de la cavité de stockage d'eau d'atomisation (2011). Une extrémité de sortie d'énergie du dispositif d'atomisation agit sur l'eau à atomiser dans la cavité de stockage d'eau d'atomisation (2011) pour la convertir en vapeur d'eau, et la vapeur d'eau entre dans l'ensemble cylindre de traitement par l'intermédiaire de l'extrémité de sortie d'eau atomisée (2016) pour effectuer un traitement d'atomisation sur le vêtement. Selon l'invention, le module d'atomisation génère de la vapeur d'eau, et la vapeur d'eau est introduite dans l'ensemble cylindre de traitement pour effectuer un traitement d'atomisation sur un vêtement, de telle sorte que le vêtement traité par atomisation ne présente pas de plis ni d'odeur.
PCT/CN2019/086788 2018-05-24 2019-05-14 Dispositif de traitement de vêtements et son procédé de commande WO2019223570A1 (fr)

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CN201810509306.8A CN110528238A (zh) 2018-05-24 2018-05-24 一种衣物处理装置及其控制方法
CN201810510140.1A CN110528237B (zh) 2018-05-24 2018-05-24 一种衣物处理装置及其控制方法
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